High Speed Drill Bit Set – Metric

A high-speed drill bit set in metric measurements typically refers to a collection of eight drill bits designed for use with metric-sized fasteners and holes. High-speed drill bits are made from materials that allow for efficient cutting and drilling at higher speeds, often suitable for a variety of materials including metal, wood, and plastics. The set typically includes a range of metric-sized bits to accommodate different hole sizes, providing versatility for various applications. The bits are usually made with precision and durability in mind to ensure effective and accurate drilling in a variety of materials.

Mixed Drill Set – Metric

A Mixed Drill Set - Metric typically refers to a set of nine drill bits with various sizes and types, all measured in the metric system. The set may include a variety of drill bit sizes commonly used for different purposes, such as drilling holes in metal, wood, plastic, or other materials. The term "mixed" indicates that the set contains a combination of drill bits with different characteristics, such as varying diameters or types of tips, providing versatility for different drilling applications.

Step Drill Set — Metric

A Step Drill Set in the context of hardware use typically refers to a set of three stepped drill bits designed for drilling holes of varying diameters in materials like metal or plastic. These step drill bits have multiple graduated steps or levels, each with a different diameter, allowing users to drill holes of various sizes without needing to switch between different drill bits. The "3 PCS" indicates that the set includes three individual step drill bits, each with its own range of hole diameters. These sets are commonly used in applications where precision and versatility in hole sizes are required, such as in metalworking, plumbing, or electrical work. The "Metric" designation implies that the sizes of the holes are specified in the metric system, which is common in many parts of the world, especially in hardware and engineering contexts.