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Showing results: 1561 - 1575 of 1758 items found.

  • 1-Channel 3.6 GHz or 2-Channel 1.8 GHz 12-bit A/D with Virtex-6 FPGA - 6U VPX

    Model 57640 - Pentek, Inc.

    - Ideal radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- One 1-Channel mode with 3.6 GHz, 12-bit A/Ds- Two 2-Channel mode with 1.8 GHz, 12-bit A/Ds- 2 GB of DDR3 SDRAM- PCI Express (Gen. 1 & 2) interface up to x8- µSync clock/sync bus for multiboard synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Ruggedized and conduction-cooled versions available- Synchronize up to twelve modules with Model 9192 System Synchronization and Distribution Amplifier- 1U Rack-mount

  • 1-Channel 3.6 GHz or 2-Channel 1.8 GHz 12-bit A/D with DDC - 6U VPX

    Model 57641 - Pentek, Inc.

    - Ideal radar and software radio interface solution- One 1-Channel mode with 3.6 GHz, 12-bit A/Ds- Two 2-Channel mode with 1.8 GHz, 12-bit A/Ds- Programmable one-channel DDC (digital downconverter)- 2 GB of DDR3 SDRAM- PCI Express (Gen. 1 & 2) interface up to x8- µSync clock/sync bus for multiboard synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Ruggedized and conduction-cooled versions available- Synchronize up to twelve modules with Model 9192 System Synchronization and Distribution Amplifier- 1U Rack-mount

  • Fiber Optic Sensors

    Leuze electronic GmbH + Co. KG

    Plastic fiber optics are suitable for universal applications with low space requirements for object detection. Glass fiber optics are used in demanding environmental conditions with high temperatures and are resistant to chemicals. For radiation through foils or applications with high light power, they offer further advantages through the especially low damping. The flexible fiber optics with various head shapes can be integrated in nearly any system design. The detection range is dependent on the fiber optics and amplifiers used. Fiber optics can be used with the throughbeam principle or with scanning function. As a fiber array with multiple light beams, they can be used to detect especially small objects.

  • Tunable, Ultrafast TI: Sapphire Laser

    SPRITE XT - M Squared Lasers

    Sprite XT is a flexible ultrafast, femtosecond laser source. It delivers stability, reliability and productivity and is equally at home in the lab or as part of an OEM application. Choose your output power (up to multi-Watts), pulse width (femtosecond or picosecond models), wavelength range (fixed wavelength or tunable), and pulse repetition rate (<80 MHz to multi-GHz). All Sprite models are designed for alignment-free and maintenance-free operation and can be controlled from a web browser. It’s ideal for multi-photon excitation (MPE) and FLIM, quantum optics, time resolved spectroscopy, nonlinear optics, pump-probe experiments, microscopy, amplifier seeding, and electro-optic sampling.

  • Vector Network Analyzers

    SolarWinds

    One of the most important measurement tasks in radio engineering is the analysis of electrical circuits. A network analyzer is an instrument that is designed to solve this problem with high accuracy and efficiency. The circuits that can be analyzed with network analyzers have a wide range of applications ranging from simple devices such as filters and amplifiers to complex modules used in communications satellites. PLANAR specializes in the development and production of vector network analyzers that combine the capabilities of scalar network analyzers that measure not only the amplitude components of the main characteristics of the system (gain, loss, standing wave ratio, etc.), but also allow measurements of the amplitude and phase characteristics of the system .

  • Vector Network Analyzers

    Planar, llc

    One of the most important measurement tasks in radio engineering is the analysis of electrical circuits. A network analyzer is an instrument that is designed to solve this problem with high accuracy and efficiency. The circuits that can be analyzed with network analyzers have a wide range of applications ranging from simple devices such as filters and amplifiers to complex modules used in communications satellites. PLANAR specializes in the development and production of vector network analyzers that combine the capabilities of scalar network analyzers that measure not only the amplitude components of the main characteristics of the system (gain, loss, standing wave ratio, etc.), but also allow measurements of the amplitude and phase characteristics of the system .

  • IVTS In-Vehicle Test Set

    LXinstruments GmbH

    The in-vehicle test set was developed to successively measure several active RF amplifiers installed in the vehicle as well as different antenna structures. It offers the possibility to connect 12 DUTs. The DUTs can be connected to an external spectrum analyser via a 1 to 12 RF multiplexer. Each DUT can be individually switched and supplied with an adjustable voltage via a bias-tee integrated in the system. The individual bias voltages and currents are recorded by the IVTS and can be called up on an interactive control panel or via Ethernet and SCPI commands. The complete system can be powered by rechargeable battery and can be operated either via Ethernet, fibre optics or WLAN.

  • PXIe-5820, 500 MHz, 1 GHz I/Q Bandwidth, Baseband PXI Vector Signal Transceiver

    783967-01 - NI

    500 MHz, 1 GHz I/Q Bandwidth, Baseband PXI Vector Signal Transceiver—The PXIe‑5820 is the baseband model of the second-generation vector signal transceiver (VST) with 1 GHz of complex I/Q bandwidth. It combines a wideband I/Q digitizer, wideband I/Q arbitrary waveform generator, and high-performance user-programmable FPGA in a single 2-slot PXI Express module. You can use the VST for a variety of applications including baseband I/Q test of wireless and cellular chipsets; envelope tracking of digitally predistorted waveforms for power amplifiers; and the generation and analysis of new wireless standards such as 5G, 802.11ax, and LTE-Advanced Pro.

  • NI-5791, 200 MHz to 4.4 GHz RF Adapter Module For FlexRIO

    782510-01 - NI

    The NI‑5791 provides continuous frequency coverage from 200 MHz to 4.4 GHz. It features a single-stage, direct conversion architecture that provides high bandwidth in the small form factor of a FlexRIO adapter module. The onboard synthesizer, which is the local oscillator (LO), sets the center frequency for acquisition and generation, and you can export it to other modules for multiple input, multiple output (MIMO) synchronization. You can also import the LO from an external connector, enabling synchronization of up to eight NI‑5791 modules. For higher frequencies or a greater number of devices, you can use an external LO distribution amplifier.

  • Radiometer

    X1-1-RCH-116-4 - Gigahertz-Optik GmbH

    The X1-1 radiometer from Gigahertz-Optik features an RCH-116-4 detector and is ideal for measurement of the irradiance of high power LEDs in the UV-A and blue light range. The device can accurately measure irradiance levels of up to 40,000 mW/cm². One of the outstanding features of the RCH-116-4 detector is its proven concept of a passive radiation absorber coupled to a UV sensor. This provides stability even in high temperature and intense UV radiation environments. In addition to the passive radiation absorber, the device also has a cosine-corrected field of view. The sensor’s housing also serves as a handle. The battery-powered X1-1 optometer supports a usable dynamic range from less than 1 mW/cm² to 40,000 mW/cm² thanks to its high-end signal amplifier. It can be used to perform precise measurements of up to 5 standard LED wavelengths for which the detector was calibrated for active irradiance. In addition to the CW measurement function, the device also has a dose measurement function. The radiometer can be used with other detectors from the RCH series. e.g. for gas discharge lamps. Remote control of the device is possible via its user software and a software development kit is offered for integration of the device in the user’s own software.

  • 2-Channel 3.6 GHz or 4-Channel 1.8 GHz 12-bit A/D with Virtex-6 FPGA - 6U VPX

    Model 58640 - Pentek, Inc.

    - Ideal radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- One or two 1-channel mode with 3.6 GHz, 12-bit A/Ds- Two or four 2-channel mode with 1.8 GHz, 12-bit A/Ds- 2 or 4 GB of DDR3 SDRAM- PCI Express (Gen. 1 & 2) interface up to x8- µSync clock/sync bus for multiboard synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-7 FPGA for custom I/O- Ruggedized and conductioncooled versions available- Synchronize up to twelve modules with Model 9192 System Synchronization and Distribution Amplifier- 1U Rack-mount

  • 4-Channel 200 MHz, 16-bit A/D with Virtex-6 FPGA - 6U VPX

    Model 57660 - Pentek, Inc.

    - Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Four 200 MHz 16-bit A/Ds- Up to 2 GB of DDR3 SDRAM; or: 32 MB of QDRII+ SRAM- PCI Express (Gen. 1 & 2) interface up to x8- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multiboard synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Ruggedized and conduction-cooled versions available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe

  • 4-Channel 200 MHz A/D with 32-Channel DDC, Virtex-6 FPGA - 6U VPX

    Model 57662 - Pentek, Inc.

    - Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Four 200 MHz 16-bit A/Ds- 32 channels of multiband DDCs (digital downconverters)- Up to 2 GB of DDR3 SDRAM- PCI Express (Gen. 1 & 2) interface up to x8- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multiboard synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Ruggedized and conduction-cooled versions available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe

  • 8-Channel 200 MHz, 16-bit A/D with Virtex-6 FPGA - 6U VPX

    Model 58660 - Pentek, Inc.

    - Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Eight 200 MHz 16-bit A/Ds- Up to 4 GB of DDR3 SDRAM; or: 64 MB of QDRII+ SRAM- PCI Express (Gen. 1 & 2) interface up to x8- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multiboard synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Ruggedized and conduction-cooled versions available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe

  • 8-Channel 200 MHz A/D with 64-Channel DDC, Virtex-6 FPGA - 6U VPX

    Model 58662 - Pentek, Inc.

    - Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Eight 200 MHz 16-bit A/Ds- 64 channels of multiband DDCs (digital downconverters)- Up to 4 GB of DDR3 SDRAM- PCI Express (Gen. 1 & 2) interface up to x8- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multiboard synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Ruggedized and conduction-cooled versions available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe

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