Klima
Klima Smart WIFI Thermostat – KL6000B
Klima Smart WIFI Thermostat – KL6000B
Klima Smart WIFI Thermostat – KL6000B
Klima Smart WIFI Thermostat – KL6000BFor Heating & Cooling Systems – 220v
4.8-inch Large colorful screen display area,
creates your colorful life.
Touch buttons to make simple operation.
Klima Smart WIFI Thermostat – KL6000B
Klima Smart WIFI Thermostat – KL6000B
Klima Smart WIFI Thermostat – KL6000B
Klima Smart WIFI Thermostat – KL6000BFor Heating & Cooling Systems – 220v
4.8-inch Large colorful screen display area,
creates your colorful life.
Touch buttons to make simple operation.
Klima Smart WIFI Thermostat – KL6100B
Klima Smart WIFI Thermostat – KL6100B
Klima Smart WIFI Thermostat – KL6100B
Klima Smart WIFI Thermostat – KL6100BFor Heating & Cooling Systems – 220v
Full Black Negative Screen.
Modern appearance leads to modern life.
Beautiful Ui Design.
Klima Smart WIFI Thermostat – KL6100B
Klima Smart WIFI Thermostat – KL6100B
Klima Smart WIFI Thermostat – KL6100B
Klima Smart WIFI Thermostat – KL6100BFor Heating & Cooling Systems – 220v
Full Black Negative Screen.
Modern appearance leads to modern life.
Beautiful Ui Design.
Klima Smart WIFI Thermostat – KL6200B
Klima Smart WIFI Thermostat – KL6200B
Klima Smart WIFI Thermostat – KL6200B
Klima Smart WIFI Thermostat – KL6200BFor Heating & Cooling Systems – 220v
51mm round display.
Touch buttons to make simple operation.
Rotation to connect gives you easy installation.
Klima Smart WIFI Thermostat – KL6200B
Klima Smart WIFI Thermostat – KL6200B
Klima Smart WIFI Thermostat – KL6200B
Klima Smart WIFI Thermostat – KL6200BFor Heating & Cooling Systems – 220v
51mm round display.
Touch buttons to make simple operation.
Rotation to connect gives you easy installation.
Klima Smart WIFI Thermostat – KL6300W
Klima Smart WIFI Thermostat – KL6300W
Klima Smart WIFI Thermostat – KL6300W
Klima Smart WIFI Thermostat – KL6300WFor Heating & Cooling Systems – 220v
Modern design. Meet All Your Needs.
Large screen display with backlight.
Klima Fan Coil Thermostat – KLT6373A1108 – Manual Control
Klima Fan Coil Thermostat – KLT6373A1108 – Manual Control
Klima Fan Coil Thermostat – KLT6373A1108 – Manual Control
Klima Fan Coil Thermostat – KLT6373A1108 – Manual ControlAccurate Control
Energy Saving
Easy & Fast Installation
Klima Central AC Thermostat 24V / 50/60Hz KL-5600
Klima Central AC Thermostat 24V / 50/60Hz KL-5600
Klima Central AC Thermostat 24V / 50/60Hz KL-5600
Klima Central AC Thermostat 24V / 50/60Hz KL-5600Accurate Control
Energy Saving
Easy & Fast Installation
Klima Thermostat for Fan Coils 24V/220V TH-0022
Klima Thermostat for Fan Coils 24V/220V TH-0022
Klima Thermostat for Fan Coils 24V/220V TH-0022
Klima Thermostat for Fan Coils 24V/220V TH-0022Accurate Control
Energy Saving
Easy & Fast Installation
Klima Thermostat for Fan Coils 24V TH-400
Klima Thermostat for Fan Coils 24V TH-400
Klima Thermostat for Fan Coils 24V TH-400
Klima Thermostat for Fan Coils 24V TH-400Accurate Control
Energy Saving
Easy & Fast Installation
Klima Running Capacitor CBB65 5µF 370-450VAC
Klima Running Capacitor CBB65 5µF 370-450VAC
Klima Running Capacitor CBB65 5µF 370-450VAC
Klima Running Capacitor CBB65 5µF 370-450VACT-Max 21+85C 50/60Hz 25/85/21
100000 AFC
400V-DB HSFNT 450V-DB
Manufactured By Klima
DESCRIPTION
A run capacitor uses the charge in the dielectric to boost the current which provides power to the motor. It is used to maintain a charge. In AC units, there are dual run capacitors. One capacitor provides power to the fan motor. The other sends power to the compressor. Run capacitors measure in at approximately 7-9 micro-Farads. The value or rating of the run capacitor must be accurate. If the value is too high, the phase shift will be less than perfect and the winding current will be too high. If the capacitor value/rating is too low, the phase shift will be higher and the winding current will be too low. If run capacitors are not ideal, then the motor could overheat and the true torque will not be enough to drive current.
Klima Running Capacitor CBB65 3µF 370-450VAC
Klima Running Capacitor CBB65 3µF 370-450VAC
Klima Running Capacitor CBB65 3µF 370-450VAC
Klima Running Capacitor CBB65 3µF 370-450VACT-Max 21+85C 50/60Hz 25/85/21
100000 AFC
400V-DB HSFNT 450V-DB
Manufactured By Klima
DESCRIPTION
A run capacitor uses the charge in the dielectric to boost the current which provides power to the motor. It is used to maintain a charge. In AC units, there are dual run capacitors. One capacitor provides power to the fan motor. The other sends power to the compressor. Run capacitors measure in at approximately 7-9 micro-Farads. The value or rating of the run capacitor must be accurate. If the value is too high, the phase shift will be less than perfect and the winding current will be too high. If the capacitor value/rating is too low, the phase shift will be higher and the winding current will be too low. If run capacitors are not ideal, then the motor could overheat and the true torque will not be enough to drive current.
Klima Running Capacitor CBB65 6µF 370-450VAC
Klima Running Capacitor CBB65 6µF 370-450VAC
Klima Running Capacitor CBB65 6µF 370-450VAC
Klima Running Capacitor CBB65 6µF 370-450VACT-Max 21+85C 50/60Hz 25/85/21
100000 AFC
400V-DB HSFNT 450V-DB
Manufactured By Klima
DESCRIPTION
A run capacitor uses the charge in the dielectric to boost the current which provides power to the motor. It is used to maintain a charge. In AC units, there are dual run capacitors. One capacitor provides power to the fan motor. The other sends power to the compressor. Run capacitors measure in at approximately 7-9 micro-Farads. The value or rating of the run capacitor must be accurate. If the value is too high, the phase shift will be less than perfect and the winding current will be too high. If the capacitor value/rating is too low, the phase shift will be higher and the winding current will be too low. If run capacitors are not ideal, then the motor could overheat and the true torque will not be enough to drive current.
Klima Running Capacitor CBB65 7.5µF 370-450VAC
Klima Running Capacitor CBB65 7.5µF 370-450VAC
Klima Running Capacitor CBB65 7.5µF 370-450VAC
Klima Running Capacitor CBB65 7.5µF 370-450VACT-Max 21+85C 50/60Hz 25/85/21
100000 AFC
400V-DB HSFNT 450V-DB
Manufactured By Klima
DESCRIPTION
A run capacitor uses the charge in the dielectric to boost the current which provides power to the motor. It is used to maintain a charge. In AC units, there are dual run capacitors. One capacitor provides power to the fan motor. The other sends power to the compressor. Run capacitors measure in at approximately 7-9 micro-Farads. The value or rating of the run capacitor must be accurate. If the value is too high, the phase shift will be less than perfect and the winding current will be too high. If the capacitor value/rating is too low, the phase shift will be higher and the winding current will be too low. If run capacitors are not ideal, then the motor could overheat and the true torque will not be enough to drive current.
Klima Running Capacitor CBB65 10µF 370-450VAC
Klima Running Capacitor CBB65 10µF 370-450VAC
Klima Running Capacitor CBB65 10µF 370-450VAC
Klima Running Capacitor CBB65 10µF 370-450VACT-Max 21+85C 50/60Hz 25/85/21
100000 AFC
400V-DB HSFNT 450V-DB
Manufactured By Klima
DESCRIPTION
A run capacitor uses the charge in the dielectric to boost the current which provides power to the motor. It is used to maintain a charge. In AC units, there are dual run capacitors. One capacitor provides power to the fan motor. The other sends power to the compressor. Run capacitors measure in at approximately 7-9 micro-Farads. The value or rating of the run capacitor must be accurate. If the value is too high, the phase shift will be less than perfect and the winding current will be too high. If the capacitor value/rating is too low, the phase shift will be higher and the winding current will be too low. If run capacitors are not ideal, then the motor could overheat and the true torque will not be enough to drive current.
Klima Running Capacitor CBB65 15µF 370-450VAC
Klima Running Capacitor CBB65 15µF 370-450VAC
Klima Running Capacitor CBB65 15µF 370-450VAC
Klima Running Capacitor CBB65 15µF 370-450VACT-Max 21+85C 50/60Hz 25/85/21
100000 AFC
400V-DB HSFNT 450V-DB
Manufactured By Klima
DESCRIPTION
A run capacitor uses the charge in the dielectric to boost the current which provides power to the motor. It is used to maintain a charge. In AC units, there are dual run capacitors. One capacitor provides power to the fan motor. The other sends power to the compressor. Run capacitors measure in at approximately 7-9 micro-Farads. The value or rating of the run capacitor must be accurate. If the value is too high, the phase shift will be less than perfect and the winding current will be too high. If the capacitor value/rating is too low, the phase shift will be higher and the winding current will be too low. If run capacitors are not ideal, then the motor could overheat and the true torque will not be enough to drive current.
Klima Running Capacitor CBB65 35+5µF 370-450VAC
Klima Running Capacitor CBB65 35+5µF 370-450VAC
Klima Running Capacitor CBB65 35+5µF 370-450VAC
Klima Running Capacitor CBB65 35+5µF 370-450VACT-Max 21+85C 50/60Hz 25/85/21
100000 AFC
400V-DB HSFNT 450V-DB
Manufactured By Klima
DESCRIPTION
A run capacitor uses the charge in the dielectric to boost the current which provides power to the motor. It is used to maintain a charge. In AC units, there are dual run capacitors. One capacitor provides power to the fan motor. The other sends power to the compressor. Run capacitors measure in at approximately 7-9 micro-Farads. The value or rating of the run capacitor must be accurate. If the value is too high, the phase shift will be less than perfect and the winding current will be too high. If the capacitor value/rating is too low, the phase shift will be higher and the winding current will be too low. If run capacitors are not ideal, then the motor could overheat and the true torque will not be enough to drive current.