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Digital Function Generators
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PXIe-2541, 300 MHz, 8x12 PXI RF Matrix Switch Module
780587-41
PXIe, 300 MHz, 8x12 PXI RF Matrix Switch Module—The PXIe‑2541 is an RF signal switching matrix. With its non-blocking design, you can simultaneously connect any row or column within the switching matrix and maximize the flexibility of your test system. Isolation relays on the module disconnect unused parts of the switching matrix to maintain RF performance and high isolation. The density and bandwidth of the PXIe‑2541 is ideal for routing signals between digitizers, function generators, and other RF generators and analyzers. For higher channel count applications, you can connect multiple PXIe‑2541 modules together to create switching matrices of 8x24, 8x36, and larger.
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PXI-2541, 300 MHz, 8x12 PXI RF Matrix Switch Module
778572-41
300 MHz, 8x12 PXI RF Matrix Switch Module—The PXI‑2541 is an RF signal switching matrix. With its non-blocking design, you can simultaneously connect any row or column within the switching matrix and maximize the flexibility of your test system. Isolation relays on the module disconnect unused parts of the switching matrix to maintain RF performance and high isolation. The density and bandwidth of the PXI‑2541 is ideal for routing signals between digitizers, function generators, and other RF generators and analyzers. For higher channel count applications, you can connect multiple PXI‑2541 modules together to create switching matrices of 8x24, 8x36, and larger.
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PXIe-2540, 350 MHz, 8x9 PXI RF Matrix Switch Module
780587-40
PXIe, 350 MHz, 8x9 PXI RF Matrix Switch Module—The PXIe‑2540 is an RF signal switching matrix. With its non-blocking design, you can simultaneously connect any row or column within the switching matrix and maximize the flexibility of your test system. Isolation relays on the module disconnect unused parts of the switching matrix to maintain RF performance and high isolation. The density and bandwidth of the PXIe‑2540 is ideal for routing signals between digitizers, function generators, and other RF generators and analyzers.
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Electrochemical Analyzer/Workstation
600E
The Model 600D series is designed for general purpose electrochemical measurements. The figure below shows the block diagram of the instrument. The system contains a fast digital function generator, high speed data acquisition circuitry, potentiostat, and a galvanostat (available only in select models).
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Multi-Potentiostat
1000C
The model 1000B series is a computerized 8 channel potentiostat. The system contains a digital function generator, multiplexed data acquisition circuitry, and a multi-potentiostat that can work with eight independent cells or eight working electrodes in the same solution with common reference and counter electrodes. The potential control range is 10 V for all channels, which can be set at independent potentials or the same potential as the primary channel, so that they can sweep or step potentials together with the primary channel.
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Power Potentiostat/Galvanostat
1100C
The Model 1100B series power potentiostat/galvanostat is designed for electrochemical applications that require relatively large current and high compliance voltage, such as battery studies, corrosion, electrolysis, and electroplating. The current range is 2 A, and the compliance voltage is 25 V. The instrument contains a high speed digital function generator, a fast data acquisition system, filters for current signals, iR compensation circuitry, a potentiostat, and a galvanostat (Model 1140B). The potential control range is 10 V.
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PXI-2540, 350 MHz, 8x9 PXI RF Matrix Switch Module
778572-40
350 MHz, 8x9 PXI RF Matrix Switch Module—The PXI‑2540 is an RF signal switching matrix. With its non-blocking design, you can simultaneously connect any row or column within the switching matrix and maximize the flexibility of your test system. Isolation relays on the module disconnect unused parts of the switching matrix to maintain RF performance and high isolation. The density and bandwidth of the PXI‑2540 is ideal for routing signals between digitizers, function generators, and other RF generators and analyzers.
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Function Generators
Analogue and Digital (DDS) function generators with frequency capability from 3MHz up to 50MHz. Single and dual channel models with a comprehensive range of modulations and other capabilities. Remote control models with variants of USB, RS232, GPIB and LAN interfaces.
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Hand-Held Testers
Qmax Test Technologies Pvt. Ltd.
multifunction test instrument comprise of Single Channel Oscilloscope, High precision Digital Multimeter, Function Generator, LCR Meter and Frequency measurement functions . The compact and hand held size with re-chargeable battery makes it your ideal companion for the ideal for on-field operation. Measuring and testing just became easier and more affordable than ever. The high pixel LCD High Density Back-Lit Graphical display with live auto measure functions makes this tool more valuable in test and repair industry.
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PXI Three Channel Function Generator
41-620-003
The 41-620 is a compact 3 channel function generator provided in a PXI 3U single slot module. It is capable of generating sine waves to 10MHz with 48-bit frequency resolution referenced to the 10MHz PXI clock or to an external standard. The 41-620 can generate arbitrary waveforms loaded into the internal 256k memory, allowing the function generator to emulate many waveform types, including the typical waveforms of automotive and aerospace sensors.
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Audio and Acoustic Functional Test Solution
With the growing popularity of Internet of Things devices worldwide, many electrical products are adopting voice commands as their user interface. This means that acoustic and audio test challenges are likely to impact more products than ever before. Test teams must meet extended test coverage requirements to ensure product quality while maintaining throughput and operational efficiency. For a solution to meet these sorts of demands, it must:
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NI's Electrical Functional Test Solution
PXI instrumentation ensures complete and accurate test coverage with a modular architecture mounted in ultra-reliable PXI chassis.TestStand and LabVIEW software provide rapid development of complex test steps and sequences. PXI systems conserve floorspace because of their small, light form factor. Order them preassembled and installed using NI ATE Core Configurations.SystemLink™ software deploys updates and democratizes data insights to optimize operational efficiency.
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3-Channel PXI Function Generator
41-620A-003
The 41-620A is a compact 3-channel function generator provided in a PXI 3U single-slot module and is fully backward compatible with our 41-620-003 module. It is capable of generating sine waves to 10MHz with 48-bit frequency resolution referenced to the 10MHz PXI clock or to an external standard. This module can generate arbitrary waveforms loaded into the internal 256k memory, allowing the function generator to emulate many waveform types, including the typical waveforms of automotive and aerospace sensors.
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Functional Test Fixtures
Forwessun’s Functional Test Fixtures are tailored to validate the performance of your electronic assemblies, ensuring each product meets critical quality and functional standards. With customisable designs and precision engineering, these fixtures support a range of testing needs—from checking connectivity and function to confirming performance under real-world conditions. Built to handle rigorous demands, Forwessun's solutions are ideal for industries requiring reliable and repeatable results. Whether for high-volume production or specialised testing, our fixtures provide robust, adaptable support to maintain efficiency and accuracy throughout the testing process. We also create, and work with Ingun to create fixtures using the Ingun kit.
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Electronics Functional Test
Functional test for productive manufacturing. Manufacturers of products enabled by electronics must assure proper operation prior to shipment. Bloomy’s line of universal test systems are ideal for functional test of your PCBAs and subassemblies, from the simplest to the most complex. The UTS family of products combines high-performance test instruments, switching, power control and mass-interconnect hardware with our robust UTS software suite into a low-risk, cost-effective and powerful test solution for your device under test (DUT).
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NI-5732, 80 MS/s, 14-Bit, 2-Channel Digitizer Adapter Module for FlexRIO
781658-02
The NI‑5732 is a digitizer adapter module that, when combined with a PXI FPGA Module or Controller for FlexRIO, creates a high-speed digitizer that simultaneously samples two channels at 80 MS/s. You can use the NI‑5732 to do real-time processing and streaming of analog data with high-performance A/D converters. The NI‑5732 also includes selectable elliptic, Bessel, and bypass hardware filters. The Digitizer Adapter Module for FlexRIO is ideal for applications that require in-line data processing, high data streaming rates, and deployed high-performance solutions.
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Multi-Channel 10-Bit Digitizer
ADQ8-8C
With compact modular form factors, 8 channels per board, and high-precision multi-board synchronization capabilities, ADQ8-8C is ideal for massive multi-channel implementations.
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Benchtop Automated Functional Test
midUTS
Combining bench-top portability with powerful automated test functionality, the midUTS is an extremely versatile yet cost-effective solution for your electronics functional test needs. Comprised of high-performance commercial-off-the-shelf (COTS) instruments, along with Bloomy’s medium-density signal-routing PCBAs, a built-in or USB-connected PC, and a pair of high-integrity, production-grade cables connected to an adjacent benchtop fixture, the midUTS can be used in engineering for PCBA bring up, as well as scaled to manufacturing to perform high-volume PCBA and sub-assembly functional testing. It is also ideal for depot diagnostic test, debug, and repair of field returns. The two mass-interconnected cables connect the midUTS to as many as 320 test points on the unit under test (UUT), supporting an extreme wide variety of products using bed-of-nails as well as cable-connected UUT test fixtures. Most importantly, the midUTS helps you automate sequences of functional tests using NI TestStand and the Bloomy EFT Module for TestStand. This ideal balance between powerful features and affordable cost allow you to automate earlier in the product development lifecycle, substantially increasing product quality and minimizing time-to-market!
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Functional Test
UTS
The UTS functional test system is perfect for electronics manufacturing operations that have a mix of products where operators load and unload devices under test (DUT) and routinely change out fixtures for each type of DUT.
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12-Bit, 2.5 GSPS Digitizer Optimized for Pulse Detection
ADQ32-PDRX
ADQ32-PDRX acquires the input signal via a single connector and uses an onboard splitter to separate the signal into two paths with different gain settings. The high gain path is used to accurately capture low-amplitude portions of the input signal whereas the low gain path ensures the acquisition of high-amplitude peaks without causing saturation. The two signal paths are then combined in real-time inside the onboard field-programmable gate array (FPGA) to create a digitized output with improved performance.PDRX increases the dynamic range by 3 bits and is fully integrated into the digitizer for fast and easy system-level integration. ADQ32-PDRX is therefore comparable with a 16-bit digitizer in terms of dynamic range, but with the benefit of offering a higher sampling rate.
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NI-5752B, 50 MS/s, 12-Bit, 32-Channel, Kintex-7 FPGA Support, Digitizer Adapter Module for FlexRIO
784062-01
The NI‑5752B is a digitizer adapter module that, when combined with a PXI FPGA Module for FlexRIO, creates a high-speed digitizer that simultaneously samples 32 channels at 50 MS/s. You can use the NI‑5752 to do real-time processing and streaming of analog data with high-performance A/D converters. The Digitizer Adapter Module for FlexRIO is ideal for applications that require in-line data processing, high data streaming rates, and deployed high-performance solutions. The NI‑5752B is compatible only with PXI FPGA Modules for FlexRIO that have Kintex‑7 FPGAs.
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Dual-Channel 12-Bit, 1 GSPS Digitizer
ADQ33
ADQ33 offers a two channel configuration with 1 GSPS sampling rate. The programmable DC-offset makes it ideal for sampling unipolar signals.
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High-Speed A/D 8-Bit Digitizers
GaGe 8-bit resolution digitizer models divide the input voltage range into 256 different digitization levels with sampling rates at up to 4 GigaSamples per second on 1 channel or 2 GigaSamples per second on 2 channels with input bandwidths of up to 1.5 GHz, deep onboard sample memory up to 16 GS (16 GB), and true ENOBs of up to 7.6 bits.
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NI-5771, 3 GS/s, 8-Bit, 900 MHz Bandwidth, 2-Channel Digitizer Adapter Module for FlexRIO
781419-02
The NI‑5771 is a digitizer adapter module that, when combined with a PXI FPGA Module or Controller for FlexRIO, creates a high-speed digitizer that can simultaneously sample two channels at 1.5 GS/s or sample one channel at 3 GS/s with 900 MHz of analog bandwidth. You can use the NI‑5771 to do real-time processing and streaming of analog data with high-performance A/D converters. The Digitizer Adapter Module for FlexRIO is ideal for applications that require in-line data processing, high data streaming rates, and deployed high-performance solutions.
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Ethernet/LXI digitizerNETBOX 16 Bit Multi-purpose Digitizer - 20 MS/s on 16 Channels, 16 Single-Ended Inputs
DN2.592-16
The digitizerNETBOX DN2.59x series allows recording of one, two, four, eight or 16 synchronous channels with sampling rates of 20 MS/s up to 125 MS/s. These products offer outstanding A/D features both in resolution and speed as a remote instrument. The powerful A/D amplifier section offers 6 different input ranges, programmable offset and a software switching from single-ended (full number of input channels) to true differential (half number of input channels).
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PCIe 8 Bit High Speed Digitizer - 2.5 GS/s on 1 Channel, 1.5 GHz Bandwidth
M4I.2220-X8
The 9 models of the M4i.22xx-x8 Express series are designed for the high speed data acquisition. Each of the input channels has its own A/D converter and its own programmable input amplifier. This allows the recording of signals simultaneously on all channels without any phase delay between them. The extremely large on-board memory allows long time recording even with the highest sampling rates.
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Optimize Throughput And Cost For MmWave 5G Device Functional Test
Test engineers always have faced tough new test-coverage challenges. Those introduced by 5G measurements at mmWave are no exception, as they require over-the-air (OTA) radiated test solutions. But never have these pressures seen today’s intense time-to-market, manufacturing volume, and operational expectations! A solution that meets these demands must:
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4CH 16-Bit 80 MS/s PXI Express Digitizer
PXIe-9834
The ADLINK PXIe-9834 PXI Express digitizer provides high speed, high quality data acquisition with four input channels supporting up to 80MS/s sampling and 16-bit data resolution. This allows simultaneous recording of signals on all channels with no interchannel phase delay.The PXIe-9834 features external digital trigger input and triggers from the PXIe system timing slot and reference clock from the PXIe chassis, making it easy to achieve high simultaneous channel count recording of 8, 12, 16 and 20 channels. The PXIe-9834 is also equipped with 1GB of onboard memory for data buffering before transferring back to system memory. The PCI Express x4 Gen1 data bus is has enough bandwidth for direct streaming of ADC data back to system, if necessary.
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PCIe Razor Express 16-Bit Digitizer
The GaGe Razor Express16XX CompuScope PCIe digitizer board features 16-bit resolution with sampling rates up to 200 MS/s with true Effective Number of Bits (ENOB) of 11.7-bits with 10 MHz input.
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Multi-Channel, 14-Bit Digitizer
ADQ14
ADQ14 is a 14-bit digitizer family with 1, 2, or 4 channels and 0.5, 1, or 2 GSPS sampling rate. It is also available with either AC or DC coupling (ADQ14AC and ADQ14DC) and comes in six different form factors. This simplifies integration and enables cost-efficient system-level design.