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Showing results: 226 - 238 of 238 items found.

  • Bit Error Test & Arbitrary Waveform Generation

    SHF Communication Technologies AG

    SHF’s Bit Pattern Generators (BPG) or Pulse Pattern Generators (PPG), Error Analyzers (EA) and remote heads form a Bit Error Ratio Tester (BERT) suite, which supports a vast number of different applications including high speed Ethernet rates like 100GbE, 200GbE, 400GbE and 1TbE. When it comes to signal generation an Arbitrary Waveform Generator (AWG) is the all-in-one device suitable for every purpose in Telecommunication, Optics, Medicine, Radar, Physics or even Quantum Computing.

  • Arbitrary Waveform Generator

    SDG7000A - SIGLENT Technologies

    SIGLENT’s SDG7000A is a family of dual-channel Arbitrary Waveform Generators that feature up to 1 GHz bandwidth, a maximum sample rate of 5 GSa/s, and 14-bit vertical resolution. It can generate arbitrary waveforms point by point with a maximum 2.5 GSa/s sample rate and vector signals with a maximum of 500 MSa/s. It also has the ability to generate a variety of signals such as continuous wave, Pulse, Noise, PRBS patterns, and a 16-bit digital bus. It supports the generation of complex signals such as modulation, sweeping, bursting, and dual-channel copying/coupling/tracking and superposition. The outputs are user selectable for differential or single-ended connections and support a maximum output range of ± 24 V. The instrument can ensure a large amplitude under high-frequency which eliminates an external power amplifier in some applications and addresses a wider range of requirements.

  • Pulsed IV-Curve Solutions

    ESDEMC Technology LLC

    Pulsed IV-Curve Test and Analysis System is our new development for 2015. It is an advanced and compact pulsed IV-curve characterization system designed to simulate pulsed ESD events such as TLP, vf-TLP, HMM, HBM, EFT, and LV-Surge. It will monitor the transient voltage and current waveform during the pulse in ps or ns segment, and test the pre- and post-pulse status (leakage current, breakdown voltage, biasing current, static IV curve, etc) of the device under test (DUT), such as protection devices, semiconductors, circuit modules, touch panel sensor, etc.

  • ±6 kV ANSI/ESDA/JEDEC HBM Test System

    HBM-TS10-A - High Power Pulse Instruments GmbH

    *±6 kV Human-Body-Model (HBM) tester according ANSI/ESDA/JEDEC JS-001 standard with C = 100 pF, R = 1.5 kΩ discharge network*Wafer, package and system level HBM testing*True HBM: the classical discharge network of the HBM-S1-A according the standard ensures compliant waveforms for all load conditions*No trailing pulses*Integrated 10 kΩ charge removal resistor*Integrated DUT HBM current sensor for real time transient current monitoring with 1V/A output sensitivity into 50 Ω digital oscilloscope input*Integrated DUT HBM voltage sensor for real time transient voltage monitoring with 1/200V/V output sensitivity into 50 Ω digital oscilloscope input*Integrated overvoltage protection of the DUT voltage sensor, DUTcurrentsensor and DC test interface for efficient overload protection of the digital oscilloscope and SMU during high voltage HBM testing*Integrated DC test DUT switch with automatic switch control*Integrated 50 Ω precision hardware trigger output for high speed digital oscilloscopes*Fast HBM measurements, typically 0.5s per pulse including one-point DC measurement between pulses*Eficient sofware for system control and waveform data management (fully compatible with TLP measurement data)*The sofware can control automatic probers for fast measurements of complete wafers*Compact size 145 mm x 82.5 mm x 44 mm of the integrated HBM pulse generator probehead*System controller size 483 mm x 487 mm x 133 mm*High performance and high quality components*Optionally available hardware upgrades to all HPPI fully integrated HBM/HMM/TLP/VF-TLP test systems TLP-3010C, 4010C, 8010A, and 8010C

  • HBM Verification Tester

    HBM-VT - High Power Pulse Instruments GmbH

    - HBM pulse generator verification tester according ANSI/ESDA/JEDEC JS-001 up to ±10kV- To be used in HBM test and qualification labs for regular pulse generator specification compliance test in order to fulfill lab audit and certification requirements- Fully automatic compliance test and verification of HBM pulse generators regarding ANSI/ESDA/JEDEC JS-001 normative standard at 3 different load conditions: Short Circuit, 500 Ω, and a reference diode at VBR=15 V reverse breakdown voltage, including DC test- Parameter evaluation and verification of the transient HBM current waveforms: Peak Current, Rise Time, Decay Time, Maximum Ringing Current- Optionally available upgrade for all HPPI TLP-3010C, 4010C, 8010A, 8010C, HBM-TS10-A hardware systems in combination with HBM-S1-B (6kV) pulse generators (upgrade on request)- Fully automatic test report generation (PDF)- Electrically floating (no fixed system ground): The HBM loads, current sensor output, USB control interface and the enclosure are electrically floating. There is no limiting system ground which may introduce common-mode interference induced HBM current measurement errors.- Isolated industrial full-speed USB control interface- Isolated power supply derived from USB port- Compact size 126mm x 82.5mm x 44.5mm

  • Multi-Channel Vector Signal Generators

    875 - Berkeley Nucleonics Corporation

    The Model 875 is an ultra-fast-switching vector-modulated signal source covering a continuous frequency range from 10 MHz to 40 GHz. The Model 875 offers switching speeds as fast as to 200ns, enables ultrafast CW frequency sweeps, chirping, intra-pulse modulation and pulse shaping, all with very low phase noise. A high-performance internal I/Q modulator enables customized modulation waveforms and supports dedicated modulation schemes such as avionics modulations. This newly engineered design couples extremely deep memory and wideband capabilities - making complex modulation affordable and easy to program.

  • Function Generators

    C&C Instruments Co.

    Waveform : Sine, Triangle, Square, Pulse, Sawtooth, Ramp 0.2Hz-150MHz EXT Frequency Counter(Option : 1:6 GHz or 2.7GHz) Self made insert ASIC Function : Total, RPM, Period, LPF, COUPL(AC/DC), ATT(X10) Fast,High-Resolution, 8Digits LED display Internal or External AM,FM Modulation Internal or External Burst and Linear Sweep Countrol from 1 : 1 to 100:1 TTL/CMOS Leveled Square Wave Output Maximum Attenuation of 20 dB cna be obtained Output impedance : 50 INPUT SENSITMTYKHz Range : 100mVms, MHz Range : 300mVms SWEEP WIDTH : Variable from 1:1 -100:1 RATE : 0.5Hz - 50Hz(20ms-2s) INTERNAL : Linear Bilt-in 5digits Green LED display

  • Software

    Guzik Technical Enterprises

    Besides the primary WITE32 Test Environment package at the heart of our spinstand-based test systems, Guzik offers a variety of software options to provide additional measurement accuracy and analysis. Control and Automation software enhances various electro-mechanical capabilities of the test system (such as servo accuracy), and the available suite of Analysis software tools provides deep insight into the drive component under evaluation. Adjacent Track Interference, 3D Pulse Profile, Media Scanning and Bit Error Rate are examples of some of the optional additions. Some software tools require the WDM5000 Waveform Digitizer to be part of the overall test system.

  • Regenerative Grid Simulator

    61800 - Chroma Systems Solutions, Inc.

    Power rating: Up to 300kVA, single or three phase outputOutput Voltage: 0~330V L-N / 0~570V L-L0~400V L-N / 0~692V L-L opt. without using a transformerOutput Frequency: DC, 30Hz~100HzMaximum power delivered down to 200VAC L-NFull 4 quadrant, fully regenerative up to 100% of output current ratingSpecifically designed for PV inverter, Smart Grid and EV related test applicationsProgrammable slew rate settings for voltage and frequencyProgrammable voltage and current limitsTurn on, turn off phase angle controlLIST, PULSE, STEP mode functions for testing Power Line Disturbance (PLD) simulationVoltage dips, short interruption and voltage variation simulationHarmonics, inter-harmonics waveform synthesizerComprehensive measurement capability, including current harmonicsAnalog programmable interfacesRemote interface: GPIB, RS-232, USB and EthernetParallel output for higher power applications (three phase only)

  • ±6 kV ANSI/ESDA/JEDEC 2-Pin HBM Tester

    HBM-S1-B - High Power Pulse Instruments GmbH

    *±6 kV Human-Body-Model (HBM) 2-pin tester according ANSI/ESDA/JEDEC JS-001 standard with C = 100 pF, R = 1.5 kΩ discharge network*True HBM: the classical discharge network of the HBM-S1-A according the standard ensures compliant waveforms for all load conditions*Optionally available upgrade for all HPPI TLP-3010C, 4010C, 8010A, and 8010C hardware systems and software (upgrade on request)*Suppression of trailing pulses*Integrated 10 kΩ charge removal resistor*Integrated DUT voltage and DUT current sensor for real time voltage and current monitoring*Integrated DC test DUT switchIntegrated hardware 50 Ω trigger output for high speed digital oscilloscopesIntegrated overvoltage protection of voltage sense and DC test interfaces for oscilloscope and SMU protection during high voltage HBM testing*Fast and efficient HBM measurements including transient waveform data management using the HPPI TLP software*Compact size 145 mm x 82.5 mm x 44 mm

  • High Power Programmable AC Source with Transients

    61510 - Chroma Systems Solutions, Inc.

    Power Rating:61511: 12KVA61512: 18KVAVoltage Range: 0-150V/0-300V / AutoConfigurations with input voltage of 220V or 480VFrequency: DC, 15Hz-1500HzSingle-phase or three-phase output selectableProgrammable slew rate setting for changing voltage and frequencyProgrammable voltage and current limitHigh output current crest factor, ideal for inrush current testingTurn on, turn off phase angle controlTTL signal which indicates output transientLIST, PULSE, STEP mode functions for testing Power Line Disturbance (PLD) simulationVoltage dips, short interruption and voltage variation simulationHarmonics, inter-harmonics waveform synthesizerComprehensive measurement capability, including current harmonicsAnalog programmable interfacesRemote interface: GPIB, RS-232, USB and EthernetCapable of delivering power output up to 90KVA by implementing Master-slave parallel operation

  • Low Power Programmable AC Source with Transients

    61500 Series - Chroma Systems Solutions, Inc.

    Power:500VA (61501)1500VA (61503)2000VA (61504)4000VA (61505)Voltage range: 0-150V/0-300V/AutoCompact size and weight attributable to advance PWM technologyAC+DC output mode for voltage DC offset simulationProgrammable slew rate setting for changing voltage and frequencyLow output impedance for testing IEC 61000-3-2 (61505)Programmable output impedance for testing IEC 61000-3-3LIST, PULSE, STEP mode function for testing power line disturbance (PLD) simulation capabilityIEC 61000-4-11 voltage dips, short and variation simulationHarmonics, inter-harmonics waveform synthesizer for testing IEC 61000-4-13Programmable voltage, current limitComprehensive measurement capability, including current harmonicsHigh output current crest factor, ideal for inrush current testingTurn on, turn off phase angle controlTTL signal which indicates output transientAnalog programmable interface3 units combined to 3-phase power outputEasy-use software for operation and IEC regulation testOptional GPIB and RS-232C interface

  • Lightning Current Generator

    Shanghai Guantu Technology Co., Ltd.

    The lightning wave impulse current generator is an impulse current generator that generates a simulated lightning current waveform . Its working process is as follows: first, the transformer charges the capacitor bank through the silicon pile, when the charging voltage reaches a predetermined value, the spark gap is triggered, and the capacitor is discharged through the total inductance and total resistance of the circuit. When the resistance is greater than or equal to the critical damping value, a unidirectional impulse current wave is generated in the circuit. When the resistance is less than the critical damping value, an oscillating impulse current wave is generated. The magnitude of the impact current amplitude is related to the circuit parameters. When the capacitance value and charging voltage are the same, the smaller the inductance value, the greater the current amplitude. In order to obtain as much current as possible, a pulse capacitor with a small inductance value is usually selected, and the total length of the connecting line should be as short as possible when arranging the main capacitor, so that the total loop inductance value can be reduced as much as possible.

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