Through the application of high-performance embedded charging control unit, CZC9SI series charger could control charging current. Main circuit with parameter-optimized design could provide continuously adjustable charging current, thus meeting various charging process requirements.
Charging controller which is composed by embedded system could control charging process, monitor and record charging data in real time.
With the application of charging controller and main circuit, this charger could charge various batteries through appropriate charging methods, thus achieving best charging effect.
Charging controller which is equipped with multiple charging curves could meet various different charging process requirements. In the meantime, Users could set and save charging curve which has been changed, satisfying customized charging requirements.
This charging controller is equipped with simple & practical man-machine interface. Users could set charging parameters in LCD touch screen. This screen would display charging parameters and charging status, making it easy for users to know charging process in real time.
The charging controller monitors various parameters in the charging process in real time, so that the charger has perfect protection function and ensures the smooth charging process in real time.
Through the application of high-performance embedded charging control unit, CZC9SI series charger could control charging current. Main circuit with parameter-optimized design could provide continuously adjustable charging current, thus meeting various charging process requirements.
Charging controller which is composed by embedded system could control charging process, monitor and record charging data in real time.
With the application of charging controller and main circuit, this charger could charge various batteries through appropriate charging methods, thus achieving best charging effect.
Charging controller which is equipped with multiple charging curves could meet various different charging process requirements. In the meantime, Users could set and save charging curve which has been changed, satisfying customized charging requirements.
This charging controller is equipped with simple & practical man-machine interface. Users could set charging parameters in LCD touch screen. This screen would display charging parameters and charging status, making it easy for users to know charging process in real time.
The charging controller monitors various parameters in the charging process in real time, so that the charger has perfect protection function and ensures the smooth charging process in real time.
Charger main function:
1、Charge Mode:A variety of charging modes can be selected, suitable for different charging processes
2、Man-machine interface. Serial port 4.3 LCD Color touch screen is used to set and display charging parameters.
3、Record of charging data. SD card records the charging process curve and reads it through PC EEPROM would record charging data. It could also be used for data analysis.
On the LCD screen, check the charging process event record.
4、Reserving charging. Set up charging time in advance.
In the night use electricity troughs to charge, it can reduce costs.
5、Power failure protection. The parameters set by users would be recorded persistently. The data would not be lost if and when the power is terminated.
6、Phase sequence of input power. Phase sequence would not be required for power grid. The three phase input, A & B & C could be randomly connected.
7、Special charging function. Function of startup force (0V). Function of battery offline detection. (Once connecting line falls off in the charging process, the charger would shut down automatically.)
8、Protection function. Fault protection and fault warning function.(faults: open circuit、 anti-polarity、over current、over voltage、over heat、power phase shortage, etc.)
Charger main function:
1、Charge Mode:A variety of charging modes can be selected, suitable for different charging processes
2、Man-machine interface. Serial port 4.3 LCD Color touch screen is used to set and display charging parameters.
3、Record of charging data. SD card records the charging process curve and reads it through PC EEPROM would record charging data. It could also be used for data analysis.
On the LCD screen, check the charging process event record.
4、Reserving charging. Set up charging time in advance.
In the night use electricity troughs to charge, it can reduce costs.
5、Power failure protection. The parameters set by users would be recorded persistently. The data would not be lost if and when the power is terminated.
6、Phase sequence of input power. Phase sequence would not be required for power grid. The three phase input, A & B & C could be randomly connected.
7、Special charging function. Function of startup force (0V). Function of battery offline detection. (Once connecting line falls off in the charging process, the charger would shut down automatically.)
8、Protection function. Fault protection and fault warning function.(faults: open circuit、 anti-polarity、over current、over voltage、over heat、power phase shortage, etc.)
Main technical parameters
Model |
Input power |
Limiting conditions |
Rated input power kVA |
Input current A |
Max output current A |
Max output voltage V |
Net weight Kg |
Communication |
Ingress protection |
Dimension |
E24/100 |
1P 220V |
Single phase three wire system(P+N+PE) |
3.1 |
14.1 |
100 |
32 |
36 |
CAN |
IP21 |
450×300×300 |
D24/100
|
3P 220V |
Three phase four wire system(3P+PE) |
3.1 |
8.1 |
581×420×480 |
|||||
3P 380V |
Power must be three phase five wire system(3P+N+PE), need null line “N”
|
3.1 |
14.1 |
581×420×480 |
||||||
3P 400V |
3.1 |
13.4 |
581×420×480 |
|||||||
3P 415V |
3.1 |
12.9 |
581×420×480 |
|||||||
3P 440V |
3.1 |
12.2 |
581×420×480 |
|||||||
E48/50 |
1P 220V |
Single phase three wire system(P+N+PE) |
3.1 |
14.1 |
50 |
64 |
450×300×300 |
|||
D48/50
|
3P 220V |
Three phase four wire system(3P+PE) |
3.1 |
8.1 |
581×420×480 |
|||||
3P 380V |
Power must be three phase five wire system(3P+N+PE), need null line “N”
|
3.1 |
14.1 |
581×420×480 |
||||||
3P 400V |
3.1 |
13.4 |
581×420×480 |
|||||||
3P 415V |
3.1 |
12.9 |
581×420×480 |
|||||||
3P 440V |
3.1 |
12.2 |
581×420×480 |
|||||||
D80/100
|
3P 220V |
Three phase four wire system(3P+PE)
|
10.3 |
27.1 |
100 |
106 |
38 |
731×459×476 |
||
3P 380V |
10.3 |
15.7 |
||||||||
3P 400V |
10.3 |
14.9 |
||||||||
3P 415V |
10.3 |
14.4 |
||||||||
3P 440V |
10.3 |
13.5 |
Main technical parameters
Model |
Input power |
Limiting conditions |
Rated input power kVA |
Input current A |
Max output current A |
Max output voltage V |
Net weight Kg |
Communication |
Ingress protection |
Dimension |
E24/100 |
1P 220V |
Single phase three wire system(P+N+PE) |
3.1 |
14.1 |
100 |
32 |
36 |
CAN |
IP21 |
450×300×300 |
D24/100
|
3P 220V |
Three phase four wire system(3P+PE) |
3.1 |
8.1 |
581×420×480 |
|||||
3P 380V |
Power must be three phase five wire system(3P+N+PE), need null line “N”
|
3.1 |
14.1 |
581×420×480 |
||||||
3P 400V |
3.1 |
13.4 |
581×420×480 |
|||||||
3P 415V |
3.1 |
12.9 |
581×420×480 |
|||||||
3P 440V |
3.1 |
12.2 |
581×420×480 |
|||||||
E48/50 |
1P 220V |
Single phase three wire system(P+N+PE) |
3.1 |
14.1 |
50 |
64 |
450×300×300 |
|||
D48/50
|
3P 220V |
Three phase four wire system(3P+PE) |
3.1 |
8.1 |
581×420×480 |
|||||
3P 380V |
Power must be three phase five wire system(3P+N+PE), need null line “N”
|
3.1 |
14.1 |
581×420×480 |
||||||
3P 400V |
3.1 |
13.4 |
581×420×480 |
|||||||
3P 415V |
3.1 |
12.9 |
581×420×480 |
|||||||
3P 440V |
3.1 |
12.2 |
581×420×480 |
|||||||
D80/100
|
3P 220V |
Three phase four wire system(3P+PE)
|
10.3 |
27.1 |
100 |
106 |
38 |
731×459×476 |
||
3P 380V |
10.3 |
15.7 |
||||||||
3P 400V |
10.3 |
14.9 |
||||||||
3P 415V |
10.3 |
14.4 |
||||||||
3P 440V |
10.3 |
13.5 |
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