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CNC 95.00

Make it your way - with our top-modern CNC control!

CNC 95.00 sets new standards in control technique for PCB drilling machines. Equipped with the latest processor technologies and programming tools as well as future-proof interfaces for data retrieval this CNC leaves nothing to desire. CNC 95.00 benefits from more than 40 years of experience in CNC technology making PCB drilling applications even more user-friendly, efficient and flexible.

Adaptions Made Easy

The scripting feature of CNC 95.00 offers machine manufacturers a new dimension of quick and protected adaptation of machine functions and sequences. The programming is clear and well-structured enabling even technicians with less experience in this field to use this feature.


Avoid Production Waste and Idle Times

The analysis and simulation of the complete part program before the first run allows reliable error detection prior to production start and prevents production waste. Besides, the exact calculation of the time required for the execution of the part program in CNC 95.00 supports optimal planning of production processes for PCB drilling machines.

Easy and Error-Free Operation

Following the design of the very successful CNC 84.00, the user interface of CNC 95.00 allows intuitive operation requiring only a short training period. In addition, the high clearness and easy-to-use navigation significantly reduce incorrect user input.

Industry 4.0

With the help of the SM IIoT Platform the CNC 95.00 can be extended by further communication interfaces. These include, for example, the widely used OPC UA as well as various API interfaces. This makes it easy to integrate the controller into industrial 4.0 concepts and to meet the extended requirements of drilling machines in a future-proof and convenient way.

Energy Efficiency and Performance

The modern and modular hardware architecture of CNC 95.00 allows extremly dynamic and precise machine drives with highest quality and little need for space. To reduce the required energy all servo amplifiers and frequency converters are supplied via a DC bus of the central power supply. This minimizes costs and the required space.

CNC 95.00 – Fit for the Future

CNC 95.00 by the world market leader SIEB & MEYER in the field of CNCs for PCB drilling machines is the perfect answer to all demands of high-precision, high-performance drilling machines to be met by modern CNC controls.


SM IIoT Connect

In the CNC 95.00/CNC 93.00, the OPC UA interface is always available as a modern and flexible solution.

SM IIOT Connect clearly displays all important production parameters and also enables the  CNC 95.00/CNC 93.00 to be automated via the standardised OPC UA interface. For example, part programmes can be loaded, CNC commands can be sent to the control or processing can be started or stopped.

SM IloT Connect

Technical Details CNC 95.00

Motion Controller MC95

  • CPU: Intel® Quad-Core™
  • SDRAM: 4 GB DDR3
  • 4 GB
  • Read-write memory: 128 KB MRAM (parameter memory)
  • 2 x USB host
  • 2 x COM interfaces
  • Acceleration sensor
  • Temperature sensor
  • Interface to PC: Ethernet
  • 2 x digital bus via optical fiber connector (120 MBit) to the drives MD95, FC95
  • 1 x digital bus via optical fiber connector (12 MBit) to the I/O system 84.06


Servo amplifier MD95 Nano with central voltage supply PS95

  • Mains voltage 3 x 230 VAC to 250 VAC
  • Rated current IN: 2 Arms to 32 Arms  
  • Peak current IS: 14 Arms to 57 Arms
  • 1-axis, 2-axis, 4-axis and 6-axis design for rotary and linear AC motors
  • Evaluation of incremental encoder, absolute encoder or linear measuring system TTL
  • Digital bus via optical fiber cable (120 MBit) for connection to MC95


Frequency converter FC95 with central voltage supply by PS95

Asynchronous spindles:

  • Rated power: 6 kVA to 15 kVA
  • Mains input voltage: 3 x 230/250 VAC, 50/60 Hz
  • Rated current IN: 21 Arms to 35 Arms
  • Peak current IS: 42 Arms to 71 Arms
  • Output frequency f: 5.834 Hz
  • Evaluation of speed sensors or operation without sensors
  • Digital bus via optical fiber cable (120 MBit) for connection to MC95


Decentral I/O-System 84.06

  • DC supply: +24 V
  • Inputs and outputs: 768
  • Inputs: +24 V (active-high)
  • Outputs: +24 V, 350 mA / short-circuit proof
  • Data transmission via optical fiber cable (12 MBit) / CRC monitored
  • Serial interface for external PLC
  • PD-Box with integrated interface for tool measurement and tool test

Selection Guide for Drilling Machines

You are not sure which CNC control suits your drilling machine?
Here you will find answers to your questions!

Features CNC 95.00 CNC 84.00 CNC 84.00-2Z CNC 82.00-4Z CNC 82.00-2Z
Maximum number of axes X/Y/Z  6 / 6 / 8 6 / 6 / 8 1 / 1 / 2 1 / 1 / 4 1 / 1 / 2
Maximum number of spindles 8 8 2 4 2
Two different spindles
per station (i.e. drilling/routing)
Yes Yes Yes No No
Maximum axis speed 100m/min 100m/min 100m/min 100m/min 100m/min
Maximum acceleration 100m/s² 100m/s² 100m/s² 50m/s² 50m/s²
Gantry drive Yes Yes No No No
CNC auxiliary axes Yes Yes No No No
Independent work stations /
Yes Yes No No No
Depth function with different
methods of surface detection
Yes Yes Yes Only with contact Only with contact
Surface detection QUIK /
mapping / spotfacing
Yes Yes Yes Only QUIK Only QUIK
Position corrections via camera Yes Yes Yes Yes Yes
Laser tool measurement Yes Yes Yes Yes Yes
Tool monitoring
by means of BBD / CBD
Yes / Yes Yes / Yes Yes / Yes Yes / Yes Yes / Yes
Number of tool magazines 1000 500 500 500 500
Standard data interface
Yes No No No No
OPC UA by SM IIoT Connect
(Software version 21.01 required)
No Yes Yes Yes Yes

SLM - Smart Layer Management:
High-end depth routing and

depth drilling functions

Yes Yes Yes No No


Features depending on the selected software package

Subject to change without notice


Click here for selection chart for routing machines.

Do have questions or do you need a quotation?
Don´t hesitate to contact us.


  • PCB drilling is determined by the continuously increasing technical and commercial requirements of the electronics industry. The steadily rising level of integration of the electronic components requires to improve drilling accuracy and process reliability.


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