Metcal
Metcal UFC-7HF5108S UFC UltraFine Rework Cartridge, Hoof, 0.8 mm x 5.1 mm, 700 Series
Metcal UFC-7HF5108S UFC UltraFine Rework Cartridge, Hoof, 0.8 mm x 5.1 mm, 700 Series
SKU:MET-UFC-7HF5108S
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Metcal UFC-7HF5108S UltraFine Rework Cartridge, Hoof, 700 Series
High-Performance Rework for Lead-Free and High-Temp Applications
The Metcal UFC-7HF5108S UltraFine Rework Cartridge is engineered for demanding soldering and rework tasks that require both precision and thermal power. Featuring a 0.8 mm x 5.1 mm hoof tip, this cartridge is ideal for drag soldering, touch-ups, and reworking curved or irregular joints on surface-mount components.
Part of the 700 Series, this cartridge is designed to operate at a higher working temperature of approximately 390°C, making it the ideal choice for lead-free soldering, multilayer boards, and components with greater thermal mass. Compatible with Metcal CV-5200 and CV-500 Series Soldering Systems, it delivers consistent, reliable performance in advanced electronics manufacturing environments.
Technical Specifications
- Manufacturer: Metcal
- Model Number: UFC-7HF5108S
- Series: UltraFine 700 Series
- Tip Geometry: Hoof
- Tip Dimensions: 0.8 mm wide x 5.1 mm long
- Compatible Systems: Metcal CV-5200 and CV-500 Series Soldering Systems
- Operating Temperature: ~390°C (700 Series)
- Application: Rework, drag soldering, lead-free processes, SMT touch-up, high thermal mass components
Key Features
- UltraFine Hoof Tip: Provides optimal heat transfer for drag soldering and rework on surface-mount joints.
- High-Temperature Operation: Ideal for robust soldering tasks involving lead-free alloys and multilayer PCBs.
- Microscope-Friendly Design: Offers enhanced control and visibility for precision work under magnification.
- Quick-Swap Cartridge: Enables tool-free changes to maintain efficiency and reduce downtime.
- RoHS Compliant: Suitable for environmentally responsible, lead-free manufacturing processes.
Additional Documentation
Choose the Metcal UFC-7HF5108S for high-temperature rework performance and dependable results in advanced electronic assembly environments.
