Replacement crimping die KNIPEX 97 49 71 for photovoltaic MC4 connectors, 4 / 6 / 10 mm², compatible with KNIPEX MultiCrimp pliers
The KNIPEX 97 49 71 replacement part is a professional crimping die designed for photovoltaic system applications, developed to ensure secure and durable electrical connections with MC4® connectors (Multi-Contact / Stäubli). It is compatible with KNIPEX crimping pliers with interchangeable dies, such as the MultiCrimp series (e.g. 97 43 200), providing flexibility and efficiency in use.
The die allows crimping of conductors with cross-sections of 4, 6 and 10 mm² (AWG 12 / 10 / 8), covering a wide range of solar installation applications. The three crimping cavities ensure quick adaptation to different cable sizes, eliminating the need for frequent tool changes and increasing productivity during operation.
The optimized cavity design enables uniform and precise crimping, ensuring secure electrical contact and long-term reliability, even under demanding conditions specific to photovoltaic systems.
Compatibility:
- KNIPEX crimping pliers with interchangeable dies (MultiCrimp).
- Examples: KNIPEX 97 43 200, 97 43 200 A.
- Connectors: MC4® (Multi-Contact / Stäubli).
Specifications:
- Model: 97 49 71.
- Product type: replacement part – crimping die.
- Conductor cross-section: 4 / 6 / 10 mm².
- AWG: 12 / 10 / 8.
- Number of cavities: 3.
- Dimensions: approx. 50 x 10 mm.
- Weight: approx. 42 g.
Applications:
Suitable for photovoltaic installations, solar system wiring and assembly work in the renewable energy sector. Ideal for electricians and technicians working with PV systems who require precise and standard-compliant connections.
Construction features:
Manufactured from high-strength materials, the die ensures durability and consistent performance under intensive use. The compact design allows quick installation in the compatible pliers, while the optimized construction guarantees repeatability and consistency in the crimping process. The multiple cavities enable flexible use for different conductor sizes, reducing working time and increasing operational efficiency.