XC6202 Series GENERAL DESCRIPTION APPLICATIONS. FEATURES Maximum Output Current : 150mA (within Pd) Maximum Operational Voltage : 20V

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1 XC6 Series High Voltage Positive Voltage Regulators ETR3_7 GENERAL DESCRIPTION The XC6 series are highly precise, low power consumption, high voltage input, positive voltage regulators manufactured using CMOS and laser trimming technologies. The XC6 consists of a current limiter circuit, a driver transistor, a precision reference voltage and an error correction circuit. Output voltage is selectable in.1v steps from 1.V ~ 1V. The series are also compatible with low ESR ceramic capacitors which give added output stability. Since the current limiter circuit is built-in, the IC is protected against overshoot currents at such times of output shorts etc. SOT-3, SOT-9, SOT-3 and USP-6B packages are available. APPLICATIONS Multi-function power supplies Note PCs / Tablet PCs Digital still cameras / Camcorders Reference voltage sources FEATURES Maximum Output Current : 1mA (within Pd) Maximum Operational Voltage : V Range : 1.V ~ 1V (.1V increments) Highly Accurate : ±% Low Power Consumption : 1μA (TYP.) Line Regulation :.1% / V (TYP.) Dropout Voltage : 3mA 67mV@1mA Operational Temperature Range : - ~ Low ESR Capacitor Compatible : Ceramic capacitor Current Limiter Circuit Built-In Packages Environmentally Friendly : SOT-3 SOT-9 SOT-3 USP-6B : EU RoHS Compliant, Pb Free TYPICAL APPLICATION CIRCUIT TYPICAL PERFORMANCE CHARACTERISTICS XC6PC(1V (1V) 品 ) IOUT= 1mA =1mA =3mA 1/3

2 XC6 Series PIN CONFIGURATION NC VSS NC USP-6B (BOTTOM VIEW) VIN NC VOUT *The dissipation pad for the USP-6B package should be solder-plated in recommended mount pattern and metal masking so as to enhance mounting strength and heat release. If the pad needs to be connected to other pins, it should be connected to the VSS (No.) pin. PIN ASSIGNMENT PIN NUMBER SOT-3 SOT-9 PIN NAME FUNCTIONS USP-6B SOT VOUT Output 3 VSS Ground 3 1 VIN Power Input - -,, 6 NC No connection /3

3 XC6 Series PRODUCT CLASSIFICATION Ordering Information XC6P13-6 (*1) DESIGNATOR ITEM SYMBOL DESCRIPTION 1 1 ~ J : For the voltage above 1V, see the example 1=A, 11=B 1=C, 13=D, 1=E, 1=F, 16=G, 17=H, 1=J e.g. VOUT= 3.V 1:3, : VOUT= 1V 1:C, : VOUT= 1V 1:F, : 3 Accuracy : ±% MR : SOT-3 (3,pcs/Reel) MR-G : SOT-3 (3,pcs/Reel) PR : SOT-9 (1,pcs/Reel) Packages PR-G : SOT-9 (1,pcs/Reel) (Order Unit) FR : SOT-3 (1,pcs/Reel) FR-G : SOT-3 (1,pcs/Reel) DR : USP-6B (3,pcs/Reel) DR-G : USP-6B (3,pcs/Reel) -6 (*1) (*1) The -G suffix denotes Halogen and Antimony free as well as being fully EU RoHS compliant. 3/3

4 XC6 Series BLOCK DIAGRAM ABSOLUTE MAXIMUM RATINGS Ta = PARAMETER SYMBOL RATINGS UNITS VIN. V Output Current IOUT ma VOUT VSS-.3 ~ VIN+.3 V SOT-3 Power SOT-9 Pd Dissipation USP-6B 1 mw SOT-3 1, * Operating Ambient Temperature Topr -~+ Storage Temperature Tstg -~+1 /3

5 XC6 Series ELECTRICAL CHARACTERISTICS XC6P1 VOUT(T)=1.V (*1) PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT VOUT(E) (*) Maximum Output Current IOUTmax VIN=.V IOUT=3mA VIN=.V VOUT VOUT(E) V ma Load Regulation VOUT VIN=.V 1mA IOUT 6mA - 1 mv Dropout Voltage (*3) Vdif1 IOUT=3mA Vdif IOUT=1mA mv Supply Current ISS VIN=.V - 1 μa 1 Line Regulation VOUT/ IOUT=1mA ( VIN VOUT).V VIN V -.1. %/V VIN - - V - Temperature Characteristics VOUT/ ( Ta VOUT) IOUT=3mA - Ta - ±1 - ppm/ Short-circuit Current Ishort VIN=3.V - - ma XC6P33 VOUT(T)=3.3V (*1) PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT VOUT(E) (*) Maximum Output Current IOUTmax VIN=.3V IOUT=3mA VIN=.3V VOUT VOUT(E) V ma Load Regulation VOUT VIN=.3V 1mA IOUT 1mA - 9 mv Dropout Voltage (*3) Vdif1 IOUT=3mA - Vdif IOUT=1mA mv Supply Current ISS VIN=.3V - 1 μa 1 Line Regulation VOUT/ IOUT=1mA ( VIN VOUT).3V VIN V -.1. %/V VIN - - V - Temperature Characteristics VOUT/ ( Ta VOUT) IOUT=3mA - Ta - ±1 - ppm/ Short-circuit Current Ishort VIN=.3V - - ma /3

6 XC6 Series ELECTRICAL CHARACTERISTICS (Continued) XC6P VOUT(T)=.V (*1) PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT VOUT(E) (*) Maximum Output Current Load Regulation IOUTmax VOUT VIN=6V IOUT=3mA VIN=6V VOUT VOUT(E).9 VIN=6V 1mA IOUT 1mA.9. 1 V - - ma mv Dropout Voltage (*3) Vdif1 IOUT=3mA Vdif IOUT=1mA - mv Supply Current ISS VIN=6V - 1 μa 1 Line Regulation VOUT/ IOUT=1mA ( VIN VOUT) 6V VIN V -.1. %/V VIN - - V - Temperature Characteristics VOUT/ ( Ta VOUT) IOUT=3mA - Ta - ±1 - ppm/ Short-circuit Current Ishort VIN=7V - - ma XC6PC VOUT(T)=1V (*1) PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT VOUT(E) (*) Maximum Output Current IOUTmax VIN=13V IOUT=3mA VIN=13V VOUT VOUT(E) V - - ma Load Regulation VOUT VIN=13V 1mA IOUT 1mA mv Dropout Voltage (*3) Vdif1 IOUT=3mA Vdif IOUT=1mA mv Supply Current ISS VIN=13V - 1 μa 1 Line Regulation VOUT/ IOUT=1mA ( VIN VOUT) 13V VIN V -.1. %/V VIN - - V - Temperature Characteristics VOUT/ ( Ta VOUT) IOUT=3mA - Ta - ±1 - ppm/ Short-circuit Current Ishort VIN=1V - - ma 6/3

7 XC6 Series ELECTRICAL CHARACTERISTICS (Continued) XC6PJ VOUT(T)=1V (*1) PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT VOUT(E) (*) Maximum Output Current IOUTmax VIN=19V IOUT=3mA VIN=19V VOUT VOUT(E) V - - ma Load Regulation VOUT VIN=19V 1mA IOUT 1mA mv Dropout Voltage (*3) Vdif1 IOUT=3mA - 1 Vdif IOUT=1mA - 3 mv Supply Current ISS VIN=19V μa 1 Line Regulation VOUT/ IOUT=1mA ( VIN VOUT) 19V VIN V -.1. %/V VIN - - V - Temperature Characteristics VOUT/ ( Ta VOUT) IOUT=3mA - Ta - ±1 - ppm/ Short-circuit Current Ishort VIN=V - - ma *1. VOUT(T) = Specified output voltage. *. VOUT(E) = Effective output voltage (i.e. the output voltage when VOUT(T)+1.V is provided at the VIN pin while maintaining certain IOUT value). *3. Vdif = {VIN1 {*} -VOUT1 {*} } *. VOUT1 = A voltage equal to 9% of the output voltage when VOUT(T) + 1.V is input. *. VIN1 = The input voltage when VOUT1 is output following a gradual decrease in the input voltage. TEST CIRCUITS CIRCUIT 1 CIRCUIT 7/3

8 XC6 Series TYPICAL PERFORMANCE CHARACTERISTICS XC6P1 (1) vs. Output Current XC6P1(1.V) 1.9 VIN=.V. XC6P1(1.V) VIN=.V Output Current IOUT (ma). 1 3 Output Current IOUT (ma) () vs.. XC6P1(1.V). XC6P1(1.V) IOUT= 1mA =1mA =3mA IOUT= 1mA =1mA =3mA Input Voltge VIN (V) (3) Dropout Voltage vs. Output Current XC6P1(1.V). Dropout Voltage Vdif (V) Output Current IOUT (ma) /3

9 XC6 Series XC6P1 (Continued) () Supply Current vs. XC6P1(1.V) XC6P1(1.V) 1 Supply Current ISS (μa) Supply Current ISS (μa) Input voltage VIN (V) () vs. Ambient Temperature (6) Supply Current vs. Ambient Temperature XC6P1(1.V) XC6P1(1.V). VIN=.V VIN=.V IOUT= 1mA =1mA =3mA Supply Current ISS (μa) Ambient Temperature Ta ( ) Ambient Temperature Ta ( ) 9/3

10 XC6 Series XC6P1 (Continued) (7) Input Transient Response 1 XC6P1(1.V) XC6P1(1.V) Iout=1mA tr=μs CL=1μF(ceramic) Iout=3mA tr=μs CL=1μF(ceramic) Time (.1ms/div) () Input Transient Response Time (.1ms/div) XC6P1(1.V) XC6P1(1.V) Iout=1mA tr=tf=μs CL=1μF(ceramic) 1.96 Iout=3mA tr=tf=μs CL=1μF(ceramic) Time (.ms/div) Time (.ms/div) (9) Load Transient Response XC6P1(1.V) VIN=.V tr=tf=μs mA 1mA Output Current Output Current IOUT (ma) Time (1ms/div) 1/3

11 XC6 Series XC6P1 (Continued) (1) Ripple Rejection Rate XC6P1(1.V) XC6P1(1.V) 7 VIN=.VDC+1Vp-pAC IOUT=1mA CL=1μF(ceramic) 7 VIN=.VDC+1Vp-pAC IOUT=3mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) Ripple Rejection Rate PSRR (db) XC6P1(1.V) 7 VIN=.VDC+1Vp-pAC IOUT=mA CL=1μF(ceramic) Ripple Rejection Rate RR (db) /3

12 XC6 Series XC6P33 (1) vs. Output Current XC6P33 (3.3V) 3. VIN=.3V. XC6P33 (3.3V) VIN=.3V Outout Voltage VOUT (V) Outout Voltage VOUT (V) Output Current IOUT (ma). 1 3 Output Current IOUT (ma) () vs. XC6P33 (3.3V) XC6P33 (3.3V) Outout Voltage VOUT (V) IIOUT= 1mA =3mA Outout Voltage VOUT (V) IOUT= 1mA =3mA (3) Dropout Voltage vs. Output Current XC6P33 (3.3V) 1.6 Dropout Voltage Vdif (V) Output Current IOUT (ma) 1/3

13 XC6 Series XC6P33 (Continued) () Supply Current vs. XC6P33 (3.3V) XC6P33 (3.3V) Supply Current ISS (μa) Supply Current ISS (μa) () vs. Ambient Temperature (6) Supply Current vs. Ambient Temperature XC6P33 (3.3V) XC6P33 (3.3V) VIN=.3V 3.6 VIN=.3V Outout Voltage VOUT (V) IOUT= 1mA =3mA Supply Current ISS (μa) Ambient Temperature Ta ( ) Ambient Temperature Ta ( ) 13/3

14 XC6 Series XC6P33 (Continued) (7) Input Transient Response 1 XC6P33 (3.3V) IOUT=3mA 6 CL=1μF(ceramic) tr=μs Time (.1ms/div) () Input Transient Response XC6P33 (3.3V) XC6P33 (3.3V) IOUT=1mA IOUT=3mA 6 CL=1μF(ceramic) tr=tfus CL=1μF(ceramic) tr=tfμs Time (.ms/div) Time (.ms/div) (9) Load Transient Response XC6P33 (3.3V) VIN=.3V tr=tf=μs mA Output Current Output Current IOUT (ma) 1mA Time (1ms/div) 1/3

15 XC6 Series XC6P33 (Continued) (1) Ripple Rejection Rate XC6P33 (3.3V) XC6P33 (3.3V) Ripple Rejection Rate PSRR (db) VIN=.3VDC+1Vp-pAC IOUT=.1mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) VIN=.3VDC+1Vp-pAC IOUT=1mA CL=1μF(ceramic) XC6P33 (3.3V) XC6P33 (3.3V) VIN=.3VDC+1Vp-pAC IOUT=1mA CL=1μF(ceramic) VIN=.3VDC+1Vp-pAC IOUT=3mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) Ripple Rejection Rate PSRR (db) XC6P33 (3.3V) VIN=.3VDC+1Vp-pAC IOUT=mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) /3

16 XC6 Series XC6P (1) vs. Output Current XC6P(V) XC6P(V) VIN=6V VIN=6V Output Current IOUT (ma) 1 3 Output Current IOUT (ma) () vs. XC6P(V) XC6P(V) IOUT= 1mA =1mA =3mA..9. IOUT= 1mA =1mA =3mA (3) Dropout Voltage vs. Output Current XC6P(V) 1. Dropout Voltage Vdif (V) Output Current IOUT (ma) 16/3

17 XC6 Series XC6P (Continued) () Supply Current vs. XC6P(V) XC6P(V) 1 Supply Current ISS (μa) Supply Current ISS (μa) () vs. Ambient Temperature (6) Supply Current vs. Ambient Temperature. XC6P(V) VIN=6V XC6P(V) VIN=6V IOUT= 1mA =1mA =3mA Supply Current ISS (μa) Ambient Temperature Ta ( ) Ambient Temperature Ta ( ) 17/3

18 XC6 Series XC6P (Continued) (7) Input Transient Response 1 XC6P(V) XC6P(V) Iout=1mA tr=μs CL=1μF(ceramic) Iout=3mA tr=μs CL=1μF(ceramic) Time (.1ms/div) Time (.1ms/div) () Input Transient Response XC6P(V) XC6P(V) Iout=1mA tr=tf=μs CL=1μF(ceramic) 7. Iout=3mA tr=tf=μs CL=1μF(ceramic) Time (.ms/div) Time (.ms/div) (9) Load Transient Response XC6P(V) VIN=6V tr=tf=μs 7, mA Output Current Output Current IOUT (ma 1mA Time (1ms/div) 1/3

19 XC6 Series XC6P (Continued) (1) Ripple Rejection Rate XC6P(V) XC6P(V) 7 VIN=6VDC+1Vp-pAC IOUT=1mA CL=1μF(ceramic) 7 VIN=6VDC+1Vp-pAC IOUT=3mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) Ripple Rejection Rate PSRR (db) XC6P(V) VIN=6VDC+1Vp-pAC 7 IOUT=mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) /3

20 XC6 Series XC6PC (1) vs. Output Current XC6PC(1V) 13. VIN=13V 16 XC6PC(1V) VIN=13V Output Current IOUT (ma) 1 3 Output Current IOUT (ma) () vs. XC6PC(1V) XC6PC(1V) IOUT= 1mA =1mA =3mA IOUT= 1mA =1mA =3mA (3) Dropout Voltage vs. Output Current XC6PC(1V) 1. Dropout Voltage Vdif (V) Output Current IOUT (ma) /3

21 XC6 Series XC6PC (Continued) () Supply Current vs. XC6PC(1V) XC6PC(1V) Supply Current ISS (μa) Supply Current ISS (μa) () vs. Ambient Temperature (6) Supply Current vs. Ambient Temperature XC6PC(1V) XC6PC(1V) 1. VIN=13V CIN=CL=1μF(Ceramic) VIN=13V IOUT= 1mA =1mA =3mA Supply Current ISS (μa) Ambient Temperature Ta ( ) Ambient Temperature Ta ( ) 1/3

22 XC6 Series XC6PC (Continued) (7) Input Transient Response 1 XC6PC(1V) XC6PC(1V) Iout=1mA tr=μs Iout=3mA tr=μs 1 CL=1μF(ceramic) 1 CL=1μF(ceramic) Time Time (.ms/div) (.ms/div) Time (.ms/div) () Input Transient Response XC6PC(1V) XC6PC(1V) 1 Iout=1mA tr=tf=μs CL=1μF(ceramic) 1. 1 Iout=3mA tr=tf=μs CL=1μF(ceramic) Time (1ms/div) Time (1ms/div) (9) Load Transient Response XC6PC(1V) VIN=13V tr=tf=us 13, mA Output Current Output Current IOUT (ma 1mA Time (1ms/div) /3

23 XC6 Series XC6PC (Continued) (1) Ripple Rejection Rate XC6PC(1V) XC6PC(1V) 7 VIN=13VDC+1Vp-pAC IOUT=1mA CL=1μF(ceramic) 7 VIN=13VDC+1Vp-pAC IOUT=3mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) Ripple Rejection Rate PSRR (db) XC6PC(1V) 7 VIN=13VDC+1Vp-pAC IOUT=mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) /3

24 XC6 Series XC6PJ (1) vs. Output Current 19. XC6PJ(1V) VIN=19V XC6PJ(1V) VIN=19V Output Curren IOUT (ma) 1 3 Output Current IOUT (ma) () vs. (3) Dropout Voltage vs. Output Current XC6PJ(1V) XC6PJ(1V) IOUT= 1mA =1mA =3mA Dropout Voltage Vdif (V) Output Curren IOUT (ma) () Supply Current vs. () vs. Ambient Temperature XC6PJ(1V) XC6PJ(1V) 7 1. VIN=19V 6 Supply Current ISS (μa) 3 1 Ta= IOUT= 1mA =1mA =3mA Ambient Temperature Ta ( ) /3

25 XC6 Series XC6PJ (Continued) (6) Supply Current vs. Ambient Temperature XC6PJ(1V) VIN=19V Supply Current ISS (μa) Ambient Temperature Ta ( ) (7) Input Transient Response 1 XC6PJ(1V) XC6PJ(1V) Iout=1mA tr=μs Iout=3mA tr=μs 3 CL=1μF(ceramic) 3 3 CL=1μF(ceramic) Time (.ms/div) Time (.ms/div) () Input Transient Response XC6PJ(1V) XC6PJ(1V) Iout=1mA t=tfr=μs Iout=3mA tr=tf=μs 1 CL=1μF(ceramic) 1. 1 CL=1μF(ceramic) Time (1ms/div) Time (1ms/div) /3

26 XC6 Series XC6PJ (Continued) (9) Load Transient Response XC6PJ(1V) VIN=19V tr=tf=us mA Output Current Output Current IOUT (ma 1 1mA Time (1ms/div) (1) Ripple Rejection Rate XC6PJ(1V) XC6PJ(1V) VIN=19VDC+1Vp-pAC VIN=19VDC+1Vp-pAC 7 IOUT=1mA CL=1μF(ceramic) 7 IOUT=3mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) Ripple Rejection Rate PSRR (db) XC6PJ(1V) VIN=19VDC+1Vp-pAC 7 IOUT=mA CL=1μF(ceramic) Ripple Rejection Rate PSRR (db) /3

27 XC6 Series PACKAGING INFORMATION SOT-3 Unit : mm SOT-9 1.±.1 (.) (.1) 1.±..±.1 (.).±. Unit : mm (1.) (.) 7/3

28 XC6 Series PACKAGING INFORMATION (Continued) SOT-3 Unit : mm /3

29 XC6 Series PACKAGING INFORMATION (Continued) USP-6B Unit : mm USP-6B Recommended Pattern Layout USP-6B Recommended Metal Mask Design 9/3

30 XC6 Series MARKING RULE SOT-3, SOT-9, SOT represents product series MARK PRODUCT SERIES XC6Pxxxxx represents output voltage range MARK VOLTAGE (V) PRODUCT SERIES.1 ~ ~ ~ 9. XC6Pxxxxx ~ ~ ~ 1. 3 represents output voltage MARK VOLTAGE (V) MARK VOLTAGE (V) F H K L M N P R S T A U B V C X D Y E Z represents production lot number to 9, A to Z reversed character to 9, A to Z repeated. (G, I, J, O, Q, W excluded) 3/3

31 XC6 Series MARKING RULE (Continued) USP-6B 1 represents product series MARK PRODUCT SERIES XC6PxxxDx 3 represents type of regulator MARK P PRODUCT SERIES XC6Pxxxxx represents integer of the output voltage MARK VOLTAGE (V) PRODUCT SERIES MARK VOLTAGE (V) PRODUCT SERIES 1 1.x XC6P1xxDx A 1.x XC6PAxxDx.x XC6PxxDx B 11.x XC6PBxxDx 3 3.x XC6P3xxDx C 1.x XC6PCxxDx.x XC6PxxDx D 13.x XC6PDxxDx.x XC6PxxDx E 1.x XC6PExxDx 6 6.x XC6P6xxDx F 1.x XC6PFxxDx 7 7.x XC6P7xxDx G 16.x XC6PGxxDx.x XC6PxxDx H 17.x XC6PHxxDx 9 9.x XC6P9xxDx J 1.x XC6PJxxDx represents decimal number of output voltage MARK VOLTAGE (V) PRODUCT SERIES 3 X.3 XC6Px3xDx X. XC6PxxDx 6 represents production lot number to 9, A to Z repeated (G, I, J, O, Q, W excluded) Note: No character inversion used. 31/3

32 XC6 Series 1. The product and product specifications contained herein are subject to change without notice to improve performance characteristics. Consult us, or our representatives before use, to confirm that the information in this datasheet is up to date.. The information in this datasheet is intended to illustrate the operation and characteristics of our products. We neither make warranties or representations with respect to the accuracy or completeness of the information contained in this datasheet nor grant any license to any intellectual property rights of ours or any third party concerning with the information in this datasheet. 3. Applicable export control laws and regulations should be complied and the procedures required by such laws and regulations should also be followed, when the product or any information contained in this datasheet is exported.. The product is neither intended nor warranted for use in equipment of systems which require extremely high levels of quality and/or reliability and/or a malfunction or failure which may cause loss of human life, bodily injury, serious property damage including but not limited to devices or equipment used in 1) nuclear facilities, ) aerospace industry, 3) medical facilities, ) automobile industry and other transportation industry and ) safety devices and safety equipment to control combustions and explosions. Do not use the product for the above use unless agreed by us in writing in advance.. Although we make continuous efforts to improve the quality and reliability of our products; nevertheless Semiconductors are likely to fail with a certain probability. So in order to prevent personal injury and/or property damage resulting from such failure, customers are required to incorporate adequate safety measures in their designs, such as system fail safes, redundancy and fire prevention features. 6. Our products are not designed to be Radiation-resistant. 7. Please use the product listed in this datasheet within the specified ranges.. We assume no responsibility for damage or loss due to abnormal use. 9. All rights reserved. No part of this datasheet may be copied or reproduced unless agreed by Torex Semiconductor Ltd in writing in advance. TOREX SEMICONDUCTOR LTD. 3/3

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