• 12V 24V 48V solar controller 30A MPPT for solar energy systems home
  • 12V 24V 48V solar controller 30A MPPT for solar energy systems home
  • 12V 24V 48V solar controller 30A MPPT for solar energy systems home

12V 24V 48V solar controller 30A MPPT for solar energy systems home

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12V 24V 48V solar controller 30A MPPT for solar energy systems home pictures & photos
12V 24V 48V solar controller 30A MPPT for solar energy systems home
US $76 / Piece
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Basic Info.

Model NO.
JN-MPPT-A
Specification
Normal, 280*225*114 mm
Currrent Rating
10A
System Voltage
12V,24V,48V( Automatic Identify)
Photovoltaic Panel Maximum Input Voltage
20V-100V(12V System)
Rated Operation Current
10A
Photovoltaic Panel Maximum Input Power
120W/12A
MPPT Efficiency
99.5%
Conversion Efficiency
96%
Over Charging
16-17V
Balaced Charging Voltage
15-15.5V
Boost Charge
14-15V
Floating Charge
13.2-14V
Light Control on Voltage
5-11V 5
Light Control off Voltage
5-11V 6
Light Control Delay
10 Min
Temperature Compensation
0-44
Transport Package
Standard Carton Package for Export
Trademark
JNGE
Origin
China
HS Code
8501610000
Production Capacity
3000 PCS/ Month

Product Description

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 12V 24V 48V solar controller 30A MPPT for solar energy systems home

I.  Safety instructions:

1.1 Safety signs

The following safety symbols may appear in this manual and their meanings are as follows::
safety symbols  signification
  danger Indicates that if the safety warning is ignored, there is a serious accident that may lead to personal injury.

  warning
Indicates that if safety warnings are ignored, there is a risk of serious injury, serious equipment damage or major business interruption.

  Notice
This means that if safety warnings are ignored, there is a risk of moderate injury, moderate equipment damage or partial business interruption.

   insturction
Indicates that the content is additional information for the body.

For electrical and electronic equipment, safety involves the entire process of installation, commissioning, operation and maintenance. Therefore, incorrect use or misuse will endanger the life and personal safety of the operator or a third party and the safety of the equipment. In order to avoid personal injury and damage to the equipment, all safety, warnings and cautions such as the following are strictly observed during operation and maintenance.

1.2 Safety instructions

  Warning!
All installation operations on the MPPT controller must be performed by a qualified technician. Professional and technical personnel must undergo special training, complete the manual and understand the safety related to the operation.
If a non-professional person performs installation operations and causes personal injury, the company will not be responsible.
Failure to install and operate the controller in accordance with the instructions in this manual will result in damage to the controller and will not be covered by our warranty.
Before installion
 Notice!
When receiving the product, first check the MPPT series controller for damage during transportation. If you find any problem, please contact our company or the transportation company immediately.
installing
Before installing the MPPT controller, make sure that the MPPT controller has not been electrically connected and powered.
warning!
Damage to the MPPT controller caused by the following conditions, or other damages will not be covered by our warranty.
When configuring the PV array, ensure that the maximum short-circuit current on the DC side is within the allowable range of the MPPT controller, otherwise the MPPT may be irreparable.
When configuring the PV array, make sure that the open circuit voltage of each PV string does not exceed the maximum input range of the MPPT controller, otherwise the MPPT controller will be irreparable.
The selected controller charging current should not be greater than 0.3 times the battery capacity. If it is greater than the battery will be damaged or the battery life will be reduced.
Improper selection of the MPPT controller installation environment will affect machine performance and may cause machine damage.
Do not install the MPPT controller in a flammable or explosive place or in a place where flammable or explosive materials are stored.
Do not install the MPPT controller in an explosive location.
Do not install the MPPT controller in a location where it may be exposed to lightning strikes.
Do not install the MPPT controller in a place with a lot of salt spray.
Good ventilation is required when the MPPT controller is in operation.
The MPPT controller needs to be installed upright and ensure that the air duct is unobstructed.
 warning!
Always disconnect the PV array, battery, load, etc. (circuit breaker) or fuse before all devices are fully connected.
Prevent water from entering the inside of the controller.
 note!
All electrical installations must comply with local and national electrical installation standards.
To ensure safe operation, proper grounding, proper conductor size and the necessary short-circuit protection are required.
The connection cable must be selected to the appropriate specifications, and the connection is secure and well insulated.
After installation, check that all wiring connections are tight to avoid the risk of heat build-up due to virtual connections.

In Operation
Danger!
Do not open the machine cover while the MPPT is powered!

Repair  
 Danger!
Repair work must be carried out by professional service technicians.
The machine needs to be powered off before maintenance, and it can be disassembled after waiting for 5 minutes after power off.


II  Product Features
  1. Overview
Thank you for choosing JN-MPPT-A, JN-MPPT-B step-down solar charge controller. Based on multi-phase synchronous rectification technology and common anode design, this series of products adopts advanced high-speed processor and MPPT control algorithm, featuring high response speed, high reliability and high industrial standard.
The MPPT control algorithm used in this series can quickly track the maximum power point of the PV array in any environment and obtain the maximum energy of the solar panel in real time. The multi-phase synchronous rectification technology can guarantee the pole in any charging power environment. High conversion efficiency, compared with most of the current BUCK, greatly improve the energy efficiency of the solar system; the controller can be connected to the PC host computer through RS485, support WIFI module and GPRS module to expand APP cloud monitoring, can be applied to communication base stations, Household systems, street lighting systems and field monitoring.
  1. Product features
  1. Advanced multi-phase synchronous rectification technology also has high conversion efficiency in low-power charging environment.
  2. has an ultra-wide PV array operating voltage range.
  3. The system adopts a common negative circuit design to make the system work more stable and reliable.
  4. l Advanced MPPT maximum power point tracking technology, the tracking efficiency is not less than 99.5%, compared with the ordinary PWM algorithm, the efficiency is increased by 15 to 20%.
  5. Using high-quality imported components and advanced power conversion circuit, the maximum conversion efficiency can reach over 98%, the full load efficiency can reach 97%, and a variety of tracking algorithms can be combined to quickly track the maximum power point.
  6. Three-stage charging mode: MPPT-increase charging-floating.
  7. 12V/24V/48V battery system automatic identification function.
  8. RS485 communication can provide communication protocol to facilitate unified management and secondary development for customers.
  9. You can view and set the controller operating parameters through the PC host computer and mobile phone APP. For details, refer to the host computer and APP manual (optional).
  10. lWith battery temperature compensation.
  11. It has comprehensive protection functions such as overcharge, over discharge, over temperature, overload, reverse connection and so on.
  12. Compatible with lead-acid batteries, ternary lithium batteries, lithium iron phosphate and other battery types.
  1.   Product appearance
3.1 Appearance
12V 24V 48V solar controller 30A MPPT for solar energy systems home


Pic 2-product dimension

Table2-1:Product weight and size
Parameter name Weight and size
Model no. JN-MPPT-A JN-MPPT-B  
weight(kg) 2.0 5.95 For reference only
Size L*D*H(mm) 185*195*81 280*224*115  


3.2 Interface definition
12V 24V 48V solar controller 30A MPPT for solar energy systems home

PIC 2-2 Product interface definition

Table 2-2 Product JN-MPPT-A interface definition(from left to right)
 
No. name Function Instruction
1 PV+ Photovoltai array positive PV array input
2 PV- Photovoltaic array negative
3 BAT+ Battery positive Battery pack terminal
4 BAT- Battery negative
5 LOAD+ DC load positive DC load output
6 LOAD- DC load negative
7 RS485 Communication port monitoring of host computer, WIFI and GPRS communication

Table 2-3 Product JN-MPPT-B interface definition(from left to right)
 
No. name Function Instruction
1 TEMP Temperature detection External temperature compensation for battery
2 PV+ Photovoltai array positive PV array input
3 PV- Photovoltaic array negative
4 BAT+ Battery positive Battery pack terminal
5 BAT- Battery negative
6 LOAD+ DC load positive DC load output
7 LOAD- DC load negative
8 RS485 Communication port monitoring of host computer, WIFI and GPRS communication


III.  Installation Instruction
1. installation precautions
  1. You must read the entire installation chapter and familiarize yourself with the installation steps before installation.
  2.  Be very careful when installing the battery. For the installation of the open lead-acid battery, wear a protective mirror. When it comes into contact with the battery acid, please rinse it with clean water.
  3.  Avoid placing metal objects near the battery to prevent the battery from short-circuiting.
  4. Acid gas may be generated when the battery is being charged to ensure good ventilation around the battery.
  5. Please install indoors and install outdoors to avoid direct sunlight and rain.
  6. The connection point of the virtual connection and the corroded wire may cause great heat to melt the insulation of the wire, ignite the surrounding materials, and even cause fire, so ensure that the connectors are tightened, and the wires are preferably fastened with the cable tie. To avoid loose wires when the application is moving and the wires are shaken.
  7. The installed battery pack should match the controller charging voltage and the recommended charging current range.
 Danger!
Explosion hazard! Never install the controller and battery in the same confined space! Also do not install in a confined space where battery gas may collect.


2. Installation instructions
Step 1: Choose the installation location
Avoid installing the controller in direct sunlight, high temperatures, and easy access to water, and ensure adequate ventilation around the controller.
Step 2: Unpacking and checking
  1. Check the outer packaging for damage or deformation;
  2. Unpacking inspection: one controller, one manual, one attachment, etc.;
  3. Check the appearance of the mainframe and the accessories are in good condition
If you are concerned about the above abnormal situation, please contact us.
Step 3: Fixed controller
Install the mounting ear fittings on the top of the top of the cabinet at the reserved installation position. Fix the controller to the mounting platform or cabinet mounting bracket with screws through the mounting ears. Allow sufficient ventilation and cooling space around the installation.

12V 24V 48V solar controller 30A MPPT for solar energy systems home


Pic 3-1 Reserved space map around the equipment installation

3.Wiring:
   
Note: For installation safety, we recommend a wiring sequence.
Note: The MPPT series controller is a common negative design.
Caution: Do not connect the electrical equipment that exceeds the surge power of the controller to the load terminal to prevent damage to the controller!         
 

Warning: When you need to move, make sure that all the wirings are fixed. Because the virtual connection points may cause heat to accumulate, it may cause fire in severe cases;

Step 1: Connect the battery, PV module, load, temperature sensor, monitoring background.
Connect the battery, load, PV module, temperature sensor, monitoring background (host computer / WIFI module / GPRS module) in turn, disconnect all switches during the wiring process, pay attention to distinguish between positive and negative
Before connecting the battery, make sure the battery is in a normal state to ensure normal operation of the system.egative cable access.

Warning: Do not connect the PV panel to the battery terminal of the controller, as it will burn out the controller.
It is strictly forbidden to make the battery positive or negative, extremely short circuit, otherwise it will cause fire or explosion hazard, please be careful.

Step 2:Wiring diagram
         Lock the cable to the binding post through the mounting hole on the lower side of the cabinet.
     


12V 24V 48V solar controller 30A MPPT for solar energy systems home


                                                           Pic 3-2 product wiring


Description: The monitoring background supports the PC host computer, supports the WIFI module and the GPRS module to expand the APP cloud monitoring (optional). For details, see the PC host computer and the APP user manual;

          Caution!
1. Danger of electric shock! It is forbidden to touch the live parts of high voltage photovoltaic modules with bare hands;
2. Make sure that the solar array voltage in the system does not exceed the maximum input voltage range of the controller;
3. The system needs to be connected to the inverter. Please connect the inverter directly to the battery. Do not connect to the load end of the controller.

Step 3: Check the connection
Check that all wiring polarity is correct and the terminals are locked;
Step 4: Power On Sequence
Recommended opening and closing sequence: sequentially close the battery pack switch, photovoltaic switch or load switch;

4.Photovoltaic array requirements
 
  Photovoltaic electrical parameters
MODEL JN-MPPT-A JN-MPPT-B  
PV array open circuit voltage range 20V~100V(12Vsystem)
40V~145V(24Vsystem)
80V~145V(48Vsystem)

5. Cable selection requirements

The following table shows the diameter of the copper wire according to the current level. The actual cable size is greater than or equal to the data in the table::
Table 3-2 Cable size
Description: The monitoring background supports the PC host computer, supports the WIFI module and the GPRS module to expand the APP cloud monitoring (optional). For details, see the PC host computer and the APP user manual;

          Caution!
1. Danger of electric shock! It is forbidden to touch the live parts of high voltage photovoltaic modules with bare hands;
2. Make sure that the solar array voltage in the system does not exceed the maximum input voltage range of the controller;
3. The system needs to be connected to the inverter. Please connect the inverter directly to the battery. Do not connect to the load end of the controller.

Step 3: Check the connection
Check that all wiring polarity is correct and the terminals are locked;
Step 4: Power On Sequence
Recommended opening and closing sequence: sequentially close the battery pack switch, photovoltaic switch or load switch;

4.Photovoltaic array requirements
 
  Photovoltaic electrical parameters
MODEL JN-MPPT-A JN-MPPT-B  
PV array open circuit voltage range 20V~100V(12Vsystem)
40V~145V(24Vsystem)
80V~145V(48Vsystem)

5. Cable selection requirements

The following table shows the diameter of the copper wire according to the current level. The actual cable size is greater than or equal to the data in the table::
Table 3-2 Cable size
  Cable size remark
Curret level /A 30 40 50 60  
Wire diamaeter/mm2 6 8 10 12  
AWG 9 8 7 6  

IV  Operate instruction


Pic4-1   Display panel image
4.1,Indicator function
The LED indicators on the display panel are fault light (red), charge indicator (yellow), and load indicator (green). The functions are defined as shown in the following table.

Table 4-1 Indicator definition
  Indicator light status definition Remarks
1 Fault indicator (red) Extinguished Working normally, no fault  
2 Constantly light on error  
3 Charging indicator (yellow) Light off No charging  
4 Light on MPPT charging  
5 Slow flashing Floating charge  
6 Fast flashing Boost charging  
7 Output indicator (green) Light on Output normally  
8 Light off Light control, timing light normally off output  
9 Slow flashing Battery over discharge off load  
       


4.2,Setting Button
Table 4-2 Button function
Button Function Remarks
SET Function 1: Main menu key, function 2: parameter setting save key;  
ESC Exit the setup interface button;  
UP Function 1: display page on page display, function 2: parameter setting plus;  
DOWN Function 1: Display page under parameter, function 2: parameter setting minus;  
UP and DOWN buttion Switching function:


Pic 4-2  pic4-2  UP and DOWMButton display interface switching diagram
4.3,LCD display 
The display of the controller adopts the segment code screen display mode, and the display layout diagram is as

Pic 4-3  LCD Display
Table 4-3 Icon function introduction
Icon name definition Function Description
  day The icon lights up to indicate daylight
  night The icon lights up to indicate the night
  Solar panel The icon lights up to check the PV array access
  battery The icon lights up to indicate battery access and the inside indicates battery voltage
  load The load is lit to indicate that the load has an output
  Status icon The icon lights up and scrolls to indicate the chargevstatus and discharge status, respectively.
  Failure icon The icon flashes to indicate that the system has a fault condition.

Table 4-4  Field function introduction
Field Name definition Function Description
Vbattery Battery voltage The field lights up and the current battery voltage is displayed in the data display area.
VPV Solar panel voltage The field lights up and the current PV panel voltage is displayed in the data display area.
 I charge Charging current The field lights up and the current battery charging current is displayed in the data display area.
 I load Discharging current The field lights up and the current battery discharge current is displayed in the data display area.
Under Over discharge voltage The field lights up to set the battery over-discharge voltage. When the battery is under voltage, this field flashes.
Under-R Over  discharge return The field is lit and the battery over-discharge return voltage can be set.
OVD Over charging volatge The field lights up to set the battery overcharge voltage. This field flashes when the battery is overcharged.
OVD-R Over charging return The field is lit and the battery overcharge return voltage can be set.
Float Float charge voltage The field lights up to set the battery float voltage, and the field flashes during the float phase.
BCV Boost charging The field lights up to set the battery to raise the charging voltage, and the field flashes during the boost charging phase.
MPPT Quick charging Field flicker indicating the current state of fast charging at MPPT
Time Time control period 1 setting The field lights up, and the first time period can be set (the light control lights up for the first time). When the 24 is set, the controller is the household mode. The default is 24 hours.
Time1 Time control period 2 setting The field lights up. In the street light mode, the second time period can be set (the light control time is after the light control is turned on).
Time2 Time control period 3 setting The field lights up. In the street light mode, the third time period can be set (the light control is illuminated for the second time).
L-CON-V Light control voltage setting The field is lit, the first digit of the display area is displayed 1, and the light control can be set to turn on (light control lighting) voltage; after the light control is turned on, the first digit is displayed 2, and the light control can be set to turn off (lighting off)
MPPT MPPT charging This field flashes during the MPPT charging phase.
ERROR ERROR This field lights up when there is a fault
 

4.4 Setup operation

4.4.1,General parameter settings:
Press the set (set) button in the standby mode to enter the undervoltage setting interface. Refer to the following figure for the setting process. Press the (ESC) button on any interface to exit the setting interface and return to the standby interface. Other general parameter setting items are the same as the undervoltage setting.
12V 24V 48V solar controller 30A MPPT for solar energy systems home


              Pic 4-4  General parameter setting--over-discharge voltage point setting diagram

4.4.2,Light control parameter setting

12V 24V 48V solar controller 30A MPPT for solar energy systems home


                                       Pic 4-5  Light control parameter setting diagram

4.4.3, Time control parameter setting
       12V 24V 48V solar controller 30A MPPT for solar energy systems home

                                          PIC 4-6 Time control parameter setting diagram


4.4.4, Combination button function settings:
1.  Restore factory settings: Press the SET and DOWN buttons simultaneously for 3 seconds in standby mode, the system will restore the factory settings;
2.  ID address modification: Press the SET and UP buttons simultaneously for 3 seconds in the standby state, and display the ID in the first two digits of the data in the display area. Press the UP or DOWN button at this time. Set the system ID (address).

4.4.5, For the setting method of connecting the PC to PC or APP (WIFI or GPRS mode), please refer to the corresponding PC manual and APP manual respectively;

   Instruction
The PC host computer or APP (WIFI or GPRS mode) is an optional accessory. The device can only use one mode for single communication, and cannot use several communication modes at the same time!

V.  Device parameters

   5.1  Protection function

Table 5-1: Protection function
Protection function instruction
PV over voltage protection When the PV array charging voltage exceeds the controller's rated input voltage range, charging will stop.
Battery polarity reverse connection When the polarity of the battery is reversed, the controller will not work and will not be damaged. After correcting the wiring error, re-open the opportunity to continue normal operation.
Battery over discharge protection When the battery voltage is lower than the set undervoltage value, the discharge of the battery will be automatically stopped to prevent the battery from being over-discharged and damaged.
Battery overload protection When the controller output current is higher  than the set value, the load output will be automatically stopped to prevent the battery from being over-discharged and damaged.
Battery over volatge protection When the battery voltage reaches the overvoltage protection setting value, the battery will be automatically stopped to prevent the battery from being overcharged and damaged.
Night anti-reverse protection At night, since the battery voltage is higher than the voltage of the photovoltaic module, the automatic protection prevents the battery voltage from being discharged through the photovoltaic module;
Equipment overheat protection The controller has its own temperature sensor. When the temperature is higher than the set value, the charging will stop. When the temperature is lowered, it will automatically start to work.
High voltage surge This controller can only protect high-voltage surges with low energy. In areas with frequent lightning, it is recommended to install an external lightning arrester.
 

5.2  Fault Resolution

If the following symptoms occur, please check and Fault resolution  as follows::
Table 5-2 Fault resolution   
ERROR Indicator status and alarm icon possible reason Solution
Array overvoltage Red light, icon flashes More PV arrays in series Disconnect the PV array, reduce the number of PV arrays connected in series, and ensure that the PV array open circuit voltage does not exceed the set value in the "Table 3-1 PV Electrical Parameters" table;
Battery overvoltage (overcharge) Red light on,OVDandflashes 1. The controller overvoltage protection point is lower than the highest charging range;
2. The battery is aging or over-discharged;
3. Large dynamic changes in load;
1. Reset the battery overvoltage protection point through the device button or PC host computer or APP;
2. The battery needs to be replaced after aging;
3. Reduce large dynamic changes in load;
Battery undervoltage (over discharge) Under andflashes Battery voltage value is lower than the undervoltage protection setting 1. Reduce or disconnect the load. If the alarm is released, the battery voltage returns to normal, indicating that the load power is too large or the battery voltage and capacity are low. It is easy to cause undervoltage protection with heavy load;
2. Disconnect the load controller and still alarm, the battery voltage does not return to the over-discharge recovery setting value, and the battery pack needs to be charged by PV or other means, so that the fault can be released after the battery pack voltage reaches the recovery point set value.
3. Over-discharge requires manual setting of battery voltage level.
The indicator light is off and the display is not displayed. Battery voltage is lower than equipment start-up voltage When the voltage at both ends of the battery is below 7V; Recharge the battery pack by other means up to 8V or more;
Heat sink overheating Red light on, flashes High ambient temperature, poor heat dissipation and poor natural ventilation Check equipment installation environment, remove equipment peripheral debris, ensure natural ventilation smooth;
Charging current Red light on,Ichargeflashes Charging overcurrent protection check for abnormal current detection and malfunction If you restart it several times, if you can't solve it, you need to go back to the factory for repair;
Overloading Red light on,flashes Load power is too large 1. Reduce the load power;
2. Restart and release the fault;
3. Without excessive sensibility and capacitive load;
Remark: The above fault phenomenon can not be turned on except the battery under voltage, other faults can refer to the fault information through the PC background or mobile APP;

5.3 system maintenance

In order to maintain optimal long-term performance, it is recommended to perform the following checks twice a year.
(1)Verify that the controller is securely installed in a clean, dry environment.
(2)Verify that the airflow around the controller is not blocked and remove any dirt or debris
(3)Check that all exposed wires are damaged by the sun, friction with other objects around them, dryness, insect or rodent damage. Repair or replace the wires if necessary.
(4)Tighten the screws of all electrical connection terminals as recommended.
( 5 ) Check the grounding of all parts of the system and verify that all grounding conductors are securely and properly grounded.
( 6 )  Check all terminals for corrosion, insulation damage, high temperature or signs of burning, discoloration, and tighten the terminal screws to the recommended torque.
( 7 ) Check for dirt, nesting insects and corrosion, and clean as required.
( 8 )  If the arrester has failed, replace the failed arrester in time to prevent lightning damage to the controller or even other equipment of the user.
 

Note: Danger of electric shock!
When doing this, you must ensure that all power to the controller has been disconnected before performing the appropriate checks or operations!
 
VI Warranty commitment 
The MPPT controller has a one-year free warranty and the warranty period begins on the date of sale.
Repair Procedures Before requesting repairs, check the user manual to determine if the controller does have a problem. If this is not possible, return the problem controller to the company, prepay the shipping fee, and provide date and location information related to the purchase. In order to enjoy the fast return warranty service, the returned product must indicate the model, serial number and the detailed cause of the fault, as well as the type of components in the system and related parameters, battery and system load conditions; this information is very important for quickly solving your repair requirements. .
If the controller is damaged due to improper use of the customer or failure to follow this manual, the company is not responsible for it! The maintenance procedure is carried out in accordance with the above procedure and only the maintenance cost is charged.

Disclaimer: The company reserves the right to change products, product updates without prior notice!
 Version number: V1.0


VII  Device parameters
System parameter table         
parameter name Parameter value(and adjustable range)
model JN-MPPT-A JN-MPPT-B
Current level(A) 20 30 40 30 40 50 60
Max charge current(A) 20 30 40 30 40 50 60
PV max input power(12V)(W) 250 400 500 400 500 600 750
PV max input power(24V)(W) 500 800 1000 800 1000 1200 1500
PV max input power(48V)(W) 1000 1600 2000 1600 2000 2400 3000
Max output current (A) 10 15 20 15 20 25 30
Battery system voltage range(V) 12V system DC9V-DC16V
24V system DC18V-DC32V
48V system DC42V-DC60V
Solar panel open circuit input voltage(V) 20V~100V(12Vsystem)
40V~145V(24Vsystem)
80V~145V(48Vsystem)
MPPT efficiency >99.5%
Conversion efficiency >98%
Operating mode The default is the household mode 24H


Battery parameter reference table:
 
Lead-acid battery
System rate voltage(v) 12V sysetem(1in series) 24V system(2 in series) 48V system(4in series) 12V default value
Over charge voltage (v) 13~17V 26~34V 52~68V 15.5V
Over charge voltage return( v) 13~17V 26~34V 52~68V 15V
Charging limit voltage(v) 9~15V 18~30V 36~60V 14.9V
Boost chargeingv(v) 9~15V 18~30V 36~60V 14.4V
Boost charging return(v) 9~15V 18~30V 36~60V 13.9V
Float voltage(v) 9~15V 18~30V 36~60V 13.8V
Over discharging  voltage(v) 7~13V 14~26V 28~52V 10.8V
Over discharge return (v) 9~15V 18~30V 36~60V 13.1V
Ternary lithium battery (single section 3.7V)
System rate voltage(v) 12V system(default 3in serire) 24v system(default 6in series) 48Vsystem(default 12in series) 3 in series default value
Over charge(v) 10.5~15V 21~30V 42~60V 13.5V
Over charge return(v) 10.5~15V 21~30V 42~60V 12.6V
Charging limit voltagev(v) 10.5~15V 21~30V 42~60V 12.6V
Boost charging voltage(v) 10.5~15V 21~30V 42~60V 12.3V
Boost charging return (v) 10.5~15V 21~30V 42~60V 12V
Floating voltage (v) 10.5~15V 21~30V 42~60V 12.3V
Over discharging (v) 6~12V 12~24V 24~48V 9.3V
Over discharging return (v) 6~13.5V 12~27V 24~54V 10.5V
Lithium LIFEPO4(single section 3.2V)
System rate voltage(v) 12Vsyste(default 3 in  series) 24 system(default 6in series) 48V system(default 12 in series) 3 in series default value
Over charge(v)(v) 9~12V 18~24V 36~48V 11.7V
Over charge return(v) 9~12V 18~24V 36~48V 11.1V
Charging limit voltagev(v) 9~12V 18~24V 36~48V 11.1V
Boost charging voltage(v) 9~12V 18~24V 36~48V 10.8V
Boost charging return (v) 9~12V 18~24V 36~48V 10.2V
Floating voltage (v) 9~12V 18~24V 36~48V 10.8V
Over discharging (v) 6~9V 12~18V 24~36V 8.4V
Over discharging return (v) 6~12V 12~24V 24~48V 9.6V
Save temperature(ºC) -40ºC~80ºC
humidity(ºC) 10% ~ 90%no condensation
VIII  Installation Dimension   

12V 24V 48V solar controller 30A MPPT for solar energy systems home

                                                            Pic 8-1   JN-MPPT-A Installation  dimension


              
12V 24V 48V solar controller 30A MPPT for solar energy systems home


                              Pic 8-3  MPPT-B installation dimension


 

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12V 24V 48V solar controller 30A MPPT for solar energy systems home
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Year of Establishment
2010-04-29
Management System Certification
ISO9001:2015, ISO14001:2015, ISO 45001:2018
OEM/ODM Availability
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