RF3602D データシート PDFこの部品の機能は「Saw Filter」です。 |
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部品番号 |
RF3602D SAW Filter Preliminary RF3602D • • • • 303.325 to 307.300 MHz Filter Optimized for use with the TRC105 Transceiver Balanced 150 ohm IC Interface Complies with Directive 2002/95/EC (RoHS) Pb 305.3 MHz SA RF Monolithics |
文字列「 RF3602 」「 3602D 」で始まる検索結果です。 |
部品説明 |
1N3602 Diode (spec sheet) American Microsemiconductor |
2SK3602-01 N-CHANNEL SILICON POWER MOSFET 2SK3602-01 FUJI POWER MOSFET 200304 Super FAP-G Series Features High speed switching Low on-resistance No secondary breadown Low driving power Avalanche-proof N-CHANNEL SILICON POWER MOSFET Outline Drawings (mm) TO-220AB Applications Switching regulators UPS (Uninterruptible P Fuji Electric |
5962-0623602QPC (5962-0623601QPC / 5962-0623602QPC) 670MHz Low Noise Amplifiers ® 5962-0623601QPC, 5962-0623602QPC Data Sheet March 28, 2007 FN6473.0 670MHz Low Noise Amplifiers The 5962-0623601QPC and 5962-0623602QPC are fully DSCC SMD compliant parts and the SMD data sheets are available on the DSCC website (http://www.dscc.dla.mil/ programs/specfind/de Intersil Corporation |
8403602JA 2K x 8 Asynchronous CMOS Static RAM HM-65162 March 1997 2K x 8 Asynchronous CMOS Static RAM Description The HM-65162 is a CMOS 2048 x 8 Static Random Access Memory manufactured using the Intersil Advanced SAJI V process. The device utilizes asynchronous circuit design for fast cycle time and ease of use. The pinou Intersil Corporation |
8403602ZA 2K x 8 Asynchronous CMOS Static RAM HM-65162 March 1997 2K x 8 Asynchronous CMOS Static RAM Description The HM-65162 is a CMOS 2048 x 8 Static Random Access Memory manufactured using the Intersil Advanced SAJI V process. The device utilizes asynchronous circuit design for fast cycle time and ease of use. The pinou Intersil Corporation |
AP061CN3602MR High-Precision Voltage Detector AP061C Chipown Ultra-Small Package High-Precision Voltage Detector General Description The AP061C series is a series of high-precision voltage detectors developed using CMOS process. The detection voltage is fixed internally with an accuracy of ±2.0%. Two output forms, Nch ope Chipown |
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