AN80xx/AN80xxM Series
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- Irene Ada Johnson
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1 oltage Regulators AN80xx/AN80xxM Series 3-pin, positive output, low dropout voltage regulator (50 type) Overview The AN80xx series and the AN80xxM series are 3- pin, low dropout, fixed positive output type monolithic voltage regulators. Since their power consumption can be minimized, they are suitable for battery-used power supply and reference voltage. 3 types of output voltage are available; 2, 2.5, 3, 3.5 (SSIP003-P-0000 only), 4, 4.5, 5, 6, 7, 8, 8.5, 9, and 0. AN80xx series 5.0± 0.6±0.5 (.0) (.0) 3.5±0.5 5.± 4.0± : mm 2.3± Features Input/output voltage difference: max. Output current of up to 50 Low bias current: 0.6 typ. : 2, 2.5, 3, 3.5 (SSIP003-P-0000 only), 4, 4.5, 5, 6, 7, 8, 8.5, 9, and 0 Built-in overcurrent protection circuit AN80xxM series SSIP003-P max..8 max : Input 2: Output 3: GND : mm.6 max max max min max max max. Block Diagram (AN80xxM series) 2 3 HSIP003-P-0000B : Output 2: GND 3: Input Starter oltage Reference + Error Amp. R 2 Current Limiter R I 3 () 2 (3) + (2) O R = 5kΩ C IN = 3µF C OUT = 0µF C IN C OUT Note) The number in ( ) shows the pin number for the AN80xx series. Publication date: August 200 SFF00007AEB
2 Absolute Maximum Ratings at T a = 25 C Parameter Symbol Rating Supply voltage Supply current Power dissipation Operating ambient temperature AN80xx series Storage temperature AN80xxM series I I CC P D T opr T stg * mw 30 to +80 C 55 to +50 C 55 to +25 * AN80xxM series is mounted on standard board (glass epoxy: 20mm 20mm t.7mm with Cu foil of cm 2 or more). Electrical Characteristics at T a = 25 C AN8002, AN8002M (2 type) O T j = 25 C REG IN I = 2.5 to 8, T j = 25 C 2 40 m I O = to 40, T j = 25 C 7 20 m 0 25 m DIF(min) I =.9, I O = 20, T j = 25 C 0.06 I =.9, I O = 50, T j = 25 C 0.2 I O = 0, T j = 25 C 0.6 I = 3 to 5, f = 20Hz no 60 µ temperature coefficient O/T a T j = 30 to +25 C 0. m/ C Note 2) Unless otherwise specified, I = 3, I O = 20 and C O = 0µF. AN8025, AN8025M (2.5 type) O T j = 25 C REG IN I = 3 to 8.5, T j = 25 C I O = to 40, T j = 25 C DIF(min) no I = 2.4, I O = 20, T j = 25 C I = 2.4, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 3.5 to 5.5, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C 0.3 m/ C Note 2) Unless otherwise specified, I = 3.5, I O = 20 and C O = 0µF m m m µ 2 SFF00007AEB
3 Electrical Characteristics at T a = 25 C (continued) AN8003, AN8003M (3 type) O T j = 25 C REG IN I = 3.5 to 9, T j = 25 C 3 50 I O = to 40, T j = 25 C DIF(min) no I = 2.9, I O = 20, T j = 25 C I = 2.9, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 4 to 6, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C 0.5 m/ C Note 2) Unless otherwise specified, I = 4, I O = 20 and C O = 0µF m m m µ AN8035(3.5 type) yp O T j = 25 C REG IN I = 4 to 9.5, T j = 25 C I O = to 40, T j = 25 C DIF(min) no I = 3.4, I O = 20, T j = 25 C I = 3.4, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 4.5 to 6.5, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C m/ C Note 2) Unless otherwise specified, I = 4.5, I O = 20 and C O = 0µF m m m µ AN8004, AN8004M (4 type) O T j = 25 C REG IN I = 4.5 to 0, T j = 25 C I O = to 40, T j = 25 C DIF(min) no I = 3.8, I O = 20, T j = 25 C I = 3.8, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 5 to 7, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C m/ C Note 2) Unless otherwise specified, I = 5, I O = 20 and C O = 0µF m m m µ SFF00007AEB 3
4 Electrical Characteristics at T a = 25 C (continued) AN8045, AN8045M (4.5 type) O T j = 25 C REG IN I = 5 to 0.5, T j = 25 C 4 50 I O = to 40, T j = 25 C DIF(min) no I = 4.3, I O = 20, T j = 25 C I = 4.3, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 5.5 to 7.5, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C 3 m/ C Note 2) Unless otherwise specified, I = 5.5, I O = 20 and C O = 0µF m m m µ AN8005, AN8005M (5 type) O T j = 25 C REG IN I = 5.5 to, T j = 25 C I O = to 40, T j = 25 C DIF(min) no I = 4.8, I O = 20, T j = 25 C I = 4.8, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 6 to 8, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C 5 m/ C Note 2) Unless otherwise specified, I = 6, I O = 20 and C O = 0µF m m m µ AN8006, AN8006M (6 type) O T j = 25 C REG IN I = 6.5 to 2, T j = 25 C I O = to 40, T j = 25 C DIF(min) no I = 5.8, I O = 20, T j = 25 C I = 5.8, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 7 to 9, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C m/ C Note 2) Unless otherwise specified, I = 7, I O = 20 and C O = 0µF m m m µ 4 SFF00007AEB
5 Electrical Characteristics at T a = 25 C (continued) AN8007, AN8007M (7 type) O T j = 25 C REG IN I = 7.5 to 3, T j = 25 C I O = to 40, T j = 25 C DIF(min) no I = 6.8, I O = 20, T j = 25 C I = 6.8, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 8 to 0, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C 5 m/ C Note 2) Unless otherwise specified, I = 8, I O = 20 and C O = 0µF m m m µ AN8008, AN8008M yp(8 type) O T j = 25 C REG IN I = 8.5 to 4, T j = 25 C I O = to 40, T j = 25 C DIF(min) no I = 7.8, I O = 20, T j = 25 C I = 7.8, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 9 to, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C 0.4 m/ C Note 2) Unless otherwise specified, I = 9, I O = 20 and C O = 0µF m m m µ AN8085, AN8085M yp (8.5 type) O T j = 25 C REG IN I = 9 to 4.5, T j = 25 C I O = to 40, T j = 25 C DIF(min) no I = 8.3, I O = 20, T j = 25 C I = 8.3, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 9.5 to.5, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C 0.43 m/ C Note 2) Unless otherwise specified, I = 9.5, I O = 20 and C O = 0µF m m m µ SFF00007AEB 5
6 Electrical Characteristics at T a = 25 C (continued) AN8009, AN8009M (9 type) O T j = 25 C REG IN I = 9.5 to 5, T j = 25 C 9 00 I O = to 40, T j = 25 C DIF(min) no I = 8.8, I O = 20, T j = 25 C I = 8.8, I O = 50, T j = 25 C I O = 0, T j = 25 C I = 0 to 2, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C 0.45 m/ C Note 2) Unless otherwise specified, I = 0, I O = 20 and C O = 0µF m m m µ AN800, AN800M (0 type) O T j = 25 C REG IN I = 0.5 to 6, T j = 25 C 0 00 I O = to 40, T j = 25 C DIF(min) no I = 9.8, I O = 20, T j = 25 C I = 9.8, I O = 50, T j = 25 C I O = 0, T j = 25 C I = to 3, f = 20Hz temperature coefficient O/T a T j = 30 to +25 C 0.5 m/ C Note 2) Unless otherwise specified, I =, I O = 20 and C O = 0µF m m m µ 6 SFF00007AEB
7 Main Characteristics Power dissipation PD (mw) P D T a (AN80xx series) Power dissipation PD (mw) P D T a (AN80xxM series) Mounted on standard board glass epoxy: t.7mm 3 with Cu foil of cm 2 or more Ambient temperature T a ( C) Ambient temperature T a ( C) () f AN k 3k 5k 0k 30k 50k 00k Frequency f (Hz) O () C O = 0µF I O = 0 O I AN800/M AN8005/M AN8002/M Input voltage I () O () O I O AN8005 I = 6 C O = 0µF O () O T a AN8005 I = 6 C O = 0µF I O = Output current I O () Ambient temperature T a ( C) SFF00007AEB 7
8 Application Circuit Example I 3µF AN80xx AN80xxM Series + 0µF O AN80xx and AN80xxM series have their internal gain increased in order to improve performance. When the power line on the output side is long, use a capacitor of 0µF. Also, the capacitor on the output side should be attached as close to the IC as possible. When using at a low temperature, it is recommended to use the capacitors with low internal impedance (for example, tantalum capacitor) for output capacitors. 8 SFF00007AEB
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