AgieCharmilles FORM P 900

The FORM P 900 range incorporates new online help to allow the operator to find relevant information as quickly as possible. This occurs via simplified access to help menus, by having a clearly organized navigation interface, that is more user-friendly and easy to grasp, and including search by key words or user index. Machining examples are produced as hard copy, presented in a succinct manner.

The AgieCharmilles FORM range: high flexibility for simple to complex tasks


The AgieCharmilles FORM P 900 sinker spark erosion machines are fitted with an Intelligent Speed Power Generator (ISPG) which, using patented technologies, establishes new standards in surface quality, material removal and accuracy of form. Electrode wear is reduced in all machining operations, from roughing to finishing, with copper or graphite electrodes. Productivity shows an average increase of 30 percent, and can even reach 100 percent for pre-milled forms. Even in the presence of deep, narrow cavities, with poor flushing conditions, a 50 percent increase in erosion speed can be obtained with no increase in electrode wear.

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Key Points

  • Mechanical construction : compact and rigid mechanical concept
  • Control Unit : Flexible and entry adaptable to the working environment
  • Generator : Flexibility and power guarantee reliable results
  • Autonomy and flexibility : Configurable performance potential


Main specifications
X, Y, Z travel
900 x 700 x 500mm
35.433 x 27.559 x 19.685 in
Machine dimensions width x depth x height
2970 x 3100 x 3320 mm
116.929 x 122.047 x 130.708 in
Weight total without dielectric
15432.2 lb
Workpiece and electrode
Workpiece dimensions (W x D x H)
1814 x 1215 x 600 mm
71.417 x 47.835 x 23.622 in
Max. electrode weight
110.23 lb
Max. workpiece weight
3000 kg
6613.8 lb
Bath level
100 - 630mm
3.937 - 24.803 in
Dielectric unit
660.43 gal
Number of filter elements
Generator type
ISPG Integrated
ISPG Integrated
Max. machining current (option)
80 (140) A
80 (140) A
Minimum surface roughness (Ra)
0.394 μin

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