HEM H105LA HORIZONTAL BAND SAW

Equipment Overview
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- HEM
- Model
- H105LA
- Year of Manufacture
- -
- Category
- HORIZONTAL BAND SAWS
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A+Technical Description
The HEM H105LA Horizontal Band Saw is a robust cutting solution designed for precision and efficiency in metalworking applications. With a rectangular capacity of 16 inches in height and 18 inches in width, it accommodates a variety of materials, while its round capacity reaches up to 14 inches. Powered by a 5 HP motor operating at 1800 RPM, this saw delivers reliable performance across a range of cutting tasks. The blade, measuring 1.25 inches in width and 0.042 inches in thickness, has a length of 15 feet 8 inches, allowing for extended use without frequent replacements. The saw features adjustable blade speeds ranging from approximately 105 to 275 feet per minute, enabling operators to tailor the cutting speed to the material being processed. With overall dimensions of 86 inches in length, 26 inches in front-back depth, and 53 inches in height, the H105LA is designed for stability and ease of use, with a work height of 26 inches for comfortable operation. Weighing 4,000 lbs, this machine is built to withstand rigorous use in industrial environments. Additionally, it includes a bar-feed mechanism with a stroke of 0-24 inches, allowing for multiple indexing capabilities. The HEM H105LA operates on a 230/460/3/60 electrical system, making it versatile for various workshop setups. This band saw is an essential tool for professionals seeking durability and precision in their cutting operations.
Technical Attributes
- Rated Power
- 5.00 HP
- Max Cutting Capacity (Round)
- 14.0 ''
- Material Feed Automation
- Automatic
- Blade Speed
- 105 - 275
- Power Requirement
- 220V Three Phase
Data Accuracy and Verification
Specifications and technical details are compiled from manufacturer documentation, historical records, and third-party industry sources. While care is taken to ensure accuracy, this information is provided for reference purposes only and may contain errors or omissions. Users should independently verify all details before relying on them.
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