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B3895

EPCOS
Part Number B3895
Manufacturer EPCOS
Description SAW Components
Published Aug 20, 2007
Detailed Description www.DataSheet4U.com SAW Components Data Sheet B3895 SAW Components Low-Loss Filter Data Sheet B3895 204,0 MHz Ceramic...
Datasheet PDF File B3895 PDF File

B3895
B3895


Overview
www.
DataSheet4U.
com SAW Components Data Sheet B3895 SAW Components Low-Loss Filter Data Sheet B3895 204,0 MHz Ceramic package QCC12C Features s s s s 2,54 2,54 1,0 000 111 11 00 00 11 000 111 00 11 000 11 111 00 00 11 00 00 11 111 000 11 111 00 11 00 11 000 000 111 00 11 000 111 000 111 00 11 000 000 111 111 00 11 12 11 1 2 3 Low-loss IF filter for S-CDMA applications 500 kHz usable bandwidth Temperature stable Ceramic SMD package 1,4 4 bottom view Terminals 1,48 111 000 00 11 000 111 00 11 000 111 00 11 000 000 111 00 11 111 00 11 00 11 000 111 11 00 00 11 000 111 00 11 000 11 111 00 00 11 00 11 10 9 8 7 0,6 000 111 000 111 000 111 000 111 000 111 00 11 11 00 00 11 00 11 00 11 00 11 11 00 00 11 00 11 00 11 s Gold plated 6 5 side view 5,0 top view 7,0 Dimensions in mm, approx.
weight 0,2 g Pin configuration 12 10 6 4 1, 2, 7, 8 3, 9 Input Input ground Output Output ground Ground Case ground Type B3895 Ordering code B39201-B3895-H310 Marking and Package according to C61157-A7-A95 Packing according to F61074-V8170-Z000 Electrostatic Sensitive Device (ESD) Maximum ratings Operable temperature range Storage temperature range DC voltage Source power T Tstg VDC Ps –40 / +80 –40 / +85 0 0 2 ˚C ˚C V dBm Aug 25, 2003 SAW Components Low-Loss Filter Data Sheet Characteristics Operating temperature range: Terminating source impedance: Terminating load impedance: T = 0 .
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70 ˚C ZS = 50 Ω and matching network ZL = 50 Ω and matching network min.
Nominal frequency Minimum insertion attenuation Pass bandwidth αrel αrel Amplitude ripple (p-p) ≤ 1,0 dB ≤ 3,0 dB typ.
204,0 9,0 max.
— 10,0 B3895 204,0 MHz fN αmin — — MHz dB B1dB B3dB ∆α — — 700 1150 — — kHz kHz fN ± 250 kHz Absolute group delay @ fN Group delay ripple (p-p) ∆τ τ — 0,5 1,0 dB — 0,8 — µs fN ± 250 kHz Relative attenuation (relative to αmin) fN − 10,0 MHz .
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fN − 2,0 MHz fN + 2,0 MHz .
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fN + 3,5 MHz fN + 3,5 MHz .
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fN + 4,5 MHz fN + 4,5 MHz .
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fN + 10,0 MHz Temperature co...



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