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856653 Datasheet(PDF) 2 Page - TriQuint Semiconductor |
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856653 Datasheet(HTML) 2 Page - TriQuint Semiconductor |
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2 / 7 page ![]() 856653 1250 MHz Filter Data Sheet: Rev. E 14-06-16 - 2 of 7 - Disclaimer: Subject to change without notice © 2014 TriQuint www.triquint.com Absolute Maximum Ratings Parameter Rating 1. Operation of this device outside the parameter ranges given may cause permanent damage. Storage Temperature (1) - 40 to + 85 °C Operable Temperature (1) - 40 to + 85 °C Electrical Specifications (1) (3) Test conditions unless otherwise noted: (2) Temperature Range 0 to + 70 °C Parameter Conditions Min Typical (4) Max Units Center Frequency - 1250 – MHz Maximum Insertion Loss 1200 – 1300 MHz - 6.8 8 dB Amplitude Variation 1200 – 1300 MHz 1200 – 1300 MHz (in any 8 MHz channel) - - 1.1 1.1 3.0 2.0 dB p-p Group Delay Ripple 1200 – 1300 MHz 1200 – 1300 MHz (in any 8 MHz channel) - - 18 8 60 18 ns p-p Attenuation (5) 800 – 1052 MHz 1052 – 1152 MHz 1350 – 1450 MHz 1450 – 2000 MHz 45 40 20 40 55 50 25 50 - - - - – – – – – – – – dB Input / Output Return Loss 1200 – 1300 MHz - 9 - dB Test conditions unless otherwise noted: (2) Temperature Range - 40 to + 85 °C Parameter Conditions Min Typical (4) Max Units Maximum Insertion Loss 1200 – 1300 MHz - 6.8 8.5 dB Amplitude Variation 1200 – 1300 MHz 1200 – 1300 MHz (in any 8 MHz channel) - - 1.1 1.1 3.0 2.0 dB p-p Group Delay Ripple 1200 – 1300 MHz 1200 – 1300 MHz (in any 8 MHz channel) - - 18 8 60 18 ns p-p Attenuation (5) 800 – 1052 MHz 1052 – 1152 MHz 1350 – 1450 MHz 1450 – 2000 MHz 45 40 20 40 55 50 25 50 - - - - dB Input / Output Return Loss 1200 – 1300 MHz - 9 - dB Source/Load Im pedance (6) Balanced - 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 zero dB 6. This is the optimum impedance in order to achieve the performance shown |
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