upc2925 Renesas Electronics Corporation., upc2925 Datasheet

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upc2925

Manufacturer Part Number
upc2925
Description
Three-terminal Low Dropout Voltage Regulator
Manufacturer
Renesas Electronics Corporation.
Datasheet

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Document No. G14983EJ3V0DS00 (3rd edition)
Date Published May 2001 NS CP(K)
Printed in Japan
#
outputs 1.8 V, the µ PC2925 outputs 2.5 V and the µ PC2926 outputs 2.6 V. Since these regulators use a PNP
transistor for the output stage, they achieve a low dropout voltage of 0.7 V TYP. at I
dissipation of the IC. As a result, these regulators can be used to realize sets with lower voltage and power
dissipation.
BLOCK DIAGRAM
DESCRIPTION
FEATURES
• Output current capacity: 1 A
• Low dropout voltage (V
• Output voltage accuracy: ±2%
• On-chip saturation protector rising edge of input voltage
• On-chip overcurrent limiter and thermal protection
• On-chip output transistor safe operation area protection
The µ PC2918, 2925 and 2926 are three-terminal low dropout voltage regulators with the 1-A output. The µ PC2918
(at low input voltage)
THREE-TERMINAL LOW DROPOUT VOLTAGE REGULATOR
The information in this document is subject to change without notice. Before using this document, please
confirm that this is the latest version.
Not all devices/types available in every country. Please check with local NEC representative for
availability and additional information.
DIF
= 0.5 V MAX. (at I
The mark # shows major revised points.
Error
Amp.
BIPOLAR ANALOG INTEGRATED CIRCUIT
O
DATA SHEET
= 0.5 A))
µ µ µ µ PC2918,2925,2926
Overcurrent
protection
PIN CONFIGURATION (Marking Side)
area protection
Safe operation
1
O
= 1 A and minimize the power
2
4
3
©
INPUT
OUTPUT
GND
1: INPUT
2: GND
3: OUTPUT
4: GND (Fin)
2000,2001

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upc2925 Summary of contents

Page 1

THREE-TERMINAL LOW DROPOUT VOLTAGE REGULATOR DESCRIPTION # The µ PC2918, 2925 and 2926 are three-terminal low dropout voltage regulators with the 1-A output. The µ PC2918 outputs 1.8 V, the µ PC2925 outputs 2.5 V and the µ PC2926 outputs ...

Page 2

ORDERING INFORMATION # Part Number Package Marking µ PC29xxT MP-3Z (SC-63) µ PC29xxT-E1 MP-3Z (SC-63) µ PC29xxT-E2 MP-3Z (SC-63) µ PC29xxT-T1 MP-3Z (SC-63) µ PC29xxT-T2 MP-3Z (SC-63) µ PC29xxHB MP-3 (SC-64) ”xx” mark of the part number and marking columns ...

Page 3

ABSOLUTE MAXIMUM RATINGS Parameter Input Voltage Internal Power Dissipation (T = 25°C) C Operating Ambient Temperature Operating Junction Temperature Storage Temperature Thermal Resistance (junction to case) Thermal Resistance (junction to ambient) Note Internally limited. When the operating junction temperature rises ...

Page 4

RECOMMENDED OPERATING CONDITIONS Parameter Symbol Input Voltage Output Current I O Operating Ambient Temperature T A Operating Junction Temperature T J Caution Use of conditions other than the above-listed recommended operating conditions is not a problem as ...

Page 5

PC2925 (T = 25° ° ° ° 3 0 Parameter Symbol Output Voltage V O Line Regulation REG IN Load Regulation REG L Quiescent Current ...

Page 6

TYPICAL CHARACTERISTICS (Reference Values 100 T - Operating Ambient Temperature - ° vs. V (µPC2918 2 ...

Page 7

V vs. T DIF J 1 0.8 0.6 0.4 0 – 100 125 T - Operating Junction Temperature - ° vs. V (µPC2925) Opeak DIF 2 ...

Page 8

V vs. I (µPC2918 1.8 1 0.8 0.6 0.4 0 25˚ 0.5 1 ...

Page 9

PACKAGE DRAWINGS MP-3Z (SC-63) (Unit: mm) 1 1.1±0.2 MP-3 (SC-64) (Unit: mm 1.1±0.1 ' 2.3±0.2 6.5±0.2 5.0±0 0.8 MAX. 0.9 MAX. 2.3 2.3 2.3±0.2 6.5±0.2 5.0±0 0.5 +0.2 0.5 −0.1 2.3 2.3 ...

Page 10

RECOMMENDED SOLDERING CONDITIONS # The µ PC2918, 2925 and 2926 should be soldered and mounted under the following recommended conditions. For the details of the recommended soldering conditions, refer to the document Semiconductor Device Mounting Technology Manual (C10535E). For soldering ...

Page 11

NOTES ON USE When the µ µ µ µ PC2918, 2925, and 2926 are used with an input voltage that is lower than the value indicated in the recommended operating conditions, a large quiescent current flows through the device due ...

Page 12

The information in this document is current as of May, 2001. The information is subject to change without notice. For actual design-in, refer to the latest publications of NEC's data sheets or data books, etc., for the most up-to-date ...

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