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MOSPEC NPN TIP140 TIP141 TIP142 PNP TIP145 TIP146 TIP147 handbook

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1. DARLINGTON COPLEMENTARY SILICON POWER TRANSISTORS NPN PNP designed for general purpose amplifier and low speed switching TIP140 TIP145 applications FEATURES TIP141 TIP146 Collector Emitter Sustaining Voltage 60 V Min 140 145 TIP142 147 80 V Min 141 146 100 V Min 142 147 Collector Emitter Saturation Voltage eae Roan sat 20 V Max I 5 0A Vcg 5 gt il COMPLEMENTARY SILICON Monolithic Construction with Built in Base Emitter Shunt Resistor POWER TRANSISTORS 60 100 VOLTS MAXIMUM RATINGS 125 WATTS Characteristic Collector Emitter Voltage COllector Base Voltage Emitter Base Voltage Collector Current Continuous Peak Total Power Dissipation T 25 C Derate above 25 C THERMAL CHARACTERISTICS Characteristic Thermal Resistance Junction to Case Pp POWER DISSIPATION WATTS uOZzrXc rommoour TEMPERATURE C 140 141 142 145 146 147 ELECTRICAL CHARACTERISTICS T 25 C unless otherwise noted Characteristic Symbol mn Max o OFF CHARACTERISTICS Collector Emitter Sustaining Voitage 1 lg 30 ly 0 TIP140 TIP145 141 146 142 147 Collector Cutoff Current Ves 30V 1 30 Veg 40 V 1 0 Veg 50
2. 140 SERIES Ic 1 0A TIP145 SERIES To 28 C f FREQUENCY MHz SWITCHING TIME F 4 TIP140 TIP441 TIP142 30 j 250 50 i L lei lez T 9287C LI 20 10 07 05 0 02 01 L re 02 03 95 07 10 20 30 50 70 10 20 lc COLLECTOR CURRENT 140 141 142 NPN 145 146 147 PNP COLLECTOR CURRENT Amp t TIME us 20 15 10 50 20 There are two limitation on the power handling ability of a transistor average junction temperature and second breakdown safe operating area curves indicate Ic Vce limits of the transistor that must be observed for reliable operation i e the transistor must not be subjected to greater dissipation than curves indicate The data of SOA curve is base on T pj7150 C Tc is variable depending on conditions At high case temper atures thermal limitation will reduce the power that can be handled to values less than the limitations imposed by second breakdown UNCLAMPED iNDUCTIVE LOAD m 10L 04 10 20 L UNCLAMPED INDUCTIVE LOAD mH
3. C BASE EMITTER VOLTAGE 175 0 25 50 75 100 125 150 Ts JUNCTION TEMPERATURE C 175 WWW ALLDATASHEET COM Copyright Each Manufacturing Company All Datasheets cannot be modified without permission This datasheet has been download from www AllDataSheet com 100 Free DataSheet Search Site Free Download No Register Fast Search System www AllDataSheet com
4. SWITCHING TIME pe t E Vee 30V 1 145 146 147 1 zi 1 250 le 2 25 4 FH 3 20 1 tr pc lI 07 1 4 0 5 i J p pepe 03 4 ma QV ms f d 2 02 4 ait HH eL LEE 02 03 05 07 10 20 30 50 7 0 10 20 COLLECTOR CURRENT B 5 8 Za Vensan COLLECTOR EMITTER SATURATION VOLTAGE VOLTS Vee BASE EMITTER VOLTAGE VOLTS NPN 140 141 TIP142 DC CURRENT GAIN COLLECTOR CURRENT COLLECTOR EMITTER SATURATION VOLTAGE lo 10A 94 0 mA 75 50 25 2 50 75 100 125 150 175 Ts JUNCTION TEMPERATURE C BASE EMITTER VOLTAGE 0 75 50 25 0 2 50 75 100 125 150 175 JUNCTION TEMPERATURE C TIP140 141 TIP142 NPN TIP145 146 TIP147 PNP Veesan SCOLLECTOR EMITTER SATURATION hee DC CURRENT GAIN VOLTAGE VOLTS Ves BASE EMITTER VOLTAGE VOLTS PNP TIP145 TIP146 TIP147 DC CURRENT GAIN 0 5 07 10 20 50 70 ic COLLECTOR CURRENT COLLECTOR EMITTER SATURATION VOLTAGE E i 20 0 5 75 40 25 0 2 50 75 100 125 150 Ts JUNCTION TEMPERATURE
5. V 1 0 Collector Cutoff Current Veg 60 1 0 Veg 80V IL 0 Ves 100 V 0 Emitter Cutoff Current Veg 5 0 1 0 ON CHARACTERISTICS 1 DC Current Gain 1 5 0 A Vog 4 0V Ig 10 Vcg 40 V Collector Emitter Saturation Voitage 1 7 5 0 A lg 10 mA 1 10A lg 40 mA Base Emitter Saturation Voltage 1 10 A lg 40 mA Base Emitter On Voltage le 10A Vog 40V SWITCHING CHARACTERISTICS Delay Time Vec 30 V lo 5 0 A lg lp2 20 mA t 20us Duty Cycle 2 096 140 145 141 146 142 147 140 145 141 146 142 147 Vegoisus 60 V 80 100 7 tr 0 55 ae INTERNAL SCHEMATIC DIAGRAM TIP141 142 PNP TIP145 TIP146 TIP147 8 10 150 07 TRANSFER COLLECTOR CURRENT Amp he SMALL SIGNAL FORWARD CURRENT TIME us ACTIVE REGION SAFE OPERATING AREA SOA 20 2 m 50 Sans 20 1 0 L Bonding Wire Limit Second Breakdown Limit 0 5 Thermally Limited L at T 25 C Singe Puse 0 2L 20 4 60 100 COLLECTOR EMITTER VOLTAGE VOLTS SMALL SIGNAL COMMON EMITTER FORWARD CURRENT TRANSFER RATIO S

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