3 Way

3-Way Solenoid Valves

Three-way solenoid valves from G&G Hydraulics Corporation deliver versatile directional control for complex fluid management systems. Our inventory features Parker Gold Ring, Skinner, and Peter Paul models in brass and stainless steel construction – perfect for diverting, mixing, or switching applications where standard two-way valves might fall short. Contact us to learn more.

761 items

Set Descending Direction
  1. $175.51 $208.94
  2. $204.38 $243.31
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  5. 02F30U1104ABFOS05KMP

    Parker Gold Ring Solenoid Valve

    $304.15 $362.08
  6. $316.65 $376.97
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  20. $2,140.23 $2,547.89
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    Obsolete
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    Obsolete
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  50. $390.31 $464.66
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Superior Flow Control

These 3-way solenoid valves for water and other substances excel in applications requiring flow redirection between multiple pathways. Direct-acting models respond instantly for smaller orifice sizes, while pilot-operated designs handle higher pressures with reduced power consumption. The three-port configuration (inlet, outlet, exhaust) allows operators to control fluid movement between two different circuits or redirect flow entirely.


3-way solenoid valves’ universal configurations offer maximum flexibility – they can function as normally closed, normally open, or diverting valves depending on your piping setup. And honestly? That versatility saves you from stocking multiple valve types. Stainless steel bodies withstand corrosive environments better than brass alternatives, though brass remains the go-to choice for cost-conscious applications.

Why G&G Hydraulics Corporation Gets It Right

Since 1996, we’ve built our reputation on supplying quality hydraulic components that actually perform when systems demand reliability. Our certified seller status means every Parker Gold Ring and Peter Paul valve meets stringent manufacturing standards – no surprises when critical systems need consistent operation.

Beyond 3-way solenoid valves, G&G Hydraulics stocks comprehensive hydraulic solutions including cylinders, pumps, hoses, and specialty fittings. We maintain live chat support and risk-free guarantees because hydraulic downtime costs real money. Whether you’re managing industrial automation or agricultural irrigation systems, our technical expertise helps match components to specific application requirements without the guesswork.

Frequently Asked Questions

What makes 3-way solenoid valves for water different from 2-way models?

Extra port changes everything. Three ports mean directional control, not just on/off switching. Flow gets diverted between pathways or mixed from separate sources. Two-way valves can’t handle that kind of routing complexity.

When should I choose 3-way solenoid valves that have normally closed or normally open configurations?

Safety requirements drive this decision mostly. NC valves block the main flow when power is off, redirecting it to the exhaust, making for a good fail-safe setup. NO models keep flowing until energized to redirect. Consider what you want your model to do during power failures.

Are universal 3-way valves worth the extra cost?

Universal valves can be piped as either normally closed or normally open, plus they handle diverting and selecting functions. However, the maximum working pressure is typically lower than dedicated NC or NO models. These versatile 3-way solenoid valves are cost-effective when you need operational flexibility but not maximum pressure ratings.

The advantage of direct-acting versus pilot-operating designs

Speed versus efficiency trade-off here. Direct-acting units react faster and work without a pressure differential, but they’re power hogs on larger orifices. Pilot-operated versions utilize system pressure to help, conserve electricity, and move a greater volume.

Which body material should I select for my application?

Brass machines are easier and cost less for standard industrial work with moderate conditions. Steel handles nasty or corrosive environments better – chemicals, saltwater, high heat. Brass degrades in harsh conditions while steel keeps working longer term.