TSF1542D50-S9 TOKEN [Token Electronics Industry Co., Ltd.], TSF1542D50-S9 Datasheet
TSF1542D50-S9
Related parts for TSF1542D50-S9
TSF1542D50-S9 Summary of contents
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SAW Filters Technology SAW Filters (TSF) Make New Waves in The Wireless World Preview With the growth of wireless communications, SAW filters have become a critical component for electronics manufacturers. Token develops and manufactures a complete line ...
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SAW for Automotive Electronics & Remote Control Typical Specification SAW Filters for Automotive Electronics & Remote Control - Front end filters are key components which transmit in the USA typically at 315 or 915 MHz and in Europe at 433.92 ...
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SAW for Automotive Electronics & Remote Control Typical Specification SAW Filters for Automotive Electronics & Remote Control - Front end filters are key components which transmit in the USA typically at 315 or 915 MHz and in Europe at 433.92 ...
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SAW for Automotive Electronics & Remote Control Typical Specification SAW Filters for Digital Satellite Broadcasting (DSB Receiver) - Television and radio broadcasting is being progressively digitized worldwide. The benefits are obvious: superior sound and picture quality, and many more channels ...
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... RF Filters for GPS Typical Specification Center Freq. Part Number (MHz) TSF1542D50-S9 1542.50 TSF1575D42A-S9 1575.42 TSF1575D42B-S6 1575.42 Version 2010 Saw for GPS Mobile Communications BW (MHz) 40 2.4 2.4 http://www.token.com.tw/ Package IL(dB) SMD Type 3.5 DCC6C 1.6 DCC6C 1.6 QCC8B rfq token.com.tw DIP Type ...
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Saw for WLAN Mobile Communications IF Filters for Wireless LAN Typical Specification Center Freq. Part Number (MHz) TSF280D00-S4 280 TSF374D00A-D1 374 TSF374D00B-D1 374 TSF374D00C-S4 374 TSF374D00D-S4 374 TSF374D00E-S4 374 TSF374D00F-S4 374 TSF374D00G-S6 374 TSF374D00H-S6 374 http://www.token.com.tw 3db ...
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Typical Specification Center Freq. Part Number (MHz) TSF452D50-S7 452.5 TSF462D50-S7 462.5 TSF455D00-S7 455.0 TSF465D00-S7 465.0 TSF481D25-S7 481.25 TSF491D25-S7 491.25 TSF836D50-S9 836.5 TSF881D50-S9 881.5 TSF897D50A-S7 897.5 TSF897D50B-S7 897.5 TSF942D50-S7 942.5 TSF900D00A-S7 900 TSF900D00B-S9 900 TSF945D00A-S7 945 TSF945D00B-S9 945 TSF902D50A-S9 902.5 TSF902D50B-S7 ...
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Typical Specification Part Number TSF903D65-S7 TSF915D00A-S7 TSF915D00B-S9 TSF915D00C-S9 TSF915D00D-S7 TSF915D00E-S9 TSF915D00F-S7 TSF926D25-S7 Note: 1. 1dB Bandwidth : 6.75 MHz (CH1~CH5) ; 6.50 MHz 2. Insertion Loss : 23.0 dB typical ; 6.50 dB typical (NDF25C) 3. Passband Ripple :+ 0.6 ...
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Typical Specification Lower Freq. Part Number (MHz) TSF908D50A-S4 886 TSF908D50B-S4 886 TSF908D50C-S6 886 TSF908D50D-S6 886 TSF915D00A-S6 903 TSF915D00B-S6 903 TSF914D95A-S6 903.45 TSF914D95B-S6 903.45 TSF914D95C-D1 903.75 TSF914D95D-D1 903.75 TSF914D95E-S4 903.75 TSF914D95F-S4 903.75 TSF914D95G-S6 903.75 TSF914D95H-S6 903.75 TSF937D00A-D1 914.5 TSF937D00B-D1 914.5 TSF937D00C-S4 ...
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Typical Specification Center Freq. Part Number (MHz) TSF139D00-D2 139 TSF147D00A-D2 147 TSF147D00B-S4 147 TSF155D00A-D2 155 TSF155D00B-S4 155 TSF163D00A-D2 163 TSF163D00B-S4 163 TSF171D00A-D2 171 TSF171D00B-S4 171 TSF281D00A-D2 281 TSF281D00B-S4 281 TSF930D50A-D2 930.5 TSF930D50B-S4 930.5 TSF930D50C-S7 930 SAW Filters ...
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Typical Specification Lower Freq. Part Number (MHz) TSF35D42-S2 35.42 TSF96D00B-S3 96 TSF96D00C-S1 96 TSF110D00A-S4 110 TSF110D00B-S1 110 TSF110D00C-S1 110 TSF110D592A-S4 110.592 TSF110D592B-S1 110.592 TSF130D38A-S6 130.38 TSF130D38B-S7 130.38 TSF199D00-S3 199 TSF204D00-S1 204 TSF240D00-S4 240 TSF243D95A-S7 243.95 TSF243D95B-S7 243.95 TSF243D95C-S9 243.95 TSFD243D95D-S8 ...
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How to Order TSF 302D00 SAW Filters Part Type Center Freq.(MHz) Code Center Freq. 302D00 310D00 391D25 Series No.: None Package: S1, S2, D1, D2 ...
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RF & IF Filter Applications ● RF Filters (front end) - The main key factor of insertion loss on system performance criticizes the application of resonant design principles such as LCRF (Longitudinally-Coupled Resonator Filter), IEF (Impedance ElementFilter), and IEF balanced ...
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SAW Grossary What is SAW - Surface Acoustic Wave - SAWs were first explained in 1885 by Lord Rayleigh, who described the surface acoustic mode of propagation and predicted its properties in his classic paper. Named after their discoverer, Rayleigh ...