Parameters
1 Parameters reference
Use the table below to browse the available settings parameters across supported controller versions. The data is currently backed by the extended settings payload and will be expanded with version-specific files over time.
Showing 142 parameters for Latest (extended). The table is now version-aware and can be expanded with version-specific data files later.
| Key | Label | Section | Group | Description | Type | Default | Mode |
|---|---|---|---|---|---|---|---|
| WebUINetworkUserEnabled_network | Allow 'user' to configure network | Network | Config | If switched 'On' the 'user' account is able to configure parameter in this group 'Network'. If 'Off' this group 'Network' is invisible for 'user' account. | enum | 1 | rw |
| ConfigUserEnabled_network | ConfigUserEnabled_network | Network | Config | enum | 1 | ro | |
| WebUIEnabledGSM_modem | Show Modem Configuration | Network | GSM | Show or hide the modem configuration. | enum | 0 | rw |
| APN_modem | Access Point Name (APN) | Network | GSM | Access Point Name of the mobile network to be used when establishing connections to the backend system via the built-in modem. | string | rw | |
| APNUsername_modem | APN Username | Network | GSM | Username to be used for authenticating with the Access Point of the mobile network for connecting with the backend system. | string | rw | |
| APNPassword_modem | APN Password | Network | GSM | Password to be used for authenticating with the Access Point of the mobile network for connecting with the backend system. | password | rw | |
| SIMCardPinNumber_modem | SIM PIN | Network | GSM | PIN number that should be used to unlock the SIM card. This number is only used if the SIM card requires a PIN number. | password | rw | |
| NetworkOperSelMode_modem | Network selection mode | Network | GSM | In Automatic mode the modem chooses the operator. In manual mode the operator specified in requested operator name is used. In Manual/Auto, if manual selection fails, automatic mode is used. | enum | 0 | rw |
| NetworkType_modem | Modem Access Technology | Network | GSM | The technology to be used to access the network 2G (GSM), 3G (UTRAN) or 4G (LTE). In auto mode the modem will choose the technology. | enum | 0 | rw |
| ReqNetworkOperator_modem | Requested Network operator | Network | GSM | The name of the network operator to be used in manual 'Network selection mode'. | string | rw | |
| NetworkOperNameFormat_modem | Network operator name format | Network | GSM | Indicates if the operator name format is alphanumeric or numeric. Long alphanumeric format can be up to 16 characters and short format up to 8 characters (refer to GSM MoU SE.13). | enum | 1 | rw |
| WANRouter_tcpip | WAN router | Network | GSM | Enables access from LAN interfaces (Ethernet/WLAN/USB) to WAN (GSM) interface. This will also enable the DNS forwarder. | enum | 0 | rw |
| GSM_PPP_MTU_modem | MTU | Network | GSM | Maximum transmission unit size for GSM connections (in bytes)(valid value range: 68 - 1492). | string | rw | |
| WebUIEnabledLAN_tcpip | Show LAN Configuration | Network | LAN | Show or hide the LAN configuration. | enum | 0 | rw |
| NetworkConfig_mode_tcpip | Mode for ethernet configuration | Network | LAN | Mode for ethernet configuration to be used for the ChargePoint. 'Auto' uses DHCP to configure the ChargePoint's ethernet connection; 'Static' uses the addresses as filled in static network configuration IP; 'DHCP server' assigns a predefined DHCP configuration to other DHCP clients in the same network (range 172.16.23.100-172.16.23.254]; netmask 255.255.255.0; gateway 172.16.23.1; DNS 172.16.23.1). The DHCP server's own IP is 172.16.23.1. Any static network configuration is ignored in case of DHCP server mode. Please consider to switch the 'WAN router' on if the DHCP server is enabled. | enum | 0 | rw |
| NetworkConfigStaticAddress_tcpip | Static network configuration IP | Network | LAN | Static LAN IP of the ChargePoint. | string | 192.168.0.100 | rw |
| NetworkConfigStaticNetmask_tcpip | Static network configuration netmask | Network | LAN | Netmask to use for the LAN of the ChargePoint. | string | 255.255.255.0 | rw |
| NetworkConfigStaticGateway_tcpip | Static network configuration gateway | Network | LAN | Gateway to use for the LAN of the ChargePoint. | string | 192.168.0.1 | rw |
| NetworkConfigStaticDNS_tcpip | Static network configuration DNS | Network | LAN | DNS server to use for the LAN of the ChargePoint. | string | 8.8.8.8 | rw |
| NetworkConfigDHCPRetries_tcpip | DHCP client request retries | Network | LAN | DHCP request number of retries before giving up. | int | 10 | rw |
| NetworkConfigDHCPTimeout_tcpip | DHCP client request timeout | Network | LAN | DHCP request timeout in seconds. | int | 10 | rw |
| NetworkConfigDHCPDelay_tcpip | DHCP client request delay | Network | LAN | DHCP request delay between multiple requests in seconds. | int | 10 | rw |
| NetworkConfigHostname_tcpip | Client hostname | Network | LAN | Network hostname used for DHCP and mDNS. | string | rw | |
| EthernetSpanningTree_lan | Spanning Tree Protocol | Network | LAN | Enable this to allow detection and handling of loops in the ethernet network link topology. If a loop is detected the charge controller will disable communication on one of its two ethernet ports to prevent network disturbances. Similarly the communication on this port will be reactivated when the loop is gone. | enum | 1 | rw |
| USBShowHideConfiguration_dl | Show USB Configuration | Network | USB | Show or hide the USB configuration. | enum | 0 | rw |
| USBAdditionalIP_dl | Static USB network configuration additional IP | Network | USB | Assigns an additional fixed IP to the usb device interface of the ChargePoint. This allows grouping multiple ChargePoint in one USB network. The subnet is fixed at 24 bits 255.255.255.0 | string | rw | |
| USBAdditionalGW_dl | Static USB network configuration gateway | Network | USB | Assigns a gateway to the usb device interface of the ChargePoint. Note: please be careful when setting a gateway here, as might conflict with a gateway set in the AN or Ethernet configuration sections. | string | rw | |
| USBAdditionalDNS_dl | Static USB network configuration DNS | Network | USB | Assigns an additional DNS server to the ChargePoint in case USB is used as backend connection path. | string | rw | |
| Enabled_wlan | WLAN enabled | Network | WLAN | Enable or disable WLAN. | enum | 1 | rw |
| WLANSSID_wlan | WLAN SSID | Network | WLAN | SSID of the WLAN the ChargePoint tries to connect to. | string | rw | |
| WLANPassword_wlan | WLAN password | Network | WLAN | Password of the WLAN the ChargePoint connects to. The Chargepoint automatically chooses the correct encryption method of the WLAN. | password | rw | |
| NetworkConfig_mode_wlan | Mode for WLAN configuration | Network | WLAN | Network configuration mode for the ChargePoint's WLAN connection. Set to 'Auto' to use DHCP to configure the WLAN network connection automatically. Use 'Static' to use a static IP address to be configured below (as well as a netmask,gateway and DNS server). | enum | 0 | rw |
| NetworkConfigStaticAddress_wlan | Static network configuration IP | Network | WLAN | Static WLAN IP of the ChargePoint. | string | 192.168.1.100 | rw |
| NetworkConfigStaticNetmask_wlan | Static network configuration netmask | Network | WLAN | Netmask to use for the WLAN of the ChargePoint. | string | 255.255.255.0 | rw |
| NetworkConfigStaticGateway_wlan | Static network configuration gateway | Network | WLAN | Gateway to use for the WLAN of the ChargePoint. | string | 192.168.1.1 | rw |
| NetworkConfigStaticDNS_wlan | Static network configuration DNS | Network | WLAN | DNS server to use for the WLAN of the ChargePoint. | string | 8.8.8.8 | rw |
| NetworkConfigDHCPRetries_wlan | DHCP client request retries | Network | WLAN | Number of DHCP requests sent before giving up on the DHCP server. | int | 10 | rw |
| NetworkConfigDHCPTimeout_wlan | DHCP client request timeout | Network | WLAN | DHCP request timeout in seconds. | int | 10 | rw |
| NetworkConfigDHCPDelay_wlan | DHCP client request delay | Network | WLAN | DHCP request delay (in seconds) between multiple requests . | int | 10 | rw |
| ChargePointID_ocpp | OCPP ChargeBoxIdentity (ChargePointID) | Backend | OCPP | ID that is sent to the backend and used by the backend to identify the ChargePoint. | string | +49*839*00000000001 | rw |
| EvseID_ocpp | EVSE Identity | Backend | OCPP | The 'EVSE Identity' can be used to differentiate a technical ID in the backend from the ID that is presented to the user. If set, the 'EVSE Identity' will be used for ISO 15118 certificate signing requests. When left empty, the ISO 15118 name of the EVSE will be derived from the 'ChargeBoxIdentity'. | string | rw | |
| TCP_IP_MODE_V2_tcpip | OCPP Mode | Backend | OCPP | This parameter determines whether backend communication is done using the standard OCPP JSON variant or the proprietary Binary OCPP variant of Ebee Smart Technologies. The Binary OCPP variant is working across NAT networks and therefore does not require a private APN for remote messages to arrive at the charge point. Also Binary OCPP uses much less data (factor 20 to 50) than standard OCPP. Binary OCPP however requires a Binary OCPP proxy on the backend side. | enum | 0 | rw |
| JsonOCPPBackendURL_tcpip | WebSockets JSON OCPP URL of the Backend | Backend | OCPP | The WS/WSS URL of the OCPP backend system. This URL must be the WS/JSON endpoint and begin with "ws://" or "wss://". This parameter is only used if OCPP-J 1.6 or OCPP-J 2.0 mode is used. The ChargePoint's ID gets automatically appended when connecting to the backend. | string | ws://127.0.0.1:8081/CentralSystemService | rw |
| WebsocketsProxyURL_tcpip | Websockets proxy | Backend | OCPP | Specify the websockets proxy to connect to in the format HOST:PORT, whereby PORT is optional and set to 80 when not specified. | string | rw | |
| WebSocketsKeepAliveInterval_tcpip | WebSockets keep-alive interval | Backend | OCPP | WebSockets keep-alive interval in seconds or 0 when unused. Using keep-alive on WebSockets layer is especially useful when using a NAT router between ChargePoint and backend. The ping-pong being sent prevents the NAT router from closing the websockets connection. | int | 0 | rw |
| OCPPConStrictTls_tcpip | OCPP connection strictness | Backend | OCPP | If 'All ciphers' is selected, all recent TLS versions will be accepted. For 'Only secure ciphers' any OCPP connection will be forced to connect only via TLS 1.2 or higher and secure ciphers. Lower versions or weak ciphers will be refused. This is the most secure option currently. | enum | 0 | rw |
| HTTPBasicAuthPassword_tcpip | HTTP Basic Authentication password | Backend | OCPP | The password to be used for HTTP Basic Authorization. If left empty, HTTP Basic Authorization is not used. | password | rw | |
| ForceHeartBeat_ocpp | Force Heartbeat request messages | Backend | OCPP | Sets if the Charge Point should send OCPP Heartbeat request messages despite other messages being sent. | enum | 1 | rw |
| InfoStatusNotifications_ocpp | Send informative StatusNotifications | Backend | OCPP | This parameter determines whether OCPP status notifications that are meant just for informative purposes (such as a temperature report) should be sent to the backend system or not. | enum | 1 | rw |
| ErrorStatusNotifications_ocpp | Send error StatusNotifications | Backend | OCPP | This parameter determines whether OCPP status notifications that are meant to report and error (such as when the plug locking system is broken) should be sent to the backend system or not. | enum | 1 | rw |
| UsbErrorStatusNotifications_ocpp | Send USB error StatusNotifications | Backend | OCPP | This parameter determines whether USB communication errors between master and slave are reported to backend. | enum | 0 | rw |
| StatusNotificationStrategy_ocpp | Strategy for StatusNotification state transitions | Backend | OCPP | This parameter determines on which conditions the ChargePoint changes into the OCCUPIED state. In 'Occupied on Charging' occupied is signaled only when authorization is there and a cable is plugged in. In 'Occupied on 'Authorized/Plugged' the state changes to occupied already when the charger is authorized with nothing connected or when a cable/vehicle is connected but no authorization has taken place yet. | enum | 1 | rw |
| AllowLongOcppGetConfKeys_ocpp | Allow long get configuration keys | Backend | OCPP | Allows OCPP keys in get configuration command to be longer than 500 characters. | enum | 0 | rw |
| OcppGetConfBoolIsInt_ocpp | Integer values for boolean get configuration keys | Backend | OCPP | If activated, boolean OCPP keys are returned as integer values '0' or '1' in command 'GetConfiguration'. This is for compatibility. If not activated, boolean OCPP keys are returned as boolean values 'false' or 'true' in command 'GetConfiguration' according to the OCPP standard. The command 'ChangeConfiguration' accepts both types simultaneously. | enum | 1 | rw |
| OcppQueueFullAsErrorState_ocpp | Disallow charging if OCPP queue full | Backend | OCPP | When set, a full OCPP message queue will cause an error state. Charging will be terminated. | enum | 0 | rw |
| UnavailAtFwUpdateBegin_custom | State 'unavailable' at FW update begin | Backend | OCPP | If 'On' set CP state to 'unavailable' at the begin of the FW update, immediately after the update request. If 'Off' set CP state to 'unavailable' at the begin of the installing process, after download and any update delay timer. | enum | 1 | rw |
| ForceFwUpdateMaster_ms | Force firmware update on master | Backend | OCPP | If 'On' the firmware update will be installed on master even if not all slaves could download it and their update failed. If 'Off' the firmware update will only be installed on master if all slaves have successfully downloaded it. | enum | 0 | rw |
| ForceStateAvail_ocpp | Force OCPP connector state to available/unavailable | Backend | OCPP | Force the OCPP connector state to change to available/unavailable. This overrides the actual state set by the backend. | enum | 0 | rw |
| FreeCharging_vehicleif | Free Charging | Authorization | Free Charging | Allows charging without authorization via RFID or the backend. Charging is started immediately after a vehicle is connected. | enum | 0 | rw |
| FreeChargingMode_ocpp | Free Charging Mode | Authorization | Free Charging | Sets the OCPP behavior in free charging mode. Note that in case of a master/slave scenario the slave will be automatically configured to the same mode as used for the master. | enum | 0 | rw |
| RfidTagFreeCharging_ocpp | RFID Tag for Free Charging with OCPP Full, fixed rfid modes | Authorization | Free Charging | RFID Tag for Free Charging with OCPP Full, fixed RFID modes. Note this RFID Tag is also used when 'If in doubt allow charging' is 'ImmediatelyWhenPlugged' | string | freecharging | rw |
| RfidTagFreeChargingConnector2_ocpp | RFID Tag for Free Charging with OCPP Full, fixed rfid modes (Connector 2) | Authorization | Free Charging | RFID Tag for Free Charging with OCPP Full, fixed RFID modes. (Connector 2) | string | rw | |
| IfInDoubtAllowCharging_ocpp | If in doubt allow charging | Authorization | Free Charging | This parameter determines whether a client is allowed to charge in case its authorization cannot be processed because the backend is offline or not reachable. If set to ON, the client is allowed to charge even if it cannot get authenticated from the ocpp whitelist nor from local whitelist. If set to ImmediatelyWhenPlugged, then charging will be allowed in case ChargePoint is offline by just plugging the car and without RFID authorization. If 'Connection Type' is 'No Backend' then this parameter is ignored. | enum | 0 | rw |
| FllCfg_fll | Enable local whitelist | Authorization | RFID Whitelists | Local whitelist of RFIDs independent of a backend connection. | enum | 0 | rw |
| UseCache_ocpp | Enable OCPP whitelist | Authorization | RFID Whitelists | Enables the use of the internal whitelist for storing RFID UID from the OCPP backend. If disabled, RFIDs even if reported from the backend with an expiry date are not added to an internal cache. | enum | 1 | rw |
| CacheExpiryOption_cache | OCPP whitelist expiry mode | Authorization | RFID Whitelists | The assumed expiry date of cache entries when OCPP expiry-date has not been set explicitly by the backend. The default setting for such cache entries is the largest allowable system time: 2038 | enum | 0 | rw |
| LocalPreAuthorize_ocpp | Local Pre Authorize | Authorization | RFID Whitelists | Sets if the Charge Point, when online, will start transactions for locally authorized identifiers without requesting an Authorize.conf from the Central System. | enum | 1 | rw |
| LocalAuthorizeOffline_ocpp | Local Authorize Offline | Authorization | RFID Whitelists | Sets if the Charge Point, when offline, will start transactions for locally authorized identifiers. | enum | 1 | rw |
| OperatorCurrentLimit_vehicleif | Operator Current Limit [A] | Load Management | Local | Maximum current (in ampere) that can be signaled to the vehicle for charging. If the parameter 'Installation Current Limit' exists, the 'Operator Current Limit' must be below or equal to the 'Installation Current Limit'. Otherwise, it must be below or equal to the 'Maximum Current'. It can be freely configured, even while charging. This parameter can be changed by the backend for energy management | int | 16 | rw |
| MonitoringSessionEnergy_mon | Max Energy per session [kWh] | Load Management | Local | Energy limit (in kWh) set by the operator | int | 0 | rw |
| MonitoringSessionTime_mon | Max Time per session [h] | Load Management | Local | Time limit (in h) set by the operator | int | 0 | rw |
| PowerLimiterMode_energyman | Power Limiter Mode | Load Management | Local | Power limiter can be set to the Austrian slow-charging mode or manual configuration conservative mode or manual configuration progressive mode. Identical behaviour on a 2-socket station (master/slave). The mode applies per charge point. | enum | 0 | rw |
| PowerLimit_energyman | Power limit [W] | Load Management | Local | Set power limit (in Watt). Identical behaviour on a 2-socket station (master/slave). The limit applies per charge point. Range: from 4140W to 43000W. | int | 22000 | rw |
| InputPowerLimit_energyman | Energy management from external input | Load Management | Local | Enables energy Management from external input | enum | 0 | rw |
| InputCurrentLimit_energyman | Current limit for energy management from external input | Load Management | Local | Single phase RMS current limit (in A) for energy management from external input. Range: from 6A to 80 A. Set to 0A to pause charging. | int | 16 | rw |
| SmartChargingUseDisconnectedLimit_energyman | Enable Disconnected Upper Limit for SmartCharging | Load Management | Local | If enabled and the ChargePoint gets disconnected from the Backend, the 'Disconnected Upper Limit [A] for SmartCharging' will be applied despite the limitations set in stored charging profiles. | enum | 0 | rw |
| SmartChargingDisconnectedLimit_energyman | Disconnected Upper Limit [A] for SmartCharging | Load Management | Local | Disconnected Upper Limit applied to SmartCharging in case the ChargePoint is disconnected from the backend. | int | 16 | rw |
| DeleteAllSmChrgProfilesButton_custom | Delete all Smart Charging profiles | Load Management | Local | Delete all Smart Charging profiles from controller. This is useful to remove old data from controller after you changed the load balancing system. | action | ||
| SempGatewayConfigOnOff_semp_gateway | SEMP interface | Load Management | SMA Sunny Home Manager Interface | The charging station can be networked with the SMA Sunny Home Manager 2.0 to charge primarily or exclusively with self-generated solar energy. | enum | 0 | rw |
| SempGatewayChargingMode_semp_gateway | Charging Mode | Load Management | SMA Sunny Home Manager Interface | This option sets the directly applicable charging mode. In surplus charging mode, the vehicle charges primarily with self-generated electricity according to the setting in Sunny Portal. In immediate charging mode, control signals from the Sunny Home Manager 2.0 are ignored and the vehicle is charged with the maximum possible current regardless of the available solar power. In Manual Configuration mode, it is also possible to specify how much energy is to be charged at least until the preset departure time. This mode also uses energy from the electricity grid if not enough self-generated electricity can be provided. The expected amount of energy can be communicated to the energy manager via the maximum demand option. In each of the modes, charging continues until the vehicle is full. | enum | 0 | rw |
| SempGatewayFallbackCurrent_semp_gateway | Current in case of connection failure [A] | Load Management | SMA Sunny Home Manager Interface | If the connection to the energy manager fails, the charging current is set to the value set here. Settings between 6A and 80A are permissible. | int | 6 | rw |
| SempGatewayCommunicationTimeout_semp_gateway | Time to connection failure [s] | Load Management | SMA Sunny Home Manager Interface | If the charging station cannot reach the energy manager for longer than set, the connection is considered to have failed. Possible value range: 60s to 3600s. | int | 600 | rw |
| SempGatewayMaxEnergyDemand_semp_gateway | Maximum energy demand [kWh] | Load Management | SMA Sunny Home Manager Interface | This value sets the maximum energy demand that is reported to the Energy Manager for the charging point. This value typically represents the maximum capacity of the vehicle battery. Permissible range of values: 1 kWh to 1000 kWh. | int | 30 | rw |
| SempGatewayMinEnergyDemand_semp_gateway | Minimum energy demand [kWh] | Load Management | SMA Sunny Home Manager Interface | This value sets the minimum amount of energy that is reported to the Energy Manager for the charge point. With manual configuration, at least the set amount of energy is charged by the preset time. Permissible value range: 0 kWh to 1000 kWh. | int | 5 | rw |
| SempGatewayMaxChargingTime_semp_gateway | Scheduled departure time [hh:mm] | Load Management | SMA Sunny Home Manager Interface | This value configures the time of day until the charging process should be completed. At least the minimum configured energy requirement should be charged by this time. | string | 08:00 | rw |
| EEBUSConfigOnOff_eebus | EEBus interface | Load Management | EEBUS | Compatible energy managers can control the charging station via the EEBus interface. | enum | 0 | rw |
| ChargingMode_hems | Charging Mode | Load Management | EEBUS | This option allows to select the charging mode used by the eebus system."Mains charging" configures the charging with mains power. The options "Solar charging" and "Solar surplus charging" configures the usage of self produced solar power for charging. Both options aims to optimize the self-consumption whereas "Solar surplus charging" configures additionally the exclusive use of solar surplus power for charging. | enum | 0 | rw |
| EEBUSConfigCevcOnOff_eebus | Coordinated Charging Mode | Load Management | EEBUS | Compatible energy managers can control the charging station via the EEBus interface. | enum | 0 | rw |
| MaxEnergyDemand_hems | Maximum energy demand [kWh] | Load Management | EEBUS | This value sets the maximum energy demand that is reported to the Energy Manager for the charging point. This value typically represents the maximum capacity of the vehicle battery. Permissible range of values: 1 kWh to 1000 kWh. | int | 30 | rw |
| OptEnergyDemand_hems | Optimal energy demand [kWh] | Load Management | EEBUS | This value sets the optimal amount of energy that is reported to the Energy Manager for the charge point. With manual configuration, at least the set amount of energy is charged by the preset time. Permissible value range: 0 kWh to 1000 kWh. | int | 8 | rw |
| MinEnergyDemand_hems | Minimum energy demand [kWh] | Load Management | EEBUS | This value sets the minimum amount of energy that is reported to the Energy Manager for the charge point. With manual configuration, at least the set amount of energy is charged by the preset time. Permissible value range: 0 kWh to 1000 kWh. | int | 5 | rw |
| MaxChargingTime_hems | Scheduled departure time [hh:mm] | Load Management | EEBUS | This value configures the time of day until the charging process should be completed. At least the minimum configured energy requirement should be charged by this time. | string | 08:00 | rw |
| EEBUSFallbackCurrent_eebus | Current in case of connection failure [A] | Load Management | EEBUS | If the connection to the energy manager fails, the charging current is set to the value set here. Settings between 6A and 80A are permissible. | int | 6 | rw |
| EEBUSCommunicationTimeout_eebus | Communication Timeout [s] | Load Management | EEBUS | If the charging station cannot reach the energy manager for longer than set, the connection is considered to have failed. If the energy manager serves to protect the main fuse from overload, a correspondingly short time is recommended. Possible value range: 4s to 3600s. | int | 4 | rw |
| EEBusLPCFailsafePowerUser_eebus | Failsafe power in case of connection failure [W] | Load Management | EEBUS | If the connection to the energy manager fails, the failsafe power for LPC is set to the value set here. | int | 11040 | rw |
| EEBusLPCFailsafeDurationMinUser_eebus | Minimum duration for failsafe state [s] | Load Management | EEBUS | The minimum duration that the system will remain in the LPC failsafe state if the connection to the energy manager fails. Possible value range: 7200s to 86400s. | int | 7200 | rw |
| EEBUSCoupledEnergyManager_eebus | Connect or disconnect the energy manager | Load Management | EEBUS | Couple energy manager activates the EEBUS coupling process. The coupling must also be activated on energy manager side. | string | {"model": "", "ski": "", "ip": "", "shipId": "", "coupled": 0} | rw |
| DlmMode_dlm | Dynamic Load Management - DLM Master/Slave | Load Management | Dynamic Load Management | Specifies the ChargePoint's role in a DLM network. There MUST be exactly one DLM Master in a DLM network managing multiple DLM-Slaves. Typically, a ChargePoint configured as DLM Master will also host an internal DLM-Slave. Note: A ChargePoint configured as standalone DLM Master will not host an internal DLM-Slave. If used for charging anyway, its power consumption will be not controlled by DLM! | enum | 0 | rw |
| DlmDiscoveryNetworkId_dlm | DLM Network Id | Load Management | Dynamic Load Management | Several DLM groupings might coexist in one physical LAN. In case of DLM Master-Auto-Discovery, they are distinguished by Master-Auto-Discovery Network Id. | int | 0 | rw |
| DlmDiscoveryDisableBroadcast_dlm | Disable Discovery Broadcasting | Load Management | Dynamic Load Management | Disables the broadcasting of DLM Discovery beacons in the DLM master. If disabled, DLM slaves will not be able to find their DLM master automatically with the help of the DLM Master-Auto-Discovery feature. | enum | 0 | rw |
| DlmSolarMode_dlm | Configure Solar Mode for DLM | Load Management | Dynamic Load Management | Whether this DLM Master allows special handling of DLM-Slaves that want to use solar energy. 'Solar Surplus' will allow those slaves to charge only when there is enough solar energy available. 'Solar Charging' allows to use some amount of grid supply current(see parameter 'Maximum grid supply current') to charge the solar DLM slaves at least with their minimum charging current. With 'Grid Charging' all DLM slaves charge with the maximum available current. | enum | 0 | rw |
| DlmAlgoSampleRate_dlm | DLM Algorithm Sample Rate | Load Management | Dynamic Load Management | The DLM algorithm will not calculate and re-assign current to it's DLM slaves any faster than at this configured rate. As an exception, EVs getting ready to charge will be considered and assigned current immedeately. | enum | 30 | rw |
| DlmClearPersistentSlavesButton_dlm | Clear persistent DLM slave DB | Load Management | Dynamic Load Management | Immediately clears the database of known DLM slaves | action | ||
| DlmSlaveEnableSolar_dlm | Solar Mode on this charger | Load Management | Dynamic Load Management | Enables additional limiting for this DLM-Slave to use renewable production | enum | 0 | rw |
| DlmSlaveEnableSolarUser_dlm | User is allowed to switch the SolarMode on this charger | Load Management | Dynamic Load Management | If the role 'operator' set 'yes', the role 'user' should see the parameter on the page 'load management' and have the permission to set the 'Solar Mode on this charger' to either 'on' or 'off'. | enum | 0 | rw |
| DlmMinCurrentRating_dlm | Minimum Current Limit [A] | Load Management | Dynamic Load Management | Minimum current limit that charging should not go below. | int | 6 | rw |
| DlmDisconnectedLimit_dlm | Disconnected Limit [A] | Load Management | Dynamic Load Management | Current limit when disconnected from DLM network. | int | 6 | rw |
| DlmMasterIp_dlm | DLM Master IP and port | Load Management | Dynamic Load Management | DLM Master IP which is used for DLM-Slaves configured with Master-Fixed-IP. Additionally the connection port can be specified (IP[:port]). | string | rw | |
| DlmPhaseLimit_dlm | EVSE Sub-Distribution Limit (L1/L2/L3) [A] | Load Management | Dynamic Load Management | Overall current limit for DLM available for distribution to EVs. | triple | 16 | rw |
| DlmOperatorLimit_dlm | Operator EVSE Sub-Distribution Limit (L1/L2/L3) [A] | Load Management | Dynamic Load Management | Operator current limit for DLM available for distributionto EVs. The 'Operator EVSE Sub-Distribution Limit' is equal or smaller than the 'EVSE Sub-Distribution Limit'. It can be changed without rebooting the chargepoint. Thus a backend could use this parameter to alter the energy available for charging EVs dynamically. The backend will not be able to set a value higher than the 'EVSE Sub-Distribution Limit'. | triple | 16 | rw |
| DlmInput1CurrOffsetConfig_dlm | External Input 1 Config | Load Management | Dynamic Load Management | Adds a configurable offset to 'EVSE Sub-Distribution Limit' based on GPI External Input 1. | enum | 0 | rw |
| DlmInput1Polarity_dlm | External Input 1 Polarity | Load Management | Dynamic Load Management | Changes the polarity of the input signal 1. "Active high" does not change the polarity, "Active low" inverts the signal. | enum | 0 | rw |
| DlmInput1OffsetPhase_dlm | Ext. Input 1 Current Offset (L1/L2/L3) [A] | Load Management | Dynamic Load Management | Offset added to 'EVSE Sub-Distribution Limit' case external input 1 is high. Note: currently only negative values are supported. | triple | 0 | rw |
| DlmInput2CurrOffsetConfig_dlm | External Input 2 Config | Load Management | Dynamic Load Management | Adds a configurable offset to 'EVSE Sub-Distribution Limit' based on GPI External Input 2. | enum | 0 | rw |
| DlmInput2Polarity_dlm | External Input 2 Polarity | Load Management | Dynamic Load Management | Changes the polarity of the input signal 2. "Active high" does not change the polarity, "Active low" inverts the signal. | enum | 0 | rw |
| DlmInput2OffsetPhase_dlm | Ext. Input 2 Current Offset (L1/L2/L3) [A] | Load Management | Dynamic Load Management | Offset added to 'EVSE Sub-Distribution Limit' case external input 2 is high. Note: currently only negative values are supported. | triple | 0 | rw |
| DlmExternalMeterEnabled_dlm | External Meter Support | Load Management | Dynamic Load Management | If enabled, an external, secondary meter allows to also consider the power consumption of additional load. The power available for charging EVs will be adjusted accordingly. Please make sure, 'Meter configuration (Second)' is configured, preferrably to a 3-phase, phase aware meter. | enum | 0 | rw |
| ConfigSecond_meter | Meter configuration (Second) | Load Management | Dynamic Load Management | Energy Management: the type of second meter used only for input to manage the current on the grid. For Modbus/RTU meters the address must be 2. | enum | 3 | rw |
| DlmInput3CurrOffsetConfig_dlm | Meter Digital Input Config | Load Management | Dynamic Load Management | Adds a configurable offset to 'EVSE Sub-Distribution Limit' based on the Meter's Digital Input register. | enum | 0 | rw |
| DlmInput3OffsetPhase_dlm | Meter Digital Input Current Offset (L1/L2/L3) [A] | Load Management | Dynamic Load Management | Offset added to 'EVSE Sub-Distribution Limit' case meter digital input is high. Note: currently only negative values are supported. | triple | 0 | rw |
| SecondMeterIPAddress_meter | IP address of second meter | Load Management | Dynamic Load Management | Sets the IP address of the second meter. | string | rw | |
| SecondMeterTCPPortNumber_meter | Port number of second meter | Load Management | Dynamic Load Management | Specifies the TCP port of the second meter. | int | 502 | rw |
| SecondMeterModbusAddr_meter | Modbus address of second meter | Load Management | Dynamic Load Management | Secondary meters use a default address of '2'. If both meters share a RTU bus then their addresses must be different. | int | 2 | rw |
| S0MeterPulsesPerKWhSecond_meter | Pulses per kWh (Second S0 meter) | Load Management | Dynamic Load Management | Energy Management: Second S0 Meter Pulses per kWh. | int | 1000 | rw |
| CurrentDirSecondL1_meter | Current flow direction of L1 of second meter | Load Management | Dynamic Load Management | If set to 'Inverted', the current and power value reported by the second meter in line 1 will be inverted in sign. | enum | 0 | rw |
| CurrentDirSecondL2_meter | Current flow direction of L2 of second meter | Load Management | Dynamic Load Management | If set to 'Inverted', the current and power value reported by the second meter in line 2 will be inverted in sign. | enum | 0 | rw |
| CurrentDirSecondL3_meter | Current flow direction of L3 of second meter | Load Management | Dynamic Load Management | If set to 'Inverted', the current and power value reported by the second meter in line 3 will be inverted in sign. | enum | 0 | rw |
| DlmExternalMeterMainDistLimit_dlm | Main Distribution Limit (L1/L2/L3) [A] | Load Management | Dynamic Load Management | Current limit for DLM available for distribution to EVs and additional energy loads. This value is typically higher than the 'EVSE Sub-Distribution Limit' above. An external meter is required to detect the energy consumption of the additional load. | triple | 100 | rw |
| DlmExternalLoadHeadroom_dlm | External Load Headroom (L1/L2/L3) [A] | Load Management | Dynamic Load Management | Safety margin to avoid transient overload situations. The algorithm will keep headroom towards 'Main Distribution Limit' | triple | 0 | rw |
| DlmExternalLoadFallback_dlm | External Load Fallback (L1/L2/L3) [A] | Load Management | Dynamic Load Management | In the error case, where the external meter is disconnected or fails, 'External Load Fallback' is assumed as consumption of an additional consumer. Setting to a high value will result in no current available for the EVSE sub-distribution in that particular situation. Thus, charging would stop | triple | 9999 | rw |
| DlmExternalMeterLocation_dlm | External Meter Location | Load Management | Dynamic Load Management | Specifies how the external meter is connected according to its location. Either at the grid's entry point; between an external load and the rest of the installation; or at a renewable energy source such as e.g. a solar panel. It is also possible to locate the site of the external meter on the EVSE sub-distribution point (which means all DLM slaves) and a renewable energy source without external load. | enum | 0 | rw |
| DlmExternalEnergyType_dlm | External Energy Type | Load Management | Dynamic Load Management | Specifies the type of energy connected to installation. Either a consumer of electricity or a producer of renewable energy such as a solar array. | enum | 0 | rw |
| DlmExternalLoadAvgLen_dlm | External Load Averaging Length [sec] | Load Management | Dynamic Load Management | Meter values will be averaged in order to avoid transients. | int | 5 | rw |
| DlmCurrImbalanceLimitEnabled_dlm | Current Imbalance Prevention | Load Management | Dynamic Load Management | If enabled, DLM will not exceed the 'Current Imbalance Limit' configured. | enum | 0 | rw |
| DlmCurrImbalanceLimit_dlm | Current Imbalance Limit [A] | Load Management | Dynamic Load Management | Maximum allowed phase imbalance. DLM will not exceed the 'Current Imbalance Limit' between phases when assigning current to EVs. | int | 20 | rw |
| DlmITNetworkEnabled_dlm | IT Network | Load Management | Dynamic Load Management | Set to 'On', if your power distribution system is IT (isolé-terre). If set to 'On', the DLM Master will only accept DLM Slaves, whose phase rotation is set to 'Single-phase system (IT earthing)'. If set to 'Off', the DLM Master will only accept DLM Slaves, whose phase rotation is not set to 'Single-phase system (IT earthing)'. Connection attempts of DLM Slaves configured differently will be denied. | enum | 0 | rw |
| DlmTimeTableEnabled_dlm | Maximum Current Scheduler | Load Management | Dynamic Load Management | If enabled, DLM will not exceed the limit configured in the time tables. Each entry set specifies the maximum allowed current for each phase which is applied at the selected hour. Each entry is valid until another applicable entry replaces it. NOTE: All time values use the UTC time zone. Example: Two entries: (5am: 10/10/10Amp) and (10am: 20/20/20Amp) would apply a maximum of 10Amp starting at 5am UTC and would apply until 9:59:59am UTC. At 10am UTC the maximum would be set to 20Amp and be valid until 4:59:59am UTC the next day. | enum | 0 | rw |
| DlmTimeTableTable_dlm | DLM Time Table | Load Management | Dynamic Load Management | table | |||
| UserPwdPlain_custom | User Password | System | Password | Set a new login password of the web interface for the 'user' user. | doubleEntryPassword | green_zone | rw |
| InstallerPwdPlain_custom | Installer Password | System | Password | Set a new login password of the web interface for the 'installer' user. | doubleEntryPassword | blue_zone | rw |
| OperatorPwdPlain_custom | Operator Password | System | Password | Set a new login password of the web interface for the 'operator' user. If using secure login passwords is enforced, the new password has to fulfill these requirements: The minimum length is 8 characters. The password has to contain at least one character each from the following character groups: lowercase letters a..z, uppercase letters A..Z, digits 0..9, special characters. It shall not be possible to crack the password easily by repeated guessing. | doubleEntryPassword | yellow_zone | rw |
| WebUIPublicKey_custom | WebUIPublicKey_custom | System | Password | string | -----BEGIN PUBLIC KEY----- MIGfMA0GCSqGSIb3DQEBAQUAA4GNADCBiQKBgQC9V0ZHPh6hnAuf2MZ5RU0W+NnP eaHIlsGx6YW8hvz0WRmybGO3fFJS0ZUo16G2dWb0NxIBbRjN8ZERvjH7wbnIBj6c ISAxp/xvWWTq1VNt+4qDCVDvwJfdEdYBSroEYhunxThpuMo/oxyFmJZmMBIY/Tap wvp/DB0CYBKI2XGhjQIDAQAB -----END PUBLIC KEY----- | rw |