Showing results: 2206 - 2220 of 5324 items found.
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42-139A-101 -
Pickering Interfaces Ltd.
The 40-139A-101 (PXI) and 42-139A-101 (PXIe) are 80xSPST relay modules suitable for high density switching applications with medium power and feature 2 A current capacity with voltage rating to 300 VDC/250 VAC
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40-139A-101 -
Pickering Interfaces Ltd.
The 40-139A-101 (PXI) and 42-139A-101 (PXIe) are 80xSPST relay modules suitable for high density switching applications with medium power and feature 2 A current capacity with voltage rating to 300 VDC/250 VAC
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40-139A-202 -
Pickering Interfaces Ltd.
The 40-139A-202 (PXI) and 42-139A-202 (PXIe) are 26xDPDT relay modules suitable for high density switching applications with medium power and feature 2 A current capacity with voltage rating to 300 VDC/250 VAC
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42-139A-102 -
Pickering Interfaces Ltd.
The 40-139A-102 (PXI) and 42-139A-102 (PXIe) are 40xDPST relay modules suitable for high density switching applications with medium power and feature 2 A current capacity with voltage rating to 300 VDC/250 VAC
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40-139A-102 -
Pickering Interfaces Ltd.
The 40-139A-102 (PXI) and 42-139A-102 (PXIe) are 40xDPST relay modules suitable for high density switching applications with medium power and feature 2 A current capacity with voltage rating to 300 VDC/250 VAC
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42-139A-202 -
Pickering Interfaces Ltd.
The 40-139A-202 (PXI) and 42-139A-202 (PXIe) are 26xDPDT relay modules suitable for high density switching applications with medium power and feature 2 A current capacity with voltage rating to 300 VDC/250 VAC
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42-139A-201 -
Pickering Interfaces Ltd.
The 40-139A-201 (PXI) and 42-139A-201 (PXIe) are 52xSPDT relay modules suitable for high density switching applications with medium power and feature 2 A current capacity with voltage rating to 300 VDC/250 VAC
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Tokyo Seimitsu Co., Ltd.
The automated testing equipment automatically performs charge and discharge of energy devices such as the rechargeable batteries(cells, modules, packs) that are installed in PHV/ EV and mobile devices, while measuring the voltage, current, temperature, and impedance.
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Raveon Technologies Corp.
Raveons new Daisy radios are our smallest solution yet, for all your large scale operations. This new radio is perfect for tracking any number of items over as many locations as you can imagine, making it perfect for you to connect to the internet of things. The Daisy radio is our smallest model yet, making it perfect for daisy chaining your system together across any and all locations. It also integrates flawlessly with your current Raveon M7, or M8 systems, so using it to improve your current solutions or expand operations is quick and easy.
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Osborne Transformer Corp.
Osborne DC filter inductors (aka filter chokes) are commonly used in AC to DC conversion circuits to present an inductive voltage drop to the AC component of rectified current. This inductive voltage drop acts as a filter. Osborne designs filter inductors to components to function effectively (without saturation) in the presence of the DC current. Osborne will work with you to mitigate the impact of ripple frequency in conversion circuits. Every Osborne DC filter choke is designed for high performance with special consideration given to your circuit´s power supply frequency and conversion configuration.
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LS2010 -
Lisun Electronics Inc.
• Measure Vrms, lrms, W, PF, Hz; • Harmonic distortion analysis for voltage & current, display total harmonic and 0-50 times; • Component harmonic, selectable for absolutely or relatively harmonic display; • Voltage range: 10.0-600.0V, Current range: 0.010-20.00A, Auto range; • Accuracy: ± (0.4%reading + 0.1%range + 1digit); • Simultaneously display Vrms, lrms, W, PF value on 4 windows, suitable for production line; • Can test every kinds of curve; Print both data & curve; • Communication port for PC, run under WinXP or Win7.
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Pulse Electronics
Drum core inductors are so named as the conductor (round magnet wire) is wound directly onto the ferrite core which is shaped like a drum or spool. The wire is then connected to the core, a plastic base or metal lead frame to form the surface mount termination. Drum core inductors come in unshielded (high saturation current but potentially more EMI) and shielded constructions (lower saturation current but closed magnetic path for lower EMI). The shielded constructions use either a second ferrite core or a magnetic resin epoxy to create the magnetic shield.
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GPSL10 -
INSTOCK Wireless Components, Inc
GPSL10 is a two way, passive, GPS signal splitter ideal for splitting a GPS antenna signal between two receivers while providing a DC current path to power a remotely located active GPS antenna from one receiver while blocking the DC path from the other. Max voltage rating is 50 VDC; maximum current rating is 1000 mA. Furnished with SMA female connectors all ports. Being a "micro-sized" splitter, GPSL10 weighs only 21 grams and is suitable for applications requiring low-weight parts.
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iCE40 UltraPlus -
Lattice Semiconductor
*Flexible logic architecture with 2800 or 5280 4 input LUTs, customizable I/O, up to 80 kbits of embedded dual port memory and 1 Mbit of embedded single port memory*Ultra-low power advanced process with static current as low as 75 uA and 1-10 mA active current for most applications*High performance signal processing using DSP blocks with multiply and accumulate functions*Soft Neural Network IPs and compiler for flexible Machine Learning/AI implementation*FPGA design tools, demos and reference designs to kick start designs
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Electrochemistry Tests -
Materials Development Corporation
CyclicVoltammetry and Galvanostatic Charging are tests used throughout the industrial and scientific communities to study chemical reactions and behavior of electronic structures. They are extremely helpful in the monitoring of nano based dielectrics, used in super /ultra capacitors or self-assembled monolayers (SAMs). The Cyclic Voltammetry test applies a ramping voltage to a device and measures the resulting current. In acapacitor-like structure the current reveals loss in the dielectric as well as degradation over time. CyclicVoltammetry is used to characterize the performance of supercapacitors and ultracapacitors formed using various nano-technologies. It is also useful in the studies of self-assembled monolayers used for sensors.