Bent Soldering Iron Tip T12-JL02 For Digital Soldering Iron Station
The M&R Soldering Iron Tip T12-JL02 is a premium bent-type soldering tip engineered for precision and versatility in electronic soldering tasks. As part of the widely recognized T12 series, it is compatible with various digital soldering stations, including popular Hakko models. Featuring a 30-degree bent design, this tip excels at accessing tight spaces and supports advanced soldering techniques such as drag soldering and solder bridge correction. Constructed from high-quality copper oxide with lead-free alloy plating, it delivers excellent thermal conductivity, resistance to oxidation, and a prolonged lifespan, making it an essential tool for professionals and hobbyists alike.
Features :
- Precision Bent Design: 30-degree angle enhances control and accessibility in confined areas.
- High-Quality Materials: Crafted from copper oxide with lead-free alloy plating for superior durability and performance.
- Precision Manufacturing: Molded to exact specifications for consistent and reliable soldering results.
- Excellent Thermal Properties: Fast heat-up time and stable temperature maintenance for efficient soldering.
- Anti-Oxidation Coating: Prevents blackening at high temperatures, extending tip longevity.
- Versatile Use: Perfect for drag soldering, correcting solder bridges, and precision work on small components.
Specifications :
| Specification | Value |
|---|---|
| Model | T12-JL02 |
| Shape | 0.2J (Shape J) |
| Tip Diameter | 0.2 mm |
| Tip Style | Thin Conical |
| Total length | 155 mm |
| Tip Length | 12 mm |
| Bent Angle | 30 degrees |
| Bent Length | 3.5 mm |
Applications :
- Precision Soldering: Ideal for small electronic components requiring meticulous attention.
- Drag Soldering: Perfect for surface-mount technology (SMT) assembly, enabling quick soldering of multiple pins.
- Solder Bridge Correction: Effectively fixes soldering defects such as bridges between pins.
- Confined Spaces: Suited for soldering in tight or hard-to-reach areas due to its bent design.


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