G5M62GR ETL | Alldatasheet

Document overview

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Technical content

Features

&Maximum Output Current: 150mA (within max. power dissipation, Vout=3.0V) &Output Voltage Range: 2.1V ~ 5.0V in 0.1V increments &Low Power Consumption: Typ. 13uA @ VOUT=5.0V &Output Voltage Temperature Characteristics: Typ. ±100ppm/: &Input Stability: Typ. 0.2%/V &Small Input-Output Differential: IOUT=160mA @ VOUT=3.0V with a 0.38V differential &Highly Accurate: Output voltage ± 2%

Applications

&Battery Powered Equipment &Palmtops &Cameras, Video Recorders &Voltage Supplies for Cellular Phones Package Dimensions Millimeter Dimensions REF. Min. Max. REF. Millimeter A 4.40 4.60 G 3.00 REF. B 4.05 4.25 H 1.50 REF. C 1.50 1.70 I 0.40 0.52 D 1.30 1.50 J 1.40 1.60 E 2.40 2.60 K 0.35 0.41 F 0.80 - L 5 ° TYP. Typical Application Circuit Block Diagram

G5M62GR Page: 2/8 ISSUED DATE :2005/11/09 REVISED DATE : Function List Series CE Voltage Output High ON G5M62GR Low OFF High ON G5M62GP Low OFF Absolute Maximum Ratings Ta=25:::: Parameter Symbol Ratings Unit Input Voltage VIN 12 V Output Current IOUT 500 mA Output Voltage VOUT VSS-0.3 ~VIN+0.3 V CE Input Voltage VCE VSS-0.3 ~VIN+0.3 V Operating Ambient Temperature Topr -30 ~ +80 : Storage Temperature Tstg -40 ~ +125 : Continuous Total Power Dissipation PD 500 mW Note: IOUT must be less than Pd/(VIN-VOUT) Electrical Characteristics Ta=25:::: G5M62GR-50 VOUT (T) =5.0V (Note1) Parameter Symbol Condition Min TYP Max Unit Circuit Output Voltage VOUT(E) (Note2) VIN=6.0V, IOUT=40mA 4.900 5.000 5.100 V 1 Max. Output Current IOUT max VIN=6V, VOUT(E)4.5V 180 - - mA 1 Load Stability æVOUT VIN=6V, IOUT=1mA to 100mA - 40 80 mV 1 Vdif1 IOUT=100mA - 165 330 1 Input-Output Voltage Differential (Note3) Vdif2 IOUT=200mA - 330 660 mV Supply Current1 ISS1 VIN=VCE=6V - 13 21 A 2 Supply Current2 ISS2 VIN=6V, VCE=VSS - - 0.1 A 2 Input Stability æVOUT æVIN*VOUT IOUT=40mA VIN=6V to 10V - 0.2 0.3 %/V 1 Input Voltage VIN - - 10 V - Output Voltage Temperature Characteristics æVOUT æTopr*VOUT IOUT=40mA -30: Topr 85: - ±100 - ppm/: CE Input Voltage “High” VCEH 1.5 - - V 1 CE Input Voltage “Low” VCEL - - 0.25 V 1 CE Input Current “High” ICEH VCE=VIN - - 5.0 A 2 CE Input Current “Low” ICEL VCE=VSS -0.2 -0.05 0 A 2 Note 1: VOUT (T) =Specified Output Voltage. 2: VOUT (E) =Effective Output Voltage (i.e. the output voltage when “VOUT (T) +1.0V” is provided at the VIN pin while maintaining a certain IOUT value). 3: Vdif={VIN1 (Note5)-VOUT1(Note4)} 4: VOUT1=A voltage equal to 98% of the Output Voltage whenever an amply stabilized IOUT {VOUT (T)+1.0V} is input. 5: VIN1=The input voltage when VOUT1appears as input voltage is gradually decreased.

G5M62GR Page: 3/8 ISSUED DATE :2005/11/09 REVISED DATE : G5M62GR-30 VOUT (T) =3.0V (Note1) Parameter Symbol Condition Min TYP Max Unit Circuit Output Voltage VOUT(E) (Note2) VIN=4.0V, IOUT=40mA 2.940 3.000 3.060 V 1 Max. Output Current IOUT max VIN=4V, VOUT(E)2.7V 150 - - mA 1 Load Stability æVOUT VIN=4V, IOUT=1mA to 80mA - 45 90 mV 1 Vdif1 IOUT=80mA - 200 395 1 Input-Output Voltage Differential (Note3) Vdif2 IOUT=160mA - 380 770 mV Supply Current1 ISS1 VIN=VCE=4V - 11 19 A 2 Supply Current2 ISS2 VIN=4V, VCE=VSS - - 0.1 A 2 Input Stability æVOUT æVIN*VOUT IOUT=40mA VIN=4V to 10V - 0.2 0.3 %/V 1 Input Voltage VIN - - 10 V - Output Voltage Temperature Characteristics æVOUT æTopr*VOUT IOUT=10mA -30: Topr 85: - ±100 - ppm/: CE Input Voltage “High” VCEH 1.5 - - V 1 CE Input Voltage “Low” VCEL - - 0.25 V 1 CE Input Current “High” ICEH VCE=VIN - - 5.0 A 2 CE Input Current “Low” ICEL VCE=VSS -0.2 -0.05 0 A 2 Note 1: VOUT (T) =Specified Output Voltage. 2: VOUT (E) =Effective Output Voltage (i.e. the output voltage when “VOUT (T) +1.0V” is provided at the VIN pin while maintaining a certain IOUT value). 3: Vdif={VIN1 (Note5)-VOUT1(Note4)} 4: VOUT1=A voltage equal to 98% of the Output Voltage whenever an amply stabilized IOUT {VOUT (T)+1.0V} is input. 5: VIN1=The input voltage when VOUT1appears as input voltage is gradually decreased. Test Circuit Circuit1 Circuit2

G5M62GR Page: 4/8 ISSUED DATE :2005/11/09 REVISED DATE : Characteristics Curve (1) Output Voltage vs. Output Current (2) Output Voltage vs. Input Voltage (3) Input/Output Voltage Differential vs. Output Current VOUT=5V VIN=6V VOUT=3V VIN=4V VOUT=5V TOPR=25: VOUT=5V TOPR=25: VOUT=3V TOPR=25: VOUT=3V TOPR=25: VOUT=5V VOUT=3V

G5M62GR Page: 5/8 ISSUED DATE :2005/11/09 REVISED DATE : (4) CE Pin Threshold Voltage vs. Input Voltage (5) Supply Current vs. Input Voltage (6) Output Voltage vs. Ambient Temperature VOUT=5V VOUT=3V VOUT=5V VOUT=5V VOUT=3V VOUT=3V VOUT=5V VIN=6V VOUT=3V VIN=4V

G5M62GR Page: 6/8 ISSUED DATE :2005/11/09 REVISED DATE : (7) Supply Current vs. Ambient Temperature (8) Input Transient Response 1 (9) Input Transient Response 2 VOUT=5V VIN=6V VOUT=3V VIN=4V VOUT=5V VOUT=5V VOUT=3V VOUT=3V VOUT=5V VOUT=5V

G5M62GR Page: 7/8 ISSUED DATE :2005/11/09 REVISED DATE : (9) Input Transient Response 2 (10) Load Transient Response (11) CE Pin Transient Response VOUT=3V VOUT=3V VOUT=5V VOUT=3V VOUT=5V VIN=6V VOUT=5V VIN=6V VOUT=3V VIN=4V VOUT=3V VIN=4V

G5M62GR Page: 8/8 ISSUED DATE :2005/11/09 REVISED DATE : (12) Ripple Rejection Rate Important Notice: All rights are reserved. Reproduction in whole or in part is prohibited without the prior written approval of GTM. GTM reserves the right to make changes to its products without notice. GTM semiconductor products are not warranted to be suitable for use in life-support Applications, or systems. GTM assumes no liability for any consequence of customer product design, infringement of patents, or application assistance. Head Office And Factory: TEL : 886-3-597-7061 FAX : 886-3-597-9220, 597-0785 China: (201203) No.255, Jang-Jiang Tsai-Lueng RD. , Pu-Dung-Hsin District, Shang-Hai City, China TEL : 86-21-5895-7671 ~ 4 FAX : 86-21-38950165 VOUT=5V VIN=6VDC+1VP-PAC VOUT=3V VIN=4VDC+1VP-PAC