
enz® KBRV Nozzle 1/8"
KBRV RotoJet Nozzles for Ultra-Precision Forward Flushing
The enz® KBRV RotoJet nozzles (micro AV series) are engineered for forward-directed cleaning in extremely small pipe systems where precision and low-flow performance are critical. These rotating sewer nozzles are designed to break up deposits and push debris forward, making them ideal for controlled flushing in tight and sensitive environments.
Each nozzle features a forward-focused jet configuration that loosens buildup while maintaining steady movement through the pipe. This ensures efficient cleaning while minimizing water usage, even in very low-flow setups.
Shared Specifications (All Models)
- Designed for 0.7" to 2.4" pipe cleaning applications
- 1/8" nozzle connection
- 4 rotating jets for forward cleaning and debris transport
- Rated for pressures up to 5000 PSI
Model 04.016AV07N – Ultra Low-Flow Micro Cleaning
- Minimum Flow: 1.5 GPM
Best For
- Extremely low-flow systems
- Precision cleaning in very small pipes
- Light debris and maintenance applications
Model 04.016AV08N – Low-Flow Balanced Performance
- Minimum Flow: 3 GPM
Best For
- Routine maintenance in small pipe systems
- Applications requiring balanced flow and efficiency
Model 04.016AV09N – Increased Cleaning Strength
- Minimum Flow: 4 GPM
Best For
- Removing more stubborn buildup
- Improving cleaning performance in tight systems
Model 04.016AV10N – Enhanced Output for Tougher Jobs
- Minimum Flow: 4.5 GPM
Best For
- Moderate debris removal
- Applications needing slightly higher flow capacity
Model 04.016AV11N – High-End Flow for Maximum Performance
- Minimum Flow: 6.5 GPM
Best For
- Heavier buildup removal in small pipes
- High-performance cleaning in tight environments
Why Choose enz® KBRV RotoJet Nozzles?
This micro-series gives you flexibility across a wide range of flow setups while maintaining precise, forward-directed cleaning. Whether you're working with extremely low flow or need more power, these nozzles deliver consistent results in small-diameter systems.
Original: $240.00
-65%$240.00
$84.00Product Information
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Description
KBRV RotoJet Nozzles for Ultra-Precision Forward Flushing
The enz® KBRV RotoJet nozzles (micro AV series) are engineered for forward-directed cleaning in extremely small pipe systems where precision and low-flow performance are critical. These rotating sewer nozzles are designed to break up deposits and push debris forward, making them ideal for controlled flushing in tight and sensitive environments.
Each nozzle features a forward-focused jet configuration that loosens buildup while maintaining steady movement through the pipe. This ensures efficient cleaning while minimizing water usage, even in very low-flow setups.
Shared Specifications (All Models)
- Designed for 0.7" to 2.4" pipe cleaning applications
- 1/8" nozzle connection
- 4 rotating jets for forward cleaning and debris transport
- Rated for pressures up to 5000 PSI
Model 04.016AV07N – Ultra Low-Flow Micro Cleaning
- Minimum Flow: 1.5 GPM
Best For
- Extremely low-flow systems
- Precision cleaning in very small pipes
- Light debris and maintenance applications
Model 04.016AV08N – Low-Flow Balanced Performance
- Minimum Flow: 3 GPM
Best For
- Routine maintenance in small pipe systems
- Applications requiring balanced flow and efficiency
Model 04.016AV09N – Increased Cleaning Strength
- Minimum Flow: 4 GPM
Best For
- Removing more stubborn buildup
- Improving cleaning performance in tight systems
Model 04.016AV10N – Enhanced Output for Tougher Jobs
- Minimum Flow: 4.5 GPM
Best For
- Moderate debris removal
- Applications needing slightly higher flow capacity
Model 04.016AV11N – High-End Flow for Maximum Performance
- Minimum Flow: 6.5 GPM
Best For
- Heavier buildup removal in small pipes
- High-performance cleaning in tight environments
Why Choose enz® KBRV RotoJet Nozzles?
This micro-series gives you flexibility across a wide range of flow setups while maintaining precise, forward-directed cleaning. Whether you're working with extremely low flow or need more power, these nozzles deliver consistent results in small-diameter systems.





