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Transmission

Measures the strength and integrity of a signal carried over wire, fiber or air.

See Also: Transmission Impairment


Showing results: 826 - 840 of 959 items found.

  • Optical Spectrum Analyzer Module Specification

    CA92001B - UC Instruments, Corp.

    UCINSTRUMENTS CA92001B C band optical spectrum analyzer module is a spectral engine for Process Analytical Technology applications. The OSA module acts as a stand-alone spectral engine, imaging and measuring a wide range of vapors, liquids and solids through transmission and diffuse reflection in a rapid non-destructive process. Leveraging our proprietary Micro-Optic technology, UC INSTRUMENTS’ C band OSA module features the following characteristics: (1) compact; (2) light-weight; (3) low power consumption; and (4) wide wavelength coverage. These characteristics of UC INSTRUMENTS’ compact OSA engines are suitable for a variety of handheld, portable or bench-top OSA/spectrometer applications. Equipped with a state-of-the-art internal wavelength reference, the OSA module is capable of precisely measuring optical spectrum. Because it does not require an expensive InGaAs detector array, the compact OSA module is a cost-effective alternative to other grating-based OSA/spectrometer engines. The OSA communicates with a PC or an instrument motherboard via an USB interface. UCINSTRUMENTS’ OSA module platform can be installed or co-packaged into existing NIR OSA/spectrometers as a cost-efficient alternative to other scanning optical engines.

  • USB PD Power Supply/Module ATS

    8000 Series - Chroma ATE Inc.

    The USB 3.1 specifications has three major features which are 10Gbit/s transmission speed, USB PD (Power Delivery) with support for 100 watt charging power, and the standard Type-C connector/cable that can be inserted with either side. It is expected to meet all kinds of data / video transfer applications. The advent of USB PD may consolidate the specifications of various power converters and the laptop, monitor, printer or Hub that implements USB PD is no longer a simple power-consuming device but able to supply power to other devices. The USB PD DRP (Dual role port) function allows the built-in USB PD module to deliver a maximum of 100 watts of power through the Type-C interface. To make sure the USB PD Type-C output power does not supply invalid voltage or poor power output characteristics with excessive noise that can damage the power consuming device and cause unsuccessful startup, each USB PD power supply or module has to be fully tested during production to ensure the product features meet the design specifications. This ensures high-quality products are provided to the market to gain acceptance.

  • Test Fixture, Shielding Effectiveness

    EM-2108 | 1.5 GHz – 10 GHz - Electro-Metrics Corp.

    The EM-2108 is a standard test fixture for evaluation of the electromagnetic shielding effectiveness (SE) of planar materials. The fixture is a section of coaxial transmission line broken to allow the insertion of planar test materials. Although ASTM D4935-10 is currently limited to an upper frequency of 1.5 GHz, the EM-2108 meets and complies fully with both the impedance and SE requirements called out in ASTM test method D4935-10 up to 10 GHz. These results are shown in Figures 1 & 2. The measured data relates to the shielding effectiveness due to a plane wave (far field EM wave) from which near field values for magnetic and electric fields may be inferred.

  • Radio Frequency Cable Tester

    RFCT - Textron Systems

    Textron Systems’ Radio Frequency Cable Tester (RFCT) allows for on-site testing and maintenance for radio frequency (RF) transmission paths within a platform. Using preconfigured databases of sweep parameters and pass/fail criteria, the RFCT quickly determines the status of installed RF cables. The RFCT checks each cable’s performance characteristics to include voltage standing wave ratio (VSWR), insertion loss (IL), phase and phase matching. If a cable fails a test, the RFCT automatically determines the distance-to-fault (DTF). With its intuitive touchscreen-based user interface and lightweight, ruggedized packaging, the RFCT is the gold standard for operational-level RF cable testing.

  • SEA CLIP™ Sensor & Aqua MER™ Meter

    The Swain Meter Company

    The SEA CLIP™ by Swain Meter is a high-quality, hydraulically actuated clamp-on DC ammeter for ROV. It is useful for measuring DC currents in subsea cables, cathodic protection systems, and subsea pipes up to 4” in diameter. The SEA CLIP™ can be used with an optional 200-foot cable to a topside meter, or in concert with the Aqua MER™ subsea meter at depths up to 6900 feet of seawater.The Aqua MER™ ROV meter is based on Swain’s proven MER2™ technology, specially adapted to the demanding requirements of the subsea environment and updated to provide RS-485 communication over twisted pair, or fiber optic data transmission protocols.

  • ARINC 429 Test & Simulation Instrument for PXI

    PXI-C429 - Avionics Interface Technologies

    4, 8, 16, or 32 Software Programmable Tx/Rx ChannelsProgrammable High/Low Speed Operation - 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 - Time Synchronization to PXI 10MHz reference clock - 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

  • Portable AC Powered Test Set

    BE9000 Series - Berry Test Sets

    The BE9000 is a portable AC powered test set for use at almost any point in a circuit on the customer premises location (PBX or station equipment) to the Central Office. The BE9000 is able to accommodate a wide range of circuit types such as: DS1, DS0, DDS and all 2Wire or 4 Wire analog Special Circuits. Maintenance and installation of these circuits requires a combination of these functions: DS1 performance monitoring, DS1 BERT, DS0 BERT, Drop & Insert, Transmission, Signaling, Ringing, Addressing and Supervision in one test set to achieve maximum technician efficiency. Additionally, the set can be programmed in the field so that repetitive tests can be stored and recalled for future use.

  • Gesture, Color Sensors & Proximity Detection

    ams AG

    The gesture product family performs advanced gesture detection, proximity detection, digital Ambient Light Sensing (ALS) and color sensing (red, green, blue and clear). It also implements optical pattern generation for barcode transmission and remote controls. The gesture sensor modules provide a highly integrated solution offering five essential functions to enable a touchless interface and to optimize the end user experience of communications and consumer electronics equipment. Gesture detection uses four directional photodiodes to sense IR energy emitted from the integrated LED, converting the measurements of reflected IR light into information about physical

  • Professional Science Kit

    FLIR A400/A700 - Teledyne FLIR

    FLIR A400 and A700 Science Kits offer researchers and engineers a streamlined solution for accurate temperature measurement. Simplified yet robust connections help you set up and start testing quickly; then easily view, acquire, and analyze data using included FLIR Research Studio software. The Standard kit includes a FLIR A400 or A700 Image Streaming camera, 24° lens with automatic/remote and manual focusing, as well as FLIR Macro Mode. The Professional kit has the added benefits of MSX® image enhancement, radiometric data transmission over Wi-Fi, and a close-up lens for accurate thermal measurements on small components.

  • On-Site Oil Analyzer

    MicroLab 40 - Ametek Spectro Scientific

    MicroLab 40 is designed primarily for fleets operating equipment with hydraulic components or heavy equipment gears and transmissions. This would include off-road mining and construction vehicles as well as over-the-road equipment with hydraulics such as bucket trucks, fire engine ladder trucks or solid waste trucks. The MicroLab 40 is also used in applications for offshore drilling equipment. In addition to the basic oil chemistry and extended elemental analysis provided with the MicroLab 30, the MicroLab 40 model includes a particle counter which provides critical analysis for cleanliness of hydraulic oils and gear oils to determine the health of those oils and mechanical condition of those components.

  • ATEX-Compliant IR Temperature Sensors

    FLIR A310 ex - Teledyne FLIR

    Explosive atmospheres need to be protected from ignition sources. Selecting equipment and protective systems which meet the requirements of the ATEX Product Regulations or similar regulations is essential. FLIR A310 ex is an ATEX compliant solution, with a thermal imaging camera mounted in an enclosure, making it possible to monitor critical and other valuable assets also in explosive atmospheres. Typical applications for the A310 ex include process monitoring, quality control, and fire detection in explosive locations. Because the FLIR A310 ex is rated IP 67, it can be installed in dusty environments. The Flame-Proof Enclosure "d"prevents any explosion transmission from the inside of the enclosure to the outside.

  • C-Band Separate Raman Fiber Amplifier

    RFA5000 - Hangzhou Huatai Optic Tech. Co., Ltd.

    1. Erbium-doped Fiber Amplifier, due to the multiple cascades and the accumulation of noise caused by spontaneous emission, will reduce the system CNR greatly and thus it will limit the transmission capacity and distance of the system. Raman Fiber Amplifier (RFA) is a newly designed fiber amplifier based on Stimulated Raman Scattering (SRS) effect. It is considered as the core technology of new generation DWDM fiber over-long communication. Compared with Erbium-Doped Fiber Amplifier, Raman amplifier has the advantage of low Noise Figure (NF), wider gain bandwidth, flexible gain spectral region and stable temperature. It is the only device that can operate in 1300~1600 nm.

  • Connect Generators to the Grid

    GridCode - DIgSILENT GmbH

    DIgSILENT has developed a new verification tool called DIgSILENT GridCode. The software has been designed in response to the need to verify whether a conventional or renewable power plant is compliant with local Grid Code interconnection requirements on basis of generating unit tests. There is a new trend towards verification of requirements at the point of interconnection of a power plant using transient stability simulations with numerical models. An increasing number of Transmission System Operators are including model validation methods to quantify the risk and uncertainty when using these simulation models in stability studies. These new methods have been included in the DIgSILENT GridCode tool.

  • Test Receiver

    NTR GNSS - IFEN GmbH

    Our primary objective is to provide a high performance and fully flexible test receiver for all types of GNSS systems. Thus, the NTR fully supports all existing navigation systems. The signal processing is fully flexible. The high performance correlation engine with up to 80 channels is implemented in a powerful set of FPGAs. Signal acquisition and tracking are realized on a high performance embedded ARM Cortex A8.Supporting up to 4 L-band frequencies in parallel, the NTR GNSS test receiver supports all current GNSS transmission frequencies. Due to its plug-in design, the RF front-end can easily be customized for special filtering and other frequencies.

  • Fault Locating

    Schweitzer Engineering Laboratories, Inc.

    The built-in fault-locating methods in SEL devices allow you to quickly identify faults, dispatch crews for repairs, and restore service faster. Traveling-wave fault-locating technology calculates the locations of temporary and permanent faults by measuring the arrival times of the naturally occurring traveling waves caused by a transmission line fault. Accurately detecting these waves requires ultra-high-resolution monitoring, and locating is accurate to within one tower span (±300 m). Impedance-based fault-locating technology calculates fault locations by detecting changes in line impedance as a result of a fault. Impedance-based locating is reliable and accurate to about 2 percent of a line’s total length.

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