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High Voltage

electric power transmission is > 35,000 volts and for safety AC > 1000 and DC > 1,500. AKA: HV

See Also: High Voltage Switching, High Voltage Meters, High Voltage Detectors, High Voltage Programmable Power Supplies, HV


Showing results: 1771 - 1785 of 2454 items found.

  • NI-9263, 100 kS/s/ch Simultaneous, ±10 V, 4-Channel C Series Voltage Output Module

    779012-01 - NI

    100 kS/s/ch Simultaneous, ±10 V, 4-Channel C Series Voltage Output Module - The NI‑9263 is a simultaneously updating analog output module. It features overvoltage protection, short-circuit protection, low crosstalk, fast slew rate, high relative accuracy, and NIST‑traceable calibration. The NI‑9263 module includes a channel‑to‑earth ground double isolation barrier for safety and noise immunity.

  • Transformer Ratio Meters

    Handheld Turns Ratio & Winding Resistance Tester TWR-H - Amperis sl

    TWR-H is a handheld, battery operated, fully automatic test set specially designed for turns ratio, phase shift, excitation current and winding resistance measurements of transformers. It can also perform demagnetization of these transformers. Transformer turns ratio is determined by applying AC voltage across high voltage winding, accurately measuring AC voltage across the corresponding unloaded transformer winding, and then displaying the ratio of these voltages. User can enter a transformer’s nameplate voltages, so that turns ratio deviation can be calculated. This feature eliminates any error otherwise caused by an operator’s manual calculation. TWR-H compares measured turns ratio with the nameplate ratio and prints out the % of error for each test. Transformer winding resistance is determined by injecting DC current through a winding, accurately measuring DC voltage across the winding, and then calculating resistance as the ratio of voltage and current. The device generates true DC ripple-free currents. Both the injection of the current and the discharge of energy from transformer magnetic circuit are automatically regulated.

  • Automatic Crossover, 1U High, 2400-Watt Voltage/Current Stabilizers

    Series KLR - Kepco, Inc.

    The KLR Power Supply Series are automatic crossover, 1U high, 2400-watt voltage/current stabilizers with a full rectangular output characteristic within the voltage and current ranges listed in the Models Table.For each model a multitude of limit models can be configured. Limit models allow the unit to be configured to maximum settings below the rated voltage and/or rated current. When a limit model is established the unit will not accept programming values above the user-defined limits.The standard KLR Models (no suffix) have built-in GPIB and RS 232 interfaces. The E-Series models (suffix E) have built-in GPIB and LAN interfaces. The LAN interface is an ethernet-based interface that allows multiple-user access via a standard web browser.

  • Multichannel Voltage Output D/A Converters

    Analog Devices Inc.

    Analog Devices offers an industry-leading family of multichannel voltage output D/A converters (DACs), covering 8-bit to 16-bit resolutions, from 2-channel up to 40-channel density, and serial SPI or I2C interfaces. This family of precision D/A converters are in demand for applications that require high channel density and a small form factor, such as optical communications, analog output modules, or LED displays. ADI’s multichannel voltage output D/A converters provide features such as the availability of multiple independent output spans, system calibration functions that allow user-programmable offset and gain, or D/A converter increment/decrement functionality, which reduces the need to add external precision gain stages and facilitates the use of this family of D/A converters.

  • 0 Hz/DC to 14 GHz, Single-Pole, Four-Throw MEMS Switch With Integrated Driver

    ADGM1304 - Analog Devices Inc.

    The ADGM1304 is a wideband, single-pole, four-throw (SP4T) switch, fabricated using Analog Devices, Inc., microelectro-mechanical system (MEMS) switch technology. This technology enables a small, wide bandwidth, highly linear, low insertion loss switch that is operational down to 0 Hz/dc, making it an ideal switching solution for a wide range of RF applications. An integrated control chip generates the high voltage necessary to electrostatically actuate the switch via a complementary metal-oxide semiconductor (CMOS)-/low voltage transistor-transistor logic (LVTTL)-compatible parallel interface. All four switches are independently controllable. The ADGM1304 is packaged in a 24-lead, 5 mm × 4 mm × 0.95 mm lead frame chip-scale package (LFCSP).

  • NI-9205, ±10 V, 250 kS/s, 16-Bit, 32-Channel C Series Voltage Input Module

    779357-01 - NI

    ±10 V, 250 kS/s, 16-Bit, 32-Channel C Series Voltage Input Module - The NI‑9205 performs single-ended or differential analog inputs, with four programmable input ranges for each. It is an effective combination of channel count and speed at a low price for an economical multifunction system. You can choose from four programmable input ranges. To protect against signal transients, the NI‑9205 includes up to 60 V of overvoltage protection between input channels and common. In addition, the NI‑9205 also includes a channel-to-earth ground double isolation barrier for safety, noise immunity, and high common-mode voltage range. It is rated for 1,000 Vrms transient overvoltage protection.

  • NI-9205, ±10 V, 250 kS/s, 16-Bit, 32-Channel C Series Voltage Input Module

    780173-01 - NI

    ±10 V, 250 kS/s, 16-Bit, 32-Channel C Series Voltage Input Module - The NI‑9205 performs single-ended or differential analog inputs, with four programmable input ranges for each. It is an effective combination of channel count and speed at a low price for an economical multifunction system. You can choose from four programmable input ranges. To protect against signal transients, the NI‑9205 includes up to 60 V of overvoltage protection between input channels and common. In addition, the NI‑9205 also includes a channel-to-earth ground double isolation barrier for safety, noise immunity, and high common-mode voltage range. It is rated for 1,000 Vrms transient overvoltage protection.

  • NI-9205, ±10 V, 250 kS/s, 16-Bit, 32-Channel C Series Voltage Input Module

    785184-01 - NI

    ±10 V, 250 kS/s, 16-Bit, 32-Channel C Series Voltage Input Module - The NI‑9205 performs single-ended or differential analog inputs, with four programmable input ranges for each. It is an effective combination of channel count and speed at a low price for an economical multifunction system. You can choose from four programmable input ranges. To protect against signal transients, the NI‑9205 includes up to 60 V of overvoltage protection between input channels and common. In addition, the NI‑9205 also includes a channel-to-earth ground double isolation barrier for safety, noise immunity, and high common-mode voltage range. It is rated for 1,000 Vrms transient overvoltage protection.

  • 16-Bit Multi-Function With A/D, D/A And Digital I/O Channels CPCI Cards

    GX3232 Series - Marvin Test Solutions, Inc.

    The GX3232 is a multi-channel 16-bit, analog input and output cPCI module, supporting 32 single-ended or 16 differential input channels and four analog output channels. The inputs can be software configured for differential or single-end operation and are sequentially scanned with a maximum aggregate scan rate of 300 kS/s. Three input ranges are software-selectable: ±10 V, ±5 V or ±2.5 V. Optionally, the GX3232 is available with a high voltage input configuration and supports three ranges: ±60 V, ±30 V and ±15 V. The high voltage configuration supports 16 single-ended or 8 differential input channels for high voltage and 16 single-ended or 8 differential inputs for low voltage measurement. Four analog output channels provide software-selectable output ranges of ±2.5 V, ±5 V or ±10 V. The outputs can be updated either synchronously or asynchronously and support waveform generation. Each output can be clocked at rates up to 300 kS/s. A 16-bit digital I/O port is also provided, which supports 16 bidirectional data lines. Note that when used with a TS-700 system only 8 of these digital I/O lines are available at the test system's receiver interface.

  • Analogue (1kV below) Insulation Tester

    8052 IN - Standard Electric Works Co., Ltd

    ● High quality Taut Band movement.● Three insulation test voltages(DC) : 250V, 500V, 1000V.● Two continuity test on “low ohms” : 3Ω & 500Ω.● AC voltmeter with linear scale up to 600 Vac.● 200mA short circuit current for continuity.● 1mA test current on insulation test at nominal voltage.● Automatic discharge of capacitive and inductive circuit with charge stored in the circuit under test.● Live warning and display of external voltage presence.● Fuse, air gap, crowbar and overload protected.● On line battery monitoring shows if battery is ok.● Manual zero ohm adjustment.● Low battery consumption.● Mirror scale.● Push and turn locking switch for continuous and hand free testing.● Supplied with high quality test leads.

  • Analogue (1kV below) Insulation Tester

    1652 IN - Standard Electric Works Co., Ltd

    ● High quality Taut Band movement.● Three insulation test voltages(DC) : 250V, 500V, 1000V.● Two continuity test on “low ohms” : 3Ω & 500Ω.● AC voltmeter with linear scale up to 600 Vac.● 200mA short circuit current for continuity.● 1mA test current on insulation test at nominal voltage.● Automatic discharge of capacitive and inductive circuit with charge stored in the circuit under test.● Live warning and display of external voltage presence.● Fuse, air gap, crowbar and overload protected.● On line battery monitoring shows if battery is ok.● Manual zero ohm adjustment.● Low battery consumption.● Mirror scale.● Push and turn locking switch for continuous and hand free testing.● Supplied with high quality test leads.● BS 16 edition.

  • Analogue (1kV below) Insulation Tester

    8031 IN - Standard Electric Works Co., Ltd

    ● High quality Taut Band movement.● Three insulation test voltages(DC) : 250V, 500V, 1000V.● Two continuity test on “low ohms” : 2Ω & 20Ω.● AC voltmeter with linear scale up to 600 Vac.● 200mA short circuit current for continuity.● 1mA test current on insulation test at nominal voltage.● Automatic discharge of capacitive and inductive circuit with charge stored in the circuit under test.● Live warning and display of external voltage presence.● Fuse, air gap, crowbar and overload protected.● On line battery monitoring shows if battery is ok.● Manual zero ohm adjustment.● Low battery consumption.● Mirror scale.● Push and turn locking switch for continuous and hand free testing.● Supplied with high quality test leads.● BS 16 edition.

  • DWV/IR Test Systems

    Applied Relay Testing Ltd.

    When used in conjunction with ART's own parametric relay test systems such as the RT290, the RT900 offers high speed AC and DC Hipot (dielectric withstand voltage) and Leakage testing of relays or other multi-pin passive devices.

  • Electrolytic Capacitor Test & Scanning System

    DU-9001 - Delta United Instrument Co., Ltd.

    The 10 capacitor - LCC/DZ/R in order to automatically scan test improve the test reliability and test efficiencyEach test channel can be opened / short circuit return to zero with high precision.Wide range scan box can be used to test 3mm~35mm 10 capacitorsSuitable for high voltage capacitance test, 450V330uF 10 capacitors can be smooth test

  • ÷10, 500 MHz, 10 MΩ, Passive Probe (Total of 1 Per Channel)

    PP008-1 - Teledyne LeCroy

    Passive probes are the standard probe provided with most oscilloscopes. Typical passive probes provide a 10:1 attenuation and feature a high input resistance of 10 MΩ. This high input resistance means that passive probes are the ideal tool for low frequency signals since circuit loading at these frequencies is minimized. Passive probes are designed to handle voltages of at least 400V, some as high as 600V. Teledyne LeCroy passive probes feature an attenuation sense pin which tells the oscilloscope to scale the waveforms automatically requiring no user input.Each passive probe is recommended for a certain oscilloscope, using the right passive probe with the right oscilloscope means that the probe will be properly compensated across the entire bandwidth. Using probes with a different oscilloscope will only let you compensate for low frequencies.

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