NerdQaxe++ โ 125V 8A Surface Mount Fuse (SMD) โ Model 0154008.DR | Fast-Acting SMT Protection Fuse for Power Electronics
NerdQaxe++ โ 125V 8A Surface Mount Fuse (SMD) โ Model 0154008.DR | Fast-Acting SMT Protection Fuse for Power Electronics
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NerdQaxe++ โ 125V 8A Surface Mount Fuse (SMD) โ Model 0154008.DR | Fast-Acting SMT Protection Fuse for Power Electronics
๐ง Overview
The NerdQaxe++ 0154008.DR Surface Mount Fuse is a high-reliability 125V 8A SMD fast-acting fuse, designed to provide compact and durable overcurrent protection for power electronics, especially in precision circuits like home-use ASIC miners, LED drivers, and embedded control systems.
Whether you're upgrading your Bitaxe/NerdQaxe-based miner, repairing PCBs, or designing power control boards, this SMT fuse ensures safety, responsiveness, and board space efficiency.
โ๏ธ Key Features
- โ Voltage Rating: 125V AC/DC
- โ Current Rating: 8A
- โ Fast-Acting Response โ Designed to interrupt overcurrent quickly to protect sensitive components
- โ SMD 2410 Package โ Compact footprint for space-constrained designs
- โ Operating Temperature: -55ยฐC to +125ยฐC
- โ RoHS / Halogen-Free Compliant โ Environmentally safe manufacturing
- โ Ideal for ASIC miners, PSU modules, DC converters, LED drivers & embedded systems
๐งฉ Applications
- Bitaxe / NerdQaxe++ miner boards
- Home-use SHA256 mining devices
- Compact switching power supplies
- High-frequency DC/DC converters
- Consumer electronics requiring PCB-level overcurrent protection
๐ฆ Product Specs at a Glance
| Parameter | Value |
|---|---|
| Model | 0154008.DR |
| Voltage Rating | 125V AC/DC |
| Current Rating | 8A |
| Package | 2410 (SMD) |
| Interrupting Rating | 50A @ 125V AC/DC |
| Operating Temp | -55ยฐC ~ +125ยฐC |
| Agency Approvals | UL, CSA, RoHS |
๐ก๏ธ Why Choose This Fuse?
Compared to generic SMD fuses, the NerdQaxe++ 0154008.DR model delivers:
- Higher thermal stability under extended workloads
- Tighter current tolerance to better match mining application needs
- Lower resistance for improved efficiency in DC circuits
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