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5-V Low-Drop Fixed Voltage Regulator TLE 4269 Features Output voltage tolerance 2 % 150 mA current capability Very low current consumption Early warning Reset output low down to VQ = 1 V Overtemperature protection Reverse polarity proof Adjustable reset threshold Very low drop voltage Wide temperature range Integrated pull up resistor at logic outputs Ordering Code Package P-DSO-20-17 This device an automotive suited voltage regulator with a fixed 5-V output. The maximum operating voltage is 45 V. The output is able to drive 150 mA load. It is short circuit protected and the thermal shutdown switches the output off if the junction temperature is in excess of 150 C. A reset signal is generated for an output voltage of VQ < 4.65 V. The reset threshold voltage can be decreased by external connection of a voltage divider. The reset delay time can be set by an external capacitor. Reset and sense output have integrated pull up resistors. If the integrated resistors are not desired TLE 4279 can be used. It is also possible to supervise the input voltage by using an integrated comparator to give a low voltage warning. Data Sheet Rev. 2.3 P-DSO-8-3 P-DSO-14-8 Type TLE 4269 G Q67006-A9173-A201K5 P-DSO-8-3 TLE 4269 GM Q67006-A9288-A201K5 P-DSO-14-8 TLE 4269 GL Q67006-A9192-C703 SMD type P-DSO-20-17 Functional Description 1 2001-06-29 TLE 4269 P-DSO-8-3 S RADJ D 1 2 3 4 8 7 6 5 AEP01668 Q SO RO GND Figure 1 Pin Configuration (top view) Pin Definitions and Functions (TLE 4269 G) Pin No. 1 2 3 4 5 6 7 8 Symbol I SI RADJ D GND RO SO Q Function Input; block to GND directly at the IC with a ceramic capacitor. Sense Input; if not needed connect to Q. Reset Threshold Adjust; if not needed connect to GND. Reset Delay; to select delay time, connect to GND via capacitor. Ground Reset Output; the open-collector output is internally linked to Q via a 20 k pull-up resistor. Keep open, if not needed. Sense Output; the open-collector output is internally linked to the output via a 20 k pull-up resistor. Keep open, if not needed. 5-V Output; connect to GND with a 10 F capacitor, ESR < 10 . Data Sheet Rev. 2.3 2 2001-06-29 TLE 4269 P-DSO-14-8 RADJ D GND GND GND GND RO 1 2 3 4 5 6 7 14 13 12 11 10 9 8 AEP02248 SI GND GND GND Q SO Figure 2 Pin Configuration (top view) (cont'd) Pin Definitions and Functions (TLE 4269 GM) Pin No. 1 2 3, 4, 5, 6 7 8 9 Symbol RADJ D GND RO SO Q Function Reset Threshold Adjust; if not needed connect to GND. Reset Delay; to select delay time; connect to GND via capacitor. Ground Reset Output; open-collector output, internally connected to Q via a pull-up resistor of 20 k. Keep open, if not needed. Sense Output; open-collector output, internally connected to Q via a 20 k pull-up resistor. Keep open, if not needed. 5-V Output; connect to GND with a 10 F capacitor, ESR < 10 . Ground Input; block to GND directly at the IC with a ceramic capacitor. Sense Input; if not needed connect to Q. 10, 11, 12 GND 13 14 I SI Data Sheet Rev. 2.3 3 2001-06-29 TLE 4269 P-DSO-20-17 RADJ D N.C. GND GND GND GND N.C. N.C. RO 1 2 3 4 5 6 7 8 9 10 20 19 18 17 16 15 14 13 12 11 AEP01802 S N.C. GND GND GND GND N.C. Q SO Figure 3 Pin Configuration (top view) (cont'd) Pin Definitions and Functions (TLE 4269 GL) Pin No. 1 2 Symbol Function RADJ D Reset Threshold Adjust; if not needed connect to ground. Reset Delay; to select delay time, connect to GND via external capacitor. Ground Reset Output; the open-collector output is internally linked to Q via a 20 k pull-up resistor. Keep open, if not needed. Sense Output; the open-collector output is internally linked to the output via a 20 k pull-up resistor. Keep open, if not needed. Output; connect to GND with a 10 F capacitor, ESR < 10 . Input; block directly at the IC by a ceramic capacitor. Sense Input; if not needed connect to Q. 4-7, 14-17 GND 10 11 12 19 20 RO SO Q I SI Data Sheet Rev. 2.3 4 2001-06-29 TLE 4269 Circuit Description The control amplifier compares a reference voltage, made highly accurate by resistance balancing, with a voltage proportional to the output voltage and drives the base of the series PNP transistor via a buffer. Saturation control as a function of the load current prevents any over-saturation of the power element. The reset output RO is in high-state if the voltage on the delay capacitor CD is greater or equal VUD. The delay capacitor CD is charged with the current ID for output voltages greater than the reset threshold VRT. If the output voltage gets lower than VRT ('reset condition') a fast discharge of the delay capacitor CD sets in and as soon as VD gets lower than VLD the reset output RO is set to low-level. The time gap for the delay capacitor discharge is the reset reaction time tRR. The reset threshold VRT can be decreased via an external voltage divider connected to the pin RADJ. In this case the reset condition is reached if VQ < VRT and VRADJ < VRAQDJ, TH. Dimensioning the voltage divider (see Figure 5) according to VTHRES = VRADJ,TH x (RADJ1 + RADJ2) / RADJ2, the reset threshold can be decreased down to 3.5 V. If the reset-adjust-option is not needed the RADJ-pin should be connected to GND causing the reset threshold to go to its default value (typ. 4.65 V). A built in comparator compares the signal of the pin SI, normally fed by a voltage divider from the input voltage, with the reference and gives an early warning on the pin SO. It is also possible to superwise another voltage e.g. of a second regulator, or to build a watchdog circuit with few external components. Application Description The input capacitor CI is necessary for compensating line influences. Using a resistor of approx. 1 in series with CI, the oscillating circuit consisting of input inductivity and input capacitance can be damped. The output capacitor CQ is necessary for the stability of the regulating circuit. Stability is guaranteed at values 10 F and an ESR 10 within the operating temperature range. For small tolerances of the reset delay the spread of the capacitance of the delay capacitor and its temperature coefficient should be noted. Data Sheet Rev. 2.3 5 2001-06-29 TLE 4269 Error Amplifier Reference Current and Saturation Control 20 k 20 k Q Trimming D RO & Reference SO RADJ SI AEB01669 Figure 4 Block Diagram 6 2001-06-29 Data Sheet Rev. 2.3 TLE 4269 Absolute Maximum Ratings Tj = - 40 to 150 C Parameter Symbol Limit Values min. Input Input voltage Input current Sense Input Input voltage Input current Reset Threshold Voltage Current Reset Delay Voltage Current Ground Current Reset Output Voltage Current max. Unit Notes VI II - 40 45 - V - - internal limited - VSI ISI - 40 45 1 V mA - - 1 VRADJ IRADJ - 0.3 - 10 7 10 V mA - - VD ID - 0.3 7 - V - - internal limited - IGND 50 - mA - VR IR - 0.3 7 - V - - internal limited - Data Sheet Rev. 2.3 7 2001-06-29 TLE 4269 Absolute Maximum Ratings (cont'd) Tj = - 40 to 150 C Parameter Symbol Limit Values min. Sense Output Voltage Current 5-V Output Output voltage Output current Temperature Junction temperature Storage temperature Operating Range Input voltage Junction temperature Thermal Data Junction-ambient max. Unit Notes VSO ISO - 0.3 7 - V - - internal limited - VQ IQ - 0.5 7 - V mA - - - 10 Tj TStg - - 50 150 150 C C - - VI Tj - - 40 45 150 V C - - Rthja - 200 70 70 30 30 K/W K/W K/W K/W K/W P-DSO-8-3 P-DSO-14-8 P-DSO-20-17 P-DSO-14-81) P-DSO-20-171) Junction-pin Rthjp - 1) Measured to Pin 4 Data Sheet Rev. 2.3 8 2001-06-29 TLE 4269 Characteristics VI = 13.5 V; Tj = - 40 C < Tj < 125 C Parameter Symbol Limit Values min. Output voltage Current limit Current consumption; Iq = I I - I Q Current consumption; Iq = I I - I Q Current consumption; Iq = I I - I Q Drop voltage Load regulation Line regulation Reset Generator Switching threshold Reset adjust switching threshold Reset pull up Saturation voltage Upper delay switching threshold Lower delay switching threshold typ. 5.00 200 240 250 2 0.25 10 10 max. 5.10 500 300 700 8 0.5 30 40 V mA A A mA V mV mV Unit Measuring Condition 1 mA IQ 100 mA 6 V VI 16 V - VQ IQ Iq Iq Iq Vdr VQ VQ 4.90 150 - - - - - - IQ 1 mA, Tj < 85 C IQ = 10 mA IQ = 50 mA IQ = 100 mA1) IQ = 5 mA to 100 mA VI = 6 V to 26 V IQ = 1 mA VRT VRADJ, TH - 4.50 1.26 10 - 1.4 0.3 - 4.65 1.35 20 0.1 1.8 0.45 - 4.80 1.44 40 0.4 2.2 0.60 0.1 V V k V V V V - VQ > 3.5 V - VRO, SAT VUD VLD Rintern - - Saturation voltage delay VD, SAT capacitor VQ < VRT Data Sheet Rev. 2.3 9 2001-06-29 TLE 4269 Characteristics (cont'd) VI = 13.5 V; Tj = - 40 C < Tj < 125 C Parameter Symbol Limit Values min. Charge current Delay time L H Delay time H L Input Voltage Sense Sense threshold high Sense threshold low Sense output low voltage Sense pull up Sense input current 1) Unit typ. 6.5 28 1 max. 9.5 - - A ms s Measuring Condition ID td tt 3.0 17 - VD = 1 V CD = 100 nF CD = 100 nF VSI, high VSI, low VSO, low 1.24 1.16 - 1.31 1.20 0.1 1.38 1.28 0.4 V V V - - VSI < 1.20 V; VQ > 3 V Rintern - - - 10 -1 20 0.1 40 1 k A ISI Drop voltage = VI - VQ measured when the output voltage has dropped 100 mV from the nominal value obtained at 13.5 V input. Data Sheet Rev. 2.3 10 2001-06-29 TLE 4269 1000 F V VS C 470 nF Q Q TLE 4269 S SI D GND R RADJ SO VSO RADJ1 RADJ CQ 22 F VQ D CD 100 nF GND VR VD VRADJ RADJ2 AES01670 Figure 5 Measuring Circuit VI VQ V RT t < t RR VD V UD V LD V RO VRO, SAT td t RR dV I D = dt C D t t t Power-on-Reset Thermal Shutdown Voltage Dip at Input Undervoltage Secondary Spike Overload at Output AED01542 Figure 6 Reset Timing Diagram Data Sheet Rev. 2.3 11 2001-06-29 TLE 4269 Sense Input Voltage VSI, High VSI, Low t Sense Output High Low t AED03049 Figure 7 Sense Timing Diagram Data Sheet Rev. 2.3 12 2001-06-29 TLE 4269 Charge Current ID versus Temperature Tj D 16 A 14 12 10 8 6 4 2 0 -40 AED01803 Switching Voltage VUD and VLD versus Temperature Tj 3.2 VD V 2.8 V = 13.5 V 2.4 2.0 1.6 1.2 0.8 VLD 0.4 0 -40 VUD AED01804 V = 13.5 V V C = 1.0 V 0 40 80 120 C 160 Tj 0 40 80 120 C 160 Tj Drop Voltage Vdr versus Output Current IQ 500 V dr mV 400 AED01805 Reset Adjust Switching Threshold VRADJ,TH versus Temperature Tj V RADJ, TH 1.6 1.7 V AED01806 1.5 1.4 Tj = 125 C 200 Tj = 25 C 300 1.3 1.2 1.1 100 1.0 0 0 30 60 90 120 mA 180 0.9 -40 0 40 80 120 C 160 Tj Q Data Sheet Rev. 2.3 13 2001-06-29 TLE 4269 Current Consumption IQ versus Input Voltage VI 30 AED01807 Output Voltage VQ versus Input Voltage VI 12 VQ V 10 AED01808 q mA 25 20 RL = 33 8 15 6 RL = 50 10 RL = 50 RL = 100 RL = 200 0 10 20 30 40 V 50 V 4 5 2 0 0 0 2 4 6 8 V V 10 Sense Threshold VSI versus Temperature Tj 1.6 V SI V 1.5 V = 13.5 V AED01809 Output Voltage VQ versus Temperature Tj 5.2 VQ V 5.1 V = 13.5 V AED01671 1.4 Sense Output High 1.3 Sense Output Low 1.2 5.0 4.9 4.8 1.1 4.7 1.0 -40 0 40 80 120 C 160 Tj 4.6 -40 0 40 80 120 C 160 Tj Data Sheet Rev. 2.3 14 2001-06-29 TLE 4269 Output Current IQ versus Input Voltage VI 350 AED01810 Current Consumption Iq versus Output Current IQ 12 AED01811 Q mA 300 250 q mA 10 V = 13.5 V Tj = 25 C 8 200 150 100 50 0 Tj = 25 C 6 Tj = 125 C 4 2 0 10 20 30 40 V 50 V 0 0 20 40 60 80 mA 120 Q Current Consumption Iq versus Output Current IQ q 1.6 mA 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0 V = 13.5 V Tj = 25 C AED01812 0 10 20 30 40 mA 50 Q Data Sheet Rev. 2.3 15 2001-06-29 TLE 4269 Package Outlines P-DSO-14-8 (SMD) (Plastic Dual Small Outline) Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book "Package Information" SMD = Surface Mounted Device Data Sheet Rev. 2.3 16 Dimensions in mm 2001-06-29 GPS09222 TLE 4269 P-DSO-8-3 (SMD) (Plastic Dual Small Outline) Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book "Package Information" SMD = Surface Mounted Device Data Sheet Rev. 2.3 17 Dimensions in mm 2001-06-29 GPS09032 TLE 4269 P-DSO-20-17 (SMD) (Plastic Dual Small Outline) 0.35 x 45 2.65 max 2.45 -0.2 0.2 -0.1 1.27 0.35 +0.15 2) 20 0.2 24x 11 0.1 0.4 +0.8 10.3 0.3 GPS05094 1 12.8 1) 10 -0.2 Index Marking 1) Does not include plastic or metal protrusions of 0.15 max per side 2) Does not include dambar protrusion of 0.05 max per side Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book "Package Information" SMD = Surface Mounted Device Data Sheet Rev. 2.3 18 0.23 +0.0 9 8 ma x 7.6 -0.2 1) Dimensions in mm 2001-06-29 TLE 4269 Edition 2001-06-29 Published by Infineon Technologies AG, St.-Martin-Strasse 53, D-81541 Munchen (c) Infineon Technologies AG1999. All Rights Reserved. Attention please! The information herein is given to describe certain components and shall not be considered 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 noninfringement, regarding circuits, descriptions and charts stated herein. Infineon Technologies is an approved CECC manufacturer. Information For further information on technology, delivery terms and conditions and prices please contact your nearest Infineon Technologies Office in Germany or our Infineon Technologies Representatives worldwide (see address list). Warnings Due to technical requirements components may contain dangerous substances. For information 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 failure of that life-support device or system, or to affect the safety or effectiveness of that device or system. Life support devices or systems are intended to be implanted in the human 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. Data Sheet Rev. 2.3 19 2001-06-29 |
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