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856496 数据表(PDF) 2 Page - TriQuint Semiconductor |
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856496 数据表(HTML) 2 Page - TriQuint Semiconductor |
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2 / 6 page ![]() 856496 208 MHz SAW Filter Data Sheet: Rev A 02/01/11 - 2 of 6 - Disclaimer: Subject to change without notice e © 2011 TriQuint Semiconductor, Inc. Connecting the Digital World to the Global Network ® Specifications Electrical Specifications (1) Specified Temperature Range: (2) -40 to +85 ºC Parameter (3) Conditions Min Typical (4) Max Units Center Frequency - 208 - MHz Insertion Loss F0 ± 1.92 MHz 206.08 – 209.92 MHz - 11.5 13 dB 1 dB Bandwidth (5) 206.08 – 209.92 MHz 3.84 4.23 - MHz Amplitude Variation F0 ± 1.92 MHz 206.08 – 209.92 MHz - 0.8 1.0 dB p-p Mean Group Delay F0 ± 1.92 MHz 206.08 – 209.92 MHz 1.029 1.035 1.039 - Phase Ripple F0 ± 1.92 MHz 206.08 – 209.92 MHz - 5.0 - deg Phase Ripple RMS F0 ± 1.92 MHz 206.08 – 209.92 MHz - 1.2 2.0 deg RMS EVM F0 ± 1.92 MHz 206.08 – 209.92 MHz - 3.0 6.0 % Stop band Attenuation (5) 148 - 180 MHz (F0 – 60 to F0 – 28 MHz) 180 - 190 MHz (F0 – 28 to F0 – 18 MHz) 190 - 203 MHz (F0 – 18 to F0 – 5 MHz) 203 - 204.7 MHz (F0 – 5 to F0 – 3.3 MHz) 204.7 - 205.2 MHz (F0 – 3.3 to F0 – 2.8 MHz) 205.2 - 205.4 MHz (F0 – 2.8 to F0 – 2.6 MHz) 205.4 - 205.485 MHz (F0 – 2. 6 to F0 – 2.515 MHz) 210.515 - 210.6 MHz (F0 + 2.515 to F0 + 2.6 MHz) 210.6 - 210.8 MHz (F0 + 2.6 to F0 + 2.8 MHz) 210.8 - 211.3 MHz (F0 + 2.8 to F0 + 3.3 MHz) 211.3 - 213 MHz (F0 + 3.3 to F0 + 5 MHz) 213 - 226 MHz (F0 + 5 to F0 + 18 MHz) 226 - 236 MHz (F0 + 18 to F0 + 28 MHz) 236 - 268 MHz (F0 + 28 to F0 + 60 MHz) 55 45 40 36 28 25 17 17 23 28 33 40 45 55 70 63 45 39 31 30 26 26 26 30 35 42 56 58 - - - - - - - - - - - - - - dB dB dB dB dB dB dB dB dB dB dB dB dB dB Source Impedance (balanced) (6) - - 200 - Load Impedance (balanced) (6) - - 200 - Notes: 1. All specifications are based on the TriQuint schematic for the main reference design shown on page 3 2. In production, devices will be tested at room temperature to a guardbanded specification to ensure electrical compliance over temperature 3. Electrical margin has been built into the design to account for the variations due to temperature drift and manufacturing tolerances 4. Typical values are based on average measurements at room temperature 5. Relative to minimum insertion loss 6. This is the optimum impedance in order to achieve the performance shown Absolute Maximum Ratings Parameter Rating Operating Temperature -40 to +85 oC Storage Temperature -40 to +85 oC Operation of this device outside the parameter ranges given above may cause permanent damage. |
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