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RN2963

Toshiba
Part Number RN2963
Manufacturer Toshiba
Description Silicon PNP Transistor
Published Nov 11, 2013
Detailed Description RN2961~RN2966 TOSHIBA Transistor Silicon PNP Epitaxial Type (PCT Process) RN2961,RN2962,RN2963,RN2964,RN2965,RN2966 Swi...
Datasheet PDF File RN2963 PDF File

RN2963
RN2963


Overview
RN2961~RN2966 TOSHIBA Transistor Silicon PNP Epitaxial Type (PCT Process) RN2961,RN2962,RN2963,RN2964,RN2965,RN2966 Switching, Inverter Circuit, Interface Circuit And Driver Circuit Applications l Including two devices in US6 (ultra super mini type with 6 leads) l With built-in bias resistors l Simplify circuit design l Reduce a quantity of parts and manufacturing process l Complementary to RN1961~RN1966 Unit: mm Equivalent Circuit and Bias Resistor Values Type No.
RN2961 RN2962 RN2963 RN2964 RN2965 RN2966 R1 (kΩ) 4.
7 10 22 47 2.
2 4.
7 R2 (kΩ) 4.
7 10 22 47 47 47 JEDEC EIAJ TOSHIBA Weight: 6.
8mg ― ― 2-2J1B Equivalent Circuit (Top View) Maximum Ratings (Ta = 25°C) Characteristic Collector-base voltage Collector-emitter voltage RN2961~2966 RN2961~2964 RN2965, 2966 Collector current Collector power dissipation Junction temperature Storage temperature range IC PC * Tj Tstg Symbol VCBO VCEO Rating −50 −50 −10 −5 −100 200 150 −55~150 mA mW °C °C Unit V V * : Total rating 1 2001-06-07 Free Datasheet http://www.
datasheet4u.
com/ RN2961~RN2966 Electrical Characteristics (Ta = 25°C) (Q1, Q2 Common) Characteristic Collector cut-off current RN2961~2966 RN2961 RN2962 Emitter cut-off current RN2963 RN2964 RN2965 RN2966 RN2961 RN2962 DC current gain RN2963 RN2964 RN2965 RN2966 Collector-emitter saturation voltage RN2961~2966 RN2961 RN2962 Input voltage (ON) RN2963 RN2964 RN2965 RN2966 Input voltage (OFF) Translation frequency Collector output capacitance RN2961~2964 RN2965, 2966 RN2961~2966 RN2961~2966 RN2961 RN2962 Input resistor RN2963 RN2964 RN2965 RN2966 RN2961~2964 Resistor ratio RN2965 RN2966 R1/R2 R1 VI (OFF) fT Cob VI (ON) VCE (sat) hFE IEBO Symbol ICBO ICEO Test Circuit ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― ― VCE = −5V, IC = −0.
1mA VCE = −10V, IC = −5mA VCB = −10V, IE = 0 f = 1MHz VCE = −0.
2V IC = −5mA IC = −5mA IB = −0.
25mA VCE = −5V IC = −10mA VEB = −5V, IC = 0 VEB = −10V, IC = 0 Test Condition VCB = −50V, IE = 0 VCE = −50V, IB = 0 ...



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