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Model
CS-E7JKEW CU-E7JKE CS-E9JKEW CU-E9JKE CS-E12JKEW CU-E12JKE CS-E15JKEW CU-E15JKE CU-E15JKE-1 CS-E7JKEW-3 CU-E7JKE-3 CS-E9JKEW-3 CU-E9JKE-3 CS-E12JKEW-3 CU-E12JKE-3 CS-XE7JKEW CS-XE9JKEW CS-XE12JKEW CS-XE15JKEW
Pages
127
Size
12.25 MB
Type
PDF
Document
Service Manual
Brand
Device
Air Conditioner / AIR CONDITIONER
File
cs-e7jkew-cu-e7jke-cs-e9jkew-cu-e9jke-cs-e12jkew-c.pdf
Date

Panasonic CS-E7JKEW / CU-E7JKE / CS-E9JKEW / CU-E9JKE / CS-E12JKEW / CU-E12JKE / CS-E15JKEW / CU-E15JKE / CU-E15JKE-1 / CS-E7JKEW-3 / CU-E7JKE-3 / CS-E9JKEW-3 / CU-E9JKE-3 / CS-E12JKEW-3 / CU-E12JKE-3 / CS-XE7JKEW / CS-XE9JKEW / CS-XE12JKEW / CS-XE15JKEW Service Manual ▷ View online

105
16.4.24. F91 (Refrigeration Cycle Abnormality)
Malfunction Decision Conditions
• During cooling, compressor frequency = Fcmax.
• During heating, compressor frequency > Fhrated.
• During cooling and heating operation, running current: 0.65A < I < 1.65A.
• During cooling, indoor intake - indoor pipe < 4
°C
• During heating, indoor pipe - indoor intake < 5
°C
Multi Models Only
- Gas shortage detection 1: A gas shortage is detected by checking the CT-detected input current value and the compressor
running frequency. During startup and operating of cooling and heating, input current < 8.78/256 (A/Hz) x compressor
running frequency + 0.25.
- Gas shortage detection 2: A gas shortage is detected by checking the difference between indoor pipe temperature and
indoor intake air temperature during cooling and heating.
Malfunction Caused
• Refrigerant shortage (refrigerant leakage)
• Poor compression performance of compressor.
• 2/3 way valve closed.
• Detection error due to faulty indoor intake air or indoor pipe temperature sensors.
Troubleshooting
106
16.4.25. F93 (Compressor Rotation Failure)
Malfunction Decision Conditions
A compressor rotation failure is detected by checking the compressor running condition through the position detection circuit.
Malfunction Caused
• Compressor terminal disconnect
• Outdoor PCB malfunction
Troubleshooting
107
16.4.26. F95 (Cooling High Pressure Abnormality)
Malfunction Decision Conditions
During operation of cooling, when outdoor unit heat exchanger high temperature data (61
°C) is detected by the outdoor pipe
temperature sensor.
Malfunction Caused
• Outdoor pipe temperature rise due to short circuit of hot discharge air flow.
• Outdoor pipe temperature rise due to defective of outdoor fan motor.
• Outdoor pipe temperature rise due to defective outdoor pipe temperature sensor.
• Outdoor pipe temperature rise due to defective outdoor unit PCB.
Troubleshooting
108
16.4.27. F96 (IPM Overheating)
Malfunction Decision Conditions
During operating of cooling and heating, when IPM temperature data (100
°C) is detected by the IPM temperature sensor.
Multi Models Only
• Compressor Overheating: During operation of cooling and heating, when the compressor OL is activated.
• Heat Sink Overheating: During operation of cooling and heating, when heat sink temperature data (90
°C) is detected by the
heat sink temperature sensor.
Malfunction Caused
• IPM overheats due to short circuit of hot discharge air flow.
• IPM overheats due to defective of outdoor fan motor.
• IPM overheats due to defective of internal circuitry of IPM.
• IPM overheats due to defective IPM temperature sensor.
Multi Models Only
- Compressor OL connector poor contact.
- Compressor OL faulty.
Troubleshooting
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