Recom Switching Regulator, Through Hole, 5 V dc Output Voltage 32V dc, 2 A Output Current, 1 Outputs

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RS庫存編號:
139-2821
製造零件編號:
R-78B5.0-2.0
製造商:
Recom
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品牌

Recom

Product Type

Switching Regulator

Output Current

2A

Mount Type

Through Hole

Power

10W

Efficiency

0.94%

Ripple and Noise

75mV Pk-Pk

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

70°C

Series

R-78B-2.0

Number of Pins

3

Package Type

SIP-3

Line Regulation

±0.5 %

Depth

17.5mm

Weight

4g

Length

11.5mm

Standards/Approvals

CB Report, EN 55022, IEC/EN 62368-1

Maximum Input Voltage

32V dc

Minimum Input Voltage

6.5V

Load Regulation

±1 %

MTBF

6349000h

COO (Country of Origin):
TW

RECOM Switching Regulator, 5V DC Output Voltage, 6.5 to 32V DC Input Voltage - R-78B-2.0 Series - R-78B5.0-2.0


Rest assured that your power supply is compatible with your equipment with the help of this switching regulator from RECOM. With its wide input voltage range between 6.5 and 32V DC, it's a practical way of adapting many common power supplies to work safely with your low-voltage devices. As the unit achieves efficiency rates of up to 94%, it minimises energy lost as heat and doesn't need a heatsink to work safely. The device's narrow dimensions of 11.5 (width) x 17.5 (height) x 8.5mm (depth) mean it has a small footprint and fits easily into busy PCB-mounted systems.

Features & Benefits


• Built-in short-circuit protection automatically restarts regulator after tripping for minimal downtime

• Simple through-hole mounting for fast installation on PCBs

• Line regulation of ±0.5% so you GET consistent output voltages

• Wide operating temperature range from -40°C to +70°C, so it withstands harsh environments

Applications


• Remote controls

• Lighting systems

• Vehicle dashboards

• Consumer electronics

Can I use this switching regulator for my radio application?


Yes, this converter is suitable for radio applications as its ripple and noise rating of 75mV means it doesn't produce much electrical noise. This helps minimise disruption to radio communications.

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