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TS34063CS Fiches technique(PDF) 2 Page - Taiwan Semiconductor Company, Ltd |
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TS34063CS Fiches technique(HTML) 2 Page - Taiwan Semiconductor Company, Ltd |
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2 / 8 page ![]() TS34063 2-8 2003/12 rev. C Absolute Maximum Rating Supply Voltage VCC 40 V Comparator Input Voltage Range VFB - 0.3 ~ 40 V Switch Collector Output Voltage VC(SW) 40 V Switch Emitter Voltage VE(SW) 40 V Switch Collector to Emitter Voltage VCE(SW) 40 V Driver Collector Voltage Vc(driver) 40 V Driver Collector Current (note 1) Ic(driver) 100 mA Output Switching Current ISW 1.5 A Power Dissipation DIP-8 SOP-8 Pd 1.0 0.5 W Operating Junction Temperature Range TJ -0 ~ +125 oC Storage Temperature Range TSTG -65 ~ +150 oC Note: Maximum package power dissipation limits must be observed Electrical Characteristics (V CC =5V, Ta =25 oC; unless otherwise specified.) Parameter Symbol Test Conditions Min Typ Max Unit Oscillator (OSC) Frequency FOSC CT = 1nF, Vpin5= 0V 24 33 42 KHz Charge Current ICHARGE VCC = 5V ~ 40V -- 30 -- uA Discharge Current IDISCHARGE VCC = 5V ~ 40V -- 200 -- uA Discharge to Charge current ratio IDISCHARGE / ICHARGE Pin7 to Vcc -- 6.5 -- -- Current Limit Sense Voltage VIPK(SENSE) IDISCHARGE = ICHARGE 250 -- 350 mV Output switch (note1) Saturation Voltage VCE(SAT) ISW= 1A, pin1,8 connected) -- 1.0 1.3 V Saturation Voltage VCE(SAT) ISW= 1A, Id=50mA -- 0.45 0.7 V DC current gain HFE ISW = 1A, Vce= 0.5V -- 75 -- -- Collector off-state current IC(OFF) Vce= 40V -- 0.01 100 uA Comparator Threshold Voltae VREF 1.225 1.25 1.275 V Line regulation RegLine VCC = 3V ~ 40V -- -- 6 mV Total device Supply Current ICC VCC = 5V ~ 40V, CT = 1nF, pin7=Vcc, pin5>Vth, pin2=Gnd, remaining pins open -- 3 5 mA Note: 1. Low duty cycle pulse techniques are used during test to maintain junction temperature as close to ambient temperature as possible 2. If the output switch is driven into hard saturation (non-Darlington configuration) at low switch currents (<=300mA) and high driver currents (>=30mA), it may take up to 2uS for it to come out of saturation. This condition will shorten the off time at frequencies >= 30KHz, and is magnified at high temperature. This condition does not occur with a Darlington configuration, since the output switch cannot saturate. If a non-Darlington configuration is used, the following output drive condition is recommended: Forced Bata of output switch: Ic output / (Ic driver – 7mA*) >= 10 * The 100ohm resistor in the emitter of the driver divide requires about 7mA before the output switch conducts. |
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