Description
Honeywell VC6834ZZ11 24VAC SP3T Floating Valve Actuator Overview
The Honeywell VC6834ZZ11 is a 24VAC, single-pole triple-throw (SP3T) floating valve actuator engineered for precise two- or three-way valve control in commercial hydronic and HVAC systems. Designed exclusively for use with Honeywell’s 3000 and 7000 VC Series valves, this actuator delivers reliable, non-spring-return operation with a built-in manual override lever for hands-on positioning during installation, commissioning, or maintenance.
Key Features
- 24VAC SP3T floating control signal for accurate valve positioning
- SPDT auxiliary switch provides end-of-travel feedback for system interlocks or status indication
- 5-foot plenum-rated cable for safe installation in air-handling plenums and return-air spaces
- Non-spring-return design — valve holds last position on power loss
- 60 lb (60#) closeoff force ensures positive seating against system pressure
- Manual operated lever allows direct hand positioning without power
- Compatible with two-way and three-way valves in the Honeywell 3000 and 7000 VC Series only
Specifications
- Control Voltage: 24VAC
- Control Signal: SP3T Floating
- Auxiliary Switch: SPDT
- Cable Length: 5 feet, plenum-rated
- Closeoff Force: 60 lbs
- Spring Return: Non-spring return
- Override: Manual operated lever
- Compatible Valve Series: Honeywell 3000 VC Series, 7000 VC Series (two- and three-way)
Applications
The VC6834ZZ11 is ideal for fan coil units, air handling units, and hydronic heating/cooling systems where precise zone-level valve control is required. The SPDT auxiliary switch makes it easy to integrate with building automation systems (BAS) or provide proof-of-position feedback. The plenum-rated cable ensures code compliance in return-air and plenum installations.
Why Choose the Honeywell VC6834ZZ11?
With its robust 60 lb closeoff rating, floating SP3T control, and built-in auxiliary switch, the VC6834ZZ11 simplifies wiring and commissioning while delivering dependable long-term performance. The manual lever override adds a practical advantage for service technicians, and the non-spring-return function reduces wear and energy consumption compared to spring-return designs.







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