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Bus
One or more conductors or optical fibers that serve as a common connection for a group of related devices
See Also: Serial, Parallel, Bus Analyzers, Bus Adapters, Bus Converters, Bus Interfaces, Bus Translator, Extender Boards, Extender Cards, Cable Bus
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Single 24x8 1-Pole High-Density PXI Matrix Module
40-520-202
The 40-520 family of high-density PXI matrices is available in 22 different configurations with up to 256 crosspoints. The choice of six bus widths (x16, x12, x8, x6, x4 and x2) enables competitively priced solutions using Pickering Electronics instrumentation quality reed relays. These relays offer very long life with good low-level switching performance and excellent contact resistance stability. Typical applications include signal routing in ATE and data acquisition systems.
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Single 12x12 1-Pole High-Density PXI Matrix Module
40-520-102
The 40-520 family of high-density PXI matrices is available in 22 different configurations with up to 256 crosspoints. The choice of six bus widths (x16, x12, x8, x6, x4 and x2) enables competitively priced solutions using Pickering Electronics instrumentation quality reed relays. These relays offer very long life with good low-level switching performance and excellent contact resistance stability. Typical applications include signal routing in ATE and data acquisition systems.
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Single 8x12 1-Pole High-Density PXI Matrix Module
40-520-103
The 40-520 family of high-density PXI matrices is available in 22 different configurations with up to 256 crosspoints. The choice of six bus widths (x16, x12, x8, x6, x4 and x2) enables competitively priced solutions using Pickering Electronics instrumentation quality reed relays. These relays offer very long life with good low-level switching performance and excellent contact resistance stability. Typical applications include signal routing in ATE and data acquisition systems.
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PXI Differential Fault Insertion Switch Modules
Pickering's PXI Differential Fault Insertion Switch Modules support multiple channels of two-wire serial interfaces. Each channel can simulate an open fault in either or both wires, a short between both wires or a short to externally applied fault conditions. *Two module types are available: Two wire fault insertion module suitable for CAN Bus and FlexRay.*High bandwidth two wire fault insertion module suitable for Gigabit Ethernet, AFDX and BroadR-Reach.
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ABex Current Sense Module for Six Channel UUT Supply Monitoring
ABex TM-406 Current Sense
The ABex TM-406 is a six-channel shunt current measurement extension. It’s designed to work in combination with the Konrad ABex TM-501 and PXI-501.Each of the six shunt current measurement units have a passive measurement shunt, an overcurrent protection, a sense bridge relay and the possibility to route the quiescence current to an ABex measurement device TM-501 with PXI-501.In addition, the ABex TM-406 features 8 isolated digital outputs (IDOs), and 12 measurement inputs, which can be routed to the analog bus.
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PCI Data Acquisition Boards
Ultraview''s PCI data acquisition add-in cards are complete data acquisition (A/D) and control (D/A) systems on a single PCI Bus card. Ranging in speed from dual 14 and 12-bit 1-25MSPS boards up to 1500MSPS 8-bit boards with 8GB/16GB of on-board RAM. All cards come with graphical waveform viewers, example user programs (source code included) and device drivers for Linux or Solaris, allowing users to quickly prototype and develop their applications.
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Databus-to-Network Interfaces
OBB2
The OBB2 is highly configurable and includes built-in standard peripherals (Ethernet, serial, and USB), along with four internal Cores that can be populated with a variety of databus protocols and discrete I/O modules. With the newest advanced set of MIL-STD-1553 and ARINC 429 modules, users can verify wave form compatibilities, test functions of bus shorts and opens, and—when combined with our CoPilot® software—perform lab, production and flight test verification and simulation right out of the box.
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Pulse Pattern Generator, 3.35 GHz, dual-channel
81134A
When timing and performance requirements are critical, for example in high-speed serial bus applications like PCI Express or Serial ATA, its fast rise times and low intrinsic jitter allow the precise and in-depth characterization of devices, e.g. receivers or backplanes. On top of that, it allows to generate application-specific signal levels like pre- and de-emphasis (PCI Express) or squelch (Serial ATA). The Keysight 81134A lets you test your DUT instead of the pulse or data source!
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PCI, IEEE 488 GPIB Instrument Control Device for Windows
778032-01
The PCI‑GPIB is a plug‑and‑play IEEE 488 interface for PCs and workstations with PCI expansion slots. The PCI‑GPIB can sustain data transfer rates of more than 1.5 MB/s using the IEEE 488.1 three‑wire interlocked handshake. It also implements the high-speed IEEE 488.1 noninterlocked handshake (HS488) for benchmarked data transfers at more than 7.7 MB/s. The onboard bus master DMA controller means that there are no microprocessor interruptions in data transfer.
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PCI, IEEE 488 GPIB Instrument Control Device for Linux
778686-01
The PCI‑GPIB is a plug‑and‑play IEEE 488 interface for PCs and workstations with PCI expansion slots. The PCI‑GPIB can sustain data transfer rates of more than 1.5 MB/s using the IEEE 488.1 three‑wire interlocked handshake. It also implements the high-speed IEEE 488.1 noninterlocked handshake (HS488) for benchmarked data transfers at more than 7.7 MB/s. The onboard bus master DMA controller means that there are no microprocessor interruptions in data transfer.
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PCI, IEEE 488 GPIB Instrument Control Device for Windows, Low Profile
783007-01
The PCI‑GPIB is a plug‑and‑play IEEE 488 interface for PCs and workstations with PCI expansion slots. The PCI‑GPIB can sustain data transfer rates of more than 1.5 MB/s using the IEEE 488.1 three‑wire interlocked handshake. It also implements the high-speed IEEE 488.1 noninterlocked handshake (HS488) for benchmarked data transfers at more than 7.7 MB/s. The onboard bus master DMA controller means that there are no microprocessor interruptions in data transfer.
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PXI/PXIe 1000Base-T1 Fault Insertion Switch, 6-Channel
42-203-002
The 40-203-002 (PXI) and 42-203-002 (PXIe) are designed to simulate common faults on high-speed two wire communication interfaces such as 1000Base-T1. They support 6 channels of two wire serial interfaces. Each channel pair can simulate an open fault in either or both wires, and using the fault bus switches can simulate short between both wires or a short to one of two externally applied fault connections – such as battery supply or ground - via two fault buses.
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PXI/PXIe 1000Base-T1 Fault Insertion Switch, 3-Channel
40-203-001
The 40-203-001 (PXI) and 42-203-001 (PXIe) are designed to simulate common faults on high-speed two wire communication interfaces such as 1000Base-T1. They support 3 channels of two wire serial interfaces. Each channel pair can simulate an open fault in either or both wires, and using the fault bus switches can simulate short between both wires or a short to one of two externally applied fault connections – such as battery supply or ground - via two fault buses.
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PXI/PXIe 1000Base-T1 Fault Insertion Switch, 6-Channel
40-203-002
The 40-203-002 (PXI) and 42-203-002 (PXIe) are designed to simulate common faults on high-speed two wire communication interfaces such as 1000Base-T1. They support 6 channels of two wire serial interfaces. Each channel pair can simulate an open fault in either or both wires, and using the fault bus switches can simulate short between both wires or a short to one of two externally applied fault connections – such as battery supply or ground - via two fault buses.
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PCI-8 AE Board
The PCI-8 is an 8-channel, PCI-based AE system on a board. Its 8 high-speed AE channels offer simultaneous AE data acquisition, waveform processing and data transfer. The board’s standard PCI form factor enables installation in standard PCs, as well as in any of Physical Acoustics’ specialized AE system chassis, while the PCI bus enables AE data transfer at speeds of up to 132 Mb/s, at a frequency range of 1 kHz to 400 kHz.
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PXI/PXIe 1000Base-T1 Fault Insertion Switch, 3-Channel
42-203-001
The 40-203-001 (PXI) and 42-203-001 (PXIe) are designed to simulate common faults on high-speed two wire communication interfaces such as 1000Base-T1. They support 3 channels of two wire serial interfaces. Each channel pair can simulate an open fault in either or both wires, and using the fault bus switches can simulate short between both wires or a short to one of two externally applied fault connections – such as battery supply or ground - via two fault buses.
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8-Channel VME LVDT/RVDT Scanner
V550
The V550 is a 6U, one-slot VME module which will acquire position data from up to eight LVDT (linear variable differential transformer) position sensors. The LVDT sensors are excited by an ultrastable synthesized sinewave generator, and conditioned by a precision 16-bit A/D converter followed by digital signal processing. The resident microprocessor supervises scanning and signal conditioning, and places updated position data in VME-accessible dual-ported data registers for instant access from the VME bus.
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1100-Channel GSM Channelizer wih Quad A/D - 3U VPX
Model 52663
- Complete GSM channelizer with analog IF interface- Four 180 MHz 16-bit A/Ds- Two banks of 375 DDCs for upper GSM band- Two banks of 175 DDCs for lower GSM band- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multiboard synchronization- PCI Express Gen. 2 x4- 3U VPX form factor provides a compact, rugged platform- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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1100-Channel GSM Channelizer wih Quad A/D - XMC
Model 71663
- Complete GSM channelizer with analog IF interface- Four 180 MHz 16-bit A/Ds- Two banks of 375 DDCs for upper GSM band- Two banks of 175 DDCs for lower GSM band- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multimodule synchronization- PCI Express Gen. 2 x8- RoHS Compliant Lead-Free Version Available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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AFDX®/ARINC664P7 Modules
AIM’s AFDX®/ARINC664P7 test, simulation, monitoring and analysis modules use our field proven Common Core hardware design giving you the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core designs with multiple processors for real time bus protocol and application support, massive memory and IRIG-B time code encoder/decoder functions are standard. Versions are available to support the Boeing specific ARINC664P7 extensions.
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Network Analysis
Network development solutions come in different formats to support the variety of applications, such as network analysis or node emulation. Network analysis is crucial throughout the development of any networked system or module. The ability to capture, view, and record messages allows monitoring of bus integrity or troubleshooting functionality of the modules on the network. Whether developing a concept or preparing for production, access to the network is essential. Node simulation can be done with software, such as ATI's CANLab Software, or hardware components, possibly CANverter, depending on whether the environment is on the bench or in the vehicle.
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PCI to PCI Express Adapter
SKU-011-01
The PCI to PCI Express Adapter simply turns your computer’s existing PCI slot into a PCI Express slot. This provides a seamless interface for older PCI systems to accept new PCI Express devices – making it possible to utilize old test equipment (computers, PCI extenders, PCI bus analyzers etc.) during migration from PCI to the PCI Express interface.There is no need to purchase additional software or to install new device drivers; simply plug & play!
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MIL-STD-1553 IRIG 106 Chapter 10 Streaming Application
F-SIM-1553-CH10-STREAM
Avionics Interface Technologies
Streams MIL-STD-1553 Data from AIT MIL-STD-1553 interfaces in Chapter 10 Format - Software application which is Compatible with all AIT MIL-STD-1553 Interfaces - Capable of streaming data captured from one or multiple MIL-STD-1553 Bus Interfaces - Streamed data can be sent to a single network system or multicast on the Ethernet LAN - Compatible with AIT F-SIM-1553-AVOE analyzer or 3rd party Chapter 10 systems - Timestamps & Errors detected embedded in Chapter 10 stream
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Test & Measurement Services
We specialize in the development of advanced automatic test applications based on NI TestStand.- Development of NI Test Stand test programs, with code modules in LabVIEW, LabWindows/CVI, Measurement Studio/.NET, C/C++, and ActiveX/COM- Integration of test and measurement instrumentation, switching, and UUT bus interfaces- Customization of step types, process models, operator interfaces, reports, and databases- Integration in the enterprise software infrastructure (XML data formats, databases, web applications, etc.)- Integration of the NI TestStand ATML Toolkit
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Gas Flow Sensors
ESRF-ESF Sensor
ESRF-ESF is one of the few gas flow sensors featuring bidirectional gas flow sensing of up to ±300 ln/min with a total error band of < 1.25% RD. ESRF-ESF gas flow sensors provide calibrated and temperature compensated output on an SPI, I2C bus or analog output making them plug & play for direct interfacing to low voltage MCUs and systems. The user is provided with a multitude of interface and output options so that the right sensor configuration can be selected based on the specific requirements for each application.
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The all-in-one data logger for the entire vehicle networking
PM-200
The PM-200 sets the bar considerably higher on the topic of safeguarding and troubleshooting vehicles. Bus systems such as CAN, CAN-FD, FlexRay™, LIN, MOST150 and Automotive Ethernet are logged at a data speed up of to 120 MB/s. SSD removable media allow for quick evaluation and distribution of the data. Various upgrade options enable configuration for any application. Flexibility, programmability and support from debugging protocols make it possible to meet the high demands of functionality and fleet tests as well as of test runs.
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Precision Metal Clad Shunt Resistor
IRHF
Precision Metal Clad Resistors designed in four- terminal technique, are distinguished by high load capacity as well as excellent accuracy. Isolated voltage and current connections making them suitable for very precise current measurements. Easy current measurement is performed by attaching to current bus directly and connecting to voltage (ampere) metal through flexible wires. The ULH models are UL approved versions. Units have a low inductance, heavy copper terminals. The main application is battery manufacturing test jig.
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PCI Express, Analyzer Software Included, IEEE 488 GPIB Instrument Control Device for Windows - Low Profile, Onboard GBIP Analyzer
780936-01
The PCIe‑GPIB+ combines an IEEE 488 controller and an analyzer on one device for computers with PCIe slots. You can use this device to integrate an instrument into your system using GPIB as well as to troubleshoot and solve GPIB hardware and software problems. The PCIe‑GPIB+ achieves maximum IEEE 488.2 transfer rates. With an onboard bus master DMA controller, there is no microprocessor interruption in data transfers. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.
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PCI Express, Analyzer Software Included, IEEE 488 GPIB Instrument Control Device for Windows - Onboard GBIP Analyzer
780935-01
The PCIe‑GPIB+ combines an IEEE 488 controller and an analyzer on one device for computers with PCIe slots. You can use this device to integrate an instrument into your system using GPIB as well as to troubleshoot and solve GPIB hardware and software problems. The PCIe‑GPIB+ achieves maximum IEEE 488.2 transfer rates. With an onboard bus master DMA controller, there is no microprocessor interruption in data transfers. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.
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PCI-GPIB+, Analyzer Software Included, IEEE 488 GPIB Instrument Control Device for Windows, Onboard GPIB Analyzer
778033-01
The PCI‑GPIB+ combines an IEEE 488 controller and an analyzer on one device for computers with PCI slots. You can use this device to integrate an instrument into your system using GPIB as well as to troubleshoot and solve GPIB hardware and software problems. The PCI‑GPIB+ achieves maximum IEEE 488.2 transfer rates. With an onboard bus master DMA controller, there is no microprocessor interruption in data transfers. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.