Technomate TM-2300 M3 DiSEqC 1.2 1.3 Go To X Satellite Dish Motor Positioner
The latest Technomate TM-2300 M3 Satellite Dish Motor offers fast, reliable, and precise satellite positioning for motorised satellite systems. Designed to work with DiSEqC 1.2 and DiSEqC 1.3 (Go To X) compatible receivers, this high-quality motor allows you to access multiple satellites using a single dish installation.
Compared to previous generations, the TM-2300 M3 is up to 35% faster and 20% quieter, delivering smoother operation and improved performance for satellite enthusiasts.
Key Features
- Latest Technomate TM-2300 M3 Version
- DiSEqC 1.2 Compatible
- DiSEqC 1.3 Go To X Compatible
- Up To 35% Faster Than Previous Models
- Up To 20% Quieter Operation
- Ultra Low Noise Design
- Supports Dishes Up To 1.2 Metres
- Controlled Via Single Coaxial Cable
- Adjustable East & West Hardware Limits
- Zero Play Mechanism For Maximum Accuracy
- LED Status Indicator
- Manual Movement Button
- Heavy Duty Construction
Benefits
- Access Multiple Satellites With One Dish
- Accurate Satellite Positioning
- Smooth and Quiet Operation
- Reliable Long-Term Performance
- Ideal for Enthusiast and Professional Installations
- Reduced Signal Loss Through Precision Engineering
Compatibility
- DiSEqC 1.2 Satellite Receivers
- DiSEqC 1.3 Go To X Satellite Receivers
- Most Motor-Compatible Satellite Receivers
Specifications
- Model: TM-2300 M3
- Motor Type: H-H Satellite Positioner
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Protocols:
- DiSEqC 1.2
- DiSEqC 1.3 (Go To X)
- Maximum Dish Size: 1.2m
- Control Method: Single Coaxial Cable
- Hardware Limits: Adjustable East/West Stops
- Status Display: LED Indicator
- Manual Control: Built-In Move Button
Ideal For
- Motorised Satellite Systems
- Free-to-Air Satellite Reception
- Multi-Satellite Installations
- Satellite Enthusiasts
- European Satellite Reception
Package Includes
- Technomate TM-2300 M3 Satellite Motor
- Mounting Hardware
- Installation Instructions
Built to Technomate's high standards, the TM-2300 M3 provides reliable, accurate satellite positioning with faster movement, quieter operation, and long-lasting performance.