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suppliers of RT9161-25CV(C1) and PDF data of RT9161-25CV(C1)

Part Numbert Mfg Packt D/C Descriptiont Qty Company/Contact  
RT9161-25CV(C1) RICHTEK  SOT-153  08+09+  stock  1100 
RT9161-25CV(C1) RICHTEK  SOT23  07+    211 
    JIETE TECHNOLOGY (HK) CO.,LTD
  • Contact:liu
  • Tel:86-755-33068110
  • Fax:86-755-33068200
  • Email: ic-ic.com@hotmail.com


RT9161-25CV(C1) RICHTEK    04+    3000 
    PERFECTION INT鈥橪 GROUP (HONGKO..
  • Contact:SUN
  • Tel:0086-755-25887780
  • Fax:0086-755-25831006
  • Email: david@perfectionhk.com
RT9161-25CV(C1) RICHTEK    03+    12800 

RT9161-25CV(C1) Datasheet

Part Number Outputs Input Frequency Output Frequency Range
cY26114 4 25MHz Crystal Input 2 copies of 100MHz, 1 copy of 50MHz, 1 copy 25/33/50/66MHz (frequency selectable)


RT9161-25CV(C1) Price
( ) : 2SA1710 Absolu te Maximum Ratiiigs at Ta = 250C CollecLor to Base Voltage VCBO Collector to Emitter Voltage VCEO Emitler to Base Voltage VEBO CollecLorCurrent . IC Collector Current(Pulse) ICP Collector DissipaLion Pc Junction Temperature Tj Storage Temperature Tstg Electrical Ch aracteristics at Ta = 250C Collec Lor CuLoff Curren t, ICBO VCB = ( - )200y,IE = 0 Emitter Cuto{T Current IEBO VEB = ( -)4V,Ic = 0 DC Current Gain hFE VCE = (-)10V,IC = (-)lOmA Gain-Bandwidth Product fT VCE =(-)30V,Jc = (-)10mA C-E Sat,urat,ion Voltage VCE{sat) lC = (-)20mA,IB = ( -)2mA B-E Saturation Voltage VBE{sat) lC = ( -)20mA,IB = ( -)2mA Output Capacitance cob VCB = ( -)30V,f= 1MHz Reverse Transfer Capacitance cre VCB= ( -)30V,f= 1MHz C-B Breakdown Voltage V(BR>CBO lC = ( -)10L1A,IE = o C-E Breakdown Voltage V(BR>CEO lC = ( -)lmA,RBE = co E-B Breakdo-vn Voltage V(BR)EBO IE = ( -)10pA,IC = o
RT9161-25CV(C1) on stock

Maximum instantaneous IF = 3.OA, TJ = 25aC forward voltage at: (1) IF = 3.OA, TJ = 1250C VF 0.80 0.65 V
Maximum DC reverse current TJ = 25aC at rated DC blocking voltage TJ = 1250C IR 20 4 mA


Front Side Bus Application If the CM3107-OOSN is instead used for the Front Side Bus application, where VDDQ could be connected to the 3.3V VCC rail for ease of connectivity, the power dissipated will increase to [3.3V-1.4V] = 1.9V times the sourcing current, or [1.4V - OV] = 1.4V times the sink- ing current.