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Rheem-Ruud 61-102213-03 3Ton Thermal Expansion Valve R-410A 3/8" X3/8" ODF

Special Price $119.52 Regular Price $137.45
In stock
SKU
61-102213-03
The Rheem-Ruud 61-102213-03 3Ton Thermal Expansion Valve is among the essential components of the HVAC systems, mainly designed for air conditioning and heat pumps. This expansion valve measures 7” while the capillary tube measures 30” which enables it to regulate the flow of R-410A refrigerant. It also makes for reliable and long-lasting operation of the plant. This type of thermal expansion valve helps the cooling and heat exchange by varying the quantity of the coolant in the compressor’s evaporator coil. It ensures that flow of coolant is well monitored hence ensuring that the system operates at its optimal better thus enhancing the cooling capacity and energy. It is mainly used in the 3-ton air conditioning and heat pump systems. It offers reliable reliability, that makes it possible to discharge steady and effective cooling performance.
Manufacturer:
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Specifications

  • Type: Thermal Expansion Valve
  • Capillary Tube Length: 30"
  • Equalizer Tube Length: 1.7"
  • Inlet/Outlet Fitting Type: Sweat
  • External Equalizer Connection: 1/4" Sweat
  • Inlet/Outlet Size: 3/8"
  • Nominal Capacity Reference: 3Ton
  • Refrigerant: R-410A
  • Weight: 0.89lbs
Manufacturer Name: Rheem-Ruud
Product Number: 61-102213-03
OEM Part Number: 61-102213-03
Product Description: 3/8"X3/8"Odf 3Ton R410a Txv
Weight:0.89lbs/403.7g

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Customer Questions
What maintenance is required for the Rheem-Ruud 61-102213-03 Thermal Expansion Valve?

Regular inspection of the valve ensures proper refrigerant flow and stable system performance. Clean the valve body and check for debris or clogging in the inlet screen. Verify sensing bulb placement and insulation to maintain accurate superheat control. Proper maintenance prevents inefficiency and refrigerant issues, and always handle refrigerant systems with safety precautions.

What are common issues with the Rheem-Ruud 61-102213-03 Thermal Expansion Valve?

  • Inconsistent cooling due to improper superheat regulation.
  • Valve sticking or clogging from debris or moisture in refrigerant lines.
  • Incorrect refrigerant charge causing system imbalance.
  • Faulty sensing bulb placement leading to poor temperature response.

Installation Steps

Step 1: Switch off power and recover refrigerant from system fully before opening lines.

Step 2: Remove existing valve and clean tubing ends carefully.

Step 3: Position new valve with correct flow direction and braze joints using purge.

Step 4: Attach sensing bulb on suction line and secure insulation tightly.

Step 5: Leak check, recharge refrigerant, evacuate to deep vacuum, then check superheat and operation.