669 lines
22 KiB
Plaintext
669 lines
22 KiB
Plaintext
-- Module Name: HMS132R3.MIB (SCTE 94-2)
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-- SCTE Status: Draft Revision 3
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SCTE-HMS-HE-RF-SWITCH-MIB DEFINITIONS ::= BEGIN
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IMPORTS
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MODULE-COMPLIANCE, OBJECT-GROUP
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FROM SNMPv2-CONF
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OBJECT-TYPE, MODULE-IDENTITY, Unsigned32, Integer32
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FROM SNMPv2-SMI
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DisplayString
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FROM SNMPv2-TC
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entPhysicalIndex
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FROM ENTITY-MIB
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HeFaultStatus, HeTenthdB,
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HeTenthdBm, HeTenthdBmV, HeOnOffControl
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FROM SCTE-HMS-HEADENDIDENT-MIB
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heRFSwitchGroup
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FROM SCTE-HMS-HE-RF-MIB;
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heRFSwitchMIB MODULE-IDENTITY
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LAST-UPDATED "200309110000Z" -- Sep 11, 2003
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ORGANIZATION "SCTE HMS Working Group"
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CONTACT-INFO
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"SCTE HMS Subcommittee, Chairman
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mailto: standards@SCTE.org"
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DESCRIPTION
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" Change Log:
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1. Added Unsigned32 and Integer32 to IMPORTS
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2. Removed TEXTUAL-CONVENTION from IMPORTS
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3. Corrected 4 digit date code defined in RFC2578
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4. heRFSwitchWaitToRestoreTime is changed to Integer32 instead of INTEGER
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5. Corrected object type definition in HeRFSwitchInputEntry sequence
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6. Added double quote at the end of heRFSwitchInputExternalControl
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description
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7. Changed Rf to RF
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8. Changed OID number of heRFSwitchMIBCompliances to 1 instead of 2
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9. Changed the text description of SNMPv2 to SNMP for
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heRFSwitchBasicCompliance MODULE-COMPLIANCE"
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REVISION "200309110000Z"
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DESCRIPTION
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" Change Log:
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1. Filled in SCTE number 94-2
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2. Fixed all compile errors
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3. Defined heRFSwitchInputIndex in the input entry sequence
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4. Defined heRFSwitchOutputIndex in the output entry sequence"
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REVISION "200305290000Z"
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DESCRIPTION
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"The MIB module for the HMS HE RF Switch module
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entities.
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This MIB module is for representing RF
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switch equipment present in the headend (or indoor)
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and is supported by a SNMP agent.
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This MIB is limited in its scope and intended to
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describe an A-B (2 input and 1 output) or a crossbar
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RF switch. Up to 2 RF inputs and 2 outputs
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are supported. Any devices with more than 2 RF
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inputs or outputs shall be covered by another MIB.
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This MIB does not intend to dictate all of the nuances
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involved in changing control settings (automatic or
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manual mode, changing switch controls in each possible
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mode combination). The most common desired behaviors
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are noted but specific switch operation and behavior
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are left to the RF switch vendors.
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Not all control enumerations must be supported. This
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is noted in the variables that have optional
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enumerations.
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Refer to the associated notes for information on what
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SNMP responses should be returned for unsupported
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enumerations."
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::= { heRFSwitchGroup 1 }
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heRFSwitchMIBObjects OBJECT IDENTIFIER ::= { heRFSwitchMIB 1}
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-- Every RF switch is modeled by the tables presented
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-- in this MIB module. These tables extend the entPhysicalTable
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-- according to RFC 2737. The extension index entPhysicalIndex uniquely
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-- identifies the RF switch.
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-- Every RF switch is also modeled by the following tables:
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-- entPhysicalEntry - 1 row; (defined in document: RFC2737)
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-- heCommonEntry - 1 row. (defined in document: HMS111)
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-- Every RF switch module will have its alarms modeled by the table:
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-- propertyEntry - x rows; (defined in document: HMS026)
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-- (where x is the nos. of alarmable analog properties supported
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-- by the RF switch)
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-- discretePropertyEntry - y rows; (defined in document: HMS026)
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-- (where y is the nos. of alarmable digital properties supported by
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-- the RF switch)
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-- Every RF switch module will have a list of currently active
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-- alarms modeled by the table:
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-- currentAlarmEntry - z rows; (defined in document: HMS026)
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-- (where z is the nos. of current active alarms in the RF
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-- switch)
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-- Thus, an A-B RF switch (2 RF inputs and one RF output)
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-- will be represented by one row in entPhysicalTable, one row in
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-- heCommonTable, one row in heRFSwitchUnitTable, two rows in
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-- heRFSwitchInputTable and one row in heRFSwitchOutputTable.
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-- Additionally, a crossbar RF switch (2 inputs and 2 outputs)
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-- will be represented by one row in entPhysicalTable, one row in
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-- heCommonTable, one row in heRFSwitchUnitTable, two rows
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-- in heRFSwitchInputTable and two rows in heRFSwitchOutputTable.
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-- Correlation of outputs and inputs are indicated by the heRFSwitchState
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-- variable. Correlation of physical inputs and outputs to
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-- heRFSwitchInputTable and heRFSwitchOutputTables rows is indicated
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-- by the heRFSwitchInputDescription and heRFSwitchOutputDescription
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-- variables.
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-- the RF Switch Unit Table
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heRFSwitchUnitTable OBJECT-TYPE
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SYNTAX SEQUENCE OF HeRFSwitchUnitEntry
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MAX-ACCESS not-accessible
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STATUS current
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DESCRIPTION
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"A table containing information about RF Switch used
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in an indoor environment."
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::= { heRFSwitchMIBObjects 1 }
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heRFSwitchUnitEntry OBJECT-TYPE
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SYNTAX HeRFSwitchUnitEntry
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MAX-ACCESS not-accessible
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STATUS current
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DESCRIPTION
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"List of information about each RF switch."
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INDEX { entPhysicalIndex }
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::= { heRFSwitchUnitTable 1 }
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HeRFSwitchUnitEntry ::= SEQUENCE
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{
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heRFSwitchMode INTEGER,
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heRFSwitchControl INTEGER,
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heRFSwitchRevertEnable HeOnOffControl,
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heRFSwitchState INTEGER,
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heRFSwitchFailoverStatus HeFaultStatus,
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heRFSwitchBothInputStatus HeFaultStatus,
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heRFSwitchHysteresis HeTenthdB,
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heRFSwitchWaitToRestoreTime Integer32,
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heRFSwitchSensorMode INTEGER
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}
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heRFSwitchMode OBJECT-TYPE
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SYNTAX INTEGER {
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automatic(1),
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manual(2)
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}
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MAX-ACCESS read-write
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STATUS current
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DESCRIPTION
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"This controls and/or reports the switching mode. If
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automatic(1), the RF switch will evaluate the RF
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input status and make the decision to affect the switch state.
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If set to manual(2), the RF switch will not affect the
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switch state itself."
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::= { heRFSwitchUnitEntry 1 }
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heRFSwitchControl OBJECT-TYPE
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SYNTAX INTEGER {
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pathA(1),
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pathB(2),
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cross(3),
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bar(4),
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bothA(5),
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bothB(6)
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}
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MAX-ACCESS read-write
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STATUS current
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DESCRIPTION
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"Sets the intended state of the RF Switch. The effect
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of this control will depend on the value of heRFSwitchMode.
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If heRFSwitchMode is set to automatic, the value this
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control is set to will be the preferred setting. If it is
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set to manual, the switch will assume this setting. Actual
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switch operation while changing switch control value(s)
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is up to the equipment vendor. For example, if the switch
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is in manual mode and the operator tries to connect the
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output to an invalid input, the switch may or may
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not change state.
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Not all enumerations must be supported. For example, an
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A-B RF switch may support only the pathA and pathB
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enumerations while a cross-bar switch may support cross,
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bar, bothA or bothB or only cross and bar but not pathA
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and pathB enumerations. See the note below about the
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expected SNMP response.
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A value pathA(1) connects the switch output to side A
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(first input) of the switch. This enumeration is intended
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for use by an A-B switch.
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A value pathB(2) connects the switch output to side B
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(second input) of the switch. This enumeration is intended
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for use by an A-B switch.
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A value cross(3) connects the switch outputs to the inputs
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as follows:
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Side A (first or primary) output is connected to side B
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(second or alternate) input.
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Side B (second or alternate) output is connected to
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side A (first or primary) input.
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This enumeration is intended for use by a cross-bar switch.
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A value bar(4) connects the switch outputs to the inputs as
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follows:
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Side A (first or primary) output is connected to side A
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(first or primary) input.
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Side B (second or alternate) output is connected to
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side B (second or alternate) input.
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This enumeration is intended for use by a cross-bar switch.
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A value bothA(5) connects the switch outputs to the inputs as
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follows:
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Side A (first or primary) output is connected to side A
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(first or primary) input.
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Side B (second or alternate) output is connected to
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side A (first or primary) input.
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This enumeration is intended for use by a cross-bar switch.
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A value bothB(6) connects the switch outputs to the inputs
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as follows:
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Side A (first or primary) output is connected to side B
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(second or alternate) input.
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Side B (second or alternate) output is connected to
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side B (second or alternate) input.
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This enumeration is intended for use by a cross-bar switch.
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*** IMPORTANT ***
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It is NOT required that an RF switch support all
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enumerations. A SET request for an unsupported value shall
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yield a badValue(3) error by an SNMPv1 agent or an
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inconsistentValue(12) by an SNMPv2 agent."
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::= { heRFSwitchUnitEntry 2 }
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heRFSwitchRevertEnable OBJECT-TYPE
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SYNTAX HeOnOffControl
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MAX-ACCESS read-write
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STATUS current
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DESCRIPTION
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"This controls the use of revert switching.
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If set to on, the switch will attempt to go back to the
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preferred settings indicated by heRFSwitchControl if
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heRFSwitchMode is set to automatic, and the input status
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of the preferred input is normal. The switch will not
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attempt to revert to the settings indicated by
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heRFSwitchControl until heRFSwitchWaitToRestoreTime
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(if supported) has expired since the preferred input was
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restored to normal levels.
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If set to off, the switch will not attempt to go back to
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the preferred settings indicated by heRFSwitchControl if
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heRFSwitchMode is set to automatic, and the input status
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of the preferred input is normal.
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"
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::= { heRFSwitchUnitEntry 3 }
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heRFSwitchState OBJECT-TYPE
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SYNTAX INTEGER {
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pathA(1),
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pathB(2),
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cross(3),
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bar(4),
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bothA(5),
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bothB(6)
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}
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"Reports the state of the RF Switch. Not all enumerations
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must be supported. For example, an A-B RF switch may
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support only the pathA and pathB enumerations while a
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cross-bar switch may support cross, bar, bothA or bothB or
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only cross and bar but not pathA and pathB enumerations.
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A value pathA(1) indicates that the switch output is being
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fed by side A (first input) of the switch. This enumeration
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is intended for use by an A-B switch.
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A value pathB(2) indicates that the switch output is being
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fed by side B (second input) of the switch. This enumeration
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is intended for use by an A-B switch.
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A value cross(3) indicates that the switch outputs are fed as
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follows:
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Side A (first or primary) output is connected to side B
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(second or alternate) input.
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Side B (second or alternate) output is connected to side A
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(first or primary) input.
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This enumeration is intended for use by a cross-bar switch.
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A value bar(4) indicates that the switch outputs are fed as
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follows:
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Side A (first or primary) output is connected to side A
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(first or primary) input.
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Side B (second or alternate) output is connected to side B
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(second or alternate) input.
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This enumeration is intended for use by a cross-bar switch.
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A value bothA(5) indicates that the switch outputs are fed as
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follows:
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Side A (first or primary) output is connected to side A
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(first or primary) input.
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Side B (second or alternate) output is connected to side A
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(first or primary) input.
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This enumeration is intended for use by a cross-bar switch.
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A value bothB(6) indicates that the switch outputs are fed as
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follows:
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Side A (first or primary) output is connected to side B
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(second or alternate) input.
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Side B (second or alternate) output is connected to side B
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(second or alternate) input.
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This enumeration is intended for use by a cross-bar switch."
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::= { heRFSwitchUnitEntry 4 }
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heRFSwitchFailoverStatus OBJECT-TYPE
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SYNTAX HeFaultStatus
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"The integral status of both inputs.
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A value is fault(2), if current switch state heRFSwitchState
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is different than the preferred setting heRFSwitchControl,
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otherwise, it is normal(1).
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This object must provide for the alarm management capabilities
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with a corresponding entry in the discretePropertyTable of
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SCTE-HMS-PROPERTY-MIB (HMS026).
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An alarm shall be recorded as an entry in the currentAlarmTable
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of SCTE-HMS-PROPERTY-MIB (HMS026).
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A log record shall be added as an entry in the heCommonLogTable.
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An heCommonAlarmEvent notification shall be sent."
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::= { heRFSwitchUnitEntry 5 }
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heRFSwitchBothInputStatus OBJECT-TYPE
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SYNTAX HeFaultStatus
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"The integral status of both inputs.
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A value is fault(2), if both input levels are below
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the nominal value; otherwise, it is normal(1).
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This object must provide for the alarm management capabilities
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with a corresponding entry in the discretePropertyTable of
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SCTE-HMS-PROPERTY-MIB (HMS026).
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An alarm shall be recorded as an entry in the currentAlarmTable
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of SCTE-HMS-PROPERTY-MIB (HMS026).
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A log record shall be added as an entry in the heCommonLogTable.
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An heCommonAlarmEvent notification shall be sent."
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::= { heRFSwitchUnitEntry 6 }
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heRFSwitchHysteresis OBJECT-TYPE
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SYNTAX HeTenthdB (-20..20)
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UNITS "0.1 dB"
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MAX-ACCESS read-write
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STATUS current
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DESCRIPTION
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"Controls switch input hysteresis amount. The amount of hysteresis
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used and the ability to change it is to be determined by
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the vendor."
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::= { heRFSwitchUnitEntry 7 }
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heRFSwitchWaitToRestoreTime OBJECT-TYPE
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SYNTAX Integer32
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UNITS "1 sec"
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MAX-ACCESS read-write
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STATUS current
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DESCRIPTION
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"Controls hysteresis time in sec.
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If in automatic switching mode and revert mode is enabled,
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a switch back to the original side will be delayed for
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the time specified by this object."
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::= { heRFSwitchUnitEntry 8 }
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heRFSwitchSensorMode OBJECT-TYPE
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SYNTAX INTEGER {
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internal (1),
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external (2)
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}
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MAX-ACCESS read-write
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STATUS current
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DESCRIPTION
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"Controls what source will be used for determining input
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status:
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A value of internal(1) causes the internal RF detection
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circuitry to be used.
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A value of external(2) will use heRFSwitchInputExternalControl
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to determine input status.
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"
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::= { heRFSwitchUnitEntry 9 }
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-- the RF Switch Input Table
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heRFSwitchInputTable OBJECT-TYPE
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SYNTAX SEQUENCE OF HeRFSwitchInputEntry
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MAX-ACCESS not-accessible
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STATUS current
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DESCRIPTION
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"A table containing information about each RF Switch
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input used in an indoor environment."
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::= { heRFSwitchMIBObjects 2 }
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heRFSwitchInputEntry OBJECT-TYPE
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SYNTAX HeRFSwitchInputEntry
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MAX-ACCESS not-accessible
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STATUS current
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DESCRIPTION
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"List of information about each RF switch input."
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INDEX { entPhysicalIndex, heRFSwitchInputIndex }
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::= { heRFSwitchInputTable 1 }
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HeRFSwitchInputEntry ::= SEQUENCE
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{
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heRFSwitchInputIndex Unsigned32,
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heRFSwitchInputRFLevel HeTenthdBmV,
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heRFSwitchSetInputPowerThreshold HeTenthdBmV,
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heRFSwitchInputStatus HeFaultStatus,
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heRFSwitchInputDescription DisplayString,
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heRFSwitchInputExternalControl HeFaultStatus
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}
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heRFSwitchInputIndex OBJECT-TYPE
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SYNTAX Unsigned32
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MAX-ACCESS not-accessible
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STATUS current
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DESCRIPTION
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"Index number corresponding to the RF Input."
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::= { heRFSwitchInputEntry 1 }
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heRFSwitchInputRFLevel OBJECT-TYPE
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SYNTAX HeTenthdBmV
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UNITS "0.1 dBmV"
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"The measured RF input power for the RF switch."
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::= { heRFSwitchInputEntry 2 }
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heRFSwitchSetInputPowerThreshold OBJECT-TYPE
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SYNTAX HeTenthdBmV
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UNITS "0.1 dBmV"
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MAX-ACCESS read-write
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STATUS current
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DESCRIPTION
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"Input power switchover point for this input."
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::= { heRFSwitchInputEntry 3 }
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heRFSwitchInputStatus OBJECT-TYPE
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SYNTAX HeFaultStatus
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"The integral status of the input.
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A value is fault(2), if the input levels are not in
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the nominal range; otherwise, it is normal(1).
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This object must provide for the alarm management capabilities
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with a corresponding entry in the discretePropertyTable of
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SCTE-HMS-PROPERTY-MIB (HMS026).
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An alarm shall be recorded as an entry in the currentAlarmTable
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of SCTE-HMS-PROPERTY-MIB (HMS026).
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A log record shall be added as an entry in the heCommonLogTable.
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An heCommonAlarmEvent notification shall be sent."
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::= { heRFSwitchInputEntry 4 }
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heRFSwitchInputDescription OBJECT-TYPE
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SYNTAX DisplayString (SIZE (0..32))
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MAX-ACCESS read-only
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STATUS current
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DESCRIPTION
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"A description of the switch input port. The description text is
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to be determined by the equipment manufacturer. For example,
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Input A or Side B."
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::= { heRFSwitchInputEntry 5 }
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heRFSwitchInputExternalControl OBJECT-TYPE
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SYNTAX HeFaultStatus
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MAX-ACCESS read-only
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STATUS current
|
|
DESCRIPTION
|
|
|
|
"This is an external control signal that indicates the status
|
|
of the associated input.
|
|
|
|
A value is fault(2), if the external control signal level is not in
|
|
the nominal range; otherwise, it is normal(1)."
|
|
::= { heRFSwitchInputEntry 6 }
|
|
|
|
|
|
-- the RF Switch Output Table
|
|
heRFSwitchOutputTable OBJECT-TYPE
|
|
SYNTAX SEQUENCE OF HeRFSwitchOutputEntry
|
|
MAX-ACCESS not-accessible
|
|
STATUS current
|
|
DESCRIPTION
|
|
"A table containing information about each RF Switch
|
|
output used in an indoor environment."
|
|
::= { heRFSwitchMIBObjects 3 }
|
|
|
|
heRFSwitchOutputEntry OBJECT-TYPE
|
|
SYNTAX HeRFSwitchOutputEntry
|
|
MAX-ACCESS not-accessible
|
|
STATUS current
|
|
DESCRIPTION
|
|
"List of information about each RF switch output."
|
|
INDEX { entPhysicalIndex, heRFSwitchOutputIndex }
|
|
::= { heRFSwitchOutputTable 1 }
|
|
|
|
HeRFSwitchOutputEntry ::= SEQUENCE
|
|
{
|
|
heRFSwitchOutputIndex Unsigned32,
|
|
heRFSwitchOutputDescription DisplayString
|
|
}
|
|
|
|
heRFSwitchOutputIndex OBJECT-TYPE
|
|
SYNTAX Unsigned32
|
|
MAX-ACCESS not-accessible
|
|
STATUS current
|
|
DESCRIPTION
|
|
"Index number corresponding to the RF Output."
|
|
::= { heRFSwitchOutputEntry 1 }
|
|
|
|
heRFSwitchOutputDescription OBJECT-TYPE
|
|
SYNTAX DisplayString (SIZE (0..32))
|
|
MAX-ACCESS read-only
|
|
STATUS current
|
|
DESCRIPTION
|
|
"A description of the switch output port. The description text
|
|
is to be determined by the equipment manufacturer. For example,
|
|
Output A or Seconday Output."
|
|
::= { heRFSwitchOutputEntry 2 }
|
|
|
|
|
|
-- conformance information
|
|
heRFSwitchMIBConformance OBJECT IDENTIFIER ::= { heRFSwitchMIB 2 }
|
|
|
|
heRFSwitchMIBCompliances OBJECT IDENTIFIER ::= { heRFSwitchMIBConformance 1 }
|
|
|
|
heRFSwitchMIBGroups OBJECT IDENTIFIER ::= { heRFSwitchMIBConformance 2 }
|
|
|
|
heRFSwitchBasicCompliance MODULE-COMPLIANCE
|
|
STATUS current
|
|
DESCRIPTION
|
|
"The compliance statement for SNMP HMS Headend RF
|
|
Switch entities which implement the SNMP
|
|
heRFSwitchMIB."
|
|
MODULE -- this module
|
|
MANDATORY-GROUPS { heRFSwitchUnitMandatoryGroup,
|
|
heRFSwitchInputMandatoryGroup,
|
|
heRFSwitchOutputMandatoryGroup
|
|
|
|
}
|
|
::= { heRFSwitchMIBCompliances 1 }
|
|
|
|
heRFSwitchUnitMandatoryGroup OBJECT-GROUP
|
|
OBJECTS {
|
|
heRFSwitchMode,
|
|
heRFSwitchControl,
|
|
heRFSwitchRevertEnable,
|
|
heRFSwitchState,
|
|
heRFSwitchFailoverStatus
|
|
}
|
|
STATUS current
|
|
DESCRIPTION
|
|
"The main group defines heRFSwitchUnitTable objects which
|
|
are mandatory to all indoor RF switch modules."
|
|
::= { heRFSwitchMIBGroups 1 }
|
|
|
|
|
|
heRFSwitchInputMandatoryGroup OBJECT-GROUP
|
|
OBJECTS {
|
|
heRFSwitchInputStatus,
|
|
heRFSwitchInputDescription
|
|
}
|
|
STATUS current
|
|
DESCRIPTION
|
|
"The main group defines heRFSwitchInputTable objects which
|
|
are mandatory to all indoor RF switch modules."
|
|
::= { heRFSwitchMIBGroups 2 }
|
|
|
|
heRFSwitchOutputMandatoryGroup OBJECT-GROUP
|
|
OBJECTS {
|
|
heRFSwitchOutputDescription
|
|
}
|
|
STATUS current
|
|
DESCRIPTION
|
|
"The main group defines heRFSwitchOutputTable objects which
|
|
are mandatory to all indoor RF switch modules."
|
|
::= { heRFSwitchMIBGroups 3 }
|
|
|
|
|
|
heRFSwitchUnitGroup OBJECT-GROUP
|
|
OBJECTS {
|
|
heRFSwitchBothInputStatus,
|
|
heRFSwitchHysteresis,
|
|
heRFSwitchWaitToRestoreTime,
|
|
heRFSwitchSensorMode
|
|
}
|
|
STATUS current
|
|
DESCRIPTION
|
|
"The collection of heRFSwitchUnitTable objects which are used to
|
|
represent the indoor RF switch module."
|
|
::= { heRFSwitchMIBGroups 4 }
|
|
|
|
heRFSwitchInputGroup OBJECT-GROUP
|
|
OBJECTS {
|
|
heRFSwitchInputRFLevel,
|
|
heRFSwitchSetInputPowerThreshold,
|
|
heRFSwitchInputExternalControl
|
|
|
|
}
|
|
STATUS current
|
|
DESCRIPTION
|
|
"The collection of heRFSwitchInputTable objects which are used to
|
|
represent the indoor RF switch module."
|
|
::= { heRFSwitchMIBGroups 5 }
|
|
|
|
|
|
|
|
END
|