XC6204/XC6205 Series ETR03004-011 300mA/150mA High Speed LDO Regulators with ON-OFF Control GENERAL DESCRIPTION The XC6204/XC6205 series are highly precise, low noise, positive voltage LDO regulators manufactured using CMOS processes. The series achieves high ripple rejection and low dropout and consists of a standard voltage source, an error correction, current limiter and a phase compensation circuit plus a driver transistor. Output voltage is selectable in 0.05V steps within a range of 0.9V ~ 6.0V. The series is also compatible with low ESR ceramic capacitors which give added output stability. This stability can be maintained even during load fluctuations due to the excellent transient response of the series. The current limiter's foldback circuit also operates as a short protect for the output current limiter and the output pin. The CE function enables the output to be turned off, resulting in greatly reduced power consumption. APPLICATIONS FEATURES Smart phones / Mobile phones Portable game consoles Digital still cameras / Camcorders Digital audio equipments Reference voltage sources Multi-function power supplies Maximum Output Current : 150mA 300mA(XC6204 E to H type) Dropout Voltage : 200mV @ 100mA 60mV @ 30mA Operating Voltage : 2V ~ 10V Output Voltage Range : 1.8V ~ 6.0V (XC6204) 0.9V ~ 1.75V (XC6205) Highly Accurate : 2%, 1% Low Power Consumption : 70A (TYP.) Standby Current : 0.1A (MAX.) High Ripple Rejection : 70dB@10kHz (XC6204) 60dB@10kHz (XC6205) Low ESR Capacitor Compatible : Ceramic capacitor Operating Ambient Temperature : -40~ 85 Packages : SOT-25, SOT-89-5, USP-6B Environmentally Friendly : EU RoHS Compliant, Pb Free TYPICAL APPLICATION CIRCUIT TYPICAL PERFORMANCE CHARACTERISTICS 1/48 XC6204/XC6205 Series BLOCK DIAGRAM 1) XC6204, XC6205 Series B, D, F, H Type 2) XC6204, XC6205 Series C, G Type VIN VIN R Pull Up ON/OFF Control CE eachcircuit CE + Current Limit Error Amp ON/OFF Control - V OUT + eachcircuit Current Limit Error Amp VOUT R2 R2 R1 Voltage Reference R1 V SS Voltage Reference 3) XC6204, XC6205 Series A, E Type VIN ON/OFF Control CE eachcircuit R Pull Down + Error Amp Current Limit VOUT R2 R1 Voltage Reference * Diodes shown in the above circuit are protective diodes. 2/48 VSS V SS XC6204/XC6205 Series PRODUCT CLASSIFICATION Ordering Information XC6204/XC6205- DESIGNATOR ITEM (*1) Type of Regulator (CE pin Logic) Output Voltage SYMBOL A B C D E F G H 09 ~ 17 18 ~ 60 2(*4) Output Voltage Accuracy 1(*3) A(*4) B(*3) -(*5) (*1) (*2) (*3) (*4) (*5) Packages (Order Unit) MR MR-G DR DR-G PR PR-G DESCRIPTION 150mA Active High, pull-down resistor built-in (*2)(Semi-Custom) 150mA Active High, no pull-down resistor built-in (Standard) 150mA Active Low, pull-up resistor built-in (*2)(Semi-Custom) 150mA Active Low, no pull-up resistor built-in (Semi-Custom) 300mA(*1) Active High, pull-down resistor built-in (*2) (Semi-Custom) 300mA(*1) Active High, no pull-down resistor built-in (Standard) 300mA(*1) Active Low, pull-up resistor built-in (*2) (Semi-Custom) 300mA(*1) Active Low, no pull-up resistor built-in (Semi-Custom) XC6205 XC6204 e.g. VOUT=2.0V=2, =0 0.1V increments, 2% accuracy e.g. VOUT=2.8V, 2%=3, =8, =2 0.1V increments, 1% accuracy e.g. VOUT=3.0V, 1%=3, =0, =1 0.05V increments, 2% accuracy e.g. VOUT=2.85V, 2%=2, =8, =A 0.05V increments, 1% accuracy e.g. VOUT=3.85V, 1%=3, =8, =B SOT-25 (3,000pcs/Reel) SOT-25 (3,000pcs/Reel) USP-6B (3,000pcs/Reel) USP-6B (3,000pcs/Reel) SOT-89-5 (1,000pcs/Reel) SOT-89-5 (1,000pcs/Reel) E to H types are compatible to 300mA of XC6204 series. (XC6205 can not draw 300mA depending on output voltage.) With the pull-up resistor or pull-down resistor built-in types, the supply current during operation will increase by VIN / 300k (TYP.) Output voltage range of the 1% accuracy product is 2.95V to 6.0V. Output voltage accuracy of the VOUT1.5V is 30mV. The "-G" suffix denotes Halogen and Antimony free as well as being fully EU RoHS compliant. 3/48 XC6204/XC6205 Series PIN CONFIGURATION CE 6 1 VIN VSS 5 2 NC 3 VOUT NC 4 SOT-25 (TOP VIEW) USP-6B (BOTTOM VIEW) SOT-89-5 (TOP VIEW) PIN ASSIGNMENT PIN NUMBER PIN NAME FUNCTIONS 1 VIN Input 5 VSS Ground SOT-25 SOT-89-5 USP-6B 1 4 2 2 3 3 6 CE ON/OFF Control 4 1 2, 4 NC No Connection 5 5 3 VOUT Output FUNCTIONS Type A,B,E,F Type C,D,G,H Type CE OPERATIONAL STATE H L H L ON OFF OFF ON H = High Level L = Low Level ABSOLUTE MAXIMUM RATINGS PARAMETER SYMBOL RATINGS UNITS Input Voltage Output Current Output Voltage CE Input Voltage VIN IOUT VOUT VCE 12.0 500 (*1) VSS - 0.3 ~ VIN + 0.3 VSS - 0.3 ~ VIN + 0.3 V mA V V 250 SOT-25 600 (40mm x 40mm Standard board)(*2) 760 (JESD51-7board)(*2) Power Dissipation (Ta=25) USP-6B Pd 120 1000 (40mm x 40mm Standard board)(*2) mW 500 SOT-89-5 1300( 40mm x 40mm Standard board)(*2) 1750 (JESD51-7 board)(*2) Operating Ambient Temperature Storage Temperature Topr Tstg -40 ~ 85 -55 ~ 125 (*1 ) IOUT=Pd/(VIN-VOUT) (*2) The power dissipation figure shown is PCB mounted and is for reference only. The mounting condition is please refer to PACKAGING INFORMATION. 4/48 XC6204/XC6205 Series ELECTRICAL CHARACTERISTICS XC6204A, B Type PARAMETER SYMBOL CONDITIONS Output Voltage Ta = 25 TYP. MAX. VOUT(E) Output Voltage IOUT = 30mA Maximum Output Current IOUTMAX Load Regulation VOUT Dropout Voltage - x1.01 x0.98 1mAIOUT100mA - - - 15 50 Vdif1 IOUT = 30mA E-1 Vdif2 IOUT = 100mA E-2 Supply Current VIN = VCE = VOUT(T)+1.0V (A type) 150 50 80 120 VIN = VCE = VOUT(T)+1.0V (B type) Standby Current ISTBY VIN = VOUT(T)+1.0V, VCE = VSS Input Voltage VOUT VOUT(T)+1.0VVIN10V VINVOUT IOUT = 30mA VIN - Output Voltage IOUT = 30mA VOUT Temperature Characteristics ToprVOUT -40Topr85 Output Noise Power Supply Rejection Ratio en PSRR 150 - - mA 1 - 30 80 mV 1 mV 1 A 2 50 90 145 70 100 40 80 120 - 0.01 0.10 - 0.05 1.00 A 2 - 0.01 0.20 - 0.05 0.30 %/V 1 2 - 10 2 - 10 V 1 100 - - - - ppm/ 30 - - - - Vrms 3 - 70 - - - - dB 4 - 300Hz~50kHz IOUT = 50mA, f=10kHz 1 40 IOUT = 10mA VIN = {VOUT(T)+1.0}V+1.0Vp-pAC V x1.02 IDD Supply Current UNITS CIRCUIT x1.03 VOUT(T) VOUT(T) x0.99 (1% products) -40 With the XC6204/05 series, a stable output voltage is achievable even if used with a low ESR capacitor as a phase compensation circuit is built-in. In order to ensure the effectiveness of the phase compensation, we suggest that an output capacitor (CL) is connected as close as possible to the output pin (VOUT) and the VSS pin. Please use an output capacitor with a capacitance value of at least 1F. Also, please connect an input capacitor (CIN) of 0.1F between the VIN pin and the VSS pin in order to ensure a stable power input. Recommended output capacitor values VOUT 0.9V ~ 1.2V 1.25V ~ 1.75V CL 4.7F 2.2F The XC6204/05 series includes a combination of a fixed current limiter circuit & a foldback circuit, which aid the operations of the current limiter and circuit protection. When the load current reaches the current limit level, the fixed current limiter circuit operates and output voltage drops. As a result of this drop in output voltage, the foldback circuit operates, output voltage drops further and output current decreases. When the output pin is shorted, a current of about 50mA flows. However, when the input/output voltage differential is quite small, this current will be about 200mA. 17/48 XC6204/XC6205 Series OPERATIONAL EXPLANATION (Continued) The IC's internal circuitry can be shutdown via the signal from the CE pin with the XC6204/05 series. In shutdown mode, output at the VOUT pin will be pulled down to the VSS level via R1 & R2. The operational logic of the IC's CE pin is selectable (please refer to the selection guide). Note that as the standard XC6204/05B type is ' High Active/No Pull Down', operations will become unstable with the CE pin open. Although the CE pin is equal to an inverter input with CMOS hysteresis, with either the pull-up or pull-down options, the CE pin input current will increase when the IC is in operation. We suggest that you use this IC with either a VIN voltage or a VSS voltage input at the CE pin. If this IC is used with the correct specifications for the CE pin, the operational logic is fixed and the IC will operate normally. However, supply current may increase as a result of through current in the IC's internal circuitry if a voltage between 0.25V and 1.5V is input. In order to stabilize the IC's operations, an input voltage of more than 2.0V is needed. Should the input voltage be less than 2.0V, the output voltage may not be regulated correctly. (Please refer to Input Voltage vs. Output Voltage characteristics below.) When VIN is less than 2.0V, the CE pin remains in stand-by mode. When VIN rises above 2.0V, the power supply will turn ON. The input power supply will begin to rise after a few hundred msec. (Please also refer to the transient response characteristics.) Input Voltage vs. Output Voltage Enable Response Time Turn-ON Response Time NOTES ON USE 1. Please use this IC within the stated maximum ratings. For temporary, transitional voltage drop or voltage rising phenomenon, the IC is liable to malfunction should the ratings be exceeded. 2. Where wiring impedance is high, operations may become unstable due to noise and/or phase lag depending on output current. Please strengthen VIN and VSS wiring in particular. 3. Please wire the input capacitor (CIN) and the output capacitor (CL) as close to the IC as possible. 4. Torex places an importance on improving our products and their reliability. We request that users incorporate fail-safe designs and post-aging protection treatment when using Torex products in their systems. 18/48 XC6204/XC6205 Series TEST CIRCUITS Circuit 1 V CE VSS CIN=1.0F () CIN=1.0F (Ceramic) A VOUT VIN CL=1.0F () RL V CL=1.0F (Ceramic) V VCE Circuit 2 A VIN CE A OPEN VOUT VSS VCE Circuit 3 VIN CE Circuit 4 CIN=1.0F CIN=1.0F () VOUT VSS F.F.T CL=1.0F CL=1.0F () (Ceramic) (Ceramic) VCE IOUT=10mA VOUT VIN IOUT=50mA VIN={VOUT(T)+1}VDC+1.0Vp-pAC VOUT(T)1.5V VIN=2.5VDC+1.0Vp-pAC CE V VSS L=1.0uF CLC=1.0F () (Ceramic) V VCE *TEST CIRCUIT VCE(CE Pin Voltage) ACTIVE XC6204/XC6205ABEF TypeVCEVIN XC6204/05CDGH TypeVCEVSS STANDBY XC6204/05ABEF TypeVCEVSS XC6204/05CDGH TypeVCEVIN 19/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS XC6204 (1) Output Voltage vs. Output Current 20/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (1) Output Voltage vs. Output Current (Continued) (2) Output Voltage vs. Input Voltage 21/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (2) Output Voltage vs. Input Voltage (Continued) (3) Dropout Voltage vs. Output Current 22/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (3) Dropout Voltage vs. Output Current (Continued) * Since the operation of this IC is only guaranteed from VIN=2.0V and above, it is essential that when using with applications where VOUT=2.0V or less, the difference between VIN and VOUT be at least equal to 2V - VOUT(T). (4) Supply Current vs. Input Voltage 23/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (5) Output Voltage vs. Ambient Temperature (6) Supply Current vs. Ambient Temperature 24/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (6) Supply Current vs. Ambient Temperature (Continued) (7) CE Pin Threshold Voltage vs. Ambient Temperature XC6204xxx2 XC6204xxx2 Threshold Voltage:V CEH,V CEL 2.00 VIN=VOUT+1VRL= 100 CIN=CL=1.0uF(Ceramic) "H" Level Voltage 1.50 1.00 "L" Level Voltage 0.50 0.00 -50 -25 0 25 50 75 100 Ambient Temperature:Topr () (8) Input Transient Response 25/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (8) Input Transient Response (Continued) 26/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (8) Input Transient Response (Continued) XC6204x502 5.06 7 6 5.08 Input Voltage 5.04 5 5.02 4 5.00 3 Output Voltage 4.98 Output Voltage: VOUT (V) Input Voltage:VIN (V) 8 IOUT=30mA==5usec CL=1.0uFceramic) 4.96 2 Time (40sec/div) (9) Load Transient Response 27/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (9) Load Transient Response (Continued) 28/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (9) Load Transient Response (Continued) 29/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (9) Load Transient Response (Continued) 30/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (9) Load Transient Response (Continued) (10) Turn-On Response Time 31/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (10) Turn-On Response Time 32/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (10) Turn-On Response Time (Continued) (11) Enable Response Time (These characteristics will not be affected by the nature of the CE pin's logic) 33/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (11) Enable Response Time (Continued) (These characteristics will not be affected by the nature of the CE pin's logic) 34/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (11) Enable Response Time (Continued) (These characteristics will not be affected by the nature of the CE pin's logic) (12) Ripple Rejection Rate 35/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6204 (Continued) (12) Ripple Rejection Rate (Continued) (13) Output Noise Density XC6204302 Output Noise Density: (V / Hz) (V/ IOUT=10mA , CL=1.0F (ceramic) 10 1 0.1 0.01 0.1 1 10 f(kHz) f (kHz) Ripple Frequency: 36/48 100 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6205 (1) Output Voltage vs. Output Current (2) Output Voltage vs. Output Current (Current Limit) 37/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6205 (Continued) (3) Output Voltage vs. Input Voltage XC6205x092 XC6205x092 XC6205x152 XC6205x152 (4) Dropout Voltage VS. Output Current XC6205x152 38/48 XC6205x152 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6205 (Continued) (5) Supply Current vs. Input Voltage (6) Output Voltage vs. Ambient Temperature 39/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6205 (Continued) (7) Supply Current vs. Ambient Temperature XC6205x092 (8) CE Pin Threshold Voltage vs. Ambient Temperature XC6205xxx2 (9) Load Transient Response 40/48 XC6205x152 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6205 (Continued) (9) Load Transient Response (Continued) (10) Input Transient Response 1 (11) Input Transient Response 2 XC6205x092 XC6205x092 41/48 XC6204/XC6205 Series TYPICAL PERFORMANCE CHARACTERISTICS (Continued) XC6205 (Continued) (11) Input Transient Response 2 (Continued) XC6205x152 XC6205x152 (12) Enable Response Time XC6205B092 XC6205x152 (13) Ripple Rejection Rate XC6205x092 42/48 XC6205x152 XC6204/XC6205 Series PACKAGING INFORMATION For the latest package information go to, www.torexsemi.com/technical-support/packages PACKAGE OUTLINE / LAND PATTERN SOT-25 SOT-25 PKG SOT-89-5 SOT-89-5 PKG USP-6B USP-6B PKG THERMAL CHARACTERISTICS Standard Board JESD51-7 Board Standard Board JESD51-7 Board Standard Board SOT-25 Power Dissipation SOT-89-5 Power Dissipation USP-6B Power Dissipation 43/48 XC6204/XC6205 Series MARKING RULE [XC6204] SOT-25, SOT-89-5 2 5 4 1 2 5 4 3 2 1 SOT-25 3 SOT-89-5 (TOP VIEW) (TOP VIEW) represents product series MARK PRODUCT SERIES 4 XC6204xxxxxx represents type of regulator MARK OUTPUT VOLTAGE 100mV INCREMENTS OUTPUT VOLTAGE 50mV INCREMENTS PRODUCT SERIES VOLTAGE =0.1~3.0V VOLTAGE =3.1~6.0V VOLTAGE =0.153.05V VOLTAGE =3.156.05V V X Y Z V X Y Z A B C D A B C D E F H K E F H K L M N P L M N P XC6204Axxxxx XC6204Bxxxxx XC6204Cxxxxx XC6204Dxxxxx XC6204Exxxxx XC6204Fxxxxx XC6204Gxxxxx XC6204Hxxxxx represents output voltage MARK OUTPUT VOLTAGE (V) MARK OUTPUT VOLTAGE (V) 0 3.1 3.15 F 1.6 4.6 1.65 4.65 1 3.2 3.25 H 1.7 4.7 1.75 4.75 2 3.3 3.35 K 1.8 4.8 1.85 4.85 3 3.4 3.45 L 1.9 4.9 1.95 4.95 4 3.5 3.55 M 2.0 5.0 2.05 5.05 5 3.6 3.65 N 2.1 5.1 2.15 5.15 6 3.7 3.75 P 2.2 5.2 2.25 5.25 7 3.8 3.85 R 2.3 5.3 2.35 5.35 8 3.9 3.95 S 2.4 5.4 2.45 5.45 9 4.0 4.05 T 2.5 5.5 2.55 5.55 A 4.1 4.15 U 2.6 5.6 2.65 5.65 B 4.2 4.25 V 2.7 5.7 2.75 5.75 C 4.3 4.35 X 2.8 5.8 2.85 5.85 D 4.4 4.45 Y 2.9 5.9 2.95 5.95 E 4.5 4.55 Z 3.0 6.0 3.05 6.05 represents production lot number 0 to 9, A to Z, reversed character of 0 to 9 and A to Z repeated. 44/48 (G, I, J, O, Q, W excluded) XC6204/XC6205 Series MARKING RULE (Continued) [XC6204] USP-6B 2 3 6 1 5 4 USP-6B (TOP VIEW) represents product series MARK 0 4 PRODUCT SERIES XC6204xxxxDx represents type of regulator MARK TYPE PRODUCT SERIES A CE pin: High Active, Pull-Down Resistor Built-In XC6204AxxxDx B CE pin: High Active, No Pull-Down Resistor Built-In XC6204BxxxDx C CE pin: High Active, Pull-Up Resistor Built-In XC6204CxxxDx D CE pin: Low Active, No Pull-Up Resistor Built-In XC6204DxxxDx E CE pin: High Active, Pull-Down Resistor Built-In XC6204ExxxDx F CE pin: High Active, No Pull-Down Resistor Built-In XC6204FxxxDx Z CE pin: Low Active, Pull-Up Resistor Built-In XC6204GxxxDx H CE pin: Low Active, No Pull-Up Resistor Built-In XC6204HxxxDx represents integer of the output voltage MARK VOLTAGEV PRODUCT SERIES 3 3.X XC6204x3xxDx 5 5.X XC6204x5xxDx represents decimal number of output voltage MARK VOLTAGE (V) PRODUCT SERIES MARK VOLTAGE (V) PRODUCT SERIES 0 1 2 3 4 5 6 7 8 9 X.0 X.1 X.2 X.3 X.4 X.5 X.6 X.7 X.8 X.9 XC6204xx0xDx XC6204xx1xDx XC6204xx2xDx XC6204xx3xDx XC6204xx4xDx XC6204xx5xDx XC6204xx6xDx XC6204xx7xDx XC6204xx8xDx XC6204xx9xDx A B C D E F H K L M X.05 X.15 X.25 X.35 X.45 X.55 X.65 X.75 X.85 X.95 XC6204xx0ADx XC6204xx1ADx XC6204xx2ADx XC6204xx3ADx XC6204xx4ADx XC6204xx5ADx XC6204xx6ADx XC6204xx7ADx XC6204xx8ADx XC6204xx9ADx represents production lot number 0 to 9, A to Z repeated. (G, I, J, O, Q, W excluded) Note: No character inversion used. 45/48 XC6204/XC6205 Series MARKING RULE (Continued) [XC6205] SOT-25, SOT-89-5 2 5 4 1 2 5 4 3 1 2 SOT-25 SOT-89-5 (TOP VIEW) (TOP VIEW) 3 represents product series MARK PRODUCT SERIES 5 XC6205xxxxxx represents type of regulator MARK OUTPUT VOLTAGE OUTPUT VOLTAGE 100mV INCREMENTS 50mV INCREMENTS V X Y Z V X Y Z PRODUCT SERIES E F H K E F H K XC6205Axxxxx XC6205Bxxxxx XC6205Cxxxxx XC6205Dxxxxx XC6205Exxxxx XC6205Fxxxxx XC6205Gxxxxx XC6205Hxxxxx represents output voltage MARK 8 9 A B C OUTPUT VOLTAGE (V) 0.9 1.0 1.1 1.2 1.3 0.95 1.05 1.15 1.25 1.35 MARK D E F H represents production lot number 0 to 9, A to Z, reversed character of 0 to 9 and A to Z repeated. 46/48 OUTPUT VOLTAGE (V) 1.4 1.5 1.6 1.7 1.45 1.55 1.65 1.75 (G, I, J, O, Q, W excluded) XC6204/XC6205 Series MARKING RULE(Continued) [XC6205] USP-6B 2 3 1 6 5 4 USP-6B (TOP VIEW) represents product series MARK 0 PRODUCT SERIES 5 XC6205xxxxDx represents type of voltage regulator MARK A B C D E F Z H CE pin: CE pin: CE pin: CE pin: CE pin: CE pin: CE pin: CE pin: TYPE PRODUCT SERIES High Active with Pull-Down Resistor Built-In High Active with No Pull-Down Resistor Built-In Low Active with Pull-Up Resistor Built-In Low Active with No Pull-Up Resistor Built-In High Active with Pull-Down Resistor Built-In High Active with No Pull-Down Resistor Built-In Low Active with Pull-Up Resistor Built-In Low Active with No Pull-Up Resistor Built-In XC6205AxxxDx XC6205BxxxDx XC6205CxxxDx XC6205DxxxDx XC6205ExxxDx XC6205FxxxDx XC6205GxxxDx XC6205HxxxDx represents integer of output voltage MARK VOLTAGE (V) PRODUCT SERIES 3 5 3.X 5.X XC6205x3xxDx XC6205x5xxDx represents decimal point of output voltage MARK 0 1 2 3 4 5 6 7 8 9 OUTPUT VOLTAGE (V) X.0 X.1 X.2 X.3 X.4 X.5 X.6 X.7 X.8 X.9 XC6205xx0xDx XC6205xx1xDx XC6205xx2xDx XC6205xx3xDx XC6205xx4xDx XC6205xx5xDx XC6205xx6xDx XC6205xx7xDx XC6205xx8xDx XC6205xx8xDx MARK A B C D E F H K L M OUTPUT VOLTAGE (V) X.05 X.15 X.25 X.35 X.45 X.55 X.65 X.75 X.85 X.95 XC6205xx0ADx XC6205xx1ADx XC6205xx2ADx XC6205xx3ADx XC6205xx4ADx XC6205xx5ADx XC6205xx6ADx XC6205xx7ADx XC6205xx8ADx XC6205xx9ADx represents production lot number 0 to 9, A to Z repeated (G, I, J, O, Q, W excluded) *No character inversion used. 47/48 XC6204/XC6205 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. 2. 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. 4. 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, 2) aerospace industry, 3) medical facilities, 4) automobile industry and other transportation industry and 5) 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. 5. 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. 8. 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. 48/48