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: U min->Switch to 1.Batt.Bank (0=off)



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51: U min->Switch to 1.Batt.Bank (0=off)


If you use several Battery-Banks and it should be switched back to the Main-Battery in case of low Battery, you can define this Battery-Voltage in here. Set this value to "0" if you do not use the function.

52: Select Battery Bank manual
The Battery-Banks can be switched over manually as well. This can be done in the Basic-Menu with Program-Switch at Position 11. Press key '#' to select a new Battery-Bank. The Automatic Switch over to the next Battery-Bank is disabled in this Mode.

53: Output (0-16) Battery full->Device on

Select according Output-Nr (Relays Outputs or MOSFET); Preset: 3


See Appendix for more Information about the Outputs
54: Correction factor battery bank 2

Here a Correction factor (e.g. 1,03) for the current Display battery bank 2 can be Input. This value is multiplied by the Display:



Setup: Set Value to 1,0. Then measure the current and compare with the Display

Example: Display is 5,0 A; measured value is 4.5 A; Korrektur-Faktor = 4,5A / 5A = 0,9


55: Correction river battery bank 3

Here a Korrektur-Faktor (e.g. 1,03) for the Display of battery bank 3 can be Input. This value is multiplied with the Display (see Parameter 54)


56: Correction solar current for not PWM charging

Here a correction-factor (e.g. 1,03) for the solar current Display can be Input if no PWM charging is active, that means if the voltage is less than 12,8V/25,6V. This is sometimes necessary if the normal current correction by parameter 48, channel 14 is not generating satisfying Display.

This value is multiplied with the Display.

Example: Set Value to 1,0. Then measure the current and compare with the Display Display is 5,0 A; measured value is 4.5 A; Correction-factor = 4,5A / 5A = 0,9


57: Output (0-16) Start Motor: Select according Output-Nr (Relays Outputs or MOSFET); Preset: 3

List of Outputs see Appendix



58: Output (0-16) Stop Motor: Select according Output-Nr (Relays Outputs or MOSFET); Preset: 4

List of Outputs see Appendix



59: Output (0-16) Generator Load: Select according Output-Nr (Relays Outputs or MOSFET); Preset: 2

List of Outputs see Appendix


60: Output (0-16) Battery-Bank 1
Select according Output-Nr (Relays Outputs or MOSFET) for Battery-Bank 1, if you have several Battery-Banks; If you have only one Battery-Bank, set this value to "0"; Preset: 0
61: Output (0-16) Battery-Bank 2
Select according Output-Nr (Relays Outputs or MOSFET) for Battery-Bank 2, if you have several Battery-Banks; If you have only one Battery-Bank, set this value to "0"; Preset: 0


62: Output (0-16) Battery-Bank 3
Select according Output-Nr (Relays Outputs or MOSFET) for Battery-Bank 3, if you have several Battery-Banks; If you have only one Battery-Bank, set this value to "0"; Preset: 0
63: High Current Pulses on/off
80% of the Batteries die due to degradation of the Plates. The University of Vienna, Austria and NASA developed a Device for drastically reducing this effect by applying short high-current Pulses to the Battery. Here you can enable and disable the High Current Pulses to extend the lifetime of the Battery, if your Device is shipped with this Option. These Pulses do not need much Energy.

64 : Network: off / Master / Slave (Connect several Units by a Bus)


You can let run several Metamorphosis synchronized with this Function. This enables a synchronized charging of big Battery-Banks, what is otherwise not easy to achieve. The Devices have to be wired accordingly (see below). There is a Master-Charge-Controller (Set Parameter 64 to 1) and one ore more Slave charge-Controller (Set Parameter 64 to 2). If the cable is broken, the Unit switches automatic to self-controlled charging.
You can control the Bus in Menu 7, Program-Switch to 5 (for Master) and 6 (for Slave). These values have to be the same after some time.
Electrical connection: for Synchronizing more Units connect Terminal 84/85/86 to next Unit Terminal 84/85/86 etc.


65: Correction KWh (0,0….9,9)
(for the Energy-Counter)

Factor for to correct the KWh-Value of the Energy counter; It means the quantity per Impulse. Preset: " 1.0 ".


66: Alarm at Start Generator (0/1)

If there is no Automatic Start Generator a Alarm can be activated in here, if the Generator should be started; Preset: " 0 " = off



69: Correction Time


Here you can Input a correction-value for the Time in second if necessary. This value will be corrected once a day at midnight (Preset: 50).
70: Standard-Settings
If you set this value to ”1” the Standard-Values will be loaded for all Parameters. So your specific Settings will be overwritten. But you can backup your Parameter with the MP_Remote-Software to the PC.


71: Correction Cable length
Having long cables from Battery to charge-controller (more than 5 m) the cable length can be Setup here to get a more exact battery voltage measurement. With “0” the function is deactivated.
72: Correction cable diameter

If a correction of the battery voltage by Parameter 71 was done, the cable diameter must be Input in here (in mm2).


73: NiCd or NimH

Here you specify which Type of Accumulator you do have, NiCd (= 0) or NimH (=1). This corresponds to the switch-off-Voltage.



74: Charge NiCd / NimH by Power-Mosfet

Relevant if NiCd or NimH-Type Batteries are the Main-Battery. In this case you can charge the NiCd or NimH-Accumulators with a high current using the Power-Mosfet-Transistor instead of charging Lead-Batteries.

In this Mode the Temperature-Sensor has to be close to the Batteries as a switch-off criteria.

NiCd / NimH-Batteries are charged in a different way as lead-Batteries: After Start of charging there are different criteria for finish loading: After a max. Time, max. Voltage, Delta U-Change, max. Temperature, Delta-Temperature-Detection). After that charging starts again if the voltage drops below a certain value.



75: Sending of logged Data to LogView

Logged Data from Analog-Inputs can be uploaded to Logview. Switch this value to „1“ to upload. After Transfer of all data this value is again „0“. Of course LogView has to be started and as Device Metamor_Solar_Flash has to be selected.


Hint The prepared Logview-file Metamor_Solar_Flash works only with two values, Battery-voltage and Solar Current and Parameter 44 has to be set to “2”. Otherwise the File Metamor_Solar_Flash_e at Logview has to be modified. This can be done by the OpenFormatEditor at

"C:\Program Files\LogView 2\OpenFormat\OpenFormatEditor.exe" erfolgen (also in the Programm-Group).


76: Country-Code

For SMS sending you need the correct Telephone-country-Code of your country in here. For example for Germany you have to enter 49 in here.


76: bistable Relay

It is possible to use bistable Relay (Relay that use only power when switched, that means it reduces the Power-Consumption a lot).

Just write the number of the relay which is shipped a bistable Relay (this value is preset!)

For example 234 means Relay 2 and 3 and 4 is bistable


78: Phase Loop Control

By this Parameter you can activate the Phase-Loop-Control-Function. With that you can realize an Analogue Controller with a Phase-Loop-Control for 110V/220V Outputs.


Setting of the Parameter is done by the Universal-Modul Type 50-59.

79: Message if the Battery is full

You can generate a Alarm if the battery is full. This can be usefull if you have the the Option of several Battery-Banks.



80-83: Output X switches Output Y

Here you can activate another Output activated by one Output. With that you can increase the Power for the Output by using several Relay or if one Output is not enough for the function.

You have to Input the Data like this. First the Source-Output, then the Target-Output with a leading “0” if the Output-number is < 10 for example 06 for Output 6

Example: 1406 means Output 14 switches at the same time Output 6

411 means Output 4 switches at the same time Output 11



Note: Not for all Outputs the Hardware is available. But they can be used as virtual Output for other functions in the Universal-Module.

See Attachment for the Number of the Output
96: Number of radio switch

It is possible to switch on Devices by a radio-switch (12V / 24V / 220V). Here the number of radio switch can be setup.Select Output 31.38.


Note: By using 8 switches some functions can then no longer be used.


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