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Showing results: 106 - 120 of 188 items found.

  • LXI Dual 75x4 2-Pole HV Matrix

    60-311-002 - Pickering Interfaces Ltd.

    The 60-311 is a 2-pole Matrix Module available with one, two or three separate 75x4 matrices housed in the same case. It is capable of cold switching 750VDC continuous with a carry current of 2A plus higher pulse conditions e.g. typically 1000VDC for 1s with low duty cycle or 6A for 200us with <1% Duty Cycle.

  • LXI Triple 75x4 2-Pole HV Matrix

    60-311-003 - Pickering Interfaces Ltd.

    The 60-311 is a 2-pole Matrix Module available with one, two or three separate 75x4 matrices housed in the same case. It is capable of cold switching 750VDC continuous with a carry current of 2A plus higher pulse conditions e.g. typically 1000VDC for 1s with low duty cycle or 6A for 200us with <1% Duty Cycle.

  • Precision Picoprobe™ Micropositioner Probe Holder Kit

    PHD-3001A - High Power Pulse Instruments GmbH

    *Pulse force and pulse sense fixed pitch and flexible pitch RF probing solution for TLP/VF-TLP/HMM on-wafer measurements using Picoprobe™ Model 10*High peak current capability 80 A (100 ns)*DC – typ. 7 GHz bandwidth*Isolated probe-head ground shield for high pulse sense common mode signal rejection*Including fixed pitch replacement probe tip 50 Ω, right, 100 µm pad pitch*Including fixed pitch replacement probe tip 5 kΩ, left, 100 µm pad pitch*Including flexible pitch clamps plus 10-5k(0502)-125-W-1 and 10-50/30-125-W-1 replacement probe tips*True coaxial high-resolution 80:1 rotary probe-head for accurate probe tip adjustment

  • 3 1/2 Digital Process Meter

    CSN Series - Chuan Sheng Electronics Co., Ltd.

    CSN Series 3 1/2 Digital Process Meter is a simple type of economic Panel Meter, and its large LED display with 20.0mm and anti-jamming design, quality, reliable, easy to install.Full range can be specified DC voltage / current, thermal resistance , load cell, potentiometer , Resistance and pulse signals such as the general measurement requirements.

  • Device Current Waveform Analyzers

    Keysight Technologies

    The dedicated Current Sensors measure from 100 pA level dynamic current up to 10 A with a maximum of 200 MHz bandwidth. The mainframe acquires the signal from the sensors by a maximum of 1 GSa/s sampling speed and 14-bit and 16-bit wide dynamic range. This combination allows you to measure quite wide range of dynamic current, for example, from standby/sleep state to active state, at a single measurement. In addition, the wide bandwidth and the high speed acquisition enable you to measure high speed pulse response even less than 100 ns previously very difficult with existing instruments.

  • Power Bead Inductors

    Pulse Electronics

    Power bead inductors are typically used in high current multi-phase voltage regulators that power processors, memory modules and high current ASICs and FPGA in a wide range of applications including servers, graphics cards, storage and data centers.   The construction consists of a ferrite core assembled over a 1T or 2T winding and which allows for extremely low DCR, high peak current and low AC losses.   Pulse has single phase, integrated phases and coupled inductor versions.  Our high volume manufacturing enables us to produce components that are cost-effective while maintain exceptional quality and reliability.

  • TMR Current Sensors

    MultiDimension Technology Co.,Ltd.

    An open-close current transducer, high sensitivity and signal-to-noise ratio TMR chips are used in the design, which based on Tunneling magneto resistance effect. The transducer has a built-in temperature compensation and nonlinear compensation circuit, which can accurately measure DC, AC and pulse current. The transducer has many benefits ,such as high precision, wide bandwidth, low power consumption, excellent isolation performance and so on. Besides, the design of open-close structure makes it easier to install and unload.

  • Diode Driver & Laser System Controllers

    Quantum Composers

    The laser controllers provide a simple method of controlling Lumina and other popular laser diode drivers or full laser systems. They include the ability to easily control current levels, pulse modes, and interlock controls as well as monitor voltage and current levels as well as q-switch triggering, external triggering, sync output, and additional I/O signals.

  • Documenting Multifunction Calibrator

    DMC-1400 - Martel Calibrators

    The DMC-1400 Calibrator fully documents any calibration easily while performing the normal job. No special software is required! It features the ability to test for pass/fail criteria, measure and simulate thermocouples, RTDs, current, voltage, and frequency, and source pulse trains. PLCs, full fuseless protection, and a serial communications port for full control with ASCII commands.

  • Primary Cable Fault Locating

    Directional Impulse Detector - Timco Instruments, LLC

    The Directional Impulse Detector ( D.I.D.) is a compact handheld detector used to locate primary cable faults by sensing the magnetic field generated by the current pulse from a high voltage discharge device (thumper). A meter deflection indicates the intensity of the received signal. No deflection indicates that you have walked beyond the fault or away from the cable.

  • PXIe Short SMU

    52403P - Chroma ATE Inc.

    Chroma's 52403P is a PXI Express Short Pulse SMU (Source/Measure Unit) designed for fast, precise and reliable sourcing and measurement of thermo-sensitive devices such as high-power laser diodes (LD). Integrating a high-speed pulser, a high precision SMU and a DAQ module into a single PXIe SMU, the 52403P can measure both the LIV and the low-level leakage current of a high-power LDs.

  • Magnetizer

    345B - Oersted Technology

    The Model 300-series magnetizers are designed to handle a variety of magnetizing applications and materials, from small Alnico parts to large blocks of neodymium-iron. Each of these magnetizers feature patented ECS (Electronic Capacitance Switching) technology, which allows the user to change the capacitance of the unit through the front panel. By setting the charging voltage and capacitance of the magnetizer properly, the user can then scale the output energy of the unit to match the magnetizing fixture being used. The 300-series magnetizers also includes a peak current meter, which automatically captures the peak current of the magnetizing pulse once it occurs. A safety circuit internally discharges the capacitor banks if mains power is removed from the magnetizer or if the cabinet is opened during operation. When connected to a suitable magnetizing fixture, the magnetizer is able to disable its front panel controls if the fixture overheats. Other features include a lockout keyswitch and a current sense output jack (this connects to an oscilliscope for viewing of the magnetizing pulse). All 300-series magnetizers can be modified for computer control, photocell trigger, or autocharge operation.

  • Magnetizer

    330B - Oersted Technology

    The Model 300-series magnetizers are designed to handle a variety of magnetizing applications and materials, from small Alnico parts to large blocks of neodymium-iron. Each of these magnetizers feature patented ECS (Electronic Capacitance Switching) technology, which allows the user to change the capacitance of the unit through the front panel. By setting the charging voltage and capacitance of the magnetizer properly, the user can then scale the output energy of the unit to match the magnetizing fixture being used. The 300-series magnetizers also includes a peak current meter, which automatically captures the peak current of the magnetizing pulse once it occurs. A safety circuit internally discharges the capacitor banks if mains power is removed from the magnetizer or if the cabinet is opened during operation. When connected to a suitable magnetizing fixture, the magnetizer is able to disable its front panel controls if the fixture overheats. Other features include a lockout keyswitch and a current sense output jack (this connects to an oscilliscope for viewing of the magnetizing pulse). All 300-series magnetizers can be modified for computer control, photocell trigger, or autocharge operation.

  • Magnetizer

    350B - Oersted Technology

    The Model 300-series magnetizers are designed to handle a variety of magnetizing applications and materials, from small Alnico parts to large blocks of neodymium-iron. Each of these magnetizers feature patented ECS (Electronic Capacitance Switching) technology, which allows the user to change the capacitance of the unit through the front panel. By setting the charging voltage and capacitance of the magnetizer properly, the user can then scale the output energy of the unit to match the magnetizing fixture being used. The 300-series magnetizers also includes a peak current meter, which automatically captures the peak current of the magnetizing pulse once it occurs. A safety circuit internally discharges the capacitor banks if mains power is removed from the magnetizer or if the cabinet is opened during operation. When connected to a suitable magnetizing fixture, the magnetizer is able to disable its front panel controls if the fixture overheats. Other features include a lockout keyswitch and a current sense output jack (this connects to an oscilliscope for viewing of the magnetizing pulse). All 300-series magnetizers can be modified for computer control, photocell trigger, or autocharge operation.

  • Magnetizer

    340B - Oersted Technology

    The Model 300-series magnetizers are designed to handle a variety of magnetizing applications and materials, from small Alnico parts to large blocks of neodymium-iron. Each of these magnetizers feature patented ECS (Electronic Capacitance Switching) technology, which allows the user to change the capacitance of the unit through the front panel. By setting the charging voltage and capacitance of the magnetizer properly, the user can then scale the output energy of the unit to match the magnetizing fixture being used. The 300-series magnetizers also includes a peak current meter, which automatically captures the peak current of the magnetizing pulse once it occurs. A safety circuit internally discharges the capacitor banks if mains power is removed from the magnetizer or if the cabinet is opened during operation. When connected to a suitable magnetizing fixture, the magnetizer is able to disable its front panel controls if the fixture overheats. Other features include a lockout keyswitch and a current sense output jack (this connects to an oscilliscope for viewing of the magnetizing pulse). All 300-series magnetizers can be modified for computer control, photocell trigger, or autocharge operation.

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