FPGA
Workbench
Pulse
Width Modulation Output
Pulse
Width Modulation Input
Wheel
Speed Sensor Output
SENT
I/O
Analog
Input
Analog
Output
Universal
Exhaust Gas Oxygen Sensor
Multi-Function
I/O with A/D, D/A and DIO
Multi-Function
I/O with PWM, Wheel Speed Sensor and SENT
Digital
Input Change-of-State
Resistor
Simulation
Engine
Sensor Simulation
LVDT/RVDT
Simulation
Synchro
Simulation
Resolver
Simulation
CAN
Bus Simulation
Serial
Simulation
SIGnal
Workbench Signal Conditioning
Cable
Guide
CP-PWM-1012 -- 12-line Pulse Width Modulation Output PCIe card
The CP-PWM-1012 autonomously generates TTL pulse width modulated (PWM) signals with high accuracy. With a timing resolution of 50 ns and the ability to program sine frequencies, PWM frequencies, dead-band and duty cycle in real time, the CP-PWM-1012 card is ideal for use in hardware-in-the-Loop (HIL) systems. Provides 12 digital output lines with 5V TTL output (TI 74ABT16240 driver). The card features 34K logical FPGA elements and high-speed PLL-generated clocks at 100 MHz++. Multiple cards are supported per system. Occupies a PCIe x1 slot or higher. Supported by SIMulation Workbench. (Cable Options: CX-LFH60-OUT / CX-LFH60-OUT-DIN))
Specifications:
- FPGA-based PWM board
- TTL outputs
- 3 modes of operation (12 outputs)
-- 2 channel, 3 phase complementary PWM output
-- 1 channel, 6 phase complementary PWM output
-- 12 channel PWM outputs- 12-bit PWM signal resolution
- Programmable sine wave frequency, PWM frequency, duty cycle and dead band
- 66 MHz board frequency
- 20 MHz PWM base frequency i.e. timing resolution of 50 Ns
- External Connectors: Molex LFH-60
- Power Consumption: ~5 watts
Prerequisites: WC-PWM-1012 driver.
WC-PWM-1012 -- RedHawk Linux Driver for PWM Output PCIe card
RedHawk Linux Driver for PWM output PCIe card.
Prerequisites: CP-PWM-1012.
CP-PWM-1112 -- 12-line Pulse Width Modulation Input PCIe card
Concurrent's 12-line Pulse Width Modulation (PWM) PCIe input card is designed for capturing pulse width modulated signals with high accuracy. With a timing resolution of 15.15 nanoseconds and the ability to measure the frequency and duty cycle, the CP-PWM-1112 is ideal for use in hardware-in-the-loop (HIL) applications. The CP-PWM-1112 card has 12 digital input lines with 5V TTL input (74LVCH16240 driver). The card features 34K logical FPGA elements and high-speed PLL-generated clocks at 100 MHz++. Multiple cards are supported per system. The CP-PWM-1112 card occupies a PCIe x1 slot or higher and is fully supported by a RedHawk Linux driver. The card is also supported by Concurrent's Simulation Workbench. (Cable Options: CX-LFH60-IN / CX-LFH60-IN-DIN)
Specifications:
- FPGA-based Pulse Width Modulation (PWM) input board
- 12 channel TTL inputs
- 32 bit resolution
- 66 MHz board frequency
- 66 MHz PWM measurement base frequency
- Minimum pulse width of 15.15 nsec
- Minimum period of 30.30 nsec
- Pulse-width/period accuracy of 2 internal clock cycles (30.30 nsec)
- Measurement frequency range of 1 Hz to 20 MHz
- Measurement duty cycle of 0-100%
- External Connectors: Molex LFH-60
- Power Consumption: ~5 watts
Prerequisites: WC-PWM-1112 driver.
WC-PWM-1112 -- RedHawk Linux Driver for PWM Input PCIe card
RedHawk Linux Driver for PWM input PCIe card.
Prerequisites: CP-PWM-1112
Wheel Speed Sensor Output Card
CP-PWM-1204 -- 4-line Wheel Speed Sensor Output PCIe card
Concurrent's Wheel Speed Sensor card provides 4 output channels that can simulate wheel speed sensors up to 127 teeth. Card output is TTL with a resolution of 15 nanoseconds. (Cable Options: CX-LFH60-OUT / CX-LFH60-OUT-DIN)
Prerequisites: Simulation Workbench (WU8020-30x).
SENT I/O Card
CP-SENT-12 -- SENT Protocol PCIe I/O Card with 12 Inputs and 12 Outputs
Concurrent's SENT I/O PCIe card supports the Single Edge Nibble Transmission (SENT) protocol as specified by SAE J2716. The card provides 12 SENT input and output channels with a tick length resolution of 15 Ns The number of data nibbles per message can be configured between 1 and 6. The basic SENT protocol tick length, which defaults to 3 microseconds, can be varied on the fly. The card supports both legacy and current CRC-4 calculations as well as the optional pause pulse. In addition, the implementation supports both short and enhanced-format messages with 4-bit and 8-bit IDs. (Cable Options: CX-LFH60 / CX-LFH60-DIN)
Notes: The CP-SENT-12 card supports TTL voltage levels only. External signal conditioning may be required for some applications.Prerequisites: Simulation Workbench (WU8020-30x).
Accessories for Pulse Width Modulation, SENT and Wheel Speed Sensor Cards
CX-LFH60 -- RCIM and SENT I/O Interface Assembly
Includes DB25 male and female right angle terminal board assemblies with 6-foot cable. Provides screw terminal breakout for both input and output signals.
Prerequisites: CP-SENT-12 or RCIM II or RCIM III
Note: Cable drawing
CX-LFH60-DIN -- RCIM and SENT I/O Interface Assembly with DIN Mounting
Includes DB25 male and female right angle terminal board assemblies with DIN mounting and 6-foot cable. Provides screw terminal breakout for both input and output signals.
Prerequisites: CP-SENT-12 or RCIM II or RCIM III
Note: Cable drawing
CX-LFH60-IN -- PWM Input Interface Assembly
Includes DB25 male and female right angle terminal board assemblies with 6-foot cable. Provides screw terminal breakout for input signals.
Prerequisites: CP-PWM-1112
Note: Cable drawing
CX-LFH60-IN-DIN -- PWM Input Interface Assembly with DIN Mounting
Includes DB25 male and female right angle terminal board assemblies with DIN mounting and 6-foot cable. Provides screw terminal breakout for input signals.
Prerequisites: CP-PWM-1112
Note: Cable drawing
CX-LFH60-OUT -- PWM Output and Wheel Speed Sensor Interface Assembly
Includes DB25 male and female right angle terminal board assemblies with 6-foot cable. Provides screw terminal breakout for output signals.
Prerequisites: CP-PWM-1012 or CP-PWM-1204
Note: Cable drawing
CX-LFH60-OUT-DIN -- PWM Output and Wheel Speed Sensor Interface Assembly with DIN Mounting
Includes DB25 male and female right angle terminal board assemblies with DIN mounting and 6-foot cable. Provides screw terminal breakout for output signals.
Prerequisites: CP-PWM-1012 or CP-PWM-1204
Note: Cable drawing
Analog
Input Cards
CP-ADS6418 -- 64-channel, 18-bit, SAR 10-volt analog input PCIe card
64-channel, 18-bit, high-performance 10-volt SAR PCIe analog input card up to 1.4 MSPS sample rate per channel.
Features and Specifications:
- Input Voltage Range: 0-5V, 0-10V, +/-5V ,+/-10V
- 64-channel 18-bit SAR Analog-to-Digital Conversion
- Differential or Single-Ended Input
- Successive Approximation Register (SAR) conversion
- 1 Meg Ohm Input Impedance
- Input Over Voltage Protection: +/- 50V
- Maximum Sampling Rates:
- 64-channels: 500K samples/second
- 32-channels: 700K samples/second
- 32-channels Dual Mode: 1000K samples/second
- PCI Express Gen 1 x4 Lane Full Height Full Length
- Ultra High Density SCSI 68-pin Connector
- Breakout Cables and Boards Available
- NIST Traceable Calibration Standard
- Extensive Software API
- Cable Options: CX-CBL-HSI-F-xx, Breakout module CX-CBL-AIO-BRKF. (Two cables are required to utilize all board functionality.)
Prerequisites: WC-ADS6418 driver.
WC-ADS6418 -- RedHawk Linux Driver for 64-channel, 18-bit analog input PCIe card
RedHawk Linux driver for 64-channel, 18-bit SAR analog input PCIe card
Prerequisites: CP-ADS6418.
CP-AD3224-DS -- 32-channel, 24-bit Delta-Sigma 5-volt analog input PCIe card
32-channel, 24-bit Delta-Sigma PCIe analog input card with up to 216 KSPS sample rate per channel.
Features and specifications:
- 32-channel fully differential with +/-5V interface
- A/D converter per channel
- Industry standard SCSI 68-pin connector for inputs
- PCI Express x1 Revision 1.0a
- Independent clocking for four channel groups
- Low-jitter phase lock loop (PLL) clock generators
- Supports multi-board clocking and synchronization
- Directly addressable conversion data registers
- 64K word conversion data FIFO with DMA
- Low-noise analog power generation
- Positive and negative calibration voltage
- Positive and negative calibration coefficients
- Differential input impedance: >200K ohm
- Input over-voltage protection: +/-30V @ <150 milliamps
- Input over-current protection: 150 milliamps fused
- Sampling rate (Fs): 2 Khz to 216 kHz
- Multiple sampling rates per 8-channel group
- NIST Traceable Calibration Standard
- Cable Options: CX-CBL-HSI-68-xx; Breakout module CX-CBL-AIO-BRKF.)
Prerequisites: WC-AD3224-DS driver.
CP-AD3224-DS-10 -- 32-channel, 24-bit Delta-Sigma 10-volt analog input PCIe card
32-channel, 24-bit Delta-Sigma PCIe analog input card with up to 216 KSPS sample rate per channel.
Features and specifications:
- 32-channel fully differential with +/-10V interface
- A/D converter per channel
- Industry standard SCSI 68-pin connector for inputs
- PCI Express x1 Revision 1.0a
- Independent clocking for four channel groups
- Low-jitter phase lock loop (PLL) clock generators
- Supports multi-board clocking and synchronization
- Directly addressable conversion data registers
- 64K word conversion data FIFO with DMA
- Low-noise analog power generation
- Positive and negative calibration voltage
- Positive and negative calibration coefficients
- Differential input impedance: >1 megaohm
- Input over-voltage protection: +/-30V
- Input over-current protection: 150 milliamps fused
- Sampling rate (Fs): 2 kHz to 216 kHz
- Multiple sampling rates per 8-channel group
- NIST Traceable Calibration Standard
- Cable Options: CX-CBL-HSI-68-xx; Breakout module CX-CBL-AIO-BRKF
Prerequisites: WC-AD3224-DS driver.
WC-AD3224-DS -- RedHawk Linux Driver for 32-channel, 24-bit analog input PCIe card
RedHawk Linux driver for 32-channel, 24-bit Delta-Sigma analog input PCIe card
Prerequisites: CP-AD3224-DS-x.
Analog
Output Cards
CP-DA0818-S -- 8-channel, 18-bit Digital-to-Analog PCIe Card, Single-ended
Single-ended 8-channel, 18-bit analog output PCIe card with 400K updates per second using LTC2758 dual channel DACs.
Features and specifications:
- Output range selection: 0 to +5V, +/-2.5, +/-5V or +/-10V .
- 10 milliamp output drive.
- Industry standard SCSI 68-pin connector for outputs.
- RJ-12 (6-pin phone style) connectors for multi-board synchronization.
- PCI Express x1 Revision 1.0a, full-height
- Supports MSI interrupts.
- Low-jitter phase lock loop (PLL) clock generator.
- Directly addressable conversion data registers.
- 128K word conversion data FIFO with DMA.
- Low noise analog power generation.
- Gain and offset calibration DACs per channel.
- Calibration ADC and source on board.
- Gain and offset calibration values accessible.
- NIST traceable calibration standard.
- Cable Options: CX-CBL-HSI-68-xx; Breakout module CX-CBL-AIO-BRKF
Prerequisites: WC-DA3218 driver.
CP-DA3218-S -- 32-channel, 18-bit Digital-to-Analog PCIe Card, Single-ended
Single-ended 32-channel, 18-bit analog output PCIe card with 400K updates per second using LTC2758 dual channel DACs.
Features and specifications:
- Output range selection: 0 to +5V, +/-2.5, +/-5V or +/-10V .
- 10 milliamp output drive.
- Industry standard SCSI 68-pin connector for outputs.
- RJ-12 (6-pin phone style) connectors for multi-board synchronization.
- PCI Express x1 Revision 1.0a, full-height
- Supports MSI interrupts.
- Low-jitter phase lock loop (PLL) clock generator.
- Directly addressable conversion data registers.
- 128K word conversion data FIFO with DMA.
- Low noise analog power generation.
- Gain and offset calibration DACs per channel.
- Calibration ADC and source on board.
- Gain and offset calibration values accessible.
- NIST traceable calibration standard.
- Cable Options: CX-CBL-HSI-68-xx; Breakout module CX-CBL-AIO-BRKF
Prerequisites: WC-DA3218 driver.
CP-DA0818-D -- 8-channel, 18-bit Digital-to-Analog PCIe Card, Differential
Differential 8-channel, 18-bit analog output PCIe card with 400K updates per second using LTC2758 dual channel DACs.
Features and specifications:
- Output range selection: 0 to +5V, +/-2.5, +/-5V or +/-10V .
- 10 milliamp output drive.
- Industry standard SCSI 68-pin connector for outputs.
- RJ-12 (6-pin phone style) connectors for multi-board synchronization.
- PCI Express x1 Revision 1.0a, full-height
- Supports MSI interrupts.
- Low-jitter phase lock loop (PLL) clock generator.
- Directly addressable conversion data registers.
- 128K word conversion data FIFO with DMA.
- Low noise analog power generation.
- Gain and offset calibration DACs per channel.
- Calibration ADC and source on board.
- Gain and offset calibration values accessible.
- NIST traceable calibration standard.
- Cable Options: CX-CBL-HSI-68-xx; Breakout module CX-CBL-AIO-BRKF
Prerequisites: WC-DA3218 driver.
CP-DA3218-D -- 32-channel, 18-bit Digital-to-Analog PCIe Card, Differential
Differential 32-channel, 18-bit analog output PCIe card with 400K updates per second using LTC2758 dual channel DACs.
Features and specifications:
- Output range selection: 0 to +5V, +/-2.5, +/-5V or +/-10V .
- 10 milliamp output drive.
- Industry standard SCSI 68-pin connector for outputs.
- RJ-12 (6-pin phone style) connectors for multi-board synchronization.
- PCI Express x1 Revision 1.0a, full-height
- Supports MSI interrupts.
- Low-jitter phase lock loop (PLL) clock generator.
- Directly addressable conversion data registers.
- 128K word conversion data FIFO with DMA.
- Low noise analog power generation.
- Gain and offset calibration DACs per channel.
- Calibration ADC and source on board.
- Gain and offset calibration values accessible.
- NIST traceable calibration standard.
- Cable Options: CX-CBL-HSI-68-xx; Breakout module CX-CBL-AIO-BRKF
Prerequisites: WC-DA3218 driver.
WC-DA3218 -- RedHawk Linux Driver for 18-bit Analog Output PCIe Card
RedHawk Linux driver for 8-channel and 32-channel, 18-bit analog output PCIe card
Prerequisites: CP-DAx card
WC-DA3218-WAVE -- Wave Package for 18-bit Analog Output PCIe Card
This package includes a library and test program that interface with the WC-DA3218 driver. The package provides a powerful and easy-to-use mechanism for users to generate continuous and unique user-supplied waveforms on any specified channel of a CP-DAx analog output card.
Prerequisites: WC-DA3218 driver
CP-RECAL -- Recalibration Service for a Concurrent NIST-certified A/D or D/A card
Universal Exhaust Gas Oxygen (UEGO) CardProvides for recalibration of one Concurrent NIST-certified analog input or analog output card. Shipment of card(s) to the Concurrent factory is the responsibility of the customer. Return shipping is provided by Concurrent. Turnaround time is approximately four weeks.
Prerequisites: CP-AD3224-DS, CP-AD3224-DS-10, CP-DA0818-x or CP-DA3218-x cards
The 4-channel Universal Exhaust Gas Oxygen (UEGO) sensor simulator PCIe card simulates narrow-band or wide-band Lambda probes, heater temperature (resistive) feedback and heater PWM monitoring. Galvanic isolation is provided on each channel pair. Open, ground and voltage fault insertion is available on all probe lines. PCIe full-height, 9.5" long. (Cable Options: CX-CBL-HSI-68-xx; Breakout module CX-CBL-AIO-BRKF)
Prerequisites: WC-UEGO driver.
WC-UEGO -- RedHawk Linux Driver for 4-channel UEGO PCIe Card
RedHawk Linux driver for 4-channel UEGO PCIe card.
Prerequisites: CP-UEGO-4 card
Cables for CP-DAx, CP-AD3224-DS-x, CP-UEGO-4 and CP-RESSIM-16 cards
Analog Interface
Cables
CX-CBL-HSI-68-06 -- 68-pin SCSI-3
Male to SCSI-3 Male I/O Card Interface Cable, 6 feet
CX-CBL-HSI-68-10 --
68-pin SCSI-3 Male to SCSI-3 Male I/O Card Interface Cable, 10 feet
Analog Synchronization Cables
CX-ALOG-SYNC-01 -- Analog I/O
Card Synchronization Cable, 1 foot
CX-ALOG-SYNC-10 -- Analog I/O Card Synchronization Cable, 10 feet
CX-ALOG-SYNC-30 -- Analog I/O Card Synchronization Cable, 30 feet
Multifunction
I/O card with 16 A/D, 16 D/A and 96 DIO
CP-MFIO -- 16-channel A/D, 16-channel D/A, 96-channel Digital I/O PCIe Card
Concurrents Multifunction I/O PCIe card can control up to 96 digital I/O signals along with 16 analog inputs and 16 analog outputs. The card features isolated I/O power, high-speed digital isolators and multi-board synchronization. Optional NIST traceable calibration is available for the analog section. A RedHawk Linux® driver with extensive API including DMA and interrupts is available for both 32-bit and 64-bit architectures. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Four cables are required to utilize all board functionality.)
Features and specifications:
- 16-channel 16-bit D-to-A Conversion
-- Single-ended Output
-- 0 to +10V, +/-5V or +/-10V Output Range Selection
-- 10 Milliamp Output Drive
-- 100K updates/sec per channel- 16-channel 16-bit A-to-D Conversion
-- Differential or Single-ended Input
-- +/-5V or +/-10V Input Range
-- Over voltage protection: +/- 30V
-- 300K updates/sec per channel
- 96-channel Digital I/O.
-- 5V 4mA TTL (3.3V Available)
-- Digital I/O Direction per Nibble
-- High Speed Digital Isolators- 1GB DRAM
- TCXO Clock Source
- 8-output Programmable Clock Generator
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- RJ-45 Connectors for Multi-board Synchronization
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3 x 3.8)
- Isolated Power on all I/O
- NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver.
Multifunction I/O cards with PWM, Wheel Speed Sensor and SENT
CP-CMFIO-T3 -- Multifunction FPGA Card with 96 PWM lines, 24 Wheel Speed Sensor lines and 8 SENT lines
Concurrent's CP-CMFIO-T3 multi-function FPGA PCIe card features a powerful field-programmable gate array with 362K logic elements, 16 analog inputs, 16 analog outputs, and 96 Digital Input/Outputs. The 96 Digitals pins are flexible and can be switched between Inputs or outputs connecting different combinations of up to 96 PWM inputs, 96 PWM outputs, 24 wheel speed sensors, 4 SENT protocol inputs and 4 SENT protocol outputs. The card features isolated I/O power and high-speed digital isolators. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Four cables are required to utilize all board functionality.)
Features and specifications:
- Pulse Width Modulation Output
- 96 Output Channels available
- TTL outputs
- Programmable frequency, duty cycle and dead band
- Continuous or single pulse modes
- 20 MHz PWM output base frequency (50 nanoseconds)
- Pulse Width Modulation Input
- 96 Input Channels available
- TTL inputs
- Measures frequency, duty cycle and pulse count
- 32 bit internal resolution
- Internal Pulse-width/period accuracy of 20 nanoseconds
- Measurement frequency range of 1 Hz to 20 MHz
- Measurement duty cycle of 0-100%
- Debouncing filter
- Wheel Speed Sensor
- 24 Output Channels available
- TTL outputs
- Simulation up to 127 teeth
- 32-bit resolution for tooth angle
- 100 nanoseconds digital output resolution (10MHz)
- Single Edge Nibble Transmission (SENT) protocol
- 4 input and 4 output lines available
- SAE J2716 conformance
- TTL inputs/outputs
- Tick length: 15 nanoseconds
- From 1 to 6 data nibbles per message
- Supports both legacy and current CRC-4 calculations
- Pause pulse calculation support
- Short and enhanced-format messages with 4-bit and 8-bit IDs
- Alter Arria V Family FPGA with 362K logic elements
- 1GB DRAM
- TCXO Clock Source
- 8-output Programmable Clock Generator
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- RJ-45 Connectors for Multi-board Synchronization
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Power consumption: ~25 watts
Prerequisites: WC-CP-FIO driver.
CP-CMFIO-T2 -- Multifunction FPGA Card with 64 PWM lines, 8 Wheel Speed Sensor lines and 4 SENT lines
Concurrent's CP-CMFIO-T3 multi-function FPGA PCIe card features a powerful field-programmable gate array with 362K logic elements, 16 analog inputs, 16 analog outputs, and 96 Digital Input/Outputs. The 96 Digitals pins are flexible and can be switched between Inputs or outputs connecting different combinations of up to 64 PWM inputs, 64 PWM outputs, 8 wheel speed sensors, 2 SENT protocol inputs and 2 SENT protocol outputs. This module CP-CMFIO-T2 can be upgraded in the future to CP-CMFIO-T3 if more channels are needed. The card features isolated I/O power and high-speed digital isolators. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Four cables are required to utilize all board functionality.)
Features and specifications:
- Pulse Width Modulation Output
- 64 Output Channels available
- TTL outputs
- Programmable frequency, duty cycle and dead band
- Continuous or single pulse modes
- 20 MHz PWM output base frequency (50 nanoseconds)
- Pulse Width Modulation Input
- 64 Input Channels available
- TTL inputs
- Measures frequency, duty cycle and pulse count
- 32 bit internal resolution
- Internal Pulse-width/period accuracy of 20 nanoseconds
- Measurement frequency range of 1 Hz to 20 MHz
- Measurement duty cycle of 0-100%
- Debouncing filter
- Wheel Speed Sensor
- 8 Output Channels available
- TTL outputs
- Simulation up to 127 teeth
- 32-bit resolution for tooth angle
- 100 nanoseconds digital output resolution (10MHz)
- Single Edge Nibble Transmission (SENT) protocol
- 2 input and 2 output lines available
- SAE J2716 conformance
- TTL inputs/outputs
- Tick length: 15 nanoseconds
- From 1 to 6 data nibbles per message
- Supports both legacy and current CRC-4 calculations
- Pause pulse calculation support
- Short and enhanced-format messages with 4-bit and 8-bit IDs
- Alter Arria V Family FPGA with 362K logic elements
- 1GB DRAM
- TCXO Clock Source
- 8-output Programmable Clock Generator
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- RJ-45 Connectors for Multi-board Synchronization
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Power consumption: ~25 watts
Prerequisites: WC-CP-FIO driver.
CP-CMFIO-T1 -- Multifunction FPGA Card with 20 PWM lines, 2 Wheel Speed Sensor lines and 2 SENT lines
Concurrent's CP-CMFIO-T3 multi-function FPGA PCIe card features a powerful field-programmable gate array with 362K logic elements, 16 analog inputs, 16 analog outputs, and 96 Digital Input/Outputs. The 96 Digitals pins are flexible and can be switched between Inputs or outputs connecting up to 20 PWM inputs, 20 PWM outputs, 2 wheel speed sensors, 1 SENT protocol input and 1 SENT protocol output. This module CP-CMFIO-T1 can be upgraded in the future to CP-CMFIO-T2 or CP-CMFIO-T3 if more channels are needed. The card features isolated I/O power and high-speed digital isolators. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Four cables are required to utilize all board functionality.)
Features and specifications:
- Pulse Width Modulation Output
- 20 Output Channels available
- TTL outputs
- Programmable frequency, duty cycle and dead band
- Continuous or single pulse modes
- 20 MHz PWM output base frequency (50 nanoseconds)
- Pulse Width Modulation Input
- 20 Input Channels available
- TTL inputs
- Measures frequency, duty cycle and pulse count
- 32 bit internal resolution
- Internal Pulse-width/period accuracy of 20 nanoseconds
- Measurement frequency range of 1 Hz to 20 MHz
- Measurement duty cycle of 0-100%
- Debouncing filter
- Wheel Speed Sensor
- 2 Output Channels available
- TTL outputs
- Simulation up to 127 teeth
- 32-bit resolution for tooth angle
- 100 nanoseconds digital output resolution (10MHz)
- Single Edge Nibble Transmission (SENT) protocol
- 1 input and 1 output lines available
- SAE J2716 conformance
- TTL inputs/outputs
- Tick length: 15 nanoseconds
- From 1 to 6 data nibbles per message
- Supports both legacy and current CRC-4 calculations
- Pause pulse calculation support
- Short and enhanced-format messages with 4-bit and 8-bit IDs
- Alter Arria V Family FPGA with 362K logic elements
- 1GB DRAM
- TCXO Clock Source
- 8-output Programmable Clock Generator
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- RJ-45 Connectors for Multi-board Synchronization
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Power consumption: ~25 watts
Prerequisites: WC-CP-FIO driver.
Change-Of-State
Digital Input PCIe Card
CP-COS-64 -- 64-channel Digital Input Change of State PCIe Card
The CP-COS-64 is a 64-channel TTL digital input PCIe card that can track the change of state of digital inputs at 100 MHz (10 nanoseconds). A 10 microsecond clock is also output on pin DIO_95 that can synchronize the clock on the COS card to other systems. The card features a x4 lane PCI Express interface for high speed transfer of data to and from the card. Individual channels can also be masked to disable change detection. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Two cables are required to utilize all board functionality.)
The CP-COS-64 uses a FIFO that has a maximum depth of 128 elements. Each element contains:
- Transition value (64-bit long long) - Each bit represents the transition value for corresponding digital input channel.
- Time stamp value (64-bit long long) - Time stamp for corresponding transition value entry in the FIFO. The time stamp calculator is based on the card's 100 MHz clock and stores the tick count when a transition occurs.
Data is recorded into the FIFO when any of the channels change their state or when the 64 bit counter rolls over.
Prerequisites: WC-CP-FIO driver.
WC-CP-FIO -- RedHawk Linux Driver for Concurrent FPGA-based I/O Cards
RedHawk Linux driver for CP-MFIO, CP-ENG-SIM, CP-COS-64, CP-FPGA-2 and CP-FPGA-3 cards
Prerequisites: CP-MFIO, CP-ENG-SIM, CP-COS-64, CP-FPGA-2 or CP-FPGA-3
WC-CP-FIO2 -- RedHawk Linux Driver for Concurrent 2nd Gen FPGA-based I/O Cards
RedHawk Linux driver for CP-FPGA-4 and CP-FPGA-5 cards
Prerequisites: CP-FPGA-4 and CP-FPGA-5
Resistor Simulator
PCIe Card
CP-RESSIM-16 -- 16-Resistor Simulator PCIe Card
Concurrent's Resistor Simulator PCIe card provides 16 individual resistors programmable from 45 ohms to 1 megaohms in 5 ohm steps. Voltage ranges are +/-14V with a maximum current of +/-10mA. Includes OPEN, +VOLTAGE and GROUND fault insertion on all resistor lines. Features and characteristics of the card are as follows::
- 16-channel Digital Programmable Resistance
- 45 to 1M Ohm Range in 5 Ohm increments)
- 10 Ohm Low Scale Selection
- +/-14V @ 10 Milliamp
- Open, Ground and V+ Fault Insertion
- Galvanic Isolation
- Overvoltage Protection
- Overcurrent Protection
- Analog Devices AD5293 Digital Potentiometers
- Industry Standard SCSI 68-pin Connector for I/O
- PCI Express x1 Revision 1.0a
- NIST Traceable Calibration Standard (Optional)
- Accuracy:
- 10 ohms: +/-4 ohms
- 45 ohms to 1K ohms: +/-10%
- Greater than 1K ohms: +/-5%
- Cable Options: CX-CBL-HSI-68-xx; Breakout module CX-CBL-AIO-BRKF
Prerequisites: WC-RESSIM driver.
WC-RESSIM -- RedHawk Linux Driver for the 16-Resistor Simulation Card
RedHawk Linux driver for CP-RESSIM-16
Prerequisites: CP-RESSIM-16
Engine Simulation
PCIe Card
CP-ENG-SIM -- Engine Sensor Simulation PCIe Card
The Engine Sensor Simulation card is a customized version of Concurrents programmable FPGA card designed especially for HIL ECU testing. The card and its associated firmware can support two and four-cycle engines with up to sixteen cylinders and four independent, variable-phase camshafts. Engine speeds up to 30,000 rpm with .001 rpm resolution can be simulated along with crank reverse rotation (idling stop). The card is supported by Concurrents Simulation Workbench (SimWB), a comprehensive framework for developing and executing real-time HIL simulations. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Four cables are required to utilize all board functionality.)
Features and specifications:
- Generation of Crank-Angle Sensor Signal
-- Arbitrary Pulse Pattern Configuration with 0.05 deg CA Resolution
-- Waveform generation identifiable by crank reverse rotation
-- Phase Shifting Output (A/B-Phase)
-- Multi-level Voltage Output
-- PFM Output- Generation of Cam-Angle Sensor Signals
-- Waveforms up to 4 Shafts
-- Arbitrary Pulse Pattern Configuration with 0.05 deg CA Resolution for each shaft
-- Synchronization with Crank-Angle
-- Individual Phase Variable Command for all shafts (resolution 1 deg CA)- Acquisition of Ignition Signals
-- Up to 8 channel inputs for Ignition Signal
-- Acquire the leading/trailing-edge timing of Crank-Angle sensor base
-- Minimum pulse width 125 us, resolution 20 us
-- Multiple pulses can be buffered- Acquisition of Fuel Injection Signals
-- Up to 8 channel inputs for Fuel Injection Signals
-- Acquire the leading/trailing-edge timing of Crank-Angle sensor base
-- Minimum pulse width 50 us, resolution 25 us
-- Multiple pulses can be buffered- Separation Sensors GND and Actuator GND
- Altera Arria V Family FPGA
- 1GB DRAM
- TCXO Clock Source
- 8-output Programmable Clock Generator
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- RJ-45 Connectors for Multi-board Synchronization
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3 x 3.8)
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver. Requires Simulation Workbench. I/O module license (ICS-SWB-277 or ICS-SWB-1277)
Note: The CP-ENG-SIM model number supports the above described functionality only. If any additional features are desired, a programmable FPGA PCIe card (CP-FPGA-2) is required.
LVDT/RVDT Simulation PCIe Cards
CP-LVDT-RVDT-SIM -- 8-channel LVDT/RVDT TX Simulation PCIe Card
The 8-channel LVDT/RVDT TX Simulation card is a customized version of Concurrents programmable FPGA card designed especially for HIL testing.
Features and specifications:
- Eight 3/4-wire LVDT / RVDT channels
- 8-channel ¾ wire LVDT/RVDT/Resolver transformer coupling signal conditioning module. DIN mount. Includes 6' cable.
- Eight FPGA Workbench LVDT/RVDT TX licenses (ICS-FPGA-2003)
- 2x DB-37 connector interface
- +/- 10V support.
- Ratiometric Support
- Programmable Transformation Ratio
- 96-channel Digital IO included
- 8-channel +/-10V 16-bit Analog Input included
- Altera Arria V Family FPGA
- 1GB DRAM
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver. Requires Simulation Workbench I/O module license ICS-SWB-1276
Note: The CP-LVDT-RVDT-SIM model number supports the above described functionality only. If any additional features are desired, a programmable FPGA PCIe card (CP-FPGA-2) is required.
CP-L/RVDT-SIM-RX -- 8-channel LVDT/RVDT RX Simulation PCIe Card
The 8-channel LVDT/RVDT RX Simulation card is a customized version of Concurrents programmable FPGA card designed especially for HIL testing.
Features and specifications:
- Eight 3/4-wire LVDT / RVDT channels
- 8-channel ¾ wire LVDT/RVDT/Resolver transformer coupling signal conditioning module. DIN mount. Includes 6' cable.
- Eight FPGA Workbench LVDT/RVDT RX licenses (ICS-FPGA-2004)
- 2x DB-37 connector interface
- +/- 10V support.
- Ratiometric Support
- Programmable Transformation Ratio
- 96-channel Digital IO included
- 8-channel +/-10V 16-bit Analog Input included
- Altera Arria V Family FPGA
- 1GB DRAM
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver. Requires Simulation Workbench I/O module license ICS-SWB-1276
Note: The CP-L/RVDT-SIM-RX model number supports the above described functionality only. If any additional features are desired, a programmable FPGA PCIe card (CP-FPGA-2) is required.
CP-SYNCHRO-SIM-4TX -- 4-channel Synchro TX Simulation PCIe Card
The 4-channel Synchro TX Simulation card is a customized version of Concurrents programmable FPGA card designed especially for HIL testing.
Features and specifications:
- Four Synchro transmitter channels
- 4-channel transformer coupling signal conditioning module. DIN mount. Includes 6' cable.
- Four FPGA Workbench Synchro TX licenses (ICS-FPGA-2005)
- 2x DB-37 connector interface
- +/- 10V support.
- Ratiometric Support
- Programmable Transformation Ratio
- 96-channel Digital IO included
- 8-channel +/-10V 16-bit Analog Input included
- Altera Arria V Family FPGA
- 1GB DRAM
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver. Requires Simulation Workbench I/O module license ICS-SWB-1276
Note: The CP-SYNCHRO-SIM-4TX model number supports the above described functionality only. If any additional features are desired, a programmable FPGA PCIe card (CP-FPGA-2) is required.
CP-SYNCHRO-SIM-4TV -- 4-channel High-Voltage Synchro TX Simulation PCIe Card
The 4-channel High-Voltage Synchro TX Simulation card is a customized version of Concurrents programmable FPGA card designed especially for HIL testing.
Features and specifications:
- Four high-voltage Synchro transmitter channels
- 4-channel transformer coupling signal conditioning module. DIN mount. Includes 6' cable.
- Four FPGA Workbench Synchro TX licenses (ICS-FPGA-2005)
- 2x DB-37 connector interface
- Up to 30V RMS support
- Ratiometric Support
- Programmable Transformation Ratio
- 96-channel Digital IO included
- 8-channel +/-10V 16-bit Analog Input included
- Altera Arria V Family FPGA
- 1GB DRAM
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver. Requires Simulation Workbench I/O module license ICS-SWB-1276
Note: The CP-SYNCHRO-SIM-4TV model number supports the above described functionality only. If any additional features are desired, a programmable FPGA PCIe card (CP-FPGA-2) is required.
CP-SYNCHRO-SIM-4RX -- 4-channel Synchro RX Simulation PCIe Card
The 4-channel Synchro RX Simulation card is a customized version of Concurrents programmable FPGA card designed especially for HIL testing.
Features and specifications:
- Four Synchro receiver channels
- 4-channel transformer coupling signal conditioning module. DIN mount. Includes 6' cable.
- Four FPGA Workbench Synchro RX licenses (ICS-FPGA-2006)
- 2x DB-37 connector interface
- +/- 10V support.
- Ratiometric Support
- Programmable Transformation Ratio
- 96-channel Digital IO included
- 8-channel +/-10V 16-bit Analog Input included
- Altera Arria V Family FPGA
- 1GB DRAM
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver. Requires Simulation Workbench I/O module license ICS-SWB-1276
Note: The CP-SYNCHRO-SIM-4RX model number supports the above described functionality only. If any additional features are desired, a programmable FPGA PCIe card (CP-FPGA-2) is required.
Resolver
Simulation PCIe Card
CP-RESOLVER-SIM -- 8-channel Resolver
Simulation and Input PCIe Card
The 8-channel Resolver Simulation and Input card is a customized version of Concurrents programmable FPGA card designed especially for HIL testing.
Features and specifications:
- Six resolver SIM channels and two resolver input channels
- 8-channel ¾ wire LVDT/RVDT/Resolver transformer coupling signal conditioning module. DIN mount. Includes 6' cable.
- Six FPGA Workbench Resolver TX licenses (ICS-FPGA-2028)
- Two FPGA Workbench Resolver RX licenses (ICS-FPGA-2029)
- +/- 10V support.
- Ratiometric Support
- Programmable Transformation Ratio
- 96-channel Digital IO included
- 8-channel +/-10V 16-bit Analog Input included
- Altera Arria V Family FPGA
- 1GB DRAM
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver. Requires Simulation Workbench. I/O module license ICS-SWB-1276.
Note: The CP-RESOLVER-SIM model number supports the above described functionality only. If any additional features are desired, a programmable FPGA PCIe card (CP-FPGA-2) is required.
Serial
Simulation PCIe Cards
CP-FAST-SIO-SIM-4X -- 8-channel
Fast Serial I/O Simulation and Input PCIe Card
The 8-channel Fast Simulation and Input card is a customized version of Concurrents programmable FPGA card designed especially for HIL testing.
Features and specifications:
- 4 fast serial I/O TX channels and 4 fast serial I/O RX channels
- Four FPGA Workbench Fast Serial TX licenses (ICS-FPGA-2081)
- Four FPGA Workbench Fast Serial RX licenses (ICS-FPGA-2082)
- +/- 10V support.
- Ratiometric Support
- Programmable Transformation Ratio
- 96-channel Digital IO included
- 8-channel +/-10V 16-bit Analog Input included
- Altera Arria V Family FPGA
- 1GB DRAM
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver. Requires Simulation Workbench. I/O module license ICS-SWB-1219.
Note: The CP-FAST-SIO-SIM-4X model number supports the above described functionality only. If any additional features are desired, a programmable FPGA PCIe card (CP-FPGA-2) is required.
CP-STD-SIO-SIM-4X -- 8-channel Standard Serial I/O Simulation and Input PCIe Card
The 8-channel Standard Simulation and Input card is a customized version of Concurrents programmable FPGA card designed especially for HIL testing.
Features and specifications:
- 4 standard serial I/O TX channels and 4 standard serial I/O RX channels.
- Four FPGA Workbench Standard Serial TX licenses (ICS-FPGA-2083)
- Four FPGA Workbench Standard Serial RX licenses (ICS-FPGA-2084)
- +/- 10V support.
- Ratiometric Support
- Programmable Transformation Ratio
- 96-channel Digital IO included
- 8-channel +/-10V 16-bit Analog Input included
- Altera Arria V Family FPGA
- 1GB DRAM
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3" x 3.8")
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver. Requires Simulation Workbench. I/O module license ICS-SWB-1219.
Note: The CP-STD-SIO-SIM-4X model number supports the above described functionality only. If any additional features are desired, a programmable FPGA PCIe card (CP-FPGA-2) is required.
FPGA Workbench
WU8021-300 -- FPGA Workbench Software Per-Board License
FPGA Workbench provides a complete development environment for building customized solutions based on Concurrent Real-Time programmable FPGA cards. FPGA Workbench includes a powerful GUI for selecting and configuring a wide range of pre-developed data acquisition and industry-specific modules to meet exact application requirements. The library of functional IP modules includes pulse width modulation, analog I/O, digital I/O, SENT protocol, encoder, ignition, injection, crank/cam shaft, wheel speed sensor and change-of-state. One FPGA Workbench license is required for each FPGA board.
Concurrent Real-Time's programmable FPGA PCIe cards feature a powerful field programmable gate array that supports both digital and analog I/O. The cards can control up to 96 digital I/O signals along with 16 analog inputs and 16 analog outputs. Each card's I/O functionality is fully customizable by the user by means of the FPGA Workbench tools. The cards feature isolated I/O power, high-speed digital isolators and multi-board synchronization. Optional NIST traceable calibration is available for the analog section. The cards are available with 362K or 504K logic elements.
FPGA Workbench requires Intel's Altera Quartus Prime Standard Edition for Aria V Development software package. The Altera tools make it easy to customize a card to meet specific I/O requirements. The tools allow users to develop and integrate their custom HDL code targeted for the Aria V FPGA on the Concurrent Real-time FPGA boards. Altera's Qsys tool eliminates manual system integration tasks and allows developers to focus on designing their desired custom I/O functionality. The Platform Designer (QSYS) system integration tool saves design time and improves productivity by automatically generating interconnect logic to connect intellectual property (IP) functions and subsystems.
Prerequisites: Programmable FPGA card (CP-FPGA-2 or CP-FPGA-3); Intel Altera Quartus tools (WU-ALT-DEV); one or more optional Functional Module Licenses (ICS-FPGA-20xx); a Windows or Linux system for FPGA Workbench client GUI; RedHawk Linux system for FPGA card target applications.
Note: WU-ALT-DEV is Alteras Quartus FPGA development tool package. WU-ALT-DEV provides a renewable one-year license for customizing a Concurrent programmable FPGA card to meet exact I/O requirements. Alteras Quartus tool eliminates manual system integration tasks and allows you to focus on designing the custom I/O functionality you need. Compatible with Windows-based systems.
CP-FPGA-2 -- Programmable FPGA PCIe Card with 362K Logic Elements
Concurrent's CP-FPGA-2 programmable FPGA PCIe card features a powerful field-programmable gate array with 362K logic elements that supports both digital and analog I/O. The card can control up to 96 digital I/O signals along with 16 analog inputs and 16 analog outputs. The programmable FPGA card features isolated I/O power, high-speed digital isolators and multi-board synchronization. Optional NIST traceable calibration is available for the analog section.
An Intel FPGA development tool kit (WU-ALT-DEV) is available to customize the card to meet exact I/O requirements. Intels Qsys tool eliminates manual system integration tasks and allows the user to focus on designing the custom I/O functionality that is needed. The card is supported by Concurrents Simulation Workbench (SimWB), a comprehensive framework for developing and executing real-time HIL simulations. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Four cables are required to utilize all board functionality.)
Features and specifications:
- 16-channel 16-bit D-to-A Conversion
-- Single-ended Output
-- 0 to +10V, +/-5V or +/-10V Output Range Selection
-- 10 Milliamp Output Drive
-- 100K updates/sec per channel- 16-channel 16-bit A-to-D Conversion
-- Differential or Single-ended Input
-- +/-5V or +/-10V Input Range
-- Over voltage protection: +/- 30V
-- 300K updates/sec per channel- 96-channel Digital I/O.
-- 5V 4mA TTL (3.3V Available)
-- Digital I/O Direction per Nibble
-- High Speed Digital Isolators- Intel Arria V Family FPGA with 362K logic elements
- 1GB DRAM
- TCXO Clock Source
- 8-output Programmable Clock Generator
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- RJ-45 Connectors for Multi-board Synchronization
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3 x 3.8)
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver and WU8021-300 FPGA Workbench per-board license.
CP-FPGA-3 -- Programmable FPGA PCIe Card with 504K Logic Elements
Concurrent's CP-FPGA-3 programmable FPGA PCIe card features a powerful field-programmable gate array with 504K logic elements that supports both digital and analog I/O. The card can control up to 96 digital I/O signals along with 16 analog inputs and 16 analog outputs. The programmable FPGA card features isolated I/O power, high-speed digital isolators and multi-board synchronization. Optional NIST traceable calibration is available for the analog section.
An Intel FPGA development tool kit (WU-ALT-DEV) is available to customize the card to meet exact I/O requirements. Intels Qsys tool eliminates manual system integration tasks and allows the user to focus on designing the custom I/O functionality that is needed. The card is supported by Concurrents Simulation Workbench (SimWB), a comprehensive framework for developing and executing real-time HIL simulations. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Four cables are required to utilize all board functionality.)
Features and specifications:
- 16-channel 16-bit D-to-A Conversion
-- Single-ended Output
-- 0 to +10V, +/-5V or +/-10V Output Range Selection
-- 10 Milliamp Output Drive
-- 100K updates/sec per channel- 16-channel 16-bit A-to-D Conversion
-- Differential or Single-ended Input
-- +/-5V or +/-10V Input Range
-- Over voltage protection: +/- 30V
-- 300K updates/sec per channel- 96-channel Digital I/O.
-- 5V 4mA TTL (3.3V Available)
-- Digital I/O Direction per Nibble
-- High Speed Digital Isolators- Intel Arria V Family FPGA with 504K logic elements
- 1GB DRAM
- TCXO Clock Source
- 8-output Programmable Clock Generator
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- RJ-45 Connectors for Multi-board Synchronization
- PCIe x4 Rev 1.0a, Full-length, Full-height (12.3 x 3.8)
- Isolated Power on all I/O
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO driver and WU8021-300 FPGA Workbench per-board license.
CP-FPGA-4 -- Programmable FPGA PCIe Card with 480K Logic Elements and two FPGA Mezzanine Card (FMC) locations
Concurrent's CP-FPGA-4 programmable FPGA PCIe card features a powerful field-programmable gate array with 480K logic elements that supports both digital and analog I/O via optional FPGA mezzanine cards. The programmable FPGA card features isolated I/O power, high-speed digital I/O, programmable clock generation and multiple DMA engines. NIST traceable calibration is standard for the analog section.
An Intel FPGA development tool kit (WU-ALT-DEV) is available to customize the card to meet exact I/O requirements. Intels Platform Designer tool eliminates manual system integration tasks and allows the user to focus on designing the custom I/O functionality that is needed. The card is supported by Concurrents Simulation Workbench (SimWB), a comprehensive framework for developing and executing real-time HIL simulations. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Four cables are required to utilize all board functionality.)
Features and specifications:
- Intel Arria 10 Family FPGA with 480K logic elements
- Two FMC daughter card positions
- Optional 12-channel, 16-bit Analog In/Out FMC Daughter Card (model CD-FMC-AIAO)
- Combination of Low-Pin Count and High-Pin Count signals
- 84-lines routed to FPGA using LVDS rules
- 4-lanes or 8-lanes of high speed transceiver lines
- High-Pin Count signals used for 32-channels of front panel I/O
- 1GB DRAM
- TCXO Clock Source
- 8-output Programmable Clock Generator
- 32 channels of high speed LVDS I/O
- 32 channels of high speed digital (TTL) I/O
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- RJ-45 Connectors for Multi-board Synchronization
- PCIe x4 Gen 2, Full-length, Full-height (12.3 x 3.8)
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO2 driver and WU8021-300 FPGA Workbench per-board license.
CP-FPGA-5 -- Programmable FPGA PCIe Card with 1150K Logic Elements and two FPGA Mezzanine Card (FMC) locations
Concurrent's CP-FPGA-4 programmable FPGA PCIe card features a powerful field-programmable gate array with 1150K logic elements that supports both digital and analog I/O via optional FPGA mezzanine cards. The programmable FPGA card features isolated I/O power, high-speed digital I/O, programmable clock generation and multiple DMA engines. NIST traceable calibration is standard for the analog section.
An Intel FPGA development tool kit (WU-ALT-DEV) is available to customize the card to meet exact I/O requirements. Intels Platform Designer tool eliminates manual system integration tasks and allows the user to focus on designing the custom I/O functionality that is needed. The card is supported by Concurrents Simulation Workbench (SimWB), a comprehensive framework for developing and executing real-time HIL simulations. (Cable Options: CX-CBL-HSI-F-xx; Breakout module CX-CBL-AIO-BRKF. Four cables are required to utilize all board functionality.)
Features and specifications:
- Intel Arria 10 Family FPGA with 1,150K logic elements
- Two FMC daughter card positions
- Optional 12-channel, 16-bit Analog In/Out FMC Daughter Card (model CD-FMC-AIAO)
- Combination of Low-Pin Count and High-Pin Count signals
- 84-lines routed to FPGA using LVDS rules
- 4-lanes or 8-lanes of high speed transceiver lines
- High-Pin Count signals used for 32-channels of front panel I/O
- 1GB DRAM
- TCXO Clock Source
- 8-output Programmable Clock Generator
- 32 channels of high speed LVDS I/O
- 32 channels of high speed digital (TTL) I/O
- Industry Standard SCSI 68-pin VHD Connectors for I/O
- RJ-45 Connectors for Multi-board Synchronization
- PCIe x4 Gen 2, Full-length, Full-height (12.3 x 3.8)
- Optional NIST Traceable Calibration
Prerequisites: WC-CP-FIO2 driver and WU8021-300 FPGA Workbench per-board license.
CD-FMC-AIAO -- High Speed Analog
I/O FMC Daughter Card
FPGA Mezzaninie Card (FMC) that provides twelve channels of 16-bit analog input and twelve channels of 16-bit analog output. All I/O is routed to front panel. NIST traceable calibration is standard.
- Analog Input
- 12-channel differential or single-ended
- 16-bit resolution
- 4.5 Megasamples/second
- 2.5 MHz active anti-alias filter
- Analog Output
- 12-channel single-ended
- 6-channel differential
- 16-bit resolution
- 1 Megasamples/second (12-channels)
- 2 Megasamples/second (6-channels)
- 1 MHz anti-alias filter
- 15 milliamp output drive per channel
Prerequisites: Intel Arria 10-based programmable FPGA card (CP-FPGA-4 or CP-FPGA-5).
CD-FMC-DIO -- High Speed Digital
I/O FMC Daughter Card
The High-Speed Digital I/O daughter card is a single-width FMC style card tailored for use with 2nd Generation FPGA cards. It contains 32 channels of I/O compatible with both 3.3V and 5V TTL. This card supports in-system firmware updates and facilitates motherboard front panel I/O connectivity through FMC High Pin Count (HPC) pins.
Features:
- 32-channel TTL Input/Output
- 3.3/5V TTL Compatible Signals
- 32 Milliamp High Output Source
- 64 Milliamp Low Output Sink
- Switchable 100 Ohm Termination
- Outputs Selectable per Nibble
- Input Channel Snapshot
- Output Channel Synchronization
- Change Of State Sensing
Prerequisites: Intel Arria 10-based programmable FPGA card (CP-FPGA-4 or CP-FPGA-5).
WU8021-UPG -- Upgrade FPGA Workbench Firmware
Service charge for field update of existing FPGA Workbench firmware with additional IP modules or channels.
Prerequisite: Existing CP-FPGA-2 or CP-FPGA-3 board with firmware.
FPGA Workbench Functional Module Licenses
The following standard, pre-developed functional modules can be configured on a Concurrent FPGA card as needed by customer applications. There is a 32 channels limit for each IP core unless specified otherwise.
Note:
All FPGA card configurations, including functional module types and quantities,
must be reviewed by the home office prior to quotation.
Model Number Description
ICS-FPGA-2000
Analog I/O License, 16 AI lines, 16 AO lines
ICS-FPGA-2001
Digital I/O License, 96 lines
ICS-FPGA-2002
User HDL Code License
ICS-FPGA-2003
LVDT/RVDT TX License,
1 line
ICS-FPGA-2004
LVDT/RVDT RX License,
1 line
ICS-FPGA-2005
Synchro TX License, 1 line
ICS-FPGA-2006
Synchro RX License, 1 line
ICS-FPGA-2007
Crank/Cam License, 4 lines
ICS-FPGA-2008
Ignition Injection License,1 line
ICS-FPGA-2009
PWM In I/O License, 1 line
ICS-FPGA-2010
PWM Out I/O License, 1 line
ICS-FPGA-2011
Wheel Speed Sensor License, 1 line
ICS-FPGA-2013
SENT Receiver License, 1 line
ICS-FPGA-2014
SENT Transmit License, 1 line
ICS-FPGA-2015
Angular Encoder License, 1 line
ICS-FPGA-2016
Angular Decoder License, 1 line
ICS-FPGA-2017
Knock Sensor Output License, 1 line
ICS-FPGA-2018
Analog Threshold License, 1 line
ICS-FPGA-2019
3-Phase Inverter License, 1 line
ICS-FPGA-2020
PMSM Motor License, 1 line
ICS-FPGA-2021
Waveform Generation License, 1 line
ICS-FPGA-2022
High-Pressure Fuel Punp License, 1 line
ICS-FPGA-2023
DIO Change-Of-State License, 64 lines
ICS-FPGA-2024
Field Oriented Control (FOC) License,
1 line
ICS-FPGA-2025
PWM 3-Phase License, 1 line
ICS-FPGA-2026
UVW Encoder License, 1 line
ICS-FPGA-2028
Resolver TX License, 1 line
ICS-FPGA-2029
Resolver RX License, 1 line
ICS-FPGA-2038
N-Phase Waveform Generator License, 1 line
ICS-FPGA-2040
SPI Master License, 1 line
ICS-FPGA-2041
SPI Slave License, 1 line
ICS-FPGA-2042
Enhanced Wheel Speed Sensor License, 1 line
ICS-FPGA-2081
Fast Serial I/O License
TX, 1 line
ICS-FPGA-2082
Fast Serial I/O License,
RX, 1 line
ICS-FPGA-2083
Standard Serial I/O License
TX, 1 line
ICS-FPGA-2084
Standard Serial I/O License
RX, 1 line
ICS-FPGA-2000 -- FPGA Workbench Analog I/O License, 16 Output lines and 16 Input lines
ICS-FPGA-2001 -- FPGA Workbench Digital I/O License, 96 linesThe Analog Output IP core enables you to connect to each of the 16, 16-bit analog output channels on the board. The board supports both single-ended and differential outputs. The outputs can be software configured as 16-channel single-ended outputs, 8-channel differential outputs, or a combination of single-ended and differential controlled in banks of 4.
The Analog Input IP core enables you to connect to each of the 16, 16-bit analog input channels on the board. The board supports both single ended and differential inputs. The ADCs are arranged and controlled in banks of 8.
ICS-FPGA-2002 -- FPGA Workbench User Programmable HDL Code LicenseThe Digital IO IP core enables you to connect to each of the 96 DIO channels on the board. The channel direction is software controlled in banks of 4.
The User Module IP core provides a black box interface for custom user Verilog code into the FPGAWB framework. The IP core enables the users to import the top level Verilog file for the user module. The top level file should be based on the template User Module so that the interface is consistent to Intel QSYS/Platform Designer. The User Module can be accessed thru memory read and write API calls. Only one instance is allowed per FPGA board.
ICS-FPGA-2003 -- FPGA Workbench LVDT / RVDT TX License, 1 line
This IP core provides a license for 1 channel of LVDT/RVDT TX functionality.
ICS-FPGA-2004 -- FPGA Workbench LVDT / RVDT RX License, 1 line
This IP core provides a license for 1 channel of LVDT/RVDT RX functionality.
ICS-FPGA-2005 -- FPGA Workbench Synchro TX License, 1 line
This IP core provides a license for 1 channel of Synchro TX functionality.
ICS-FPGA-2006 -- FPGA Workbench Synchro RX License, 1 line
ICS-FPGA-2007 -- FPGA Workbench Crank/Cam Shaft License, 4 linesThis IP core provides a license for 1 channel of Synchro RX functionality.
ICS-FPGA-2008 -- FPGA Workbench Ignition/Injection License, 1 lineThe Crank/Cam IP core provides the combustion engine sensor simulator functionalities. Only one instance is allowed per FPGA board. The IP core functionalities are listed below:
- Generation of crank-angle sensor signal
- Arbitrary pulse pattern configuration with less than 0.006° CA resolution at � �30,000 RPM
- Waveform generation identifiable by crank reverse rotation
- Phase shifting output (A/B-Phase)
- Multi-level voltage output
- Programmable frequency modulation (PFM) output
- Generation of cam-angle sensor signals
- Waveforms up to 4 cam-shafts
- Arbitrary pulse pattern configuration with less than 0.006° CA resolution at +-30,000 RPM for each shaft
- Synchronization with crank-angle
ICS-FPGA-2009 -- FPGA Workbench Pulse Width Modulation Input I/O License, 1 lineThe Ignition/Injection IP core captures pulses coming from the ECU. The information (start CA, stop CA, pulse width etc.) captured is relative to the configured TDC of the cylinder. The Ignition/Injection IPIP can handle both injection and ignition digital inputs. The Crank/Cam IP is a prerequisite for using the Ignition/Injection IP.
The PWM Input IP core provides the ability to input a pulse pattern and measure the frequency and duty cycle of the input. A maximum of 32 instances are allowed per FPGA board. This IP Core provides functionalities such as:
- Capture pulse width modulated signals with high accuracy
- Capture pulse count
- Debouncing digital filter
- Configurable averaging window length
ICS-FPGA-2010 -- FPGA Workbench Pulse Width Modulation Output I/O License, 1 line
ICS-FPGA-2011 -- FPGA Workbench Wheel Speed Sensor License, 1 lineThe PWM Output IP core provides the ability to output a Pulse Width Modulation (PWM) pulse pattern based on the PWM frequency and duty cycle input. A maximum of 32 instances are allowed per FPGA board. This IP Core provides functionalities such as:
- PWM output frequencies up to 1 MHz
- PWM duty cycle from 0% - 100%
- Output fixed number of pulses in one-shot mode of operation
The Tooth Gen / Wheel Speed Sensor IP core provides the ability to output an arbitrary pulse pattern driven by a RPM input. A maximum of 32 instances are allowed per FPGA board. This IP Core provides functionalities such as:
- Arbitrary pulse pattern configuration with less than 0.006° CA resolution at +-30,000RPM
- Pulse pattern with up to 100 teeth
ICS-FPGA-2013 -- FPGA Workbench SENT Receiver License, 1 line
ICS-FPGA-2014 -- FPGA Workbench SENT Transmitter License, 1 line
The SENT Receiver IP core supports the Single Edge Nibble Transmission (SENT) protocol as specified by SAE J2716. The IP core is able to capture the SENT waveform and decode it. A maximum of 32 instances are allowed per FPGA board. The SENT IP core supports the following:
- Fast channel
- Short Format
- Enhanced Format
The SENT Transmitter IP core supports the Single Edge Nibble Transmission (SENT) protocol as specified by SAE J2716. The output channels generate SENT output waveforms depending on how the channel is configured. A maximum of 32 instances are allowed per FPGA board. The SENT IP core supports the following:
- Fast channel
- Short Format
- Enhanced Format
ICS-FPGA-2015 -- FPGA Workbench Angular Encoder License, 1 line
ICS-FPGA-2016 -- FPGA Workbench Angular Decoder License, 1 lineThe Angular Encoder IP core module is a generic encoder that can generate linear, angular, or quadrature encoder waveform outputs. These outputs can have standard fixed pulse width or programmable pulse width. A maximum of 32 instances are allowed per FPGA board.
ICS-FPGA-2017 -- FPGA Workbench Knock Sensor Output License, 1 lineThe Angular Decoder IP core module takes A, B and Z input from an angular encoder and will output X1, X2 and X4 counter values. X1, X2 and X4 count the edges of the A and B input waveforms to estimate the current angle. This module can use the Z input to reset the counter to signify a 360 degree rotation. A maximum of 32 instances are allowed per FPGA board.
Generates knock sensor output waveform. Maximum of 32 instances are allowed per FPGA board.
ICS-FPGA-2018 -- FPGA Workbench Analog Threshold License, 1 line
ICS-FPGA-2019 -- FPGA Workbench 3-Phase Inverter License, 1 lineThe Analog Threshold IP core provides the ability to ingest a multi-bit analog input signal and based on the set thresholds create a single bit digital output. This IP Core provides functionality similar to Schmitt trigger devices which are typically used in signal conditioning applications to remove noise from analog signals. A maximum of 16 instances are allowed per FPGA board. The Analog Threshold IP core supports the following features:
- Hysteresis threshold control
- Rising and falling threshold control
- Peak and valley threshold control
For custom waveform output or file driver waveform, please use the User Module IP core.
ICS-FPGA-2020 -- FPGA Workbench PMSM Motor License, 1 lineThe inverter IP module is for a 3 phase 6 switch IGBT (Insulated Gate Bipolar Transistor) Inveter. The algorithm uses a circuit model (Capactiances, Inductances, and resistnaces) to create state space equations which calculate the currents and voltages at different locations inside of the inverter. Only one instance is allowed per FPGA board.
ICS-FPGA-2021 -- FPGA Workbench Waveform Output License, 1 lineThe PMSM IP module is for an electric motor. The algorithm uses the traditional Ld/Lq equations to calculate the torque, angle, speed and 3 phase currents inside of the motor. Only one instance is allowed per FPGA board.
ICS-FPGA-2022 -- FPGA Workbench High Pressure Fuel Pump License, 1 lineThe Waveform Output IP core provides the ability to output different types of waveform using the analog output channels. A maximum of 16 instances are allowed per FPGA board. This IP Core provides the ability to output the following waveforms:
- Sine/Cosine
- Sawtooth/Ramp
- Triangle
- Square
For custom waveform output or file driver waveform, please use the User Module IP core.
ICS-FPGA-2023 -- FPGA Workbench DIO Change-of-State License, 64 linesThe High Pressure Fuel Pump (HPFP) IP core captures pulses coming from the ECU. The information (start CA and stop CA) is captured for each channel. The Crank/Cam IP is a prerequisite for using the HPFP IP. A maximum of 8 instances are allowed per FPGA board.
ICS-FPGA-2024 -- FPGA Workbench Field Oriented Control (FOC) License, 1 lineThe Change-of-State IP core stores the state changes occurring on the digital input lines into a FIFO. A maximum of 2 instances are allowed per FPGA board. The FIFO, which has a maximum depth of 128 elements contains:
- Transition value (64-bit long long) - Each bit represents the transition value for corresponding digital input channel.
- Time stamp value (64-bit long long) - Time stamp for corresponding transition value entry in the FIFO. The time stamp calculator is based on the card's 100 MHz clock. Data is recorded into the FIFO when any of the channels change their state or when the counter rolls over.
ICS-FPGA-2025 -- FPGA Workbench PWM 3-Phase License, 1 lineThe FOC module is used to control the switching signals for an inverter/motor. The algorithm generates an averaged current error signals based on user desired speed and other information from the electric motor. Only one instance is allowed on a FPGA board. Only one instance is allowed per FPGA board.
ICS-FPGA-2026 -- FPGA Workbench UVW Encoder License, 1 lineThe High Pressure Fuel Pump (HPFP) IP core captures pulses coming from the ECU. The information (start CA and stop CA) is captured for each channel. The Crank/Cam IP is a prerequisite for using the HPFP IP.
The UVW encoder block provides the ability to output 3 pulse patterns that represent the 3 phase signalling used in electric motors. A maximum of 32 instances are allowed per FPGA board.
ICS-FPGA-2028 -- FPGA Workbench Resolver TX License, 1 line
This IP core provides a license for 1 channel of Resolver TX functionality.
ICS-FPGA-2029 -- FPGA Workbench Resolver RX License, 1 line
This IP core provides a license for 1 channel of Resolver RX functionality.
ICS-FPGA-2038 -- FPGA Workbench N-Phase Waveform Generator License, 1 line
This IP core provides a license for 1 channel of N-Phase Waveform Generator functionality.
ICS-FPGA-2040 -- FPGA Workbench SPI Master License, 1 line
This IP core provides a license for 1 channel of SPI Master functionality.
ICS-FPGA-2041 -- FPGA Workbench SPI Slave License, 1 line
This IP core provides a license for 1 channel of SPI Slave functionality.
ICS-FPGA-2081 -- Fast Serial I/O License TX, 1 line
This IP core provides a license for 1 channel of Fast Serial I/O TX functionality.
ICS-FPGA-2082 -- Fast Serial I/O License, RX, 1 line
This IP core provides a license for 1 channel of Fast Serial I/O RX functionality.
ICS-FPGA-2083 -- Standard Serial I/O License TX, 1 line
This IP core provides a license for 1 channel of Standard Serial I/O TX functionality.
ICS-FPGA-2084 -- Standard Serial I/O License RX, 1 line
This IP core provides a license for 1 channel of Standard Serial I/O RX functionality.
Cables for CP-ADS6418, CP-MFIO, CP-ENG-SIM, CP-COS-64 and CP-FPGA-x
I/O Interface Cables
CX-CBL-HSI-F-02 -- 68-pin SCSI-5 (VHDCI) to SCSI-3 Male I/O Interface Cable, 2 meter
2-meter SCSI-5 (VHDCI) to SCSI-3 Cable - VHDCI .8mm 68-pin Male to HPDB68 (HD68) 68-pin Male. Note: Four cables are required to utilize all board functionality on CP-MFIO, CP-ENG-SIM and CP-FPGA-x; two cables are recommended to utilize all functionality on CP-ADS6418 and CP-COS-64.
CX-CBL-HSI-F-03 -- 68-pin SCSI-5 (VHDCI) to SCSI-3 Male I/O Interface Cable, 3 meter
3-meter SCSI-5 (VHDCI) to SCSI-3 Cable - VHDCI .8mm 68-pin Male to HPDB68 (HD68) 68-pin Male. Note: Four cables are required to utilize all board functionality on CP-MFIO, CP-ENG-SIM and CP-FPGA-x; two cables are recommended to utilize all functionality on CP-ADS6418 and CP-COS-64.
CX-CBL-HSI-F-05 -- 68-pin SCSI-5 (VHDCI) to SCSI-3 Male I/O Interface Cable, 5 meter
5-meter SCSI-5 (VHDCI) to SCSI-3 Cable - VHDCI .8mm 68-pin Male to HPDB68 (HD68) 68-pin Male. Note: Four cables are required to utilize all board functionality on CP-MFIO, CP-ENG-SIM and CP-FPGA-x; two cables are recommended to utilize all functionality on CP-ADS6418 and CP-COS-64.
CX-CBL-HSI-F-15 -- 68-pin SCSI-5 (VHDCI) to SCSI-3 Male I/O Interface Cable, 15 meter
15-meter SCSI-5 (VHDCI) to SCSI-3 Cable - VHDCI .8mm 68-pin Male to HPDB68 (HD68) 68-pin Male. Note: Four cables are required to utilize all board functionality on CP-MFIO, CP-ENG-SIM and CP-FPGA-x; two cables are recommended to utilize all functionality on CP-ADS6418 and CP-COS-64.
I/O Terminal
Breakout Modules
CX-CBL-AIO-BRKF -- I/O
Terminal Breakout Module, 68-Pin Female SCSI-3, DIN Mount
I/O terminal breakout module, 68-pin female, SCSI-3, DIN mount. Provides a screw terminal for 68 lines.
Prerequisites: Use with CX-CBL-HSI-68-xx or CX-CBL-HSI-F-xx cable.
820-2020510-902 -- I/O Breakout Module, DB25 male, Right angle, DIM mount
Use for DB25F cable termination. Provides screw terminal for each of the 25 lines, plus shield.
820-2020510-906 -- I/O Breakout Module, DB25 female, Right angle, DIM mount
CAN Bus CardsUse for DB25M cable termination. Provides screw terminal for each of the 25 lines, plus shield.
2-channel PCIe x1 CAN bus interface compliant with ISO 11898-2. Electrically isolated. Supports bit rates up to 1 Mbits/sec bus. Supports bus mastering and local data management by FPGA, and selectable CAN termination on-board. Provides two DSUB-9 male connectors.
Prerequisites: WC-CAN-402 RedHawk Linux Driver.
CP-CAN-402-B4E -- 4-ch CAN Interface PCIe card with breakout cable
4-channel PCIe x1 CAN bus interface compliant with ISO 11898-2. Electrically isolated. Supports bit rates up to 1 Mbits/sec bus. Supports bus mastering and local data management by FPGA, and selectable CAN termination onboard. Provides one DSUB-37 to quad DSUB-9 male .5 meter connector cable. (CS-ES-CAN-4XX-CBL)
Prerequisites: WC-CAN-402 RedHawk Linux Driver.
WC-CAN-402 -- RedHawk Linux Driver for CAN-402 PCIe Card
RedHawk Linux driver for CP-CAN-402-x CAN bus card.
SIGnal Workbench Signal Conditioning Products
Signal Conditioning Products with Fault Insertion
Concurrent offers Fault
Insertion / Signal Conditioning solutions that support multiple 3U and 4U chassis
that can hold a wide range of fault insertion and signal conditioning (FIS)
cards. The table below provides a summary of available FIS cards.
Card Type
|
Fault
Lines
|
Model Number | Function |
A
|
4
|
RIQ08313C-041 |
PWM
Buffer/Filter Conditioning Card |
B
|
4
|
RIQ08314D-041 |
LVDT/RVDT/RESOLVER
Excitation w/RMS Converter |
B2
|
|
RIQ10257D-047 |
RMS
Converter to Analog No FI |
B3
|
4
|
RIQ11795-041 |
RVDT/LVDT/RSLVR
EX GAIN x3 |
C1
|
8
|
RIQ08315D-041 |
DISCRETE
OUTPUT |
C2
|
8
|
RIQ08315D-042 |
DUAL
POTENTIOMETER |
C3
|
8
|
RIQ08315D-043 |
COCKPIT
SWITCH 10K OHM |
C4
|
8
|
RIQ08315D-044 |
ESO
/ GBEV COMBO |
C5
|
8
|
RIQ08315D-045 |
FAULT
INSERTION ONLY |
C6
|
8
|
RIQ08316C-041 |
RVDT/LVDT/RESOLV
FB |
C7
|
8
|
RIQ08315D-046 |
MAGNETIC
CHIP DETECT |
D
|
4
|
RIQ08317D-041 |
SPEED
SIGNAL w/COUPLING / BYPASS |
E
|
0
|
RIQ10051C-041 |
RS-422
Switch with No FIS Lines |
F
|
4
|
RIQ08320C-041 |
DEC
TO DEC INTERLOCK |
G
|
4
|
RIQ08321C-041 |
CROSS
CHAN DATA LINK |
H2
|
4
|
RIQ08319E-041 |
RATIOMETRIC
PRES SENSOR 1K OHM |
H3
|
4
|
RIQ08319E-042 |
RATIOMETRIC
RTD 100 OHM |
H4
|
4
|
RIQ08319E-041 |
RATIOMETRIC
3-LINE RTD |
H5
|
4
|
RIQ08319E-044 |
RATIOMETRIC
PRES SENSOR 1.5K OHM |
H6
|
4
|
RIQ08319E-045 |
RATIOMETRIC PRES SENSOR 1.8K OHM |
H7
|
4
|
RIQ08319E-046 |
2/4-WIRE
RTD PROG RES 160 OHM |
H8
|
4
|
RIQ08319E-047 |
2/4-WIRE RTD PROG RES 300 OHM |
J
|
4
|
RIQ08323C-041 |
3-LINE
PERM MAGNET ALT |
K
|
0
|
RIQ10056B-041 |
CHARGE
COUPLED ACCEL SIMULATOR (SINGLE CHAN.) |
M
|
4
|
RIQ11251A-042 |
ISOLATED
TYPE-S TC SIM |
N
|
4
|
RIQ11251A-043 |
RTD
/ PRESSURE BRIDGE |
O
|
2
|
RIQ11251A-044 |
ISOLATED
TYPE-K TC SIM w/CJC (SINGLE CHAN.) |
Q
|
4
|
RIQ11978A-04D | RMS
Current and Voltage Sense for PWM Solenoid / Torque Motor Loads. |
General Purpose Signal Conditioning Modules
The SIGnal Workbench General Purpose Signal Conditioning (GPSC) line of low cost-per-channel signal conditioners is designed for automotive, aerospace and general purpose industrial applications. Low power modules support sixteen channels. High power modules support eight channels. The modules can be DIN rail mounted for small channel count systems or installed in a compatible 2U 8-slot DIN chassis. Optionally, up to four GPSC modules can be installed in a 1U rack mount chassis via special quotation.
.
Many applications do not require fault insertion and utilize dedicated conditioning requirements for each channel that are rarely changed. The general purpose conditioners save the expense of a chassis controller and backplane as well as the software products that are required for programmable conditioners. The GPSC modules are configured using jumpers to set gain or voltage level parameters per channel.
HS000-SIGWB-8 -- Signal Workbench Chassis for up to 8 GPSC Cards
The General Purpose Signal Conditioning (GPSC) chassis consists of a rackmount/table-top enclosure with a 2U card nest that can accomodate eight GPSC cards. The card nest contains a proprietary backplane with twelve slots. Eight slots are available for GPSC cards supporting up to 128 channels of digital or analog signals. Four slots are occupied by interface transition cards. The enclosure contains the necessary power supplies and cooling provisions for stand-alone operation. Cooling air is drawn in through two left-side mounted fans then exhausted through vents on the right side. The side-to-side airflow allows units to be stacked on top of each other. The enclosure operates on 18-32 volts DC. One 110/220VAC to 24 volt DC external power supply comes with each enclosure. The enclosure is optimized for use with Concurrent Real-Time's FPGA products which offer up to 128 channels of I/O distributed with four 68-pin HPDI.
CQ9500TR-08 -- LVDT / RVDT / Resolver Transformer Coupling Module w/ 6' Cable
The CQ9500TR-08 Conditioning Module features 32 galvanically isolated transformer channels and is intended to interface to AC signal applications requiring isolation such as LVDT, RVDT, synchro and resolver position sensors and simulators. For simulation applications, the module is intended to support eight excitation input channels and 16 output channels providing for eight dual output feedback channels; Va/Vb or sin/cos. The signal path is reversed for position sensing applications. All external channels are differential. The input channels can reference a common ground in order to function with single ended analog I/O channels. The outputs can be connected together to work in two, three or four wire configurations.
The signal conditioner can be used as a 32-channel input, 32-channel output, or any combination of inputs and outputs up to 32. The default configuration for the transformer signal conditioner is 16 input channels and 16 output channels. This configuration will support 16 2-wire LVDT channels.
Features:
- ±20V differential input (low side inputs can be tied together for single ended operation)
- ±20V differential output
- 10k Ohm impedance on the primary and secondary
- Jumper selectable center tap on the primary and secondary windings
- Galvanic isolation between inputs and outputs and individual channels
- Transformer coil taps for doubling or halving input or output voltages
- Bypassable filter capacitors to eliminate DC offset
- 16 transformers can be bypassed for 8 input and output channels for direct / DC values or offset are desired
- Operating Temperature: -20C° to 85C°
- Frequency Response: + 2.0 dB, at 300 Hz to 100K Hz (1 KHz Ref.)
- Max power at 300Hz
- Pri-Sec Hipot test (Pri-Sec): 1000 VRMS for 1 sec
- External power supply not required.
- DIN mount. Includes 6' cable.
CQ9502-HSDO-16 -- High Speed Discrete Output Signal Conditioner, Chassis Mount
The Discrete Output Signal Conditioner takes a 0/3.3 volt or 0/5 volt single-ended logic input and outputs up to 0 / 40V or ±22 from common low/high power rails. The jumper selectable power rails provide a selection of +5V, +15V, -15V, GND from the default power supply. High-level external power rails V-A, V-B and low level external power rails G-A, G-B can be selected from additional power sources. V-A, V-B, G-A and G-B are isolated from signal and logic ground. Designed for chassis mounting.
Features:
- 16 output channels
- Digital Input: 3.3 to 5 volts
- Maximum output: 0V/40V or -20V/+20V (40V maximum swing)
- Four available on-board output rails to select: GND, +5V, +15V and -15V
- Four external output rails to select: V-A, V-B, G-A, and G-B
- Up to 1 MHz switching speed
- Outputs are rated at up to 64mA per channel.
- SI8640 isolators are utilized between inputs and outputs to improve noise immunity and protect input from possible transients.
- 0 to 100% duty cycle allows for high speed switching without sacrificing steady state stability.
- Optional stackable expansion board adds 2 analog or discrete signals per channel selectable at output. Analog signals can be any voltage within the device limits of 0 to 40V or ±22
Prerequisite: Signal conditioning chassis (HS000-SIGWB-8)
CQ9502-HSDO-16-DIN -- High Speed Discrete Output Signal Conditioner, DIN Rail Mount, DB37
The Discrete Output Signal Conditioner takes a 0/3.3 volt or 0/5 volt single-ended logic input and outputs up to 0 / 40V or ±22 from common low/high power rails. The jumper selectable power rails provide a selection of +5V, +15V, -15V, GND from the default power supply. High-level external power rails V-A, V-B and low level external power rails G-A, G-B can be selected from additional power sources. V-A, V-B, G-A and G-B are isolated from signal and logic ground. Designed for chassis mounting. DIN rail mount DB37.
Features:
- 16 output channels
- Digital Input: 3.3 to 5 volts
- Maximum output: 0V/40V or -20V/+20V (40V maximum swing)
- Four available on-board output rails to select: GND, +5V, +15V and -15V
- Four external output rails to select: V-A, V-B, G-A, and G-B
- Up to 1 MHz switching speed
- Outputs are rated at up to 64mA per channel.
- SI8640 isolators are utilized between inputs and outputs to improve noise immunity and protect input from possible transients.
- 0 to 100% duty cycle allows for high speed switching without sacrificing steady state stability.
- Optional stackable expansion board adds 2 analog or discrete signals per channel selectable at output. Analog signals can be any voltage within the device limits of 0 to 40V or ±22
Prerequisite: 5V and +/- 15V power supply (CX-NPSC-PWR1)
CQ9502-HSDO-16-DTB -- High Speed Discrete Output Signal Conditioner, DIN Rail Mount, Terminal Block
The Discrete Output Signal Conditioner takes a 0/3.3 volt or 0/5 volt single-ended logic input and outputs up to 0 / 40V or ±22 from common low/high power rails. The jumper selectable power rails provide a selection of +5V, +15V, -15V, GND from the default power supply. High-level external power rails V-A, V-B and low level external power rails G-A, G-B can be selected from additional power sources. V-A, V-B, G-A and G-B are isolated from signal and logic ground. Designed for chassis mounting. DIN rail mount terminal block.
Features:
- 16 output channels
- Digital Input: 3.3 to 5 volts
- Maximum output: 0V/40V or -20V/+20V (40V maximum swing)
- Four available on-board output rails to select: GND, +5V, +15V and -15V
- Four external output rails to select: V-A, V-B, G-A, and G-B
- Up to 1 MHz switching speed
- Outputs are rated at up to 64mA per channel.
- SI8640 isolators are utilized between inputs and outputs to improve noise immunity and protect input from possible transients.
- 0 to 100% duty cycle allows for high speed switching without sacrificing steady state stability.
- Optional stackable expansion board adds 2 analog or discrete signals per channel selectable at output. Analog signals can be any voltage within the device limits of 0 to 40V or ±22
Prerequisite: 5V and +/- 15V power supply (CX-NPSC-PWR1)
CQ9518-DI-16 -- Discrete Input Signal Conditioner
The discrete input signal conditioner is a digital signal conditioning input board capable of converting a jumper configurable input voltage of 5V, 12V, 28V, or 60V into 5V logic level signal. Each of the 16 input channels can independently be configured for a 5V, 12V, 24/28V, or 60V input signal. Inputs are isolated from outputs providing protection and improved noise immunity. Each channel can be configured, via jumpers for either 5V logic level output, 15V output, or as a voltage sink capable of sinking a load of up to 30V, 15mA. Designed for installation in signal conditioning chassis.
Features:
- 16 input channels
- Switching speeds of up to 2.5MHz.
- Input voltage of 5V, 12V, 28V, or 60V
- Output to 5V logic level signal
- Input to output isolation
- Channels can be utilized as 5V, 15V or Voltage sink Discrete Outputs, capable of sinking a load of up to 30V, 15mA.
Prerequisite: Signal conditioning chassis (HS000-SIGWB-8)
CQ9501-DI-16-DIN -- Discrete Input Signal Conditioner, DIN Rail Mount, DB37
The discrete input signal conditioner is a digital signal conditioning input board capable of converting a jumper configurable input voltage of 5V, 12V, 28V, or 60V into 5V logic level signal. Each of the 16 input channels can independently be configured for a 5V, 12V, 24/28V, or 60V input signal. Inputs are isolated from outputs providing protection and improved noise immunity. Each channel can be configured, via jumpers for either 5V logic level output, 15V output, or as a voltage sink capable of sinking a load of up to 30V, 15mA. DIN rail mount DB37.
Features:
- 16 input channels
- Switching speeds of up to 2.5MHz.
- Input voltage of 5V, 12V, 28V, or 60V
- Output to 5V logic level signal
- Input to output isolation
- Channels can be utilized as 5V, 15V or Voltage sink Discrete Outputs, capable of sinking a load of up to 30V, 15mA.
Prerequisite: 5V and +/- 15V power supply (CX-NPSC-PWR1)
CQ9501-DI-16-DTB -- Discrete Input Signal Conditioner, DIN Rail Mount, Terminal Block
The discrete input signal conditioner is a digital signal conditioning input board capable of converting a jumper configurable input voltage of 5V, 12V, 28V, or 60V into 5V logic level signal. Each of the 16 input channels can independently be configured for a 5V, 12V, 24/28V, or 60V input signal. Inputs are isolated from outputs providing protection and improved noise immunity. Each channel can be configured, via jumpers for either 5V logic level output, 15V output, or as a voltage sink capable of sinking a load of up to 30V, 15mA. DIN rail mount Terminal Block.
Features:
- 16 input channels
- Switching speeds of up to 2.5MHz.
- Input voltage of 5V, 12V, 28V, or 60V
- Output to 5V logic level signal
- Input to output isolation
- Channels can be utilized as 5V, 15V or Voltage sink Discrete Outputs, capable of sinking a load of up to 30V, 15mA.
Prerequisite: 5V and +/- 15V power supply (CX-NPSC-PWR1)
CQ9504-AO-16 -- Analog Output Signal Conditioner, DIN Rail Mount
The analog output signal conditioner takes up to ±10V input and outputs up to 0 to 60V or ±30V. Jumper selectable gain options include gains of 1, 2, or 6. Each channel has jumper selectable configurations for inverting, noninverting, or differential outputs. Inputs can be single-ended or differential. DIN rail mount.
Features:
- 16 output channels
- Single ended or differential inputs
- Jumper selection for inverted, non-inverted, or differential output
- Up to ±10V input
- Outputs Sink/Source up to 50mA per channel
- 300kHz Bandwidth at unity gain, 50kHz full power bandwidth
- Input can support analog or digital
- Selectable output gain for up to 60V output
Prerequisite: 5V and +/- 15V power supply (CX-NPSC-PWR1)
CQ9505-AI-16 -- Analog Input Signal Conditioner
The analog output signal conditioner takes up to ±60V input and has jumper selectable attenuations of 1, 2, or 6. Each channel has jumper selectable configurations for inverting, noninverting, or differential outputs. Inputs can be single-ended or differential.
Features:
- 16 input channels
- Single-ended or differential inputs
- Jumper selection for inverted or non-inverted output
- Up to ±60V input
- Outputs Sink/Source up to 50mA per channel
- Up to 300kHz Bandwidth
- Input can support analog or digital
- Jumper selectable attenuation of 1, 2, or 6
Prerequisite: Signal conditioning chassis (HS000-SIGWB-8)
CQ9517-HPDO-16 -- High-Power Discrete Output Signal Conditioner
The high power discrete output signal conditioner uses an isolated gate driver with 2 outputs to switch high side and low side power MOSFETS resulting in a high power, push pull output which is capable of sourcing or sinking voltages of up to 60V. The push pull configuration allows for switching speeds of up to 200kHz which is high speed compared to most 60V capable devices. The high power discrete output signal conditioner is able to source or sink up to 1A continuous current with appropriately sized heat sinking options. The jumper selectable power rails provide a selection of +5V, +15V, -15V, GND from the default power supply. High level external power rails V-A, V-B and low level external power rails G-A, G-B can be selected from additional power sources. V-A, V-B, G-A and G-B are isolated from signal and logic ground.
Features:
- 8 output channels
- Output voltage up to 60V
- Outputs are rated at up to 1A per channel with appropriate heat sinks.
- Switches up to 200kHz
- Output: 0V/60V or -30V/+30V
- Four available on-board output rails to select: GND, +5V, +15V and -15V
- Four external output rails to select: V-A, V-B, G-A, and G-B
- 0 to 100% duty cycle
- SI8640 isolators are utilized between inputs and outputs to improve noise immunity and protect input from possible transients
Prerequisite: Signal conditioning chassis (HS000-SIGWB-8)
CX-NPSC-PWR1 -- DIN Rail Mount 30W Power Supply
Supplies 5V, +/-15V required for general purpose signal conditioning (GPSC) modules. Supports two modules.
CX-CBL-NPSCA-16-03 -- 3-foot Cable,
FPGA Analog I/O to Analog GPSC modules
3-foot cable supporting one CQ9504-AO-16 and one CQ9505-AI-16 GPSC module.
CX-CBL-NPSCA-16-06 -- 6-foot Cable, FPGA Analog I/O to Analog GPSC modules
6-foot cable supporting one CQ9504-AO-16 and one CQ9505-AI-16 GPSC module..
CX-CBL-NPSCD-16-03 -- 3-foot Cable, FPGA Digital I/O to Discrete GPSC modules
3-foot cable supporting two Discrete GPSC modules (CQ9502-HSDO-16 or CQ9503-HPDO-16)..
CX-CBL-NPSCD-16-06 -- 6-foot Cable, FPGA Digital I/O to Discrete GPSC modules
6-foot cable supporting two Discrete GPSC modules (CQ9502-HSDO-16 or CQ9503-HPDO-16).
Cable Guide
for Concurrent-manufactured I/O Cards
Model Number | Card Type | Cable Models |
CP-PWM-1012 CP-PWM-1204 |
PWM Output PCIe card Wheel Speed Sensor Output PCIe card |
CX-LFH60-OUT
-- 6-foot CX-LFH60-OUT-DIN -- 6-foot |
CP-PWM-1112 | PWM Input PCIe card | CX-LFH60-IN
-- 6-foot CX-LFH60-IN-DIN -- 6-foot |
CP-SENT-12 | SENT Protocol PCIe Card | CX-LFH60
-- 6-foot CX-LFH60-DIN -- 6-foot |
CP4484R-2 |
Real-Time
Clock & Interrupt Module (RCIM II) PCI Card |
CX-LFH60
-- 6-foot CX-LFH60-DIN -- 6-foot HS002R-CBL-15 -- 15-foot |
CP4484R-3 | Real-Time Clock & Interrupt Module (RCIM III) PCIe Card | CX-LFH60
-- 6-foot CX-LFH60-DIN -- 6-foot HS002-3CBL-1 -- 1-meter HS002-3CBL-5 -- 5-meter HS002-3CBL-10 -- 10-meter HS002-3CBL-20 -- 20-meter HS002-3CBL-30 -- 30-meter 730-1840042-901 adapter 730-1840042-902 adapter 730-1840042-903 adapter 730-1840042-904 adapter 730-1840042-905 adapter |
CPRC4-4 | Real-Time Clock & Interrupt Module (RCIM IV) PCIe Card | CX-DB26-4
-- 10-foot CX-DB26-DIN-4 -- 10-foot HS002-3CBL-1 -- 1-meter HS002-3CBL-5 -- 5-meter HS002-3CBL-10 -- 10-meter HS002-3CBL-20 -- 20-meter HS002-3CBL-30 -- 30-meter HS002-4CBL-IRG 730-1861337-901 adapter 730-1861337-902 adapter |
CP-AD3224-DS CP-AD3224-DS-10 CP-DA0818-S CP-DA3218-S CP-DA0818-D CP-DA3218-D CP-UEGO-4 CP-RESSIM-16 |
Analog Input PCIe
card, 5V |
CX-CBL-HSI-68-06
- 6-foot CX-CBL-HSI-68-10 - 10-foot CX-CBL-AIO-BRKF (Breakout Module) |
CP-MFIO |
Multifunction I/O
PCIe card |
CX-CBL-HSI-F-02 -
2-meter |