Capacidad Compresor C Qn103l2cw __top__ May 2026
Capacidad Compresor C QN103L2CW: Guía Completa de Especificaciones y Aplicaciones
4. Operational Characteristics
6. Troubleshooting and Replacement Considerations
If replacing or
Panasonic/Mabe C-QN103L2CW is a reciprocating compressor primarily used in domestic refrigeration systems, specifically designed to operate with refrigerant. Technical Specifications
Based on manufacturer data for the C-QN series, the performance characteristics under standard test conditions (Evaporating Temp: -23.3°C; Condensing Temp: 54.4°C) are as follows: Cooling Capacity : Approximately (112 Kcal/h). Power Input : Typically 115V / 60Hz (common for North American/Mexican markets). Refrigerant Type Motor Type
: RSIR (Resistive Start-Inductive Run) or CSIR (Capacitor Start-Inductive Run), depending on the specific sub-model configuration. Key Characteristics Application
: Low Back Pressure (LBP) refrigeration, commonly found in Mabe or Sanyo refrigerators. Thermal Protection capacidad compresor c qn103l2cw
: These units are internally thermally protected to prevent burnout during voltage fluctuations or overheating. Replacement Advice
: If you are looking for a replacement, it is roughly equivalent to a
compressor. When swapping, ensure the replacement matches the BTU capacity (approx. 440–450 BTU/h) and the physical mounting footprint. technicians who can help with a replacement installation? Capacidad compresor c qn103l2cw
It seems you're asking for a story related to the capacity of the compressor model QN103L2CW (likely a refrigeration or AC compressor). Title: The Heart of Cooling In a sweltering
Here's a short technical narrative based on that model:
Title: The Heart of Cooling
In a sweltering service workshop, old technician Marco held a dusty compressor labeled QN103L2CW. His apprentice, Lena, asked, "What's so special about its capacity?"
Marco wiped the plate. "See this? QN103L2CW. It’s a small hermetic reciprocating compressor, often used in domestic refrigerators or freezers." Factores que afectan la capacidad efectiva
He pointed to a chart:
- Cooling capacity: ~100–120 W (depending on evaporating temp)
- Displacement: around 10.3 cm³ per revolution
- Refrigerant: typically R134a or R600a
"The capacidad isn’t just watts—it’s balance," Marco said. "Too much capacity, and the evaporator ices up. Too little, food spoils. This one... precise for a 6–8 cu. ft. freezer."
Lena connected it to a test rig. At –23°C evaporating and 45°C condensing, the QN103L2CW pulled 1.2 amps, delivered 112 W of cooling—perfect for the spec.
"So its capacity is matching the system's heat load," she concluded.
Marco smiled. "Exactly. That's the story of every good compressor: not raw power, but the right capacity for the job."
Would you like actual technical datasheet values (in Watts, BTU/h, or displacement) for that specific model, or a more fictional story involving a failed compressor capacity diagnosis?
Factores que afectan la capacidad efectiva
- Caídas de presión por tuberías y accesorios (reduce presión útil).
- Temperatura y altitud (el aire menos denso reduce entrega de masa).
- Humedad y presencia de contaminantes (afecta filtros y secadores).
- Estado del mantenimiento (fugas, filtros obstruidos, aceite viejo).