XC6201P131MF-G TOREX | Alldatasheet

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Positive Voltage Regulators ■GENERAL DESCRIPTION The XC6201 series are highly precise, low power consumption, positive voltage regulators manufactured using CMOS and laser trimming technologies. The series provides large currents with a significantly small dropout voltage. The XC6201 consists of a current limiter circuit, a driver transistor, a precision reference voltage and an error amplifier. Output voltage is selectable in 0.1V steps between 1.3V ~ 6.0V. SOT-25, SOT-89, USP-6B and TO-92 packages are available. ■APPLICATIONS

  • Mobile Phones
  • Cordless phones, wireless communication equipment
  • Cameras, video recorders
  • Portable games
  • Portable AV equipment
  • Reference voltage
  • Battery powered equipment ■TYPICAL APPLICATION CIRCUIT ■FEATURES Maximum Output Current : 250mA (TYP.) Dropout Voltage : 0.16V @ 100mA : 0.40V @ 200mA Maximum Operating Voltage : 10V Output Voltage Range : 1.3V ~ 6.0V (0.1V increments) Fixed Voltage Accuracy : ±1% (VOUT(T)>2.0V) ±2% Low Power Consumption : 2.0 μA (TYP.) Operational Temperature Range : -40℃ ~ 85 ℃ Packages : SOT-25, SOT-89 TO-92 USP-6B Environmentally Friendly : EU RoHS Compliant, Pb Free Tantalum or Ceramic Capacitor compatible ■TYPICAL PERFORMANCE CHARACTERISTICS XC6201P332 ETR0301_004
  • Supply Current vs. Input Voltage

SOT-25 SOT-89/TO-92 (T) USP-6B PIN NAME FUNCTION 5 1 3 V OUT Output 2 2 5 V SS Ground 1 3 1 V IN Power Input 3, 4 - 2,4,6 NC No Connection DESIGNATOR DESCRIPTION SYMBOL DESCRIPTION ① Product Number 01 - ② Type of Regulator P 3-pin regulator ③④ Output Voltage 13~60 e.g. 30:3.0V 50:5.0V 1 ±1% ⑤ Output Voltage Accuracy 2 ±2% MR SOT-25 MR-G SOT-25 PR SOT-89 PR-G SOT-89 TH TO-92 Tapin g Type: Paper type TH-G TO-92 Taping Type: Paper type TB TO-92 Taping Type: Bag TB-G TO-92 Taping Type: Bag DR USP-6B ⑥⑦-⑧ Packages Taping Type (*2) DR-G USP-6B ■PIN CONFIGURATION ■PIN ASSIGNMENT ■PRODUCT CLASSIFICATION

  • Ordering Information *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 V SS (No.5) pin. NC VSS NC VIN NC VOUT X C 6 2 0 1 P ③④⑤⑥⑦-⑧(*1) ① ② (*1) The “-G” suffix indicates that the products are Halogen and Antimony free as well as being fully RoHS compliant. (*2) The device orientation is fixed in its embossed tape pocket. For reverse orientatio n, please contact your local Torex sales office or representative. (Standard orientation: ⑥R-⑧, Reverse orientation: ⑥L-⑧) * + 1% accuracy can be set at VOUT(T) > 2.0V. (SIDE VIEW)

PARAMETER SYMBOL RATINGS UNITS Input Voltage V IN 12.0 V Output Current I OUT 500 mA Output Voltage V OUT VSS-0.3~VIN+0.3 V SOT-25 250 SOT-89 500 TO-92 300 Power Dissipation USP-6B Pd 120 mW Operating Temperature Range Topr -40~+85 ℃ Storage Temperature Range Tstg -55~+125 ℃ PARAMETER SYMBOL CONDITIONS MIN. TYP . MAX. UNITS CIRCUIT Output Voltage VOUT(E) (*2) VIN=2.3V IOUT=10mA 1.274 1.300 1.326 V ② Maximum Output Current I OUTmax VIN=2.3V VOUT(E)≧1.17V 60 - - mA ② Load Regulation △VOUT VIN=2.3V 1mA≦IOUT≦30mA - 10 30 mV ② Vdif1 I OUT=30mA - 200 600 Dropout Voltage (*3) Vdif2 I OUT=60mA - 500 810 mV ② Supply Current I SS V IN=2.3V - 2.0 5.0 μA ① Line Regulation △VOUT △VIN・△VOUT IOUT=10mA Input Voltage V IN 1.8 - 10 V - △VOUT Output Voltage Temperature Characteristics △Topr・△VOUT IOUT=40mA ■ABSOLUTE MAXIMUM RATINGS Ta = 25℃ ■ELECTRICAL CHARACTERISTICS XC6201P132 VOUT(T)=1.3V (*1) Ta=25℃ ■BLOCK DIAGRAM

PARAMETER SYMBOL CONDITIONS MIN. TYP . MAX. UNITS CIRCUIT Output Voltage VOUT(E) (*2) VIN=2.8V IOUT=40mA 1.764 1.800 1.836 V ② Maximum Output Current I OUTmax VIN=2.8V VOUT(E)≧1.62V 80 - - mA ② Load Regulation △VOUT VIN=2.8V 1mA≦IOUT≦40mA - 10 30 mV ② Vdif1 I OUT=40mA - 200 370 Dropout Voltage (*3) Vdif2 I OUT=80mA - 450 710 mV ② Supply Current I SS V IN=2.8V - 2.0 5.0 μA ① Line Regulation △VOUT △VIN・△VOUT IOUT=40mA Input Voltage V IN 1.8 - 10 V - Output Voltage Temperature Characteristics △VOUT △Topr・△VOUT IOUT=40mA PARAMETER SYMBOL CONDITIONS MIN. TYP . MAX. UNITS CIRCUIT Output Voltage VOUT(E) (*2) VIN=3.7V IOUT=40mA 2.646 2.700 2.754 V ② Maximum Output Current I OUTmax VIN=3.7V VOUT(E)≧2.43V 100 - - mA ② Load Regulation △VOUT VIN=3.7V 1mA≦IOUT≦60mA - 15 40 mV ② Vdif1 I OUT=60mA - 200 370 Dropout Voltage (*3) Vdif2 I OUT=120mA - 450 710 mV ② Supply Current I SS V IN=3.7V - 2.0 5.0 μA ① Line Regulation △VOUT △VIN・△VOUT IOUT=40mA Input Voltage V IN 1.8 - 10 V - Output Voltage Temperature Characteristics △VOUT △Topr・△VOUT IOUT=40mA XC6201P182 VOUT(T)=1.8V (*1) Ta=25℃ XC6201P272 VOUT(T)=2.7V (*1) Ta=25℃ ■ELECTRICAL CHARACTERISTICS (Continued)

PARAMETER SYMBOL CONDITIONS MIN. TYP . MAX. UNITS CIRCUIT Output Voltage VOUT(E) (*2) VIN=4.3V IOUT=40mA 3.234 3.300 3.366 V ② Maximum Output Current I OUTmax VIN=4.3V VOUT(E)≧2.97V 150 - - mA ② Load Regulation △VOUT VIN=4.3V 1mA≦IOUT≦80mA - 20 50 mV ② Vdif1 I OUT=80mA - 200 360 Dropout Voltage (*3) Vdif2 I OUT=160mA - 450 700 mV ② Supply Current I SS V IN=4.3V - 2.0 5.0 μA ① Line Regulation △VOUT △VIN・△VOUT IOUT=40mA Input Voltage V IN 1.8 - 10 V - Output Voltage Temperature Characteristics △VOUT △Topr・△VOUT IOUT=40mA PARAMETER SYMBOL CONDITIONS MIN. TYP . MAX. UNITS CIRCUIT Output Voltage VOUT(E) (*2) VIN=6.0V IOUT=40mA 4.900 5.000 5.100 V ② Maximum Output Current I OUTmax VIN=6.0V VOUT(E)≧4.57V 200 - - mA ② Load Regulation △VOUT VIN=6.0V 1mA≦IOUT≦100mA - 30 70 mV ② Vdif1 I OUT=100mA - 160 340 Dropout Voltage (*3) Vdif2 I OUT=200mA - 400 600 mV ② Supply Current I SS V IN=6.0V - 2.0 6.0 μA ① Line Regulation △VOUT △VIN・△VOUT IOUT=40mA Input Voltage V IN 1.8 - 10 V - Output Voltage Temperature Characteristics △VOUT △Topr・△VOUT IOUT=40mA NOTE: *1: VOUT(T) = Nominal output voltage. *2: VOUT(E) = Effective output voltage (i.e. the output voltage when “VOUT(T)+1.0V” is provided while maintaining a certain I OUT value). *3: Vdif = { VIN1 (*5) - VOUT1 (*4) *4: VOUT1 = A voltage equal to 98% of the output voltage when a stabilized (VOUT(T) + 1.0V) is input. *5: VIN1 = The input voltage at the time VOUT1 is output input voltage has been gradually reduced. XC6201P332 VOUT(T)=3.3V (*1) Ta=25℃ XC6201P502 VOUT(T)=5.0V (*1) Ta=25℃ ■ELECTRICAL CHARACTERISTICS (Continued)

OUTPUT VOLTAGE CIN CL (TANTALUM) CL (LOW ESR) ■TYPICAL APPLICATION CIRCUIT With the XC6201 series regulator, in order to ensure the stabilized output voltage, we suggest that an output capacitor (CL) of 1μF or more be connected between the output pin (VOUT) and the VSS pin. For using low ES R capacitor (e.g. ceramic capacitors), please make sure that the output voltage is more than 1.7V. When the ou tput voltage is from 1.3V to 1.6V, the output capacitor should be a tantalum capacitor with a capacitance of 2.2μF. We also suggest an input capacitor (C IN) should be connected between the VIN and the VSS in order to stabilize input power source. VIN=1.8V~10V,VOUT=1.7~6.0V CIN=1.0μF(Ceramic),CL=1.0μF(ceramic) (Tantalum) (Tantalum)

  1. Please use this IC within the stated absolute maximum ratings. The IC is liable to malfunction should the ratings be exceeded. When a voltage higher than the V IN flows to the V OUT like when using two power supplies, please connect a Schottky barrier diode between the VOUT and the VIN and do not exceed the VOUT rating. 2. An oscillation may occur by the impedance between a power supply and the input of the IC. Where the impedance is 10 Ω or more, please use an input capacitor (C IN) of at least 1 μF. In case of high output current, operation can be stabilized by increasing the input capacitor value. Also an oscillation may occur if the input capacitor value is smaller than the input impedance when the output capacitance (C L) is large. In such cases, operations can be stabilized by either increasing the input capacitor value or reducing the output capacitor value. 3. Please ensure that output current (IOUT) is less than Pd / (VIN - VOUT) and do not exceed the rated power dissipation value (Pd) of the package. Circuit ① : Supply Current ■TEST CIRCUITS Circuit ② : Output Voltage, Oscillation, Line Regulation, Dropout Voltage, Load Regulation ■ NOTE ON USE

■TYPICAL PERFORMANCE CHARACTERISTICS (1) Output Voltage vs. Output Current

(2) Output Voltage vs. Input Voltage ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6201P132 XC6201P132 XC6201P182 XC6201P182 XC6201P272 XC6201P272

(2) Output Voltage vs. Input Voltage (Continued) ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6201P332 XC6201P332 XC6201P502 XC6201P502

(3) Dropout Voltage vs. Output Current ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6201P132 XC6201P182 XC6201P272 XC6201P332 XC6201P502

(4) Supply Current vs. Input Voltage ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6201P132 XC6201P132 XC6201P182

(4) Supply Current vs. Input Voltage (Continued) ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6201P332

(5) Output Voltage vs. Ambient Temperature ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued)

(6) Supply Current vs. Ambient Temperature ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued)

(7) Input Transient Response ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6201P132 XC6201P182 XC6201P272 XC6201P332 XC6201P502 Time (1ms/div) Time (1ms/div) Time (1ms/div) Time (1ms/div) Time (1ms/div)

(8) Load Transient Response ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6201P132 XC6201P182 XC6201P272 XC6201P332 XC6201P502 Time (2ms/div) Time (2ms/div) Time (2ms/div) Time (2ms/div) Time (2ms/div)

(9) Ripple Rejection Rate (10) Output Noise Density ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6201P132 XC6201P182 XC6201P272 XC6201P332 XC6201P502XC6201P502 XC6201P302

■PACKAGING INFORMATION

  • SOT-25
  • SOT-89 1 3 2.9±0.2 0.4 +0.1 -0.05 1.6 +0.2 -0.1 1.9±0.2 2.8±0.2 1.1±0.1 1.3MAX 0.15 +0.1 -0.05 0.2MIN 0~0.1 5 4 (0.95) Unit : mm Unit : mm
  • USP-6B ■PACKAGING INFORMATION (Continued)
  • TO-92 Unit : mm Unit : mm Unit : mm

■PACKAGING INFORMATION (Continued)

  • USP-6B Reference Pattern Layout ●USP-6B Reference Metal Mask Design

1 XC6201Pxxxxx

MARK VOLTAGE (V) 5 0.1 ~ 3.0 6 3.1 ~ 6.0 MARK OUTPUT VOLTAGE (V) MARK OUTPUT VOLTAGE (V) ■MARKING RULE

  • SOT-89, SOT-25 ① represents the product series ② represents type of regulator ③ represents output voltage ④ represents assembly lot number 0 to 9, A to Z repeated (G, I, J, O, Q, W excluded) 123 SOT-89 (TOP VIEW) ① ② ③ ④ 123 SOT-25 (TOP VIEW)

② ③ VOLTAGE (V) PRODUCT SERIES 3 3 3.3 XC6201Px33xx 5 0 5.0 XC6201Px50xx MARK DETECT VOLTAGE ACCURACY PRODUCT SERIES

1 Within ±1% XC6201Pxx1xx

2 Within ±2% XC6201Pxx2xx

① ② PRODUCT SERIES 0 1 XC6201xxxxDx MARK TYPE PRODUCT SERIES P 3pin Regulator XC6201PxxxDx T V IN=7V(Rated) XC6201TxxxDx MARK ④ ⑤ VOLTAGE (V) PRODUCT SERIES 3 3 3.3 XC6201x33xDx 5 0 5.0 XC6201x50xDx

  • TO-92 ① represents type of regulator ⑤ represents least significant digit of production year ②③ represents output voltage ④ represents detect voltage accuracy ⑥ represents the production lot number 0 to 9, A to Z repeated (G, I, J, O, Q, W excluded) Note: No character inversion used.
  • USP-6B ①② represents product series ③ represents type of regulator ④⑤ represents output voltage ■MARKING RULE (Continued) USP-6B (TOP VIEW) ⑥ represents assembly lot number 0 to 9, A to Z repeated (G, I, J, O, Q, W excluded) Note: No character inversion used. (SIDE VIEW) (SIDE VIEW)
  1. The products and product specifications cont ained herein are subject to change without notice to improve performance characteristic s. Consult us, or our representatives before use, to confirm that the information in this datasheet is up to date. 2. We assume no responsibility for any infri ngement of patents, pat ent rights, or other rights arising from the use of any information and circuitry in this datasheet. 3. Please ensure suitable shipping controls (including fail-safe designs and aging protection) are in force for equipment employing products listed in this datasheet. 4. The products in this datasheet are not devel oped, designed, or approved for use with such equipment whose failure of malfuncti on can be reasonably expected to directly endanger the life of, or cause significant injury to, the user. (e.g. Atomic energy; aerospace; transpor t; combustion and associated safety equipment thereof.) 5. Please use the products listed in this datasheet within the specified ranges. Should you wish to use the products under conditions exceeding the specifications, please consult us or our representatives. 6. We assume no responsibility for damage or loss due to abnormal use. 7. All rights reserved. No part of this dat asheet may be copied or reproduced without the prior permission of TOREX SEMICONDUCTOR LTD.