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 Midium Power Transistors (80V / 0.7A)
2SCR514R
Features 1) Low saturation voltage, typically V CE (sat) = 0.3V (Max.) (I C / I B= 300mA / 15mA) 2) High speed switching
(3)
Dimensions (Unit : mm)
TSMT3
Structure NPN Silicon epitaxial planar transistor
(1) (2)
Applications Driver Packaging specifications Type Package Code Basic ordering unit (pieces) TSMT3 TL 3000
(1) Base (2) Emittrer (3) Collector
Abbreviated symbol : ND
Inner circuit
(3)
(1)
Absolute maximum ratings (Ta = 25C) Symbol Parameter Collector-base voltage Collector-emitter voltage Emitter-base voltage Collector current Power dissipation Junction temperature Range of storage temperature
*1 Pw=10ms, Single Pulse *2 Mounted on a recommended land. *3 Mounted on a 40 x 40 x 0.7[mm3] ceramic substrate.
Limits 80 80 6 0.7 1.4 0.5 1.0 150 -55 to 150
Unit V V V A A W W C C
(1) Base (2) Emittrer (3) Collector
(2)
VCBO VCEO VEBO IC ICP*1 PD*2 PD*3 Tj Tstg
DC Pulsed
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1/5
2010.06 - Rev.A
2SCR514R
Electrical characteristic (Ta = 25C) Parameter Collector-emitter breakdown voltage Collector-base breakdown voltage Emitter-base breakdown voltage Collector cut-off current Emitter cut-off current Collector-emitter saturation voltage DC current gain Transition frequency Collector output capacitance Turn-on time Storage time Fall time
*1 See switching time test circuit
Symbol BVCEO BVCBO BVEBO ICBO IEBO VCE(sat) hFE fT Cob ton *1 tstg *1 tf *1 Min. 80 80 6 120 Typ. 100 320 6 50 650 100 Max. 1 1 300 390 Unit V V V A A MHz pF ns ns ns Conditions IC= 1mA IC= 100A IE= 100A VCB= 80V VEB= 4V VCE= 3V, IC= 100mA
Data Sheet
mV IC= 300mA, IB= 15mA VCE= 10V IE=-200mA, f=100MHz VCB= 10V, IE=0A f=1MHz IC= 0.35A, IB1= 35mA, IB2=-35mA, VCC~ 10V _
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2/5
2010.06 - Rev.A
2SCR514R
Electrical characteristic curves (Ta = 25C)
Data Sheet
Fig1. Typical Output Characteristics 0.30 1.5mA 0.25 3mA COLLECTOR CURRENT :IC[A] 0.20 5mA 2.0mA 2.5mA 1.0mA DC CURRENT GAIN :hFE 1000
Fig2. DC Current Gain vs. Collector Current() Ta=25
0.15
0.5mA
100
VCE=5V 3V
0.10
0.05 Ta=25 0.00 0 0.5 1 1.5 2 10 1 10 100 1000
COLECTOR TO EMITTER VOLTAGE:VCE[V]
COLLECTOR CURRENT :IC[mA]
Fig3. DC Current Gain vs.Collector Current() 1000 COLLECTOR SATURATION VOLTA AGE :VCE(sat)[V] VCE=3V
Fig4. Collector-Emitter Saturation Voltage vs. Collector Current() 1 Ta=25
DC CURRENT GAIN :hFE
100
Ta=125 75 25 -40
0.1
IC/IB=50 20 10
10 1 10 100 1000
0.01 1 10 100 1000
COLLECTOR CURRENT :IC[mA] Fig5. Collector-Emitter Saturation Voltage vs. Collector Current() 1 COLLECTOR SATURATION VOLTAGE :VCE(sat)[V] IC/IB=20 COLLECTOR CURRENT :IC[mA] 1000 VCE=3V
COLLECTOR CURRENT :IC[mA] Fig.6 Ground Emitter Propagation Characteristics
100
Ta=125 75 25 -40
0.1
Ta=125 75 25 -40
10
0.01 1 10 100 COLLECTOR CURRENT :IC[mA] 1000
1 0 0.5 1 BASE TO EMITTER VOLTAGE: VBE[V]
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3/5
2010.06 - Rev.A
2SCR514R
Data Sheet
Fig.7 Emitter input capacitance vs. Emitter-Base Voltage Collector output capacitance vs. Collector-Base Voltage 1000 COLLECTOR OUTPUT CAPACITANCE : Cob(pF) EMITTER INPUT CAPACITANCE : Cib(pF) Ta=25 f=1MHz IE=0A IC=0A 1000
Fig8. Gain Bandwidth Product vs. Emitter Current
Ta=25 VCE=10V TRANSITION FREQUENCY :fT[MHz]
100 Cib
100
10 Cob
1 0.1 1 10 COLLECTOR - BASE VOLTAGE : VCB (V) EMITTER - BASE VOLTAGE : VEB (V) 100
10 10 100 EMITTER CURRENT :IE[mA] 1000
Fig9. Safe Operating Area
1ms 10ms COLLECTOR CURRENT : IC (A) 1 100ms 100
0.1
0.01
DC (Mounted on a recommended land) Ta=25 Single non repetitive pulse
0.001 0.1 1 10 100
COLLECTOR TO EMITTER VOLTAGE : VCE (V)
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4/5
2010.06 - Rev.A
2SCR514R
Switching time test circuit
Data Sheet
RL=27 VIN IB1 IC IB2
VCC
_ 10V ~
Pw
_ Pw ~ 50s DUTY CYCLE1%
IB1
BASE CURENT WAVEFORM
IB2
ton
tstg
tf
COLLECTOR CURRENT WAVEFORM
90% IC 10%
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3/5
2010.06 - Rev.A
Notice
Notes
No copying or reproduction of this document, in part or in whole, is permitted without the consent of ROHM Co.,Ltd. The content specified herein is subject to change for improvement without notice. The content specified herein is for the purpose of introducing ROHM's products (hereinafter "Products"). If you wish to use any such Product, please be sure to refer to the specifications, which can be obtained from ROHM upon request. Examples of application circuits, circuit constants and any other information contained herein illustrate the standard usage and operations of the Products. The peripheral conditions must be taken into account when designing circuits for mass production. Great care was taken in ensuring the accuracy of the information specified in this document. However, should you incur any damage arising from any inaccuracy or misprint of such information, ROHM shall bear no responsibility for such damage. The technical information specified herein is intended only to show the typical functions of and examples of application circuits for the Products. ROHM does not grant you, explicitly or implicitly, any license to use or exercise intellectual property or other rights held by ROHM and other parties. ROHM shall bear no responsibility whatsoever for any dispute arising from the use of such technical information. The Products specified in this document are intended to be used with general-use electronic equipment or devices (such as audio visual equipment, office-automation equipment, communication devices, electronic appliances and amusement devices). The Products specified in this document are not designed to be radiation tolerant. While ROHM always makes efforts to enhance the quality and reliability of its Products, a Product may fail or malfunction for a variety of reasons. Please be sure to implement in your equipment using the Products safety measures to guard against the possibility of physical injury, fire or any other damage caused in the event of the failure of any Product, such as derating, redundancy, fire control and fail-safe designs. ROHM shall bear no responsibility whatsoever for your use of any Product outside of the prescribed scope or not in accordance with the instruction manual. The Products are not designed or manufactured to be used with any equipment, device or system which requires an extremely high level of reliability the failure or malfunction of which may result in a direct threat to human life or create a risk of human injury (such as a medical instrument, transportation equipment, aerospace machinery, nuclear-reactor controller, fuelcontroller or other safety device). ROHM shall bear no responsibility in any way for use of any of the Products for the above special purposes. If a Product is intended to be used for any such special purpose, please contact a ROHM sales representative before purchasing. If you intend to export or ship overseas any Product or technology specified herein that may be controlled under the Foreign Exchange and the Foreign Trade Law, you will be required to obtain a license or permit under the Law.
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R1010A


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