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suppliers of 10RIA20M and PDF data of 10RIA20M

Part Numbert Mfg Packt D/C Descriptiont Qty Company/Contact  
10RIA20M IR    2002+    110 
    BONASE(HK) ELECTRONICS CO., L..
  • Contact:Vincent
  • Tel:86-0755-82579312
  • Fax:86-0755-83239040
  • Email: bonase@vip.163.com
10RIA20M IR  TO-48    IN STOCK  200 
10RIA20M IR        50 
    ARIC Electronic TECH
  • Contact:Tracy
  • Tel:86-755-33972493
  • Fax:86-755-83975196
  • Email: ARIC888@ARIC-IC.COM

10RIA20M Datasheet

Characteristic Symbol 2SB703 2SB703 2SD703A 2SD743A Unit
Collector-Emitter Voltage VCEO 80 100 V
Collector-Base Voltage VCBO 1 100 V
Emitter-Base Voltage VEBO 5.0 V
Collector Current - Continuous - Peak IC ICM 4.0 6.0 A
Base current lB 1.0 A
Total Power Dissipation @Tc = 250C Derate above 250C PD 40 0.322 W wPc
Operating and Storage Junction Temperature Range Tj ,TSTG -55 to +150 oC


10RIA20M Price
CAUTION: Stresses above those listed in "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied.
10RIA20M on stock
' Low-voltage opci'atitm and low-power consumpLion ~ On-chip frequency-sbifted keyed (FSK) comparacor ' On-chip micropbone amplifier wi audio limiter and mute option ' Expander oucput analog switch for telepbone or incer- com operaLion ' Low-poweL scandby mode * 1.8 t0 6.0 V supply ' 24~pin SSOP

Symbol Parameter Test Conditions Min Max Units
hFE DC Forward Current Gain VCE= 5.0 V, lC = 2 A 15 120
Gp Power Gain Vcc = 26 V, lco = 260 mA, POUT = 60 W, f = 1615, 1685 MHz 9.0 dB
Tlc Collector Efficiency Vcc = 26 V, lco = 260 mA, POUT = 60 W, f = 1615, 1685 MHz 40 %
RL Input Return Loss Vcc = 26 V, lco = 260 mA, POUT = 60 W, f = 1615, 1685 MHz 10 dB
VSWR-T Load Mismatch Tolerance Vcc = 26 V, lco = 260 mA, POUT = 60 W, f = 1615, 1685 MHz 21


for i = 16 t0 127, Max( ) is the maximum value of the resistance and Min ( ) is the minimum value of the resistance over the temperature range 13. This parameter is not 100% tested. 14. These are I2C specific parameters and are not directly tested, however they are used during device testing to validate device specification.