Ram Engineering
Ram Engineering
  • Home
  • About Us
  • Services
  • Products
    • CNC Machining Centers
    • CNC Router(Multicam)
    • CNC Waterjet Machine
    • Waterjet Mixing Tubes
    • Honeycomb Board
    • Modular Furniture
  • Contact Us
  • More
    • Home
    • About Us
    • Services
    • Products
      • CNC Machining Centers
      • CNC Router(Multicam)
      • CNC Waterjet Machine
      • Waterjet Mixing Tubes
      • Honeycomb Board
      • Modular Furniture
    • Contact Us
  • Home
  • About Us
  • Services
  • Products
    • CNC Machining Centers
    • CNC Router(Multicam)
    • CNC Waterjet Machine
    • Waterjet Mixing Tubes
    • Honeycomb Board
    • Modular Furniture
  • Contact Us

Conprofe CNC Machining Centers

UEM - 400

UEM - 400 Specifications

UEM - 400 Specifications

Conprofe UEM-400

UEM - 400 Specifications

UEM - 400 Specifications

UEM - 400 Specifications

UEM - 500 Specifications

UEM - 500 Specifications

UEM - 500 Specifications

UEM - 500

UEM - 500 Specifications

UEM - 500 Specifications

Conprofe UEM-500

UEM - 600

UEM - 600 Specifications

UEM - 600 Specifications

Conprofe UEM-600

UEM - 600 Specifications

UEM - 600 Specifications

UEM - 600 Specifications

Conprofe 3 axis and 5 axis CNC Machining centers are ideal for cutting Hard and abrasive material like Tungsen Carbide, Silicon Carbide, Inconel , Quartz, Harden steel. With Ultrasonic Machining technology, this system delivers high performance eco  friendly turnkey solutions for precision machining of hard brittle composite and hard to cut materials as well as deep hole drilling applications in industries like Aerospace and Semiconductors.

Core Technology

Ultrasonic Machining Technology

Ultrasonic Machining Technology

Conprofe’s ultrasonic system combines patented vibration control, integrated structure, intelligent sensing, and high-power drive technology. It ensures stable operation, precise amplitude control, and consistent machining accuracy. Equipped with closed-loop amplitude control and sine-wave drive technology, the ultrasonic generator delivers stable performance at up to 350W. Adaptive feedback ensures accuracy during complex machining operations. experienced engineers.

Supercritical CO2 Cryogenic Cooling System

Supercritical CO2 Cryogenic Cooling System

This advanced cooling system converts purified low-pressure CO₂ into supercritical fluid and delivers it as a −78°C cryogenic cooling jet for high-efficiency machining. A dedicated control unit and precision nozzles supply a clean, dry CO₂ stream to the cutting zone, reducing heat, improving surface quality, and extending tool life. Unlike traditional cooling methods, supercritical CO₂ works at room-temperature transport conditions, requiring no insulation while still enabling ultra-low-temperature cutting. 

Cryogenic Air Blasting Technology

Cryogenic Air Blasting Technology

Dedicated nozzles for the precise delivery of cryogenic air and lubricant mixtures to the cutting zone, ensuring superiorcooling efficiency. lubricant to replace traditional cooling lubricants. By blasting cryogenic air directly onto the cutting zone, it effectively reduces the cutting temperature and minimizes tool wear. The mixture of a small amount of lubricant with cryogenic air further enhances lubrication, suppresses heat generation and significantly extends tool life.


Key Advantages

Advanced Compression Refrigeration Technology for generating cryogenic air at -10°C to -60°C.

Fully automated PLC-controlled system with precise outlet temperature adjustment.

Integrated Minimum Quantity Lubrication (MQL) technology for mixing minimal lubricating oil into cryogenic air to achieve

effective cryogenic lubrication.

Specialized piping for delivering cryogenic air and lubricating oil, enabling efficient low-temperature transfer.

Dedicated nozzles for the precise delivery of cryogenic air and lubricant mixtures to the cutting zone, ensuring superior cooling efficiency.

Copyright © 2026 Ram Engineering - All Rights Reserved.

Powered by

This website uses cookies.

We use cookies to analyze website traffic and optimize your website experience. By accepting our use of cookies, your data will be aggregated with all other user data.

DeclineAccept