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RN1511

Toshiba Semiconductor
Part Number RN1511
Manufacturer Toshiba Semiconductor
Description Silicon NPN Transistor
Published Apr 16, 2005
Detailed Description RN1510,RN1511 TOSHIBA Transistor Silicon NPN Epitaxial Type (PCT Process) RN1510,RN1511 Unit: mm Switching, Inverter C...
Datasheet PDF File RN1511 PDF File

RN1511
RN1511


Overview
RN1510,RN1511 TOSHIBA Transistor Silicon NPN Epitaxial Type (PCT Process) RN1510,RN1511 Unit: mm Switching, Inverter Circuit, Interface Circuit And Driver Circuit Applications l Including two devices in SMV l (super mini type with 5 leads) l With built-in bias resistors l Simplify circuit design l Reduce a quantity of parts and manufacturing process l Complementary to RN2510~RN2511 Equivalent Circuit Maximum Ratings (Ta = 25°C) (Q1, Q2 Common) Characteristic Collector-base voltage Collector-emitter voltage Emitter-base voltage Collector current Collector power dissipation Junction temperature Storage temperature range Symbol VCBO VCEO VEBO IC PC * Tj Tstg Rating 50 50 5 100 300 150 −55~150 Unit V V V mA mW °C °C JEDEC EIAJ TOSHIBA Weight: 0.
014g ― ― 2-3L1A Equivalent Circuit (Top View) *: Total rating Electrical Characteristics (Ta = 25°C) (Q1, Q2 Common) Characteristic Collector cut-off current Emitter cut-off current DC current gain Collector-emitter saturation voltage Transition frequency Collector output capacitance Input resistor RN1510 RN1511 Symbol ICBO IEBO hFE VCE (sat) fT Cob R1 Test Circuit ― ― ― ― ― ― ― Test Condition VCB = 50V, IE = 0 VEB = 5V, IC = 0 VCE = 5V, IC = 1mA IC = 5mA, IB = 0.
25mA VCE = 10V, IC = 5mA VCB = 10V, IE = 0, f = 1MHz Min ― ― 120 ― ― ― 3.
29 7 Typ.
― ― ― 0.
1 250 3 4.
7 10 Max 100 100 700 0.
3 ― 6 6.
11 13 V MHz pF kW Unit nA nA 1 2001-06-13 RN1510,RN1511 (Q1, Q2 Common) 2 2001-06-13 RN1510,RN1511 (Q1, Q2 Common) 3 2001-06-13 RN1510,RN1511 Type Name Marking RN1510 RN1511 4 2001-06-13 RN1510,RN1511 RESTRICTIONS ON PRODUCT USE 000707EAA · TOSHIBA is continually working to improve the quality and reliability of its products.
Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress.
It is the responsibility of the buyer, when utilizing TOSHIBA products, to comply with the standards of safety in making a safe design for t...



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