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SVC371 Datasheet(PDF) 1 Page - Sanyo Semicon Device |
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SVC371 Datasheet(HTML) 1 Page - Sanyo Semicon Device |
1 / 3 page 33098HA (KT)/52595GI (KOTO)/TA-0335 No.5135-1/3 SVC371 Ordering number :EN5135A Composite Varactor Diode for AM Receiver Low-Voltage Electronic Tuning Applications SANYO Electric Co.,Ltd. Semiconductor Bussiness Headquarters TOKYO OFFICE Tokyo Bldg., 1-10, 1 Chome, Ueno, Taito-ku, TOKYO, 110-8534 JAPAN Diffused Junction Type Sillicon Diode Specifications Absolute Maximum Ratings at Ta = 25˚C Package Dimensions unit:mm 1268 [SVC371] Electrical Characteristics at Ta = 25˚C Note)*1:1MHz signal:20mVrms. Note)*2:Calculate using the average of tow diodes contained in each element of OSC, RF1, RF2. Note)*:The SVC371 is classified by C1V as follows: Features · Excellent large-input characteristics because of dual- varactor composite type. · The number of manufacturing processes can be reduced and automatic mounting is possible because of composite type. · High capacitance ratio and high quality factor. · Facilitates tuning circuit configuration because the cathodes of three dual-type elements are separated from each other, resulting in almost no interelement coupling. · Possible to offer the SVC371 devices in a tape reel packaging. · Surface mount type. ˚C ˚C Electrical Connection 1:Anode 2:Cathode 3:Anode 4:Cathode 5:Anode 6:Anode 7:Cathode 8:Anode SANYO:SOP8 r e t e m a r a Pl o b m y Ss n o i t i d n o Cs g n i t a Rt i n U e g a t l o V e s r e v e RVR 6 1V e r u t a r e p m e T n o i t c n u Jj T 5 2 1 e r u t a r e p m e T e g a r o t Sg t s T 5 2 1 + o t 5 5 – k n a RC V 1 ) F p ( R0 . 1 9 4 o t 0 . 0 6 4 S0 . 5 1 5 o t 0 . 2 8 4 T0 . 0 4 5 o t 0 . 5 0 5 r e t e m a r a Pl o b m y Ss n o i t i d n o C s g n i t a R t i n U n i mp y tx a m e g a t l o V n w o d k a e r BV R ) R B ( IR A µ 0 1 =6 1V ) e d o i d e n O ( t n e r r u C e s r e v e RIR VR V 0 2 = 0 0 1A n ) e g a r e v A ( e c n a t i c a p a C l a n i m r e t r e t n I C V 1 VR 1 * z H M 1 = f , V 1 =* 0 6 4* 0 4 5F p C V 6 VR z H M 1 = f , V 6 =0 5F p C V 8 VR z H M 1 = f , V 8 =9 16 2F p r o t c a F y t il a u QQ VR z H M 1 = f , V 1 =0 0 2 o i t a R e c n a t i c a p a CR CC V 1 C / V 8 z H M 1 = f ,5 . 8 1 2 * e c n a r e l o T g n i h c t a M ∆Cm V , C S O C / | F p 5 2 . 0 – C S O C – N F R C | R z H M 1 = f , V 1 = VR z H M 1 = f , V 6 = VR z H M 1 = f , V 8 = 5 . 2 0 . 3 0 . 3 % % % |
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