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PXI
PXI or PCI Extensions for Instrumentation is a bus standard for high performance measurement and automation. AKA: PCI Extensions
See Also: Instrument Control Buses, Modular Instruments, PXIe, LXI, AXIe, PCIe, GPIB, USB, PCI, Ethernet, LAN, VXI, CompactPCI
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PXI Resistor Module 4-Channel 1R to 510R with SPDT
40-293-114
The 40-293 is a Programmable Resistor module with two channels of 16-bit, two channels of 12-bit or four channels of 8-bit resistor chains in a single 3U PXI module. The module is ideal for simulating sensors for control and management systems under test, allowing the user to verify system response in design verification or manufacturing test applications.
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PXI RTD Simulator Module, 20 Channel, PT100
40-263-101
The 40-263-101 is a 20-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 24 Channel, PT1000
40-263-003
The 40-263-003 is a 24-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 24 Channel, PT100
40-263-001
The 40-263-001 is a 24-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 20 Channel, PT500
40-263-102
The 40-263-102 is a 20-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 20 Channel, PT1000
40-263-103
The 40-263-103 is a 20-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 4 Channel, PT100
40-263-501
The 40-263-501 is a 4-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 16 Channel, PT500
40-263-202
The 40-263-202 is a 16-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 16 Channel, PT1000
40-263-203
The 40-263-203 is a 16-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 12 Channel, PT500
40-263-302
The 40-263-302 is a 12-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 12 Channel, PT100
40-263-301
The 40-263-301 is a 12-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 16 Channel, PT100
40-263-201
The 40-263-201 is a 16-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 12 Channel, PT1000
40-263-303
The 40-263-303 is a 12-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI Test System Dev, Debug & Monitor Software
InstrumentStudio
InstrumentStudio is free application software that provides an integrated approach to interactive PXI measurements. InstrumentStudio helps you to unify your display, export instrument configurations to code, and monitor and debug your automated test system. You can view data on unified displays with large, high-resolution monitors, and then capture multi-instrument screenshots and measurement results.
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PXI RTD Simulator Module, 4 Channel, PT500
40-263-502
The 40-263-502 is a 4-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 4 Channel, PT1000
40-263-503
The 40-263-503 is a 4-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 8 Channel, PT100
40-263-401
The 40-263-401 is an 8-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 8 Channel, PT500
40-263-402
The 40-263-402 is an 8-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 8 Channel, PT1000
40-263-403
The 40-263-403 is an 8-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 24 Channel, PT500
40-263-002
The 40-263-002 is a 24-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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JTAG/Background Debug Mode Test System PXI Card
NX5300
The NX5300 is a single slot 3U PXI device and interfaces to the unit under test via an On-Chip Debug (OCD) or JTAG port. The NX5300 is a high performance JTAG based background debug mode (BDM) diagnostic system designed for functional test, development, programming and troubleshooting of microprocessor and microcontroller based embedded processor systems.
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PXI Versatile Multiplexer, Solid State, 250mA, 40V
40-682A-002
The 40-682A-002 is a very high-density versatile PXI Multiplexer module featuring a wide range of selectable switching configurations with 250mA current and 40V voltage handling. The 40-682A is especially useful where a high-density MUX array is required that can adapt to different test configurations for different test targets, or where a test system may have to be reconfigured in the future.
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PXI Versatile Multiplexer, Solid State, 350mA, 60V
40-681A-001
The 40-681A-001 is a very high-density versatile PXI Multiplexer module featuring a wide range of selectable switching configurations with 350mA current and 60V voltage handling. The 40-681A is especially useful where a high-density MUX array is required that can adapt to different test configurations for different test targets, or where a test system may have to be reconfigured in the future.
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PXI Versatile Multiplexer, Solid State, 125mA, 100V
40-683A-001
The 40-683A-001 is a very high-density versatile PXI Multiplexer module featuring a wide range of selectable switching configurations with 125mA current and 100V voltage handling. The 40-683A is especially useful where a high-density MUX array is required that can adapt to different test configurations for different test targets, or where a test system may have to be reconfigured in the future.
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PXI Precision Resistor Module 3-Channel, 3 to 5.82M
40-297-152
This PXI Precision Resistor module provides a simple solution for applications requiring accurate simulation of resistive sensors. The 40-297 series is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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PXI Precision Resistor Module 3-Channel, 3 to 11.4M
40-297-153
This PXI Precision Resistor module provides a simple solution for applications requiring accurate simulation of resistive sensors. The 40-297 series is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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PXI Precision Resistor Module 4-Channel, 2 to 13.6k
40-297-131
These PXI precision resistor modules provide a simple solution for applications requiring accurate simulation of resistive sensors. The 40-297 series is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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PXI Precision Resistor Module 3-Channel, 3 to 1.51M
40-297-150
This PXI Precision Resistor module provides a simple solution for applications requiring accurate simulation of resistive sensors. The 40-297 series is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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PXI Precision Resistor Module 3-Channel, 3 to 2.97M
40-297-151
This PXI Precision Resistor module provides a simple solution for applications requiring accurate simulation of resistive sensors. The 40-297 series is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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PXI Precision Resistor Module 6-Channel, 2.5 to 1.51M
40-297-044
This PXI Precision Resistor Module provides a simple solution for applications requiring accurate simulation of resistive sensors. The 40-297 series is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.