"Wireless Telemetry Transmitters" on Amazon.com

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Friday, September 7, 2012

Sennheiser EW112PG2-C Transmitter with ME2 Omni Lavalier/Portable Receiver

Product Features

  • 1440 frequencies within a 36MHz switching bandwidth for greater tuning flexibility
  • Smaller bodypack transmitters and receivers- 30% smaller than current EW
  • Pilot tone squelch-backwards compatible with original EW systems
  • External charging contacts on 300 and 500 series bodypacks
  • Complete system for portable or camera use

Product Description

Amazon.com Product Description

The Sennheiser Wireless Omni Lavalier and Portable Receiver is a smaller, lighter, easier way to go on the road with a high-quality wireless clip-on mic system. It uses an autoscan to pick up intelligible frequencies and covers 1440 frequencies within a 36MHz switching bandwidth for greater tuning flexibility. The four switchable presets can be programmed to any of the 1440 frequencies. Robust metal construction makes the receiver durable, and pilot tone squelch keeps extraneous noise away from the microphone, which is omni-directional. The portable receiver uses small body pack transmitters and transmitter battery status telemetry. An LCD display shows signal metering, and has variable-level .25-inch unbalanced TS and XLR balanced connectors. Charging is handled through external contacts, or you can use AA batteries to power the receiver.

Product Description

  • 1440 frequencies within a 36MHz switching bandwidth for greater tuning flexibility
  • Smaller body-pack transmitters and receivers -- 30% smaller than current EW
  • Pilot tone squelch, backwards compatible with original EW systems
  • External chargi

  • Saturday, May 26, 2012

    Miniature Telemetry Transmitter

    Telemetry or "remote measurement" is a highly automated communications process by which measurements are made and other data collected at remote, inaccessible or dangerous places, and then relayed by a telemetry transmitter to receiving stations for display, monitoring, and recording. The original telemetry systems were termed "supervisory" because they were used to monitor electric power distribution. Communication channels form a major part of any telemetry system, as it involves measurement of the transmission of data over various mediums.

    Telemetry transmitter is the instrument used for recording the readings of an instrument and transmitting them by radio or wireless frequencies.
    Technically, when relaying data, it is necessary for the transmitter to identify the data item corresponding to each segment of the bit stream. This is done by inserting a synchronization bit string into the telemetry stream on a regular basis, usually at the beginning or end of each repeating cycle. This generally corresponds to the beginning or end of a minor or major frame of telemetry data.

    Aerospace telemetry initiated in the 1930s with the radiosonde, a instrument that automatically measured atmospheric temperature, pressure and humidity by means of a small, expendable telemetry transmitter from a balloon high in space, and relayed the data back to Earth using radio signals. These days, telemetry is used in testing of moving vehicles such as cars, aircrafts, missiles and satellites. National Aeronautics and Space Administration (NASA), European Space Agency (ESA) and other international space agencies use telemetry transmitters for data collection and transmission from orbiting spacecrafts and satellites.

    Wireless networking without the encumbrance and restriction of wires connecting the transmitter and receiver has catapulted the potential applications of telemetry. Major applications of telemetry includes automatic monitoring of large, complex systems such as satellites, chemical plants, oilrigs, electric power plants, gathering meteorological data, remote meter reading, logistics management, tracking endangered land and marine species, real time physiological monitoring of patients, and monitoring manned and unmanned space flights.

    Winston Churchill once said, "The price of greatness is responsibility." In the same manner, this great technology should be used responsibly. For instance, for many environmental monitoring duties, such as stream gauging or automatic weather stations, the measurement values are unlikely to change significantly for many hours at a time. In such cases, it would be grossly uneconomical in terms of both electrical power and use of spectrum space to run the telemetry transmitter continuously. On the other hand, constant monitoring by medical uses of telemetry is often necessary in order to detect problems as soon as they arise.

    http://www.articlesbase.com/satellite-radio-articles/miniature-telemetry-transmitter-33416.html