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KRIWAN MOTOR PROTECTOR INT69 Y DIAGNOSE ( 22A626 / 22A634/ 22A630S21 )
Application
Functional description
KRIWAN MOTOR PROTECTOR INT69 Y DIAGNOSE ( 22A626 / 22A634/ 22A630S21 )
Application
The compressor motor protection INT69 Y Diagnose is a further development of the reliable KRIWAN motor protectors. Additional inputs for the phase monitoring as well as supplementary flexible-response protective functions help to improve the availability and extend the service life of a refrigeration system.
The INT69 Y Diagnose automatically saves operational and error data in a non-volatile memory. This data can be retrieved on a PC and analysed for diagnosis. The full scope of the diagnosis is achieved by using a KRIWAN-specific AMS sensor.
This motor protector is mainly employed on compressors of which the motor's direction of rotation is essential for the function.
The INT69 Y Diagnose automatically saves operational and error data in a non-volatile memory. This data can be retrieved on a PC and analysed for diagnosis. The full scope of the diagnosis is achieved by using a KRIWAN-specific AMS sensor.
This motor protector is mainly employed on compressors of which the motor's direction of rotation is essential for the function.
Functional description
The temperature monitoring of the motor winding is done with two evaluation processes:
• Static: Switch-off is immediate if the nominal response temperature of the built-in AMS or PTC sensors is reached.
• Dynamic: If the temperature increases unusually quickly, the motor is switched off immediately even if the temperature is still far below the nominal response temperature. This prevents excess temperatures from occurring.
A short circuit at an AMS or PTC input also leads to a switch-off. A short cycling leads to a reset delay. After cooldown or elimination of the error and a subsequent reset delay, the compressor can be restarted; restarting after locking only after reset.
The phase monitoring of the motor voltage is active 1s after the start of the motor. The correct phase sequence is monitored for 5s, the phase failure is monitored for the total motor running time. If a wrong phase sequence is detected or there is a phase failure, the motor protector will
lock switch off.
After motor stop, the phase monitoring is deactivated for approx. 20s to prevent unintended locking due to brief reverse running of the compressor. For operation in the specified manner, the supply voltage has to be on permanently on the INT69 Y Diagnose. The built-in LED signals the current status of the motor protector (see flash code).
• Static: Switch-off is immediate if the nominal response temperature of the built-in AMS or PTC sensors is reached.
• Dynamic: If the temperature increases unusually quickly, the motor is switched off immediately even if the temperature is still far below the nominal response temperature. This prevents excess temperatures from occurring.
A short circuit at an AMS or PTC input also leads to a switch-off. A short cycling leads to a reset delay. After cooldown or elimination of the error and a subsequent reset delay, the compressor can be restarted; restarting after locking only after reset.
The phase monitoring of the motor voltage is active 1s after the start of the motor. The correct phase sequence is monitored for 5s, the phase failure is monitored for the total motor running time. If a wrong phase sequence is detected or there is a phase failure, the motor protector will
lock switch off.
After motor stop, the phase monitoring is deactivated for approx. 20s to prevent unintended locking due to brief reverse running of the compressor. For operation in the specified manner, the supply voltage has to be on permanently on the INT69 Y Diagnose. The built-in LED signals the current status of the motor protector (see flash code).
PRODUCT DETAILS |
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Application | Electrical mashines |
Function | Motor temperature static, Motor temperature dynamic, Short circuit, short cycling, Lock-out, Phase monitoring, phase sequence, phase failure |
Supply voltage | AC 24-240V |
Permitted ambient temperature | -30...+70°C |
Temperature measuring circuits: Type |
1-2 AMS sensors in series alternative 1-9 PTC sensors acc. to DIN 44081, DIN 44082 in series |
Temperature measuring circuits: R_25, total |
<1.8kΩ |
Temperature measuring circuits: R_trip |
4.5kΩ ±20% |
Temperature measuring circuits: R_trip, static |
4.5kΩ ±20% |
Temperature measuring circuits: R_reset |
2.75kΩ ±20% |
Temperature measuring circuits: Max. length connection line | 30m |
Short circuit monitoring system PTC | Typically <30Ω |
Motor voltage | 3 AC 50/60Hz 200-690V ±10% |
Phase monitoring: Phase sequence | Active about 1s after motor start for about 5s |
Phase monitoring: Phase failure | Active about 1s after the motor start until the motor stop |
Phase monitoring: Inactive | After motor stop for approx. 20s |
Switching frequency overstepping | 3 switch-offs in 30s |
Operating with frequency converters | Not suitable |
Reset delay: Motor temperature static | 5min ±1min |
Reset delay: Motor temperature dynamic | 5min ±1min, 60min ±12min, Locked |
Reset delay: Switching frequency overstepping | 5min ±1min |
Reset delay: Incorrect phase sequence | Locked |
Reset delay: Phase failure | Locked |
Resetting the lock or the reset delay | Main reset >5s only possible if there is no error current |
Relay: Connection | AC 240V 2.5A C300 at least AC/DC 24V 20mA, AC 240V 2.5A C300 at least AC/DC 100mV 0.5mA |
Relay: Mechanical service life | Approx. 1 million switching cycles |
Interface | Diagnose port (DP) |
Protection class acc. To EN 60529 | IP00 |
Connection type | 6.3mm flat plugs |
Housing material | PA glass-fibre-reinforced |
Mounting | screw mounted |
Dimensions | Refer to dimensions in mm |
Weight | Approx. 200g |
Check base | EN 61000-6-2, EN 61000-6-3 EN 61010-1 Overvoltage category II Pollution level 2 |
Approval | UL File No. E75899 cURus |
Inquiry - INT69 Y Diagnose