DiodesZetex AP2114HA-3.3TRG1, 1-Channel Linear, Voltage Regulator, 1 A, 3.3 V 1 kHz, SOT-223 3-Pin

Unavailable
RS will no longer stock this product.
RS Stock No.:
719-567
Mfr. Part No.:
AP2114HA-3.3TRG1
Brand:
DiodesZetex
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Brand

DiodesZetex

Product Type

Voltage Regulator

Regulator Type

Linear

Output Voltage

3.3 V

Number of Outputs

1

Line Regulation

0.1 %/V

Switching Frequency

1kHz

Load Regulation

1 %/A

Mount Type

Surface Mount

Quiescent Current

75μA

Package Type

SOT-223

Output Current

1A

Pin Count

3

Output Type

Current, Voltage

Width

3.7 mm

Height

1.8mm

Length

6.7mm

Series

AP2114

Maximum Input Voltage

6V

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

85°C

Minimum Input Voltage

2.5V

Automotive Standard

No

COO (Country of Origin):
CN
The DiodesZetex Low noise CMOS LDO regulator is engineered for applications requiring reliable and efficient voltage regulation. Delivering a continuous output current of 1A with a low dropout voltage of 450mV at 3.3V, it ensures optimal performance in critical electronic devices. The LDO features an enable function that allows for power savings by entering a low-quiescent current state when not in use. With its wide operating temperature range of -40°C to 85°C, this regulator is versatile and can be incorporated into various environments. Additionally, it boasts excellent load and line regulation performance, providing stable voltage output even with fluctuating input conditions, making it an Ideal choice for precise applications.

Output Voltage Accuracy: ±1.5% ensures reliable performance

Fold-back short current protection of 50mA safeguards the device during fault conditions

Stability with capacitors as low as 4.7μF offers design flexibility with various capacitor types

Low quiescent current of 60μA preserves energy efficiency in standby mode

Excellent line regulation of 0.02%/V guarantees consistent voltage output against input variations

Load regulation performance of 0.2% ensures minimal output voltage change under varying load conditions

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