150mA Ultra Low Dropout Voltage Regulator. LM2204 Series. General Description. Features. Applications

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1 150mA Ultra Low Dropout Voltage Regulator 150mA Ultra Low Dropout Voltage Regulator General Description The LM2204 series is a positive voltage regulator IC fabricated by high voltage EPNP process. The LM2204 has features of wide input voltage range, high accuracy, high ripple rejection, low dropout voltage, low noise, current limit and ultra-low quiescent current which make it ideal for use in various USB and portable devices. The IC consists of a voltage reference, an error amplifier, a resistor network for setting output voltage, a current limit circuit for current protection, and a chip enable circuit. The LM2204 has 1.5V, 1.8V, 2.5V, 2.8V, 3.0V, 3.3V, 5.0V fixed voltage versions and adjustable voltage version. The LM2204 is available in space-saving SOT-23-5, SOT-89 and PSOP-8 packages. SOT-23-5 SOT-89 PSOP-8 Features Wide Input Voltage Range: 2.3V to 24V Wide Output Voltage Range: 1.24V to 22V Excellent Ripple Rejetion: 60dB@f=1KHz Low Dropout Voltage: VDROP=100mV@IOUT=100μA Low Ground Current High Output Voltage Accuracy Compatible with Low ESR Ceramic Capacitor Excellent Line/Load Regulation Thermal Shutdown Function Applications Battery-powered Equipment Laptop, Palmtops, Notebook Computers Portable Information Appliances TAITRON COMPONENTS INCORPORATED Tel: (800)-TAITRON (800) (661) Fax: (800)-TAITFAX (800) (661) Page 1 of 18

2 Ordering Information LM Circuit Type Io=150mA Packing Code TR70: 7 Reel, RoHS RG70: 7 Reel, RoHS & Halogen Free Outline N5: SOT-23-5 K: SOT-89 Factory Location Code PS8: PSOP-8 ADJ: Adjustable Output Voltage 1.5: Fixed Output 1.5V 1.8: Fixed Output 1.8V 2.5: Fixed Output 2.5V 2.8: Fixed Output 2.8V 3.0: Fixed Output 3.0V 3.3: Fixed Output 3.3V 5.0: Fixed Output 5.0V Marking Information Outline Temperature Range SOT C to 125 C SOT C to 125 C Output Voltage PN Marking Code ADJ LM2204N5-ADJ-08-TR/RG70 GAF 1.5V LM2204N TR/RG70 GBH 1.8V LM2204N TR/RG70 GAG 2.5V LM2204N TR/RG70 GAD 2.8V LM2204N TR/RG70 GAE 3.0V LM2204N TR/RG70 GEF 3.3V LM2204N TR/RG70 GAH 5.0V LM2204N TR/RG70 GAI 1.5V LM2204K TR/RG70 G22C 1.8V LM2204K TR/RG70 G31C 2.5V LM2204K TR/RG70 G22D 2.8V LM2204K TR/RG70 G22E 3.0V LM2204K TR/RG70 G22F 3.3V LM2204K TR/RG70 G31D 5.0V LM2204K TR/RG70 G31E Packing Type Tape & Reel Page 2 of 18

3 Outline SOT-89 (R) Temperature Range -40 C to 125 C PSOP-8-40 C to 125 C Output Voltage PN Marking Code 1.5V (R) LM2204K-1.5-R-08-TR/RG70 G22O 1.8V (R) LM2204K-1.8-R-08-TR/RG70 G27O 2.5V (R) LM2204K-2.5-R-08-TR/RG70 G28O 2.8V (R) LM2204K-2.8-R-08-TR/RG70 G31O 3.0V (R) LM2204K-3.0-R-08-TR/RG70 G33O 3.3V (R) LM2204K-3.3-R-08-TR/RG70 G37O 5.0V (R) LM2204K-5.0-R-08-TR/RG70 G41O ADJ LM2204PS8-ADJ-08-TR/RG MP-ADJG1 1.5V LM2204PS TR/RG MP-1.5G1 1.8V LM2204PS TR/RG MP-1.8G1 2.5V LM2204PS TR/RG MP-2.5G1 2.8V LM2204PS TR/RG MP-2.8G1 3.0V LM2204PS TR/RG MP-3.0G1 3.3V LM2204PS TR/RG MP-3.3G1 5.0V LM2204PS TR/RG MP-5.0G1 Packing Type Tape & Reel Note: xxx means output voltage. Pin Configuration (Top View) SOT-89 (Note 1) SOT-89 (R) (Note 2) Page 3 of 18

4 SOT-23-5 PSOP-8 Note: 1. The substrate/exposed pad should be connected to GND or open. 2: The substrate/exposed pad should be connected to VIN or open. 3: The exposed pad should be connected to GND for better dissipation. Pin Description Pin Number SOT-23-5 PSOP-8 SOT R Pin Name Function VIN Input voltage GND Ground EN Enable input ADJ/NC Adjust output for ADJ version/no connected for fixed version VOUT Regulated output voltage Page 4 of 18

5 Functional Block Diagram Page 5 of 18

6 Absolute Maximum Ratings (Note 1) 150mA Ultra Low Dropout Voltage Regulator Symbol Description Ratings Unit VIN Supply Input Voltage 38 V VCE Enable Input Voltage 38 V IOUT Output Current 250 ma TLEAD Lead Temperature (Soldering, 10 sec.) 260 C TJ Operating Junction Temperature 150 C θja Thermal Resistance, Junction-to-Ambient (No Heatsink) SOT SOT C/W PSOP TSTG Storage Temperature Range -65 ~ +150 C ESD ESD (Human Body Model) 2000 V ESD (Machine Model) 275 V Note: 1. Stresses greater than those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under "Recommended Operating Conditions" is not implied. Exposure to "Absolute Maximum Ratings" for extended periods may affect device reliability. Recommended Operating Conditions Symbol Description Min. Max. Unit VIN Supply Input Voltage V TJ Operating Junction Temperature Range C Page 6 of 18

7 Electrical Characteristics (VIN=VOUT+1V, TJ=25 C, IOUT=100µA, CIN=1.0µF, COUT=2.2µF, unless otherwise specified.) Symbol Description Min. Typ. Max. Unit Conditions VOUT Output Voltage VOUT X 98% - VOUT X 102% VREF Reference Voltage V - VIN Input Voltage V - IOUT(MAX) Maximum Output Current ma V Variation from Specified VOUT VIN-VOUT=1V VOUT=98% VOUT VOUT/ VIN Line Regulation % VOUT+1V VIN 24V VOUT/ VOUT Load Regulation % 1mA IOUT 150mA IOUT=100µA VDROP Dropout Voltage IOUT=50mA mv IOUT=100mA IOUT=150mA IGND Ground Current µa IOUT=100µA IOUT=50mA ma IOUT=100mA ISTD Standby Current µa PSRR VOUT/(VOUT X T) Power Supply Rejection Ration Output Voltage Temperature Coefficient IOUT=150mA VIN=VOUT+1V VEN in OFF Mode f=100hz Ripple 0.5VP-P db VIN=VOUT+1V f=1khz - ±100 - ppm/ C IOUT=100µA, -40 C TJ 125 C VNOI RMS Output Noise µvrms TJ=25 C, 10Hz f 100kHz IADJ ADJ Pin Current µa IOUT=100µA Page 7 of 18

8 Symbol Description Min. Typ. Max. Unit Conditions IEN EN Pin Current µa VEN=VOUT+1V EN High Voltage V EN Input Voltage High EN Low Voltage V EN Input Voltage Low θjc Thermal Resistance, Junction to Case SOT C/W SOT PSOP-8 Typical Characteristics Curves Fig.1- Output Voltage vs. Output Current Fig.2- Output Voltage vs. Output Current Output Voltage (V) Output Voltage (V) Output Current (ma) Output Current (ma) Page 8 of 18

9 Fig.3- Output Voltage vs. Output Current Fig.4- Dropout Voltage vs. Output Current Output Current (ma) Output Current (ma) Fig.5- Dropout Voltage vs. Junction Temperature Fig.6- Output Voltage vs. Input Voltage Dropout Voltage (V) Output Voltage (V) Output Voltage (V) Dropout Voltage (mv) Junction Temperature ( C) Input Voltage (V) Page 9 of 18

10 Fig.7- Output Voltage vs. Input Voltage Fig.8- Output Voltage vs. Junction Temperature Input Voltage (V) Junction Temperature ( C) Fig.9- Supply Current vs. Input Voltage Fig.10- Ground Current vs. Junction Temperature Supply Current (µa) Ground Current (µa) Output Voltage (V) Output Voltage (V) Input Voltage (V) Junction Temperature ( C) Page 10 of 18

11 Fig.11- Ground Current vs. Output Current Fig.12- Enable Current vs. Enable Input Voltage Ground Current (ma) Enable Current (µa) Output Current (ma) Enable Input Voltage V) Fig.13- Line Transient (Conditions: VIN=VEN=3.5V to 8V, CIN=1.0µF, COUT=2.2µF, IOUT=1mA) Fig.14- Line Transient (Conditions: VIN=VEN=5V to 15V, CIN=1.0µF, COUT=2.2µF, IOUT=1mA) Page 11 of 18

12 Fig.15- Load Transient (Conditions: VIN=5V, CIN=1.0µF, COUT=2.2µF, IOUT=1mA to 50mA) Fig.16- Load Transient (Conditions: VIN=5V, CIN=1.0µF, COUT=2.2µF, IOUT=1mA to 150mA) Fig.17- Enable Input Response Fig.18- Start-up Response Page 12 of 18

13 Fig.19- PSRR vs. Frequency (Conditions: VPP=2V, IOUT=10mA) PSRR (db) Frequency (Hz) Typical Applications Page 13 of 18

14 Page 14 of 18

15 Dimensions in mm(inch) SOT Page 15 of 18

16 SOT-89 Page 16 of 18

17 PSOP-8 Note: Eject hole, oriented hole and mold mark is optional. Page 17 of 18

18 How to contact us: US HEADQUARTERS WEST HARRISON PARKAWAY, VALENCIA, CA Tel: (800) TAITRON (800) (661) Fax: (800) TAITFAX (800) (661) TAITRON COMPONENTS MEXICO, S.A.DE C.V. BOULEVARD CENTRAL 5000 INTERIOR 5 PARQUE INDUSTRIAL ATITALAQUIA, HIDALGO C.P MEXICO Tel: Fax: TAITRON COMPONETS INCORPORATED E REPRESENTAÇÕES DO BRASIL LTDA RUA DOMINGOS DE MORAIS, 2777, 2.ANDAR, SALA 24 SAÚDE - SÃO PAULO-SP BRAZIL Tel: Fax: TAITRON COMPONETS INCORPORATED, SHANGHAI REPRESENTATIVE OFFICE METROBANK PLAZA, 1160 WEST YAN AN ROAD, SUITE 1503, SHANGHAI, , CHINA Tel: Fax: Page 18 of 18

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