830 lines
18 KiB
Plaintext
830 lines
18 KiB
Plaintext
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JANITZA-MIB DEFINITIONS ::= BEGIN
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IMPORTS
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sysUpTime, DisplayString
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FROM RFC1213-MIB
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OBJECT-TYPE
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FROM RFC-1212
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mib-2
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FROM SNMPv2-SMI
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enterprises, TimeTicks
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FROM RFC1155-SMI;
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system OBJECT IDENTIFIER ::= { mib-2 1 }
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snmp OBJECT IDENTIFIER ::= { mib-2 11 }
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sysDescr OBJECT-TYPE
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SYNTAX OCTET STRING
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"A textual description of the entity. This value should
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include the full name and version identification of
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the system's hardware type, software operating-system,
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and networking software."
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::= { system 1 }
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sysObjectID OBJECT-TYPE
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SYNTAX OBJECT IDENTIFIER
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"The vendor's authoritative identification of the
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network management subsystem contained in the entity.
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This value is allocated within the SMI enterprises
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subtree (1.3.6.1.4.1) and provides an easy and
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unambiguous means for determining `what kind of box' is
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being managed. For example, if vendor `Flintstones,
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Inc.' was assigned the subtree 1.3.6.1.4.1.424242,
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it could assign the identifier 1.3.6.1.4.1.424242.1.1
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to its `Fred Router'."
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::= { system 2 }
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sysUpTime OBJECT-TYPE
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SYNTAX TimeTicks
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"The time (in hundredths of a second) since the
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network management portion of the system was last
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re-initialized."
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::= { system 3 }
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sysName OBJECT-TYPE
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SYNTAX OCTET STRING
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MAX-ACCESS read-write
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STATUS current
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DESCRIPTION
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"An administratively-assigned name for this managed
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node. By convention, this is the node's fully-qualified
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domain name. If the name is unknown, the value is
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the zero-length string."
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::= { system 5 }
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sysLocation OBJECT-TYPE
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SYNTAX OCTET STRING
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MAX-ACCESS read-write
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STATUS current
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DESCRIPTION
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"The physical location of this node (e.g., 'telephone
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closet, 3rd floor'). If the location is unknown, the
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value is the zero-length string."
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::= { system 6 }
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sysServices OBJECT-TYPE
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SYNTAX INTEGER (0..127)
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"A value which indicates the set of services that this
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entity may potentially offer. The value is a sum.
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This sum initially takes the value zero. Then, for
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each layer, L, in the range 1 through 7, that this node
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performs transactions for, 2 raised to (L - 1) is added
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to the sum. For example, a node which performs only
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routing functions would have a value of 4 (2^(3-1)).
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In contrast, a node which is a host offering application
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services would have a value of 72 (2^(4-1) + 2^(7-1)).
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Note that in the context of the Internet suite of
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protocols, values should be calculated accordingly:
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layer functionality
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1 physical (e.g., repeaters)
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2 datalink/subnetwork (e.g., bridges)
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3 internet (e.g., supports the IP)
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4 end-to-end (e.g., supports the TCP)
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7 applications (e.g., supports the SMTP)
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For systems including OSI protocols, layers 5 and 6
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may also be counted."
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::= { system 7 }
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janitza OBJECT IDENTIFIER ::= { enterprises 34278}
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rmsPhase OBJECT IDENTIFIER ::= { janitza 1 }
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uLN1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Voltage Phase L1 in 100mV"
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::= { rmsPhase 1 }
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uLN2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Voltage Phase L2 in 100mV"
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::= { rmsPhase 2 }
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uLN3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Voltage Phase L3 in 100mV"
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::= { rmsPhase 3 }
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uLN4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Voltage Pahse L4 in 100mV"
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::= { rmsPhase 4 }
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uL1L2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Voltage Phase L1-L2 in 100mV"
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::= { rmsPhase 5 }
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uL2L3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Voltage Phase L2-L3 in 100mV"
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::= { rmsPhase 6 }
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uL3L1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Voltage Phase L3-L1 in 100mV"
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::= { rmsPhase 7 }
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iL1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Current Phase L1 in 1mA"
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::= { rmsPhase 8 }
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iL2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Current Phase L2 in 1mA"
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::= { rmsPhase 9 }
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iL3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Current Phase L3 in 1mA"
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::= { rmsPhase 10 }
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iL4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Current Phase L4 in 1mA"
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::= { rmsPhase 11 }
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pL1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Real Power L1 in Watt"
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::= { rmsPhase 12 }
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pL2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Real Power L2 in Watt"
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::= { rmsPhase 13 }
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pL3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Real Power L3 in Watt"
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::= { rmsPhase 14 }
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pL4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Real Power L4 in Watt"
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::= { rmsPhase 15 }
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qL1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktiv Power L1 in VAr"
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::= { rmsPhase 16 }
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qL2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktiv Power L2 in VAr"
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::= { rmsPhase 17 }
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qL3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktiv Power L3 in VAr"
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::= { rmsPhase 18 }
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qL4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktiv Power L4 in VAr"
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::= { rmsPhase 19 }
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sL1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Power L1 in VA"
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::= { rmsPhase 20 }
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sL2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Power L2 in VA"
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::= { rmsPhase 21 }
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sL3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Power L3 in VA"
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::= { rmsPhase 22 }
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sL4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Power L4 in VA"
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::= { rmsPhase 23 }
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cosPL1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Cos(Phi) L1 * 0.001"
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::= { rmsPhase 24 }
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cosPL2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Cos(Phi) L2 * 0.001"
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::= { rmsPhase 25 }
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cosPL3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Cos(Phi) L3 * 0.001"
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::= { rmsPhase 26 }
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cosPL4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Cos(Phi) L4 * 0.001"
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::= { rmsPhase 27 }
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rmsSumme3 OBJECT IDENTIFIER ::= { janitza 2 }
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p3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Real Power Summe L1..L3 in Watt"
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::= { rmsSumme3 1}
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q3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktiv Power Summe L1..L3 in Watt"
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::= { rmsSumme3 2}
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s3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Power Summe L1..L3 in Watt"
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::= { rmsSumme3 3}
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cosP3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"COS(Phi) Summe L1..L3 *0.001"
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::= { rmsSumme3 4}
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rmsSumme4 OBJECT IDENTIFIER ::= { janitza 3 }
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p4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Real Power Summe L1..L4 in Watt"
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::= { rmsSumme4 1}
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q4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktiv Power Summe L1..L4 in Watt"
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::= { rmsSumme4 2}
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s4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Power Summe L1..L4 in Watt"
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::= { rmsSumme4 3}
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cosP4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"COS(Phi) Summe L1..L4 *0.001"
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::= { rmsSumme4 4}
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energiePhase OBJECT IDENTIFIER ::= { janitza 4 }
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whL1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Active Energie Phase L1 in 0.1 KWh"
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::= { energiePhase 1}
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whL2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Active Energie Phase L2 in 0.1 KWh"
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::= { energiePhase 2}
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whL3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Active Energie Phase L3 in 0.1 KWh"
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::= { energiePhase 3}
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whL4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Active Energie Phase L4 in 0.1 KWh"
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::= { energiePhase 4}
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qhL1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktive Energie Phase L1 in 0.1 KVArh"
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::= { energiePhase 5}
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qhL2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktive Energie Phase L2 in 0.1 KVArh"
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::= { energiePhase 6}
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qhL3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktive Energie Phase L3 in 0.1 KVArh"
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::= { energiePhase 7}
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qhL4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktive Energie Phase L4 in 0.1 KVArh"
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::= { energiePhase 8}
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energieSumme3 OBJECT IDENTIFIER ::= { janitza 5 }
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wh3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Active Energie Summe L1..L3 in 0.1 KWh"
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::= { energieSumme3 1}
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qh3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktive Energie Summe L1..L3 in 0.1 KWh"
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::= { energieSumme3 2}
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energieSumme4 OBJECT IDENTIFIER ::= { janitza 6 }
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wh4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Active Energie Summe L1..L4 in 0.1 KWh"
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::= { energieSumme4 1}
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qh4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Reaktive Energie Summe L1..L4 in 0.1 KWh"
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::= { energieSumme4 2}
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thd OBJECT IDENTIFIER ::= { janitza 7 }
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thdULN1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Total Harmonic Distortion Voltage Phase L1 * 0.1%"
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::= { thd 1 }
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thdULN2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Total Harmonic Distortion Voltage Phase L2 * 0.1%"
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::= { thd 2 }
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thdULN3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Total Harmonic Distortion Voltage Phase L3 * 0.1%"
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::= { thd 3 }
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thdULN4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Total Harmonic Distortion Voltage Phase L4 * 0.1%"
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::= { thd 4 }
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thdIL1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Total Harmonic Distortion Current Phase L1 * 0.1%"
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::= { thd 5 }
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thdIL2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Total Harmonic Distortion Current Phase L2 * 0.1%"
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::= { thd 6 }
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thdIL3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Total Harmonic Distortion Current Phase L3 * 0.1%"
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::= { thd 7 }
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thdIL4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Total Harmonic Distortion Current Phase L4 * 0.1%"
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::= { thd 8 }
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misc OBJECT IDENTIFIER ::= { janitza 8 }
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frequenz OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Frequenz* 0.01 Hz"
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::= { misc 1 }
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user OBJECT IDENTIFIER ::= { janitza 9 }
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jasicVAR1 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Jasic User Variable to user for Jasic :_snmp_uservar[0]"
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::= { user 1 }
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jasicVAR2 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Jasic User Variable to user for Jasic :_snmp_uservar[1]"
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::= { user 2 }
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jasicVAR3 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Jasic User Variable to user for Jasic :_snmp_uservar[2]"
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::= { user 3 }
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jasicVAR4 OBJECT-TYPE
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SYNTAX INTEGER
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ACCESS read-write
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STATUS mandatory
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DESCRIPTION
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"Jasic User Variable to user for Jasic :_snmp_uservar[3]"
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::= { user 4 }
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jasicVAR5 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[4]"
|
|
::= { user 5 }
|
|
|
|
jasicVAR6 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[5]"
|
|
::= { user 6 }
|
|
|
|
jasicVAR7 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[6]"
|
|
::= { user 7 }
|
|
|
|
jasicVAR8 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[7]"
|
|
::= { user 8 }
|
|
|
|
jasicVAR9 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[8]"
|
|
::= { user 9 }
|
|
|
|
jasicVAR10 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[9]"
|
|
::= { user 10 }
|
|
|
|
jasicVAR11 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[10]"
|
|
::= { user 11 }
|
|
|
|
jasicVAR12 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[11]"
|
|
::= { user 12 }
|
|
|
|
jasicVAR13 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[12]"
|
|
::= { user 13 }
|
|
|
|
jasicVAR14 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[13]"
|
|
::= { user 14 }
|
|
|
|
jasicVAR15 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[14]"
|
|
::= { user 15 }
|
|
|
|
jasicVAR16 OBJECT-TYPE
|
|
SYNTAX INTEGER
|
|
ACCESS read-write
|
|
STATUS mandatory
|
|
DESCRIPTION
|
|
"Jasic User Variable to user for Jasic :_snmp_uservar[15]"
|
|
::= { user 16 }
|
|
|
|
|
|
|
|
coldStart TRAP-TYPE
|
|
ENTERPRISE snmp
|
|
DESCRIPTION
|
|
"A coldStart trap signifies that the sending
|
|
protocol entity is reinitializing itself such
|
|
that the agent's configuration or the rotocol
|
|
entity implementation may be altered."
|
|
::= 0
|
|
|
|
warmStart TRAP-TYPE
|
|
ENTERPRISE snmp
|
|
DESCRIPTION
|
|
"A warmStart trap signifies that the sending
|
|
protocol entity is reinitializing itself such
|
|
that neither the agent configuration nor the
|
|
protocol entity implementation is altered."
|
|
::= 1
|
|
|
|
|
|
|
|
userTrap1 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 6"
|
|
::= 6
|
|
|
|
userTrap2 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 7"
|
|
::= 7
|
|
|
|
userTrap3 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 8"
|
|
::= 8
|
|
|
|
userTrap4 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 9"
|
|
::= 9
|
|
|
|
userTrap5 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 10"
|
|
::= 10
|
|
|
|
userTrap6 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 11"
|
|
::= 11
|
|
|
|
userTrap7 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 12"
|
|
::= 12
|
|
|
|
userTrap8 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 13"
|
|
::= 13
|
|
|
|
userTrap9 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 14"
|
|
::= 14
|
|
|
|
userTrap10 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 15"
|
|
::= 15
|
|
|
|
userTrap11 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 16"
|
|
::= 16
|
|
|
|
userTrap12 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 17"
|
|
::= 17
|
|
|
|
userTrap13 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 18"
|
|
::= 18
|
|
|
|
userTrap14 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 19"
|
|
::= 19
|
|
|
|
userTrap15 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 20"
|
|
::= 20
|
|
|
|
userTrap16 TRAP-TYPE
|
|
ENTERPRISE janitza
|
|
DESCRIPTION
|
|
"Jasic Trap : use type=6 , subtype = 21"
|
|
::= 21
|
|
|
|
END |