KORRETTO · electromagnetic magnetic chucks
Tool Grinder Electromagnetic Chuck
Tool grinder electromagnetic chucks are designed for tool grinding machines and precision grinding applications. They are suitable for small tools, long strip workpieces and parts requiring stable magnetic holding during grinding.
Send workpiece length, tool type, machine table size, grinding process and voltage requirement, and we will help check the suitable tool grinder electromagnetic chuck model.

Product Overview
KORRETTO tool grinder electromagnetic chucks provide long working surfaces for tool grinders, cutter grinding and elongated ferromagnetic workpieces. Parameter fields include length, width, height, DC voltage, current and net weight.
Typical Applications
- Tool grinding machines and cutter grinding
- Small tools and long strip ferromagnetic workpieces
- Precision grinding requiring stable table support
- Applications where workpiece length exceeds typical rectangular chuck layouts
Key Features
Tool grinder application focus
Designed for tool grinding machines and cutter grinding setups.
Long working surface
Suitable for long strip workpieces and elongated ferromagnetic parts.
Electromagnetic clamp and release
Holding force is controlled through electrical power.
Complete electrical parameters
Length, width, height, voltage, current and net weight are listed in the table.
Parameters and Dimensions
Use the dimension drawing and parameter table below to verify length, width, height, DC voltage, current and net weight for tool grinder electromagnetic chuck selection.
Dimension Drawings
Use the dimension drawings above to verify mounting interfaces, holding surface dimensions and overall outline before model selection.
| Model | Main Dimensions (mm) | DC Voltage (V) | Current (A) | Net Weight (kg) | ||
|---|---|---|---|---|---|---|
| L | W | H | ||||
| XZ11 180*1550 | 1550 | 180 | 190 | 110 | 1.5 | 260 |
| XZ11 190*1680 | 1680 | 190 | 190 | 110 | 1.5 | 295 |
| XZ11 200*1100 | 1100 | 200 | 166 | 110 | 1.9 | 200 |
| XZ11 200*1475 | 1470 | 200 | 165 | 110 | 2.7 | 260 |
| XZ11 200*2100 | 2100 | 200 | 200 | 110 | 1.06 | 360 |
| XZ11 200*1760 | 1760 | 200 | 170 | 110 | 1.7 | 320 |
Image Gallery

Selection Notes
Confirm workpiece material, workpiece length and holding area, tool grinder table size, grinding process, supply voltage and whether a standard rectangular electromagnetic chuck is more suitable for the part geometry.
FAQ
What is a tool grinder electromagnetic chuck used for?
It is used for tool grinder applications, tool grinding and long ferromagnetic workpieces that need a relatively long magnetic working surface.
How is it different from a standard rectangular electromagnetic chuck?
A tool grinder electromagnetic chuck is designed around longer working surfaces and tool-grinding style setups, while standard rectangular electromagnetic chucks are used for general flat plates and blocks.
What information should I provide for model selection?
Please provide workpiece material, workpiece length, holding area, tool grinder table size, supply voltage and grinding method.
What workpiece length and contact area should be checked?
Please confirm the workpiece length, width, thickness and magnetic contact area because tool grinder chucks are often selected for long and slender ferromagnetic parts.
What machine table or power supply should be confirmed?
Please confirm the tool grinder table dimensions, mounting method, power supply voltage and available working surface before model selection.
Is it suitable for tool grinding and slender ferromagnetic parts?
Yes. It is commonly used for tool grinding, cutter support and long or slender ferromagnetic workpieces that need stable table-side magnetic holding.
What should be checked before installation?
Check the mounting flatness, insulation, power connection, demagnetization function and workpiece support stability before production use.
What information is needed for quotation?
Please provide the workpiece material, length, holding area, machine table size, supply voltage and grinding application details.


