Skip to product information
1 of 1

WTPP MS Loddekolbe

WTPP MS Loddekolbe

Weller

SKU:52924099

In stock

View full details

You are not logged in and therefore do not see your prices.

WTPP MS nano/pico Soldering Handle

This WTPP MS nano/pico soldering handle from WELLER (item no. T0052924099) is a handle designed for precision soldering. The product is supplied without tips and is intended for use with RTP MS tips (ordered separately). The handle is specified for 40 W and 12 V AC and uses Active-Tip Heating Technology with very short heating times.

Technical details

  • Active-Tip Heating Technology with a heating time of approx. 3 seconds (50 °C to 350 °C).
  • Temperature range: 100–450 °C.
  • Power supply: 12 V AC; power 40 W (stated as 40 W (55 W) in technical data).
  • ESD safe and MS versions are MIL‑SPEC / IPC compliant.
  • Compatible with the RTP MS tip series; tips ordered separately.
  • Stated compatible power units: WT 1M, WT 2M, WR 3M.
  • Included components: handle without tips; safety rest WSR 205 mentioned as relevant equipment.

For further technical details and official documentation: See datasheet from the manufacturer.

Typical applications

  • For soldering extremely small components and ultra-small SMD components (stated range: 0402 to 01005).
  • For miniature work under a microscope and work on small pads and components with moderate power requirements.
  • Suitable for nano/pico tasks where fast heating and interchangeable RT tips are required.

Specifications

  • Item number: T0052924099
  • Product: WTPP MS nano/pico soldering handle
  • Temperature range: 100–450 °C
  • Power: 40 W (also stated as 55 W in documentation)
  • Supply voltage: 12 V AC
  • Heating time (50 °C to 350 °C): approx. 3 sec.
  • Tip type: RTP MS (tips ordered separately)
  • Compatible units: WT 1M, WT 2M, WR 3M
  • ESD safe; MS versions are MIL‑SPEC / IPC compliant
  • Included: handle without tips

The content has been generated using AI – we reserve the right for errors.
Contact HIN for further information about the product.