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Discrete Device

semiconductor typically having one circuit.


Showing results: 61 - 71 of 71 items found.

  • PXIe-4137, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 100 fA Precision System PXI Source Measure Unit

    783761-01 - NI

    PXIe, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 100 fA Precision System PXI Source Measure Unit - The PXIe-4137 is a high-precision, system source measure unit (SMU). It features 4-quadrant operation and sources up to 40 W of DC power and can pulse up to 500 W. Analog-to-digital converter technology helps you perform high-precision measurements with a current resolution of 100 fA or high-speed acquisitions up to 1.8 MS/s. The module also can maximize stability and measurement accuracy with SourceAdapt technology, which you can use to tune the transient response to match the characteristics of any load. The PXIe-4137 is ideal for a broad range of applications including manufacturing test, board-level test, and lab characterization with devices such as ICs, power management ICs (PMICs), and RFICs and discrete devices including LEDs and optical transceivers.

  • PXIe-4135, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 10 fA Precision System PXI Source Measure Unit

    783762-01 - NI

    PXIe, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 10 fA Precision System PXI Source Measure Unit - The PXIe-4135 is a high-precision, system source measure unit (SMU). It features 4-quadrant operation and sources up to 40 W of DC power and can pulse up to 500 W. Analog-to-digital converter technology and native triaxial connectors help you perform high-precision measurements with a current resolution of 10 fA or high-speed acquisitions up to 1.8 MS/s. The module also can maximize stability and measurement accuracy with SourceAdapt technology, which you can use to tune the transient response to match the characteristics of any load. The PXIe-4135 is ideal for a broad range of applications including manufacturing test, board-level test, and lab characterization with devices such as ICs, power management ICs (PMICs), and RFICs and discrete devices including LEDs and optical transceivers.

  • PXIe-4135, PXIe, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 10 fA Precision System PXI Source Measure Unit

    783762-02 - NI

    PXIe, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 10 fA Precision System PXI Source Measure Unit - The PXIe-4135 is a high-precision, system source measure unit (SMU). It features 4-quadrant operation and sources up to 40 W of DC power and can pulse up to 500 W. Analog-to-digital converter technology and native triaxial connectors help you perform high-precision measurements with a current resolution of 10 fA or high-speed acquisitions up to 1.8 MS/s. The module also can maximize stability and measurement accuracy with SourceAdapt technology, which you can use to tune the transient response to match the characteristics of any load. The PXIe-4135 is ideal for a broad range of applications including manufacturing test, board-level test, and lab characterization with devices such as ICs, power management ICs (PMICs), and RFICs and discrete devices including LEDs and optical transceivers.

  • PXIe-4137, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 100 fA Precision System PXI Source Measure Unit

    783761-02 - NI

    PXIe, ±200 V, ±1 A DC, ±3 A Pulsed, Up to 40 W DC, 100 fA Precision System PXI Source Measure Unit - The PXIe-4137 is a high-precision, system source measure unit (SMU). It features 4-quadrant operation and sources up to 40 W of DC power and can pulse up to 500 W. Analog-to-digital converter technology helps you perform high-precision measurements with a current resolution of 100 fA or high-speed acquisitions up to 1.8 MS/s. The module also can maximize stability and measurement accuracy with SourceAdapt technology, which you can use to tune the transient response to match the characteristics of any load. The PXIe-4137 is ideal for a broad range of applications including manufacturing test, board-level test, and lab characterization with devices such as ICs, power management ICs (PMICs), and RFICs and discrete devices including LEDs and optical transceivers

  • PWM to Voltage Output D/A Converters

    Analog Devices Inc.

    Analog Devices’ pulse-width modulation (PWM) to voltage output D/A converters convert a PWM input to an accurate, stable, buffered voltage without the ripple, slow settling, and external passive components of discrete filter implementations. Our PWM D/A converters measure the period and pulse width of a PWM input signal and immediately update the D/A converter output with up to 12-bit accuracy and no software coding required. This family of D/A converters is available with 8-bit to 12-bit resolution, dual and quad channels, integrated references, and with high temperature operation. Applications include isolated motor control, automotive headlights or industrial lighting, and other applications that benefit from the simple control interface.

  • Software-based Electroacoustic Test System

    SoundCheck - Listen Inc

    The SoundCheck®system from Listen includes everything you need to perform audio measurements on a wide range of devices – the software, the audio interface, other test interfaces and accessories, and test sequences. The system is centered around the SoundCheck software. This powerful package controls and communicates with the measurement hardware, and includes all the stimuli, algorithms and analysis functionality needed to develop and run virtually any electroacoustic or audio electronic test. It is paired with hardware ranging from a simple, all-in one audio test box to sophisticated discrete components for a complete test system. In addition to Listen hardware, a range of 3rd party products and test accessories are fully supported within SoundCheck.

  • Millimeter Wave Amplifiers

    Ducommun Inc

    Ducommun offers Low Noise (ALN), High Power (AHP), Full Waveguide Band (AFB) and General Purpose (AGP) amplifiers to cover the frequency range from 18 to 96 GHz. These amplifiers utilize thin-film and microelectronics manufacturing techniques and are discrete and/or MMIC PHEMT devices based. These amplifiers feature low noise, high output power, single DC power supply and wide operation temperature range. The amplifiers are offered in two categories, standard and custom-built. Both standard and custom-built amplifiers are equipped with various RF interface, including standard waveguide or coaxial connector for convenient system integration. The optional input and output integrated isolators are available as an option to further improve the port return loss.

  • ARINC 429 PXI Express Test & Simulation Instrument

    PXIe-C429 - Avionics Interface Technologies

    16, 32, or 64 ARINC 429 Channels (up to 32 Tx & 32 Rx) - Programmable Tx channel output amplitude - Programmable High/Low Speed Operation - Eight (8) Discrete I/O (Four (4) inputs, and four (4) outputs) - Concurrent operation of all Tx/Rx Channels at high data rates - Full error injection and detection • Data capture filtering, 100% bus recording, and physical bus replay - Rate-oriented Label Transmission - Label Selective Trigger for Capture/Filtering - IRIG-B time code encoder/decoder with free-wheeling mode - Application Interface supporting C/C++, C# and VB.NET Development - Device driver support: Windows, Linux, LabVIEW Real-Time (others on request) - Compatible with AIT’s Flight Simulyzer GUI Bus Analyzer Software

  • Component Test and Analysis Laboratories

    Raytheon Company

    The Component Test and Analysis team specializes in electronic and mechanical components such as hybrids, connectors, cables, harnesses, passive or discrete components, and digital or linear devices. The test lab has extensive experience in developing test software to electrically and environmentally characterize virtually any integrated circuit, including analog, digital, mixed signal, converters, FPGA and ASICs, as well as experience in developing actual radiation environments for parts testing. The component analysis team offers the analytical expertise and advanced instrumentation to identify root cause explanation for a wide range of component-level failures, as well as the resources to evaluate for possible quality and reliability issues through non-destructive and destructive techniques. With access to a detailed database, the Component Test and Analysis team offers a 25-year history of test and analysis data — a valuable resource for addressing new customer requirements.

  • Gaming Platform Based on AMD Ryzen™ Embedded R1000/V1000 Series Supports up to Eight Independent Displays Including 4K UHD

    ADi-SA2X-RZ - ADLINK Technology Inc.

    ADi-SA2X-RZ all-in-one gaming platform features powerful processing and graphics performance for gaming infotainment and retail. Equipped with AMD Ryzen™ Embedded R1000/V1000 Series, the ADi-SA2X-RZ provides compelling graphics performance from a Radeon™ RX Vega Graphics and/or a PCI Express 3.0 x16 discrete graphics card together with multi-display support for up to eight independent monitors. With the powerful processing performance, advanced security functions, smart middleware solutions, and versatile I/O array, the ADi-SA2X-RZ fully satisfies the needs of your gaming application. The ADi-SA2X-RZ is a true application-ready gaming platform providing OEMs with a highly flexible and reliable all-in-one system that offers unparalleled portfolio of services that help developers save time and remain in compliance. The platform is designed to meet the GLI- 11 (Gaming Laboratories International) certification and all major global gaming market compliance requirements. The comprehensive middleware as well as the security and extensive I/O solutions enable developers to easily bridge applications with peripheral devices, sensors, and surrounding solutions up to central monitoring and control systems.

  • Tactical Grade Inertial Measurement Unit (IMU)

    ADIS16490 iSensor - Analog Devices Inc.

    The ADIS16490 iSensor® device is a complete inertial system that includes a triaxial gyroscope and a triaxial accelerometer. Each inertial sensor in the ADIS16490 combines industry-leading iMEMS® technology with signal conditioning that optimizes dynamic performance. The factory calibration characterizes each sensor for sensitivity, bias, alignment, and linear acceleration (gyroscope bias). As a result, each sensor has its own dynamic compensation formulas that provide accurate sensor measurements. The ADIS16490 provides a simple, cost-effective method for integrating accurate, multiaxis inertial sensing into industrial systems, especially when compared with the complexity and investment associated with discrete designs. All necessary motion testing and calibration are part of the production process at the factory, greatly reducing system integration time. Tight orthogonal alignment simplifies inertial frame alignment in navigation systems. The SPI and register structure provide a simple interface for data collection and configuration control.

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