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Analog

representation of a signal that varies over an infinite range of values.

See Also: Digital


Showing results: 2821 - 2835 of 2941 items found.

  • C Series Current Output Module

    NI

    The C Series Current Output Module features up to eight channels of simultaneous analog output. You can choose between enclosed and non-enclosed modules. Additionally, the C Series Current Output Module has built-in open-loop detection. This detection generates an interrupt in software when an open loop is detected, zeros outputs to ensure safety, and avoids driving actuators at system power-on. The C Series Current Output Module requires an external power supply and includes a channel-to-earth ground double isolation barrier for safety and noise immunity.The C Series Current Output Module includes the NI-DAQmx driver and configuration utility that simplify configuration and measurements. NI-DAQmx supports NI programming environments as well as Python, ANSI C, C#.NET, and MathWorks MATLAB® software.

  • 1-Ch. 6.4 GHz or 2-Ch. 3.2 GHz A/D, 2-Ch 6.4 GHz D/A Kintex UltraScale - PCIe

    Model 78141 - Pentek, Inc.

    Model 78141 is a member of the JadeTM family of high-performance PCIe boards. The Jade architecture embodies a new streamlined approach to FPGA-based boards, simplifying the design to reduce power andcost, while still providing some of the highest-performance FPGA resources available today. Designed to work with Pentek’s new NavigatorTM Design Suite of tools, the combination of Jade and Navigator offers users an efficient path to developing and deployingFPGA-based data acquisition and processing. The 78141 is a high-speed analog-to-digital and digital-to-analog converter with programmable DDCs (digital downconverters) and DUCs (digital upconverters). It is suitable for connection to HF or IF ports of a communications or radar system. Its built-in data capture and generator features offer an ideal turnkey solution as well as a platform for developing and deploying custom FPGA-processing IP.

  • 60 GHz WR-15 Waveguide Tx Module

    PEM010 - Pasternack Enterprises, Inc.

    The PEM010 is a highly integrated millimeter wave transmitter that covers the 60 GHz global unlicensed spectrum allocations packaged in a standard waveguide module. Transmitter architecture is a double conversion, sliding IF with wide bandwidth capability through the up-conversion chain from baseband to carrier. The I/Q interface accepts analog baseband signals which provides for flexibility in design and applications. The baseband input optionally supports FSK/MSK modulation for non-coherent applications. The transmitter incorporates a complete waveguide interface with low-loss transition between the chip and the WR15 waveguide port. The integrated package is small and lightweight, with a simple to use multi-pin ST4 connector for power, reference clock, digital control port and baseband signals. Either of two reference clocks can be used for setting 540 MHz or 500 MHz channel spacing.

  • Audio Signal Generator

    CRY5520 - Hangzhou JiGao Electroacoustical Science and Technology Co.,Ltd

    CRY5520 audio frequency sweep signal generator, adopts single chip microcomputer to control frequency sweep, digital and analog combination, stable performance. It has extremely low distortion, sine wave output, small distortion, good stability, and the frequency range covers the entire audio frequency domain . It is especially suitable for pure audio sound inspection of speakers and headphones. It can work in two modes of logarithmic frequency sweep and manual frequency modulation. The starting point, end point and frequency sweeping time of the frequency sweep can be set arbitrarily. The manual frequency modulation can be divided into coarse and fine adjustment, which can quickly and accurately adjust the frequency.128 × 64 dot matrix liquid crystal display is used to display frequency and voltage values ​​simultaneously, with synchronous output.

  • Digital "A" Flow Controller for High Flow​​​​

    HFM-D-306A / HFC-D-3​​08A - Teledyne Hastings Instruments

    Mass flow techniques provide RELIABLE, REPEATABLE AND ACCURATE gas flow rate measurements.HFM-D-306A/HFC-D-308A mass flow instruments have flow ranges from 0-2500 slm to 0-10000 slm; provide analog and digital outputs, and are constructed of stainless steel. Easy, user friendly digital communications with windows based software interface available. Available with a variety of elastomer seals for maximum flexibility.Self diagnostics of the sensor, valve and overflow are included in the digital features. Also of interest is the auto zero feature which detects when the valve is closed and automatically resets the zero. These mass flow meters and controllers can store up to 10 calibrations of different ranges and gases. Another feature is the built in totalizer for monitoring gas usage under user set conditions.

  • Digital "A" Flow Controlle​r for Medium Flow​​​

    HFM-D-301A / HFC-D-303A​ - Teledyne Hastings Instruments

    Mass flow techniques provide RELIABLE, REPEATABLE AND ACCURATE gas flow rate measurements.HFM-D-301A/HFC-D-303A mass flow instruments have flow ranges from 0-25 slm to 0-1000 slm; provide analog and digital outputs, and are constructed of stainless steel. Easy, user friendly digital communications with windows based software interface available. Available with a variety of elastomer seals for maximum flexibility.Self diagnostics of the sensor, valve and overflow are included in the digital features. Also of interest is the auto zero feature which detects when the valve is closed and automatically resets the zero. These mass flow meters and controllers can store up to 10 calibrations of different ranges and gases. Another feature is the built in totalizer for monitoring gas usage under user set conditions.

  • Digital "A" Flow Controller for Medium Flow​

    ​ HFM-D-305A / HFC-D-307A - Teledyne Hastings Instruments

    Fast Response, Tight Accuracy!Mass flow techniques provide RELIABLE, REPEATABLE AND ACCURATE gas flow rate measurements.HFM-D-305A/HFC-D-307A mass flow instruments have flow ranges from 0-1000 slm to 0-2500 slm; provide analog and digital outputs, and are constructed of stainless steel. Easy, user friendly digital communications with windows based software interface available. Available with a variety of elastomer seals for maximum flexibility.Self diagnostics of the sensor, valve and overflow are included in the digital features. Also of interest is the auto zero feature which detects when the valve is closed and automatically resets the zero. These mass flow meters and controllers can store up to 10 calibrations of different ranges and gases. Another feature is the built in totalizer for monitoring gas usage under user set conditions.

  • Digital "A" Flow Controller for Low Flow​

    ​HFM-D-300A / HFC-D-302A - Teledyne Hastings Instruments

    ​All Metal, Fast Response, Tight Accuracy!Mass flow techniques provide RELIABLE, REPEATABLE AND ACCURATE gas flow rate measurements.HFM-D-300A / HFC-D-302A mass flow instruments have flow ranges from 0-5 sccm to 0-25 slm; use all metal seals, provide analog and digital outputs, and are constructed of stainless steel. Easy, user friendly digital communications with windows based software interface available.Self diagnostics of the sensor, valve and overflow are included in the digital features. Also of interest is the auto zero feature which detects when the valve is closed and automatically resets the zero. These mass flow meters and controllers can store up to 10 calibrations of different ranges and gases. Another feature is the built in totalizer for monitoring gas usage under user set conditions.

  • Circuit Card Assembly

    Teledyne Defense Electronics

    Teledyne Advanced Electronic Solutions assembles and tests a variety of complex circuit card assemblies (CCAs) using leading edge, advanced technology assembly automation. We specialize in low-volume, high-mix assembly of highly complex CCAs.- RF, analog, high-speed and digital circuits on rigid-flex and Cu core substrates- Typical lot sizes from 3 to 300 pieces- 4 high speed, flexible SMT lines- Production processes for components from 0201 chips to large grid-array components and connectors- 100% solder paste, automated optical, and x-ray inspection- Forced air convection reflow with inert atmosphere option- Special processes for RF assemblies (filters, shields, etc)- BGA underfill, conformal coating, etc.- Selective and wave solder pin-thru-hole processes- CCA and component bonding processes

  • PXIe-7861, Kintex-7 160T FPGA, 16-Channel AI, 1 MS/s, PXI Multifunction Reconfigurable I/O Module

    786671-01 - NI

    PXIe, Kintex-7 160T FPGA, 16-Channel AI, 1 MS/s, PXI Multifunction Reconfigurable I/O Module - The PXIe-7861 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of timing and synchronization. With 16 analog input channels connected directly to a Kintex-7 160T FPGA, you have ample space to design applications that require precise timing such as hardware-in-the-loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXIe-7861 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware. The PXIe-7861 also includes peer-to-peer streaming for direct data transfer to other PXI Express modules.

  • PXIe-7862, Kintex-7 325T FPGA, 16-Channel AI, 1 MS/s, PXI Multifunction Reconfigurable I/O Module

    786672-01 - NI

    PXIe, Kintex-7 325T FPGA, 16-Channel AI, 1 MS/s, PXI Multifunction Reconfigurable I/O Module - The PXIe-7862 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of timing and synchronization. With 16 analog input channels connected directly to a Kintex-7 325T FPGA, you have ample space to design applications that require precise timing such as hardware-in-the-loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXIe-7862 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware. The PXIe-7862 also includes peer-to-peer streaming for direct data transfer to other PXI Express modules.

  • cDAQ-9185, 4-Slot, TSN-Enabled Ethernet CompactDAQ Chassis

    785064-01 - NI

    4-Slot, TSN-Enabled Ethernet CompactDAQ Chassis - The cDAQ-9185 is a CompactDAQ Ethernet chassis designed for distributed sensor measurement systems. The chassis controls the timing, synchronization, and data transfer between C Series I/O modules and an external host. With this chassis, you can combine C Series I/O modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. The chassis provides precise, synchronized timing over the network using TSN, ideal for highly distributed measurements over long distances. The chassis has an integrated network switch for simple daisy-chaining. The chassis also has four 32-bit general-purpose counters/timers, accessible through a hardware-timed digital C Series module for applications that involve quadrature encoders, PWM, pulse train generation, and more.

  • cDAQ-9185, 4-Slot, TSN-Enabled Ethernet CompactDAQ Chassis

    786473-01 - NI

    4-Slot, TSN-Enabled Ethernet CompactDAQ Chassis - The cDAQ-9185 is a CompactDAQ Ethernet chassis designed for distributed sensor measurement systems. The chassis controls the timing, synchronization, and data transfer between C Series I/O modules and an external host. With this chassis, you can combine C Series I/O modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. The chassis provides precise, synchronized timing over the network using TSN, ideal for highly distributed measurements over long distances. The chassis has an integrated network switch for simple daisy-chaining. The chassis also has four 32-bit general-purpose counters/timers, accessible through a hardware-timed digital C Series module for applications that involve quadrature encoders, PWM, pulse train generation, and more.

  • PXIe-7868, Kintex-7 325T FPGA, 18-AO Channels, 1 MS/s, PXI Multifunction Reconfigurable I/O Module

    785571-01 - NI

    Kintex-7 325T FPGA, 18-AO Channels, 1 MS/s, PXI Multifunction Reconfigurable I/O Module—The PXIe-7868 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of timing and synchronization. With 18 analog output channels connected directly to a Kintex-7 325T FPGA, you have ample space to design applications that require precise timing such as hardware-in-the-loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXIe-7868 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware. The PXIe-7867 also includes peer-to-peer streaming for direct data transfer to other PXI Express modules.

  • PXIe-7976, K410T FPGA, 3.2 GB/s, 2 GB DRAM PXI FPGA Module for FlexRIO

    783625-01 - NI

    K410T FPGA, 3.2 GB/s, 2 GB DRAM PXI FPGA Module for FlexRIO—The PXIe‑7976 provides flexible, customizable I/O for LabVIEW FPGA. It includes 132 single-ended I/O lines configurable as 66 differential pairs. You can pair the PXIe‑7976 with FlexRIO adapter modules that offer high-performance analog and digital I/O. Together, the two modules create a reconfigurable instrument that you can program with LabVIEW FPGA software. The PXIe‑7976 supports peer‑to‑peer streaming, which directly transfers data among multiple FPGA modules or select PXI Express modules without sending data to the host processor. With this feature, you can add FPGA capabilities to high-performance NI digitizers with NIST‑traceable calibration or expand your FPGA algorithms across multiple FPGAs for computationally demanding applications.

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