INC2001AX SERIES FOR MUTING APPLICATION SILICON NPN EPITAXIAL TYPE FEATURE OUTLINE DRAWING INC2001AT2 (PRELIMINARY) 0.3 0.425 ③ 0.15 0.65 ② 1.25 0~0.1 0.7 0.9 ③ ① 0.65 1.2 0.8 2.0 1.3 ② 0.2 0.25 0.4 ① 0.425 0.5 MARKING 0.8 0.2 APPLICATION muting circuit , switching circuit INC2001AM1 2.1 0.4 ・Small package for easy mounting. ・High reverse hFE ・Small collector to emitter saturation voltage. VCE(sat)=40mV(TYP.)(@IC=50mA/IB=2.5mA) ・Low on Resistance Ron=0.65Ω(TYP.)(@IB=5mA) Unit:mm R W・ JEITA, JEDEC:- ISAHAYA:T-USM JEITA:SC-70 JEDEC:- TERMINAL CONNECTOR ①:BASE ②:EMITTER ③:COLLECTOR TERMINAL CONNECTOR ①:BASE ②:EMITTER ③:COLLECTOR INC2001AU1 INC2001AC1 1.6 JEITA:SC-75A JEDEC:- TERMINAL CONNECTOR ①:BASE ②:EMITTER ③:COLLECTOR ISAHAYA ELECTRONICS CORPORATION 0.4 0.95 ③ 0.16 1.1 ② 0.5 0~0.1 0~0.1 0.55 0.15 ③ ① 1.5 0.8 1.6 1.0 0.7 0.5 0.95 0.4 2.9 1.90 ② 0.8 0.3 0.5 ① 0.5 0.4 2.5 JEITA:SC-59 JEDEC:Similar to TO-236 TERMINAL CONNECTOR ①:BASE ②:EMITTER ③:COLLECTOR INC2001AX SERIES . FOR MUTING APPLICATION SILICON NPN EPITAXIAL TYPE MAXIMUM RATING(Ta=25℃) SYMBOL PARAMETER VCBO VEBO VCEO I C Collector to Base voltage Emitter to Base voltage Collector to Emitter voltage Collector current Collector dissipation(Ta=25℃) Junction temperature Storage temperature PC Tj Tstg RATING INC2001AU1 INC2001AM1 40 40 20 600 INC2001AT2 125(※) 150 PARAMETER V(BR)CBO V(BR)EBO V(BR)CEO I CBO I EBO hFE VCE(sat) fT C to B break down voltage E to B break down voltage C to E break down voltage Collector cut off current Emitter cut off current DC forward current gain C to E saturation voltage Gain band width product Collector output capacitance Output “ON” resistance Cob RON V V V mA 200 +125 -55~+125 mW +150 -55~+150 ELECTRICAL CHARACTERISTICS(Ta=25℃) SYMBOL UNIT INC2001AC1 ℃ ℃ ※package mounted on 9mm×19mm×1mm glass-epoxy substrate. TEST CONDITION MIN 40 40 20 I C=50μA,IE=0mA I E=50μA,IC=0mA I C=1mA,RBE=∞ VCB=40V,I E =0mA VEB=40V,I C =0mA VCE=5V,I C =10mA I C =50mA,I B =2.5mA VCE=10V,I E =-10mA,f=100MHz VCB=10V,I E =0A,f=1MHz IB=5mA,RL=1kΩ LIMIT TYP 820 40 50 5.0 0.65 UNIT MAX 0.5 0.5 2500 150 V V V μA μA - mV MHz pF Ω TYPICAL CHARACTERISTICS COMMON EMITTER OUTPUT COMMON EMITTER TRANSFER 50 100 VCE=5V Ta=25℃ 90uA 80 COLLECTOR CURRENT : IC (mA) COLLECTOR CURRENT : IC (mA) 100uA 80uA 70uA 60uA 60 50uA 40uA 30uA 40 20uA 10uA 20 40 30 Ta=75℃ 25℃ 20 -40℃ 10 IB=0uA 0 0 0 1 2 3 4 COLLECTOR TO EMITTER VOLTAGE : VCE (V) 5 0 0.2 0.4 0.6 BASE TO EMITTER VOLTAGE : VBE (V) ISAHAYA ELECTRONICS CORPORATION 0.8 1 DC FORWARD CURRENT GAIN VS. COLLECTOR CURRENT DC REVERSE CURRENT GAIN VS. COLLERCTOR CURRENT 10000 10000 VEC=5V VCE=5V DC REVERSE CURRENT GAIN : hFER DC FORWARD CURRENT GAIN : hFE Ta=75℃ 1000 25℃ -40℃ 100 10 Ta=75℃ 1000 25℃ -40℃ 100 10 1 1 0.1 1 10 100 1000 0.1 1 COLLECTOR CURRENT : IC (mA) COLLECTOR TO EMITTER SATURATION VOLTAGE VS. COLLECTOR CURRENT 1000 GAIN BAND WIDTH PRODUCT VS. EMITTER CURRENT 100 1000 Ta=25℃ VCE=10V IC/IB=20 GAIN BAND WIDTH PRODUCT : fT(MHz) COLLECTOR TO EMITTER SATURATION VOLTAGE VCE(sat) (mV) 10 100 COLLECTOR CURRENT : -IC (mA) 100 Ta=75℃ 10 25℃ -40℃ 80 60 40 20 0 1 0.1 1 10 100 -1 1000 COLLECTOR CURRENT : IC (mA) COLLECTOR OUTPUT CAPACITANCE VS. COLLECTOR TO BASE VOLTAGE -10 EMITTER CURRENT : IE(mA) -100 ON RESISTANCE VS. BASE CURRENT 100 100 ON RESISTANCE : Ron (Ω) COLLECTOR OUTPUT CAPACITANCE : Cob(pF) Ta=25℃ 10 1 10 Ta=75℃ 1 25℃ -40℃ 0.1 0.1 1 10 COLLECTOR TO BASE VOLTAGE : VCB(V) 100 0.1 0.01 0.1 1 BASE CURRENT : IB (mA) ISAHAYA ELECTRONICS CORPORATION 10 Marketing division, Marketing planning department 6-41 Tsukuba, Isahaya, Nagasaki, 854-0065 Japan Keep safety first in your circuit designs! ·ISAHAYA Electronics Corporation puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or property damage. Remember to give due consideration to safety when making your circuit designs, with appropriate measures such as (1) placement of substitutive, auxiliary, (2) use of non-farmable material or (3) prevention against any malfunction or mishap. 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