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p-to220-5-11 p-to220-5-12 p-to263-5-1 p-to252-5-1 5-v low-drop fixed voltage regulator tle 4270 data sheet version 1.3 1 2002-01-07 features ? output voltage tolerance 2 % 650 ma output current capability low-drop voltage reset functionality adjustable reset time suitable for use in automotive electronics integrated overtemperature protection reverse polarity protection input voltage up to 42 v overvoltage protection up to 65 v ( 400 ms) short-circuit proof wide temperature range esd protection 4000 v functional description this device is a 5-v low-drop fixed-voltage regulator. the maximum input voltage is 42 v (65 v, 400 ms). up to an input voltage of 26 v and for an output current up to 650 ma it regulates the output voltage within a 2 % accuracy. the short circuit protection limits the output current of more than 650 ma. the device incorporates overvoltage protection and a temperature protection which turns off the device at high temperatures. type ordering code package tle 4270 q67000-a9209 p-to220-5-11 tle 4270 s q67000-a9243 p-to220-5-12 tle 4270 g q67006-a9201 p-to263-5-1 tle 4270 d q67006-a9360 p-to252-5-1
tle 4270 data sheet version 1.3 2 2002-01-07 figure 1 pin configuration (top view) pin definitions and functions pin symbol function 1 i input ; block to ground directly at the ic with a ceramic capacitor 2ro reset output ; the open collector output is connected to the 5 v output via an integrated resistor of 30 k 3gnd ground ; internally connected to heatsink. 4d reset delay ; connect a capacitor to ground for delay time adjustment. 5q 5-v output ; block to ground with 22 f capacitor, esr 3 . aep01922 ro gnd d q 15 p-to263-5-1 (p-to220-5-8) aep01923 ro gnd d q 5 1 p-to220-5-11 (p-to220-5-1) p-to220-5-12 (p-to220-5-2) aep02172 ro gnd d q 5 1 p-to252-5-1 (d-pak) aep02580 15 ro dq gnd tle 4270 data sheet version 1.3 3 2002-01-07 circuit description the control amplifier compares a reference voltage, which is kept highly accurate by resistance adjustment, to a voltage that is proportional to the output voltage and drives the base of a series transistor via a buffer. saturation control as a function of the load current prevents any over-saturation of the power element. the ic also incorporates a number of internal circuits for protection against: overload overvoltage overtemperature reverse polarity application description the ic regulates an input voltage in the range of 5.5 v v i 36 v to v q,nom = 5.0 v. up to 26 v it produces a regulated output current of more than 650 ma. above 26 v the save-operating-area protection allows operation up to 36 v with a regulated output current of more than 300 ma. overvoltage protection limits operation at 42 v. the overvoltage protection hysteresis restores operation if the input voltage has dropped below 36 v. a reset signal is generated for an output voltage of v q 4.5 v. the delay for power-on reset can be set externally with a capacitor. tle 4270 data sheet version 1.3 4 2002-01-07 figure 2 block diagram aeb01924 control amplifier buffer reference bandgap adjustment protection circuit control and saturation temperature sensor reset generator i q ro d gnd 5 2 4 1 3 tle 4270 data sheet version 1.3 5 2002-01-07 absolute maximum ratings t j = ? 40 to 150 c parameter symbol limit values unit notes min. max. input i voltage voltage current v i v i i i ? 42 ? ? 42 65 ? v v ? t 400 ms internally limited reset output ro voltage current v ro i ro ? 0.3 ? 7 ? v ? internally limited reset delay d voltage current v d i d ? 0.3 ? 7 ? v ? internally limited output q voltage current v q i q ? 1.0 ? 16 ? v ? internally limited ground gnd current i gnd ? 0.5 ? a ? temperatures junction temperature storage temperature t j t stg ? 50 150 150 c c ? tle 4270 data sheet version 1.3 6 2002-01-07 operating range parameter symbol limit values unit notes min. max. input voltage v i 642v ? junction temperature t j ? 40 150 c ? thermal resistance junction ambient r thj-a ? 65 79 k/w k/w to263, to252 1) 1) mounted on pcb, 80 80 1.5 mm 3 ; 35 cu; 5 sn; footprint only; zero airflow. junction case r thj-c ? 3 k/w to-220/263 packages characteristics v i = 13.5 v; ? 40 c t j = 125 c (unless otherwise specified) parameter symbol limit values unit test condition min. typ. max. output voltage v q 4.90 5.00 5.10 v 5 ma i q 550 ma; 6 v v i 26 v output voltage v q 4.90 5.00 5.10 v 26 v v i 36 v; i q 300 ma output current limiting i qmax 650 850 ? ma v q = 0 v current consumption i q = i i i q i q ? 11.5ma i q = 5 ma current consumption i q = i i ? i q i q ? 55 75 ma i q = 550 ma current consumption i q = i i ? i q i q ? 70 90 ma i q = 550 ma; v i = 5 v drop voltage v dr ? 350 700 mv i q = 550 ma 1) tle 4270 data sheet version 1.3 7 2002-01-07 load regulation v q,lo ? 25 50 mv i q = 5 to 550 ma; v i = 6 v line regulation v q,li ? 12 25 mv v i = 6 to 26 v i q = 5 ma power supply ripple rejection psrr ? 54 ? db f r =100hz; v r =0.5 v ss reset generator switching threshold v rt 4.5 4.65 4.8 v ? reset high voltage v roh 4.5 ?? v ? reset low voltage v rol ? 60 ? mv r int =30 k 2) ; 1.0 v v q 4.5 v reset low voltage v rol ? 200 400 mv i r = 3 ma, v q = 4.4 v reset pull-up r int 18 30 46 k internally connected to q charge current i d,c 81425 a v d = 1.0 v upper reset timing threshold v du 1.41.82.3v ? lower reset timing threshold v dl 0.2 0.45 0.8 v v q v rt delay time t rd ? 13 ? ms c d = 100 nf reset reaction time t rr ?? 3 s c d = 100 nf overvoltage protection turn-off voltage v i , ov 42 44 46 v ? 1) drop voltage = v i ? v q (measured when the output voltage has dropped 100 mv from the nominal value obtained at 13.5 v input) 2) reset peak is always lower than 1.0 v. characteristics (cont ? d) v i = 13.5 v; ? 40 c t j = 125 c (unless otherwise specified) parameter symbol limit values unit test condition min. typ. max. tle 4270 data sheet version 1.3 8 2002-01-07 figure 3 test circuit figure 4 application circuit aes01925 v i d c gnd ro v q v r d v 470 nf 1000 ? q 22 ? tle 4270g i d i q r i gnd i i i d i 1 3 2 5 4 aes01926 ro gnd d q i 5 v - output input tle 4270 reset 470 nf to ? 22 ? 100 nf 2 15 4 3 tle 4270 data sheet version 1.3 9 2002-01-07 design notes for external components an input capacitor c i is necessary for compensation of line influences. the resonant circuit consisting of lead inductance and input capacitance can be damped by a resistor of approx. 1 in series with c i . an output capacitor c q is necessary for the stability of the regulating circuit. stability is guaranteed at values of c q 22 f and an esr of 3 . reset circuitry if the output voltage decreases below 4.5 v, an external capacitor c d on pin 4 (d) will be discharged by the reset generator. if the voltage on this capacitor drops below v dl , a reset signal is generated on pin 2 (ro), i.e. reset output is set low. if the output voltage rises above the reset threshold, c d will be charged with constant current. after the power-on-reset time the voltage on the capacitor reaches v du and the reset output will be set high again. the value of the power-on-reset time can be set within a wide range depending of the capacitance of c d . reset timing the power-on reset delay time is defined by the charging time of an external capacitor c d which can be calculated as follows: c d =( t i d,c )/ v definitions: c d = delay capacitors t = reset delay time t rd i d,c = charge current, typical 14 ? v = v du , typical 1.8 v v du = upper reset timing threshold at c d for reset delay time t rd = v c d / i d,c the reset reaction time t rr is the time it takes the voltage regulator to set the reset out low after the output voltage has dropped below the reset threshold. it is typically 1 s for delay capacitor of 47 nf. for other values for c d the reaction time can be estimated using the following equation: t rr 20 s/f c d tle 4270 data sheet version 1.3 10 2002-01-07 figure 5 reset time response aes01927 i v v q rt v v d du v v dl ro v rd t t rr < rr t v d t d = d, c i d c under- voltage power-on reset shutdown thermal at input voltage drop secondary spike bounce load tle 4270 data sheet version 1.3 11 2002-01-07 output voltage v q versus temperature t j output current i q versus temperature t j output voltage v q versus input voltage v i output current i q versus input voltage v i aed01928 -40 04080 120 ?c 160 4.6 j t q v v i = 13.5 v 4.7 4.8 4.9 5.0 5.1 v 5.2 aed01930 -40 04080 120 ? c 160 0 j t 200 400 600 800 1000 ma 1200 q max i r 6 4 2 0 4 0 2 8 12 10 q v v 10 v 68 v aed01929 = 25 l ? aed03038 0 10 20 30 40 v50 0 0.4 0.8 1.2 a 1.0 0.6 0.2 i v i q = 125 ? c t j 25 ? c tle 4270 data sheet version 1.3 12 2002-01-07 current consumption i q versus output current i q current consumption i q versus input voltage v i current consumption i q versus output current i q drop voltage v dr versus output current i q 0 0 aed03092 q 1 2 ma 3 = 13.5 v ma v 20 40 60 80 120 q aed01934 0 10 20 30 40 v50 0 40 80 120 ma 100 60 20 i v i q 20 ? l r = 10 ? 50 ? r l = 0 0 aed03093 q ma = 13.5 v ma v 100 200 300 400 600 q 10 20 30 40 50 60 70 80 aed01935 0 0 q i 100 200 300 400 500 600 700 800 mv v dr j t = 125 ? c 25 ? c 200 400 600 1000 ma tle 4270 data sheet version 1.3 13 2002-01-07 charge current i d,c versus temperature t j upper reset timing threshold v du versus temperature t j aed03047 -40 4 i v = 13.5 v 6 8 10 12 14 16 18 20 a 04080 120 160 ? c i t j = 1 v d v d, c i 0 -40 aed03094 v du ma = 13.5 v ? c v j t 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 040 80 120 160 v du tle 4270 data sheet version 1.3 14 2002-01-07 package outlines dimensions in mm sorts of packing package outlines for tubes, trays etc. are contained in our data book package information . gpt09064 a a 0.25 m typical 9.8 0.15 2.8 1) 15.65 0.3 13.4 0...0.15 1.7 0.8 0.1 0.1 1.27 4.4 9.25 0.2 0.05 1) all metal surfaces tin plated, except area of cut. c 0.2 17 0.3 8.5 1) 10 0.2 3.7 -0.15 c 2.4 0.5 0.1 0.3 8.6 10.2 0.3 0.4 3.9 0.4 8.4 3.7 0.3 p-to220-5-11 (plastic transistor single outline) tle 4270 data sheet version 1.3 15 2002-01-07 gpt09065 a b a 0.25 m typical 9.8 0.15 2.8 1) 15.65 0.3 13.4 0...0.15 1.7 0.8 0.1 0.1 1.27 4.4 b 9.25 0.2 0.05 1) all metal surfaces tin plated, except area of cut. c 0.2 17 0.3 8.5 1) 10 0.2 3.7 -0.15 c 2.4 0.5 0.1 13 0.5 0.5 11 6x p-to220-5-12 (plastic transistor single outline) dimensions in mm sorts of packing package outlines for tubes, trays etc. are contained in our data book package information . tle 4270 data sheet version 1.3 16 2002-01-07 a 8 ? max. b a 0.25 m 0.1 typical 9.8 0.15 0.2 10 8.5 1) 8 1) (15) 0.2 9.25 0.3 1 0...0.15 5x0.8 0.1 0.1 1.27 4.4 b 0.5 0.1 0.3 2.7 4.7 0.5 0.05 1) 0.1 all metal surfaces tin plated, except area of cut. 2.4 4x1.7 p-to263-5-1 (plastic transistor single outline) gpt09113 dimensions in mm smd = surface mounted device sorts of packing package outlines for tubes, trays etc. are contained in our data book package information . tle 4270 data sheet version 1.3 17 2002-01-07 dimensions in mm smd = surface mounted device sorts of packing package outlines for tubes, trays etc. are contained in our data book package information . gpt09161 5.4 0.1 -0.10 6.5 +0.15 a 0.5 9.9 6.22 -0.2 1 0.1 0.15 0.8 0.15 max 0.1 per side 5x0.6 1.14 4.56 +0.08 -0.04 0.9 2.3 -0.10 +0.05 b 0.51 min 0.1 1 +0.08 -0.04 0.5 0...0.15 b a 0.25 m 0.1 all metal surfaces tin plated, except area of cut. (4.17) p-to252-5-1 (plastic transistor single outline) gpt09161 data sheet version 1.3 18 2002-01-07 tle 4270 edition 2002-01-07 published by infineon technologies ag, st.-martin-strasse 53, d-81541 mnchen ? infineon technologies ag 2002. all rights reserved. attention please! the information herein is given to describe certain components and shall not be consid- ered as warranted characteristics. terms of delivery and rights to technical change reserved. we hereby disclaim any and all warranties, including but not limited to warranties of non- infringement, regarding circuits, descriptions and charts stated herein. infineon technologies is an approved cecc manufacturer. information for further information on technology, deliv- ery terms and conditions and prices please contact your nearest infineon technologies office in germany or our infineon technolo- gies representatives worldwide (see ad- dress list). warnings due to technical requirements components may contain dangerous substances. for in- formation on the types in question please contact your nearest infineon technologies office. infineon technologies components may only be used in life-support devices or systems with the express written approval of infineon technologies, if a failure of such components can reasonably be expected to cause the fail- ure of that life-support device or system, or to affect the safety or effectiveness of that de- vice or system. life support devices or sys- tems are intended to be implanted in the hu- man body, or to support and/or maintain and sustain and/or protect human life. if they fail, it is reasonable to assume that the health of the user or other persons may be endangered. |
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