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Vishay Releases Infrared Transceivers With FIR 4 Mbit/S Data Rate Required By IrSimpleShot(TM)

Posted on: Thursday, 15 June 2006, 09:00 CDT

MALVERN, Pa., June 15 /PRNewswire-FirstCall/ -- Vishay Intertechnology, Inc. has released new infrared transceivers with the fast infrared (FIR) 4 Mbit/s data rate required by IrSimpleShot(TM); a new Schottky rectifier with an industry-low forward voltage drop (per leg) of 0.70 V at 30 A and 125 degrees C; and tantalum chip capacitors with leadframeless, face- down termination in 0603 and 0805 case sizes.

The new Vishay TFDU6300 and TFDU6301 infrared transceivers support the IrDA(R) high-speed IrSimpleShot protocol for beaming digital pictures directly from camera phones to TVs, printers, and other enabled camera phones. The FIR 4 Mbit/s transceivers feature a miniaturized package that fits easily into today's compact mobile phones, digital still cameras, and TVs. With dimensions of only 2.5 mm (H) x 3.0 mm (W) x 8.3 mm (L), the transceivers require minimal battery power thanks to their low receive operating (or idle) current of 1.8 mA and shutdown current of 0.01 microamp. The transceivers are fully compliant with IrDA Physical Layer, transmitting data over distances upwards of 0.7 meters. They can transmit TV remote control signals over distances of up to 25 meters.

Links to product datasheets: http://www.vishay.com/doc?84763 (TFDU6300) http://www.vishay.com/doc?84668 (TFDU6301)

The new Vishay V60100C Trench MOS Barrier Schottky (TMBS(TM)) rectifier is rated for 60 A and 100 V in a common-cathode 30-A X 2 configuration. Optimized for use in 70-W to 800-W high-frequency switchmode power supplies, the low forward voltage drop and superior switching performance of the V60100C reduce power losses and improve the efficiency of the OR-ing diode on the high-voltage output. Typical switchmode power supply applications for the V60100C will include power supplies in servers, industrial computers, and telecom systems. The device will also be used for ac-to-dc rectification in adapters for desktop PCs, servers, notebook PCs, plasma display panel (PDP) TVs, LCD TVs, and monitors. It also can be used as an alternative to synchronous rectification (SR) solutions.

Link to product datasheet: http://www.vishay.com/doc?88942

The new Vishay 298D MicroTan(R) surface-mount tantalum chip capacitors provide capacitance values from 1 microfarad at 16 V to 47 microfarads at 4 V. Ideal for signal processing and power management applications in mobile phones, digital cameras, and MP3 devices, the capacitors offer a capacitance tolerance of plus/minus 20%, voltage ratings from 4 WVDC to 16 WVDC, low ESR, and 0.01 CV DC leakage values. The leadframeless capacitors with face-down terminations in the small 0603 and 0805 footprints save printed circuit board space. They are rated to operate over the temperature range of -55 degrees C to +85 degrees C, and can be operated to +125 degrees C with voltage derating. They have lead (Pb)-free and RoHs-compliant terminations.

Link to product datasheet: http://www.vishay.com/doc?40065

Vishay Intertechnology, Inc., a Fortune 1,000 Company listed on the NYSE (VSH), is one of the world's largest manufacturers of discrete semiconductors (diodes, rectifiers, transistors, and optoelectronics and selected ICs) and passive electronic components (resistors, capacitors, inductors, sensors, and transducers). Vishay's components can be found in products manufactured in a very broad range of industries worldwide. Vishay is headquartered in Malvern, Pennsylvania, and has operations in 17 countries employing over 26,000 people. Vishay can be found on the Internet at http://www.vishay.com/.

Vishay Contact: Andrew Post Telephone: 1 610 251-5287 Global Communications Manager Fax: 1 610 889-0935 Vishay Intertechnology, Inc. Internet: andrew.post@vishay.com

Vishay Intertechnology, Inc.

CONTACT: Andrew Post, Global Communications Manager, VishayIntertechnology, Inc., +1-610-251-5287, Fax: +1-610-889-0935, orandrew.post@vishay.com

Web site: http://www.vishay.com/


Source: PRNewswire-FirstCall

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