For maximum protection against water intrusion, the 24 V Hunter AC Solenoid features an encapsulated design that completely seals the electronic components in heavy-duty plastic. The captured plunger simplifies servicing by reducing the risk of lost internal parts.
The 9 V Hunter DC-Latching Solenoid is compatible with all plastic Hunter valves used with battery-operated controllers. The solenoid receives a quick pulse from the controller to latch (open the valve) and unlatch (close the valve). The solenoid has one black common wire and one red station wire. To ensure reliable operation, the wires must always be connected properly.
To replace an AC Solenoid with a DC-Latching Solenoid on any Hunter valve, simply unscrew the AC Solenoid and replace it with a DC-Latching Solenoid. This ensures compatibility with battery-operated Hunter NODE, NODE-BT, and XC Hybrid Controllers.
Electrical Specifications
Model 606800
Minimum opening/operating voltage: 19 VAC
Maximum recommended voltage: 28 VAC
Current at 24 VAC:
350 mA inrush, 190 mA holding, 60 Hz
370 mA inrush, 210 mA holding, 50 Hz
Maximum operating pressure: 15.17 bar; 1517 kPa
Wire leads: 45 cm of 0.8 mm² UL-approved wire
Model 458200
Minimum opening/operating voltage: 6 VDC
Maximum recommended voltage: 9 VDC
Coil resistance: 4.8 ohms nominal
Maximum operating pressure: 13.79 bar; 1379 kPa
Wire leads: 45 cm of 0.8 mm² Black and Red UL-approved wire
Plastic Continuous Acting Air Release & Vacuum Relief Valve
Its proven design provides more air release capacity than other air vents of similar size. Being a safety valve, it ensures maximum protection of the irrigation system with proper sizing and placement. Being a larger capacity valve, it dampens the water hammer thereby preventing pipes and fittings from cracking or bursting.
Features
These pumps are deep-well electric pumps in which the motor is closely coupled to the pump and submerged into the well. The submersible pumps are single-stage /multi-stage centrifugal pumps operating in a vertical/horizontal position. Their basic operational principle is as like centrifugal pumps. Fluid enters the pump through an intake screen and is lifted by the pump stage(s). In these pumps long intermediate shafts are undesirable.
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