No. | parte # | Fabricante | Descripción | Hoja de Datos |
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NXP |
High-performance low-power FM IF system higher IF bandwidth (25 MHz) and temperature compensated RSSI and limiters providing wide RSSI dynamic range, high IF/limiter gain and overall stability. The SA604A is available in an SO16 (surface-mounted miniature) and HXQFN16 package. 2. Features |
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NXP |
Low power FM IF system higher IF bandwidth (25 MHz) and temperature compensated RSSI and limiters permitting higher performance application compared with the SA604. The SA614A is available in a SO (surface-mounted miniature) package. 2. Features and benefits Low power co |
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NXP |
Radio tuning PLL frequency synthesizers |
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NXP |
Double-balanced mixer and oscillator and benefits Low current consumption: 2.4 mA typical Excellent noise figure: <4.7 dB typical at 45 MHz High operating frequency Excellent gain, intercept and sensitivity Low external parts count; suitable for crystal/ceramic filters SA602 |
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NXP |
1Ghz LNA and Mixer SR00082 Figure 1. Pin Configuration • Excellent noise figure: 2dB for the amplifier and 14dB for the mixer at 900MHz APPLICATIONS • Excellent gain stability versus temperature • Switchable overload capability • Amplifier matched to 50Ω • Mixer i |
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NXP |
High performance low power mixer FM IF system a higher mixer input intercept point, higher IF bandwidth (25 MHz) and temperature compensated RSSI and limiters permitting higher performance application. The SA605 is available in 20-lead SO (surface-mounted miniature package) and 20-lead SSOP (shr |
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NXP |
Low-voltage high performance mixer FM IF system and benefits Low power consumption: 3.5 mA typical at 3 V Mixer input to >150 MHz Mixer conversion power gain of 17 dB at 45 MHz XTAL oscillator effective to 150 MHz (LC oscillator or external oscillator can be used at higher frequencies) 1 |
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NXP |
Low-voltage high performance mixer FM IF system and benefits Low power consumption: 3.5 mA typical at 3 V Mixer input to >150 MHz Mixer conversion power gain of 17 dB at 45 MHz XTAL oscillator effective to 150 MHz (LC oscillator or external oscillator can be used at higher frequencies) 1 |
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NXP |
Radio tuning PLL frequency synthesizers |
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NXP |
Fast radio tuning PLL frequency synthesizer • On-chip AM and FM prescalers with high input sensitivity • On-chip high-performance one-input-two-output, tuning voltage amplifier for the AM and FM loop filters • On-chip two-level current amplifier (charge pump) for loop gain adjustment • One ref |
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NXP |
Single-Pole Double-Throw (SPDT) switch and benefits Wideband (DC to 1 GHz) Low through loss (1 dB typical at 200 MHz) Unused input is terminated internally in 50 Excellent overload capability (1 dB gain compression point +18 dBm at 300 MHz) Low DC power (170 A from 5 V supply |
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NXP |
Double-balanced mixer and oscillator and benefits Low current consumption Low cost Operation to 500 MHz Low radiated energy Low external parts count; suitable for crystal/ceramic filter Excellent sensitivity, gain, and noise figure 3. Applications Cordless telephone Port |
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NXP |
High performance low power mixer FM IF system a higher mixer input intercept point, higher IF bandwidth (25 MHz) and temperature compensated RSSI and limiters permitting higher performance application. The SA615 is available in 20-lead SO (surface-mounted miniature package) and 20-lead SSOP (shr |
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NXP |
Low voltage high performance mixer FM IF system and benefits Wideband data output (600 kHz minimum) Fast RSSI rise and fall times Low power consumption: 6.5 mA typical at 3 V Mixer input to >500 MHz Mixer conversion power gain of 11 dB at 240 MHz Mixer noise figure of 12 dB at 240 MHz |
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NXP |
Low voltage mixer FM IF system and benefits VCC = 2.7 V to 5.5 V Low power consumption: 8.6 mA (typical) at 3 V Wideband data output (1 MHz minimum) Fast RSSI rise and fall times Mixer input to >500 MHz Mixer conversion power gain of 9.2 dB and noise figure of 11 dB at |
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