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35+10 uF MFD ±5% 370/440 VAC CBB65 CBB65B Dual Run Start Round Capacitor - Fits Condenser, Heat Pump, AC Motor

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35+10 uF 35/10 MFD ±5% 370-440VAC Volts CBB65 CBB65B Dual Run Start Round Capacitor

Key Features

  • Capacitance: 35 + 10 Microfarad (MFD/uF)
  • Voltage Rating: 370 or 440 Volts AC (VAC)
  • Capacitance Tolerance: ±5%
  • Operating Frequency: 50 / 60 Hertz (Hz)
  • Shape: Round
  • Case Material: Aluminum
  • Terminals: 1/4 inch male quick-connects (C, FAN, HERM)
  • Operational Temperature Range: -40°C to +70°C
  • Safety Standard: UL 810 approved; pressure-sensitive interrupter

Replaces / Cross-Reference Part Numbers

  • Replaces any round 35/10 MFD dual run capacitor with a 370V or 440V rating.
  • Common part numbers include: P291-3514R, CBB65, C33510R, PRC3510, 97F9836, TRCD3510, CPT00666.

Compatibility & Fitment

  • Designed for HVAC applications including air conditioners, heat pumps, and condenser units.
  • Simultaneously provides starting and running power to a compressor motor (35 MFD) and a fan motor (10 MFD).
  • Fits units from major brands including Carrier, Goodman, Trane, Lennox, Rheem, and Ruud when specifications match the original component.

When to Replace

  • The capacitor case is physically swollen, bulging, or leaking oily fluid.
  • The compressor or fan motor hums but will not start.
  • The fan blades turn slowly or must be started by hand.
  • A multimeter test shows capacitance values outside the ±5% tolerance range.

Installation Tips

  • Disconnect all electrical power to the unit before beginning work.
  • Safely discharge the old capacitor by shorting across the terminals with an insulated tool.
  • Confirm the MFD ratings match the original capacitor exactly. The voltage rating of the new capacitor must be equal to or higher than the original.
  • Note the wire placement on the C (Common), FAN, and HERM (Hermetic/Compressor) terminals before removal.
  • Secure the new capacitor with the original mounting bracket to prevent vibration.
Product image
  • Step 1

    Step 1

    Turn off the power and locate the capacitor
  • Step 2

    Step 2

    Discharge any stored electricity by shorting the terminals
  • Step 3

    Step 3

    Take a photo or note how the wires connect. Disconnect wires & install the new capacitor.
  • Step 4

    Step 4

    Reassemble and test

FAQ

The most common signs of a failing capacitor include the AC unit failing to start, the fan motor humming without spinning, or the compressor struggling to kick on. You may also notice the top of the capacitor is bulging or domed, which indicates internal pressure buildup and immediate failure.
Yes. This capacitor is rated for both 370V and 440V applications. It is perfectly safe to use a 440V-rated capacitor in a system originally designed for 370V, as it provides a higher voltage tolerance and often results in a longer service life.
The 35+10 MFD (microfarad) rating indicates that this is a dual-run capacitor. The 35 MFD side is typically used for the compressor motor, while the 10 MFD side is for the fan motor. It is essential that your replacement matches these values exactly to ensure your motors run at the correct speed and torque.
This is a standard CBB65 round dual-run capacitor compatible with most residential HVAC condenser units, heat pumps, and air conditioner fan motors. Before purchasing, verify that your current capacitor matches the 35+10 MFD rating and that you have sufficient physical space in your control box for the dimensions of this unit.
Always turn off the power to the HVAC unit at the disconnect box or circuit breaker before opening the panel. Capacitors store a significant electrical charge even after the power is cut; you must discharge the old capacitor by touching the terminals with an insulated screwdriver across the common (C) and fan (F) terminals, and then the common (C) and hermetic (HERM) terminals, before handling it.
While these capacitors are designed for high performance, their lifespan is heavily influenced by heat and usage cycles. Exposure to extreme outdoor temperatures and frequent power surges can degrade the internal film over time. If your unit is older, it is common practice to replace the capacitor as a preventative maintenance measure.