Hi-link B0524S-2WR3 5V to 24V 2W 83mA DC to DC Isolation Voltage 1500VDC Power Module Converter
₹143.00 ( Excluding 18% GST )
Input Voltage | 5V |
Output Voltage | 24V |
Output Power | 2W |
Output Current | 83mA |
Isolation Voltage | 1500VDC |
In stock
Description
Overview of this Hi-link B0524S-2WR3 Isolated dc converter
Introducing the Hi-link B0524S-2WR3 isolated DC converter, a compact yet powerful solution for voltage conversion. This module efficiently transforms 5V input to a stable 24V output & deliver 2W of power with a current capacity of 83mA. Designed for reliability and safety, the Hi-link B0524S-2WR3 ensures complete electrical isolation with an isolation voltage of 1500VDC.
The Hi-link B0524S-2WR3 isolated power module is design to meet the demands of various industry and electronic applications. Its compact design makes it suitable for space-constrained installations, while its robust construction ensures durability and longevity. With the ability to deliver stable and precise power, this module is ideal for powering sensors, control systems, and communication equipment.
Experience seamless voltage conversion with the Hi-link 5V to 24V 2W 83mA isolated DC converter. Whether you power industry machine or electronic devices, this module provides reliable performance. Trust Hi-link for exceptional quality and performance, with the B0524S-2WR3 power module leading the way in voltage conversion solutions.
Features
- Efficient Voltage Conversion: The Hi-link B0524S-2WR3 isolated DC converter efficiently transforms 5V to 24V output. It ensures precise voltage regulation for optimal performance in electronic systems.
- Compact Design: With its compact form factor, the B0524S-2WR3 module saves space in installations. Its small size enhance versatility without loosing power conversion capabilities.
- Complete Electrical Isolation: Hi-link B0524S-2WR3 ensures complete electrical isolation with 1500VDC isolation voltage. This feature also enhance safety from electrical hazards and ensure smooth operation.
- Reliable Power Delivery: The B0524S-2WR3 power module delivers stable and stable power to connected devices. It ensures consistent performance, making it suitable for various industry and electronic applications.
- Robust Construction: Built with durability in mind, the B0524S-2WR3 module features a robust construction. Its sturdy design withstands harsh environments, ensuring long-term reliability.
Specification
Specification | Value |
---|---|
Input Voltage | 5V |
Output Voltage | 24V |
Output Power | 2W |
Output Current | 83mA |
Efficiency | Upto 88% |
Isolation Voltage | 1500VDC |
Operating Temperature | -40°C to +85°C |
Storage Temperature | -55°C to +125°C |
Overload Protection | Yes |
Short Circuit Protection | Yes |
Isolation | Electrical |
Cooling Method | Free Air Convection |
Dimensions (L x W x H) | 20x7x10 mm |
Weight | 10g |
Certifications | Rohs |
SKU | RW-DC061 |
Main use of this Hi-link 5V to 24V 2W 83mA isolated dc converter
- Industry Machinery Powering: The Hi-link B0524S-2WR3 efficiently powers industry equipment need a 24V supply. Its stable output ensures smooth operation in manufacturing environments.
- Electronic Device Support: This converter supports various electronic devices with specific voltage needs. It offers reliable power delivery for diverse applications & ensure optimal performance.
- Automotive Voltage Conversion: Ideal for vehicle applications, the B0524S-2WR3 provide voltage conversion with precision. It also ensures smooth & stable power supply to vehicle systems. And also enhance performance and reliability.
- Control System Stability: With its stable power delivery, the B0524S-2WR3 ensures stability in control systems. It provides consistent voltage for smooth operation and accurate control in industry setting.
- IoT Power Distribution: In IoT setups, the B0524S-2WR3 efficiently distributes power to connected devices. Its reliable performance supports continuous operation of sensors and communication modules.
Environment Condition
Project name | Qualification | Unit | Notes |
Working enviroment temperature of Hlk-B0524S-2WR3 5V to 24V 2W 83mA DC to DC Power Module Converter | -40—+85 | ℃ | |
Storage temperture | -40—+125 ℃ | ℃ | |
Relative humidity | 5—95 | % | |
Heat dissipation mode | natural cooling | ||
Atmospheric pressure | 80—106 Kpa | Kpa | |
Ripple & Noise | 30/80(max) | Mvp-p |
Input Characteristics of Hlk-B0524S-2WR3 5V to 24V 2W 83mA DC to DC Power Module Converter
Item | Working conditions | Min. | Typ. | Max. | Unit |
Input current (full load/no load) | 5VDC Input Series | — | 454/5 | –/10 | m’A |
9VDC Input Series | — | 250/5 | –/10 | ||
12VDC Input Series | — | 186/2 | –/5 | ||
15VDC Input Series | — | 148/2 | –/4 | ||
24VDC Input Series | — | 92/1 | –/2 | ||
Reflection ripple current | — | 15 | — | m’A | |
Impulse voltage | 3.3VDC Input Series | -0.7 | — | 5 | VDC |
5VDC Input Series | -0.7 | — | 9 | ||
9VDC Input Series | -0.7 | — | 15 | ||
12VDC Input Series | -0.7 | — | 18 | ||
15VDC Input Series | -0.7 | — | 21 | ||
24VDC Input Series | -0.7 | — | 30 | ||
Input filter type | Capacitance filter type | ||||
Hot plugged | Non-support |
Output Characteristics Hlk-B0524S-2WR3 5V to 24V 2W 83mA DC to DC Power Module Converte
Project name | Working and testing condition | Min. | Typ. | Max. | Unit | |
Output load | load percentage | 10 | — | 100 | % | |
Output Voltage Accuracy | See Error Envelope Curve | — | — | ±15.0 | % | |
Linear adjustment rate | Input voltage variation ±1% | 3.3V Input | — | — | ±1.5 | % |
others | — | — | ±1.2 | % | ||
Load adjustment rate | 10%~100% load | 3.3VDC Output | — | 18 | — | % |
5VDC Output | — | 12 | — | % | ||
9VDC Output | — | 8 | — | % | ||
12VDC Output | — | 7 | — | % | ||
15VDC Output | — | 6 | — | % | ||
24VDC Output | — | 5 | — | % | ||
Ripple & Noise | Pure resistive load, 20HMz bandwidth, peak-to-peak | — | 30 | 80 | mVp-p | |
Temperature Drift Coefficient | Full load | — | — | ±0.03 | %/℃ | |
Output short circuit protection | Continuous short circuit protection, automatic recovery | — | ||||
Notes: Ripple and Noise Test Methods Twisted Pair Test Method |
Application Circuit
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