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Synchronization Modules
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PXI System Synchronization Modules
Keysight's PXIe System Synchronization Module (SSM) provide multi-module/multi-chassis synchronization and triggering for Keysight’s modular systems, as well as other Keysight instruments. They meets the STM specifications documented in the PXI Express Hardware Specification.
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PXIe-6672, TCXO PXI Synchronization Module
780063-01
PXIe, TCXO PXI Synchronization Module—The PXIe‑6672 is a system timing controller module. It can drive the PXI star trigger lines, import and export PXI backplane clocks and triggers, generate a high-resolution direct digital synthesis (DDS) clock, and generate a high-stability temperature-compensated crystal oscillator (TCXO) 10 MHz Reference Clock for instrumentation. The PXIe‑6672 allows you to synchronize multiple PXI Express systems, synchronize a PXI Express system with external instruments and equipment, and increase the accuracy of instruments within a PXI Express system.
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VXI Synchro/Resolver Module
VX3701
With so-called synchro/resolver cards, rotation angle sensors that work according to the synchro/resolver principle can be measured. Depending on the angle of rotation, these generate a sine and cosine signal, in order to determine the position and direction of rotation.
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PXIe System Sync Module, 5 Port
M9033A
The M9033A PXIe System Synchronization Module is a dual-slot, 5-port module that provides multi-module and multi-chassis synchronization and triggering for Keysight's modular instruments.
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PXIe-6674T, OCXO PXI Synchronization Module
781037-01
PXIe, OCXO PXI Synchronization Module—The PXIe‑6674T generates and routes clocks and triggers between devices in a PXI Express chassis as well as to other PXI and PXI Express chassis or third-party instrumentation. The PXIe‑6674T unlocks the advanced low-voltage differential signaling (LVDS) trigger signals PXIe‑DStarA, PXIe‑DStarB, and PXIe‑DStarC, on PXI Express while fully supporting the PXI trigger lines. The PXIe‑6674T can generate two types of clock signals: a highly stable 10 MHz clock based on an onboard precision oven-controlled crystal oscillator (OCXO) reference and a second clock from the direct digital synthesis (DDS) clock generation circuit.
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PXI-6683, TCXO, GPS, IRIG-B, IEEE 1588 PXI Synchronization Module
782110-01
TCXO, GPS, IRIG-B, IEEE 1588 PXI Synchronization Module—The PXI‑6683 timing and synchronization modules synchronize PXI and PXI Express systems using GPS, IEEE 1588, and IRIG‑B to perform synchronous events. The PXI‑6683 can generate events and clock signals at specified synchronized future times and timestamp input events with the synchronized system time. The PXI‑6683 features an onboard temperature-compensated crystal oscillator (TCXO) that can be disciplined to GPS, IEEE 1588, and IRIG‑B for long-term stability. You also can use the PXI‑6683 to route clock signals and triggers with low skew within a PXI chassis or between multiple chassis, providing you a method for synchronizing multiple devices in a PXI system.
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PXI-5154, 1 GHz, 2 GS/s, 8-Bit, 64 MB/ch, PXI Oscilloscope
780319-02
1 GHz, 2 GS/s, 8-Bit, 64 MB/ch, PXI Oscilloscope—The PXI‑5154 is ideal for acquisition and characterization of fast, nanosecond-edge speeds. It is well-suited for automated test and data streaming applications in the consumer electronics, semiconductor, aerospace/defense, and life sciences industries. The PXI‑5154 also comes equipped with up to 256 MB of memory per channel to provide high, sustained sample rates over extended data capture windows. This digitizer, optimized for automated test, uses a high-throughput bus to lower test times, provides picosecond-level synchronization among modules, and integrates with the entire suite of NI hardware, so you can build and customize a complete mixed-signal or high‑channel‑count test system.
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PXI-6683, TCXO, GPS, IRIG-B, IEEE 1588 PXI Synchronization Module
782109-01
TCXO, GPS, IRIG-B, IEEE 1588 PXI Synchronization Module - The PXI‑6683 timing and synchronization modules synchronize PXI and PXI Express systems using GPS, IEEE 1588, and IRIG‑B to perform synchronous events. The PXI‑6683 can generate events and clock signals at specified … synchronized future times and timestamp input events with the synchronized system time. The PXI‑6683 features an onboard temperature-compensated crystal oscillator (TCXO) that can be disciplined to GPS, IEEE 1588, and IRIG‑B for long-term stability. You also can use the PXI‑6683 to route clock signals and triggers with low skew within a PXI chassis or between multiple chassis, providing you a method for synchronizing multiple devices in a PXI system.
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PXI-5154, 1 GHz, 2 GS/s, 8-Bit, 8 MB/ch, PXI Oscilloscope
780319-01
1 GHz, 2 GS/s, 8-Bit, 8 MB/ch, PXI Oscilloscope—The PXI‑5154 is ideal for acquisition and characterization of fast, nanosecond-edge speeds. It is well-suited for automated test and data streaming applications in the consumer electronics, semiconductor, aerospace/defense, and life sciences industries. The PXI‑5154 also comes equipped with up to 256 MB of memory per channel to provide high, sustained sample rates over extended data capture windows. This digitizer, optimized for automated test, uses a high-throughput bus to lower test times, provides picosecond-level synchronization among modules, and integrates with the entire suite of NI hardware, so you can build and customize a complete mixed-signal or high‑channel‑count test system.
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PXI-5154, 1 GHz, 2 GS/s, 8-Bit, 256 MB/ch, PXI Oscilloscope
780319-03
1 GHz, 2 GS/s, 8-Bit, 256 MB/ch, PXI Oscilloscope—The PXI‑5154 is ideal for acquisition and characterization of fast, nanosecond-edge speeds. It is well-suited for automated test and data streaming applications in the consumer electronics, semiconductor, aerospace/defense, and life sciences industries. The PXI‑5154 also comes equipped with up to 256 MB of memory per channel to provide high, sustained sample rates over extended data capture windows. This digitizer, optimized for automated test, uses a high-throughput bus to lower test times, provides picosecond-level synchronization among modules, and integrates with the entire suite of NI hardware, so you can build and customize a complete mixed-signal or high‑channel‑count test system.
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Synchronization Module
ZET 7175
GPS/GLONASS ZET 7175 synchronization module is used for long-distance spaced object timing in major control, monitoring and data collecting systems. For system operation, it is necessary to have a GPS-aerial connected over SMA plug.
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Power System Recorder
TESLA LITE
ERLPhase Power Technologies Ltd
The new TESLA LITE is an economical user-friendly multi-timeframe power system recorder: Economical yet complete power system recording for custom applications in smaller substations. Easy to use intuitive software Simultaneous transient fault, dynamic swing and trend recording and event logging Fault location derived from single and calculated currents IRIG-B clock synchronization (modulated and unmodulated) Smallest footprint among recorders allows easy retrofit and installation 12 current, 6 voltage and 38 digital inputs
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Multi-Channel Synchronization Module for M8190A, M8020A or M8030A
M8192A
Complex testing sometimes requires playing multiple waveforms in parallel (e.g. multi-emitter testing). The M8192A synchronization module allows engineers to synchronize up to 12 M8190A channels and fits into a standard AXIe frame.The M8192A synchronization module also supports testing of high-speed digital busses like PCI Express.Test efficiency can be increased by testing up to 10 lanes with the M8051A and the M8041A BERT modules in parallel. These can be synchronized by the M8192A module.
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PXI FlexRIO IF Transceiver
The PXI FlexRIO IF Transceiver combines analog I/O and a user-programmable FPGA into a single, customizable instrument. The instrument enables direct RF acquisition up to 6 GHz. You can use the instrument in a dual-channel mode at 3.2 GS/s or in a single-channel interleaved mode at 6.4 GS/s. The PXI FlexRIO IF Transceiver uses FPGAs from Xilinx alongside LabVIEW and Vivado programming options for custom algorithm implementation and real-time signal processing. Using this instrument with NI-TClk, you can synchronize modules in one or more PXI chassis at up to picosecond‐level accuracy for high‐channel‐count applications.
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65 GSa/s Arbitrary Waveform Generator
M8195A
Sample rate up to 65 GSa/s High channel density: 1, 2 or 4 channels per module, synchronization of up to 16 channels on 4 modules with the M8197A multi-channel synchronization module Built-in frequency and phase response calibration Embedded DSP enables real-time waveform and impairment generation(in conjunction with the 81195A optical modulation generator software)
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Medium-Speed Clocking Module
FMC406
Sundance Multiprocessor Technology Ltd.
The FMC406 is a low-noise clock generation and distribution module with eight clock outputs and eight trigger outputs that are fully synchronized. This module can either distribute an externally supplied clock or a locally generated clock. In the standard configuration, the FMC406 can generate any clock frequency between 34.375 MHz and 250MHz and lock it to an internal or external reference. The maximum clock frequency can be extended to 350MHz as a build option.
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ITSM Synchro
The Impulsive Test Synchronization Module (ITSM) is a device aimed at generating a digital synchronization signal, to use the PDBaseII system for impulsive voltage PD test. The digital synchronization signal generated by the ITSM, is synchronized with the voltage impulse of the impulsive source (voltage generator). The ITSM must be connected between the DIN channel of PDBaseII and the output of the synchronization sensor (e.g. capacitive coupler). The ITSM provides also a low voltage signal reproducing the impulsive voltage source.
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Astronics PXIe-3352, Rubidium PXI Synchronization Module
785034-01
PXIe, Rubidium PXI Synchronization Module - The PXIe-3352 generates high-stability clock signals for PXI or third-party instrumentation. It provides a high-accuracy sine wave, square wave, or 1 pps output, and it includes a built-in GPS receiver (external antenna required) to discipline the rubidium oscillator for long-term stability. The front panel DC power input maintains power to the rubidium oscillator if the PXI chassis is powered off, keeping the rubidium oscillator stable over time and eliminating the effects of retrace. The GPS receiver also maintains its location information during power off for fast system bring up.
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High-Speed Clocking Module
FMC407
Sundance Multiprocessor Technology Ltd.
The FMC407 is a low-noise clock generation and distribution module with eight clock outputs and eight trigger outputs that are fully synchronized. This module can either distribute an externally supplied or a locally generated clock. In the standard configuration, the FMC407 can generate any clock frequency between 34.375 MHZ and 4.4GHz and lock it to an internal or external reference.
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PXI Synchronization Module
PXI Synchronization Modules use the trigger bus, star trigger, and system reference clock features of PXI to implement advanced multi-device synchronization. By using PXI Synchronization Modules, you can improve measurement accuracy, implement advanced triggering schemes, and synchronize multiple devices to act as one for high-channel-count applications.
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C Series Temperature Input Module
The C Series Temperature Input Module features up to 16 channels of temperature input from either thermocouples or RTDS. This module can include anti-aliasing filters, open-thermocouple detection, and cold-junction compensation. Additionally, the module also feature isolation for safety, noise immunity, and high common-mode voltage range.The C Series Temperature Input Module includes the NI-DAQmx driver and configuration utility that simplify configuration and measurements. NI-DAQmx supports NI programming environments as well as Python, ANSI C, C#.NET, and MathWorks MATLAB® software.
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Expansion Module For CompactRIO
The Expansion Module for CompactRIO connects to the processor I/O, such as USB and Ethernet, of a controller to expand its functionality. This module works with CompactRIO Controllers, Industrial Controllers, CompactRIO Single-Board Controllers, and PXI Controllers to expand the capabilities of the system, such as adding additional storage for saving more data and increasing the number of USB or time-sensitive networking (TSN) Ethernet ports of the system. Additionally, the Expansion Module for CompactRIO features the same rugged shock and vibration ratings as other CompactRIO modules, and you can can mechanically connect it to a controller for integration using mounting accessories.
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PXI GPIB Instrument Control Module
PXI GPIB Instrument Control Modules feature IEEE 488 controllers for PXI systems. You can choose an option that supports Gigabit Ethernet transfer speeds. PXI GPIB Instrument Control Modules include a license for the industry standard NI-488.2 driver software enabling reliable connections to third-party instruments with GPIB.
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PXI Carrier Module For SwitchBlock
The PXI Carrier Module for SwitchBlock can hold up to six Matrix Modules for SwitchBlock while occupying four PXI slots. By connecting multiple SwitchBlock relay cards through the carrier's integrated analog bus, you can easily create large matrices with more than 2,000 crosspoints in four PXI slots and more than 8,000 crosspoints in a single PXI chassis. Each Matrix Module for SwitchBlock comes in an A-type version, which serves as the first matrix building block and offers row and column access through the front connector, and a B-type version, which serves as an expansion module and only provides column access through the front connector. Typically, SwitchBlock systems contain one A-type module and numerous B-type modules.
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PXI Dual Microwave Transfer Switch 26.5GHz 50 SMA
40-782A-532
The 40-782A-532 is a dual transfer switch and is part of our range of PXI microwave switching modules. It has a characteristic impedance of 50Ω and a maximum operating frequency of 26.5GHz. Connections are made via front panel mounted high quality SMA coaxial connectors.
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COM Express Type 6 Prototyping Kit based on Intel® 12th Gen Core™ i5-12600HE
COM Express Type 6 Alder Lake-P
The cExpress-BT is a COM ExpressR COM.0 R2.1 Type 6 module supporting the Intel Atom® processor E3800 Series and Intel® Celeron® N2900/J1900 processor SoC (codename: Bay Trail). The cExpress-BT is specifically designed for customers who need high-level processing and graphics performance with low power consumption in a long product life solution.
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Signal / Micro Power/ Micro Coax, Module, Receiver, QuadraPaddle, iCon Series, 100/15 Position, loaded w/twin female contacts
510160112
This module comes fully loaded with twin female contacts (p/n 610138200), iCon modules mount from the rear of the iCon/i1 receiver allowing installation and removal of pre-wired cable blocks. Primary mating module 510161107. (May mate with other ITA modules, as well.)
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Signal, Module, ITA, QuadraPaddle, 90 Series, 192 Position, Fully Loaded w/ Square Posts for Wire Wrap with Anti-Rotation (610 138 122)
510151124
NOTE: Part # 510151124 Rev D and higher utilize captive screws that cannot be replaced with screws from currently VPC- offered screw kits.Primary mating module 510150115. (May mate with other Receiver modules, as well.)
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Signal, Module, Receiver, TriPaddle, iCon Series, 96 Position
510160108
Primary mating module 510161108. (May mate with other ITA modules, as well.)