Sundance Gen2 Low Flow Trombone Replacement Heater 4.0kW
Model: 26-3226-1A-5T-K
Product Overview
As a retailer of hot tub spare parts, I’m featuring this advanced Gen2 low-flow trombone-style replacement heater designed specifically for Sundance spa models. This 4.0kW unit represents the second generation of heating technology for specific Jacuzzi hot tub configurations.
Key Features
- Professional-grade 4.0kW heating element
 - Gen2 enhanced design
 - Trombone-style configuration
 - Low flow optimization
 - Integrated pressure switch tap
 - 230V operation
 - Extended 26″ length design
 - 6″ width configuration
 - Specific Jacuzzi compatibility
 
Design Advantages
The Gen2 trombone-style configuration incorporates improved design elements for enhanced performance in low-flow applications, ensuring efficient heat transfer while maintaining proper flow characteristics in Sundance spa systems.
Technical Specifications
| Specification | Detail | 
|---|---|
| Model Number | 26-3226-1A-5T-K | 
| Generation | Gen2 | 
| Power Rating | 4.0kW | 
| Voltage | 230V | 
| Length | 26 inches | 
| Width | 6 inches | 
| Design Type | Trombone style | 
| Flow Type | Low Flow | 
| Application | Sundance/Jacuzzi | 
| Feature | Pressure switch tap | 
Compatibility
Specifically designed for:
- 2002+ Jacuzzi J-310 models
 - 2002+ Jacuzzi J-315 models
 - 2004 Jacuzzi J-325 models
 
Installation Features
- Integrated pressure switch tap
 - Enhanced Gen2 design elements
 - Low-flow design optimization
 - Direct replacement configuration
 - Specific model compatibility
 
Performance Features
- Second-generation design improvements
 - Optimized for low-flow systems
 - Efficient heat transfer design
 - Pressure monitoring capability
 - Professional-grade construction
 
System Integration
This Gen2 heater is engineered as a direct replacement for original Sundance spa heating elements, ensuring proper fit and function within specified Jacuzzi model configurations.
Design Technology
The updated Gen2 trombone-style configuration incorporates enhanced design elements while maintaining the low-flow optimization required by these specific spa models







				

