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  www.rfm.com e-mail: info@rfm.com page 1 of 2 ?2008 by rf monolithics, inc. RF3417 - 3/21/08 electrical characteristics characteristic sym notes minimum typical maximum units center frequency at 25c absolute frequency f c 1, 2 314.92 315.00 315.080 mhz tolerance from 315.0 mhz d fc 80 db insertion loss il 1 1.7 3.0 db 3 db bandwidth bw 3 1, 2 500 700 800 khz rejection at f c - 21.4 mhz (image) 1 40 50 db at f c - 10.7 mhz (lo) 15 40 ultimate 80 temperature operating case temp. t c 3, 4 -40 +85 c turnover temperature t o 22 37 52 c turnover frequency f o f c mhz freq. temp. coefficient ftc 0.032 ppm/c 2 frequency aging absolute value during the first year |fa| 5 10 ppm/yr external impedance series inductance l 1 86 nh (pin 1), 82 nh (pin 2) shunt capacitance c 9 pf lid symbolization (in addition to lot and/or date codes) rfm RF3417 to39-3 case ? ideal front-end filter for usa automotive wireless receivers ? low-loss, coupled-resonator quartz design ? simple external impedance matching ? rugged to39 hermetic package ? complies with directive 2002/95/ec (rohs) the RF3417 is a low-loss, compact, and economical surface-acoustic-wave (saw) filter designed to provide front-end selectivity in 315.0 mhz receivers. receiver designs using this filter include superhet with 10.7 mhz or 500 khz if, direct conversion and superregen. typical applications of these receivers are wireless remote- control and security devices (especially for automotive keyless entry) operating in the usa under fcc part 15, in canada under doc rss-210, and in italy. this coupled-resonator filter (crf) uses selective null placement to provide suppression, typically greater than 40 db, of the lo and image spurious responses of superhet receivers with 10.7 mhz if. rfms advanced saw design and fabrication technology is utilized to achieve high performance and very low loss with simple external impedance matching (not included). quartz construction provides excellent frequency stability over a wide temperature range. 315.0 mhz saw filter RF3417 caution: electrostatic sensitive device. observe precautions for handling. notes: 1. unless noted otherwise, all measurements are made with the filter installed in the specified test fixture which is connected to a 50 w test system with vswr 1.2:1. the test fixture l and c are adjusted for minimum insertion loss at the filter center frequency, f c . note that insertion loss, bandwidth, and passband shape are dependent on the impedance matching component values and quality. 2. the frequency f c is defined as the midpoint between the 3db frequencies. 3. unless noted otherwise, specifications apply over the entire specified operating temperature range. 4. the turnover temperature, t o , is the temperature of maximum (or turnover) frequency, f o . the nominal frequency at any case temperature, t c , may be calculated from: f = f o [1 - ftc (t o -t c ) 2 ]. 5. frequency aging is the change in fc with time and is specified at +65c or less. aging may exceed the specification for prolo nged temperatures above +65c. typically, aging is greatest the first year after manufacture, decreasing significantly in subsequent years. 6. the design, manufacturing process, and specifications of this device are subject to change without notice. 7. one or more of the following u.s. patents apply: 4,54,488, 4,616,197, and others pending. 8. all equipment designs utilizing this product must be approved by the appropriate government agency prior to manufacture or sa le. pb www.datasheet.net/ datasheet pdf - http://www..co.kr/
www.rfm.com e-mail: info@rfm.com page 2 of 2 ?2008 by rf monolithics, inc. RF3417 - 3/21/08 absolute maximum ratings typical filter response typical filter responses are shown below. the actual response is dependent on external impedance matching and circuit layout. i llustrated frequencies and minimum rejection for lo and image are shown only for superhet receivers with 10.7 mhz if. rating value units incident rf power +13 dbm dc voltage between any two pins (observe esd precautions) 30 vdc case temperature 5 -40 to +85 c soldering temperature (10 seconds/5 cycles max) 260 c . electrical connections typical test circuit case design lo 0 db -10 -20 -30 -40 -50 -60 -70 -80 5 mhz/div frequency image amplitude response bottom view pin 1 pin 2 pin 3 pin connection 1 input or output 2 output or input 3 case ground 3 l cc l 2 3 1 from 50 network analyzer w to 50 w network analyzer dimensions millimeters inches min max min max a 9.40 0.370 b 3.18 0.125 c 2.50 3.50 0.098 0.138 d 0.46 nominal 0.018 nominal e 5.08 nominal 0.200 nominal f 2.54 nominal 0.100 nominal g 2.54 nominal 0.100 nominal h 1.02 0.040 j 1.40 0.055 0 db -1 -2 -3 -4 -5 -6 -7 -8 100 khz/div frequency amplitude response minimum 3db passband at 25 c o b 45 j (2 places) d (3 places) h g e f c a www.datasheet.net/ datasheet pdf - http://www..co.kr/


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