ROHM BD12IC0JEFJ-E2, 1-Channel Low Dropout Voltage, Voltage Regulator, 1 A, 1.2 V, HTSOP-J8 8-Pin

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Subtotal (1 tape of 2 units)*

$3.81

(exc. GST)

$4.382

(inc. GST)

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Units
Per unit
Per Tape*
2 - 18$1.905$3.81
20 - 48$1.25$2.50
50 - 198$0.725$1.45
200 - 998$0.71$1.42
1000 +$0.70$1.40

*price indicative

Packaging Options:
RS Stock No.:
687-476
Mfr. Part No.:
BD12IC0JEFJ-E2
Brand:
ROHM
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Brand

ROHM

Product Type

Voltage Regulator

Regulator Type

Low Dropout Voltage

Output Voltage

1.2 V

Number of Outputs

1

Line Regulation

1 %

Load Regulation

1.5 %

Package Type

HTSOP-J8

Pin Count

8

Output Current

1A

Standards/Approvals

RoHS

Maximum Operating Temperature

105°C

Minimum Operating Temperature

-40°C

Automotive Standard

No

COO (Country of Origin):
JP
The ROHM LDO regulators capable of delivering an output current of 1.0A. Designed for versatility, it supports both fixed and variable output voltage options, allowing users to tailor their applications from 1.2V up to 4.5V. This series is enhanced with built-in over current protection and thermal shutdown circuits, ensuring device longevity and reliability under demanding conditions. The regulators are available in compact HTSOP-J8 and HVSOF6 packages, making them suitable for space-constrained digital appliances. By incorporating zero μA shutdown mode, these regulators contribute to energy efficiency, making them ideal for modern electronic designs.

Integrated over current protection (OCP) guards against output shorting, enhancing reliability

Thermal shutdown circuit protects the device under overload conditions, prolonging its lifespan

Zero μA shutdown mode helps conserve power when the device is inactive

Usable with ceramic capacitors, enabling compact layouts and extended operational life

Input supply voltage range from 2.4V to 5.5V accommodates a wide range of power supply sources

Operating temperature range of -25 to +85°C supports diverse environmental conditions

Two package types (HTSOP-J8 and HVSOF6) cater to different design requirements without compromising performance

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