856314 140 MHz SAW Filter Applications For Broadband applications SMP-35B, 9.0 x 7.01 x 1.50mm Product Features Functional Block Diagram Usable 3 dB bandwidth 72 MHz Gnd Gnd Gnd High-attenuation 8 7 6 Single-ended operation Ceramic Surface Mount Package (SMP) Input 9 5 Gnd Hermetically Sealed RoHS compliant, Pb-free Pb 10 4 Gnd bb 1 2 3 b Gnd Gnd Gnd P Top View bv General Description Pin Configuration P b Pin No. Label 856314 is RoHS compliant and Pb-free. 4 Output 9 Input 5,10 Ground 1,2,3,6,7,8 Case Ground Ordering Information Part No. Description 856314 Packaged Part 856314-EVB Evaluation board Standard T/R size = 2000 units/reel Data Sheet: Rev. B 09-26-14 Disclaimer: Subject to change without notice - 1 of 6 - 2014 TriQuint www.triquint.com 856314 140 MHz SAW Filter Absolute Maximum Ratings Notes: Parameter Rating 1. Operation of this device outside the parameter ranges given (1) o Storage Temperature -40 to +85 C may cause permanent damage. (2) o Operating Temperatures 0 to +70 C 2. Specifications are not guaranteed over all operable conditions. (1) (3) Electrical Specifications (2) o Test conditions unless otherwise noted: Temperature Range 0 to +70 C (4) Parameter Conditions Min Typical Max Units Center Frequency - 140 - MHz Maximum Insertion Loss At center frequency - 21 22.5 dB (5) 103 Lower 1.5dB Bandedge - 109 MHz 177 Upper 1.5dB Bandedge 171 - (5) - Lower 3dB Bandedge 102 104 MHz 176 Upper 3dB Bandedge 178 - (5) 89 Lower 40dB Bandedge 89 97 - MHz - Upper 40dB Bandedge - 186 191 Amplitude Variation 109 171 MHz - 0.7 1.5 dB p-p Phase Linearity 109 171 MHz - 4.0 10 deg p-p Group Delay Variation 109 171 MHz - 30 100 ns p-p 15 75 MHz 45 50 - 75 89 MHz 40 43 - (5) Relative Attenuation dB 191 215 MHz 40 44 - 215 298 MHz 42 46 - o Temperature Coefficient - -74 - ppm/ C (6) Source/Load Impedance Single ended - 50 - Notes: 1. All specifications are based on the TriQuint schematic 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 insertion loss at center frequency. 6. This is the optimum impedance in order to achieve the performance shown. Data Sheet: Rev. B 09-26-14 Disclaimer: Subject to change without notice - 2 of 6 - 2014 TriQuint www.triquint.com