VDSL2-LINE-TC-MIB
47 objects
This MIB Module provides Textual Conventions to be used by the VDSL2-LINE-MIB module for the purpose of managing VDSL2, ADSL, ADSL2, and ADSL2+ lines. Copyright (c) 2009 IETF Trust and the persons identified as authors of the code. All rights reserved. Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: - Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. - Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. - Neither the name of Internet Society, IETF or IETF Trust, nor the names of specific contributors, may be used to endorse or promote products derived from this software without specific prior written permission. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 'AS IS' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. This version of this MIB module is part of RFC 5650; see the RFC itself for full legal notices.
Imported Objects
| SNMPv2-SMI | MODULE-IDENTITY transmission |
| SNMPv2-TC | TEXTUAL-CONVENTION |
| OID | Name | Access | Status | Description |
|---|---|---|---|---|
| 1.3.6.1.2.1.10.251.3 | Identityvdsl2TCMIB | This MIB Module provides Textual Conventions to be used by the VDSL2-LINE-MIB module for the purpose of managing VDSL2, ADSL, ADSL2, and ADSL2+ lines. Copyrigh… |
Type Definitions
| Name | Syntax | Status | Description |
|---|---|---|---|
| Xdsl2Band | INTEGER { upstream(1), downstream(2), us0(3), ds1(4), us1(5), ds2(6), us2(7), ds3(8), us3(9), ds4(10), us4(11) } | current | Identifies a band in a VDSL2/ADSL/ADSL2/ADSL2+ link. For a band in the upstream direction, transmission is from the remote end (xTU-R) towards the central office end (xTU-C). For a band in the downstream direction, tran… |
| Xdsl2BandUs | INTEGER { us1(5), us2(7), us3(9), us4(11) } | current | Each value identifies a specific band in the upstream transmission direction (excluding the US0 band.). The possible values that identify a band are as follows: us1(5) - Upstream band number 1 (US1). us2(7) - Upstream b… |
| Xdsl2BitsAlloc | OCTET STRING (SIZE(0..256)) | current | This type specifies an array of nibbles, where each nibble indicates the bits allocation for a subcarrier. Each nibble has a value in the range 0 to 15 to indicate the bits allocation. |
| Xdsl2BpscResult | INTEGER { none(1), success(2), inProgress(3), unsupported(4), failed(5), noResources(6) } | current | Possible failure reasons associated with performing a bits per subcarrier measurement on a DSL line. Possible values are: none (1) - The default value, in case a measurement was never requested for the associated line. … |
| Xdsl2CarMask | OCTET STRING (SIZE(0..128)) | current | This type defines an array of bands. Each band is represented by 4 octets and there is a maximum of 32 bands allowed. Each band consists of a 16-bit start subcarrier index followed by a 16-bit stop subcarrier index. The… |
| Xdsl2ChAtmStatus | BITS { noDefect(0), noCellDelineation(1), lossOfCellDelineation(2) } | current | Objects with this syntax are status parameters that reflect the failure status for the Transmission Convergence (TC) layer of a given ATM interface (data path over a VDSL2/ADSL/ ADSL2 or ADSL2+ link). This BITS structur… |
| Xdsl2ChInitPolicy | INTEGER { policy0(1), policy1(2) } | current | This syntax serves for channel configuration parameters that reference the channel initialization policy. The possible values are: policy0 (1) - Policy 0 according to the applicable standard. policy1 (2) - Policy 1 acco… |
| Xdsl2ChInpReport | INTEGER { inpComputedUsingFormula(1), inpEstimatedByXtur(2) } | current | This type is used to indicate the method used to compute the Actual Impulse Noise Protection (ACTINP). If set to 'inpComputedUsingFormula', the ACTINP is computed according to the INP_no_erasure formula (9.6/G.993.2). I… |
| Xdsl2ChPtmStatus | BITS { noDefect(0), outOfSync(1) } | current | Objects with this syntax are status parameters that reflect the failure status for a given PTM interface (packet data path over a VDSL2/ADSL/ADSL2 or ADSL2+ link). This BITS structure can report the following failures: … |
| Xdsl2ConfPmsForce | INTEGER { l3toL0 (0), l0toL2 (2), l0orL2toL3 (3) } | current | Objects with this syntax are configuration parameters that specify the desired power management state transition for the VDSL2/ADSL/ADSL2 or ADSL2+ link. In VDSL2, only L0 and L3 states are defined: l3toL0 (0) - Perform… |
| Xdsl2Direction | INTEGER { upstream(1), downstream(2) } | current | Identifies the direction of a band in a VDSL2/ADSL/ADSL2/ ADSL2+ link. The upstream direction is a transmission from the remote end (xTU-R) towards the central office end (xTU-C). The downstream direction is a transmiss… |
| Xdsl2InitResult | INTEGER { noFail(0), configError(1), configNotFeasible(2), commFail(3), noPeerAtu(4), otherCause(5) } | current | Specifies the result of full initialization attempt; the six possible result values are: noFail (0) - Successful initialization configError (1) - Configuration failure configNotFeasible (2) - Configuration details not s… |
| Xdsl2LastTransmittedState | INTEGER { atucG9941(0), atucQuiet1(1), atucComb1(2), atucQuiet2(3), atucComb2(4), atucIcomb1(5), atucLineprob(6), atucQuiet3(7), atucComb3(8), atucIComb2(9), atucMsgfmt(10), atucMsgpcb(11), atucQuiet4(12), atucReverb1(13), atucTref1(14), atucReverb2(15), atucEct(16), atucReverb3(17), atucTref2(18), atucReverb4(19), atucSegue1(20), atucMsg1(21), atucReverb5(22), atucSegue2(23), atucMedley(24), atucExchmarker(25), atucMsg2(26), atucReverb6(27), atucSegue3(28), atucParams(29), atucReverb7(30), atucSegue4(31), atucShowtime(32), aturG9941(100), aturQuiet1(101), aturComb1(102), aturQuiet2(103), aturComb2(104), aturIcomb1(105), aturLineprob(106), aturQuiet3(107), aturComb3(108), aturIcomb2(109), aturMsgfmt(110), aturMsgpcb(111), aturReverb1(112), aturQuiet4(113), aturReverb2(114), aturQuiet5(115), aturReverb3(116), aturEct(117), aturReverb4(118), aturSegue1(119), aturReverb5(120), aturSegue2(121), aturMsg1(122), aturMedley(123), aturExchmarker(124), aturMsg2(125), aturReverb6(126), aturSegue3(127), aturParams(128), aturReverb7(129), aturSegue4(130), aturShowtime(131), vtucG9941(200), vtucQuiet1(201), vtucChDiscov1(202), vtucSynchro1(203), vtucPilot1(204), vtucQuiet2(205), vtucPeriodic1(206), vtucSynchro2(207), vtucChDiscov2(208), vtucSynchro3(209), vtucTraining1(210), vtucSynchro4(211), vtucPilot2(212), vtucTeq(213), vtucEct(214), vtucPilot3(215), vtucPeriodic2(216), vtucTraining2(217), vtucSynchro5(218), vtucMedley(219), vtucSynchro6(220), vtucShowtime(221), vturG9941(300), vturQuiet1(301), vturChDiscov1(302), vturSynchro1(303), vturLineprobe(304), vturPeriodic1(305), vturSynchro2(306), vturChDiscov2(307), vturSynchro3(308), vturQuiet2(309), vturTraining1(310), vturSynchro4(311), vturTeq(312), vturQuiet3(313), vturEct(314), vturPeriodic2(315), vturTraining2(316), vturSynchro5(317), vturMedley(318), vturSynchro6(319), vturShowtime(320) } | current | This parameter represents the last successful transmitted initialization state in the last full initialization performed on the line. States are per the specific xDSL technology and are numbered from 0 (if G.994.1 is us… |
| Xdsl2LdsfResult | INTEGER { none (1), success (2), inProgress (3), unsupported (4), cannotRun (5), aborted (6), failed (7), illegalMode (8), adminUp (9), tableFull (10), noResources (11) } | current | Possible failure reasons associated with performing Dual Ended Loop Test (DELT) on a DSL line. Possible values are: none (1) - The default value in case LDSF was never requested for the associated line. success (2) - Th… |
| Xdsl2LineBpsc | INTEGER { idle(1), measure(2) } | current | Objects with this syntax are configuration parameters that control the bits per subcarrier measurement for a VDSL2/ADSL/ADSL2 or ADSL2+ link. The possible values are: idle (1) - Idle state measure (2) - Measure the bits… |
| Xdsl2LineCeFlag | BITS { enableCyclicExtension(0) } | current | This type is used to enable the use of the optional cyclic extension values. If the bit is set to '1', the optional cyclic extension values may be used. Otherwise, the cyclic extension shall be forced to the mandatory l… |
| Xdsl2LineClassMask | INTEGER { none(1), a998ORb997M1cORc998B(2), b997M1xOR998co(3), b997M2x(4), b998M1x(5), b998M2x(6), b998AdeM2x(7), bHpeM1(8) } | current | VDSL2 PSD Mask Class. The limit Power Spectral Density masks are grouped in the following PSD mask classes: Class 998 Annex A: D-32, D-48, D-64, D-128. Class 997-M1c Annex B: 997-M1c-A-7. Class 997-M1x Annex B: 997-M1x-… |
| Xdsl2LineLdsf | INTEGER { inhibit(0), force(1) } | current | Objects with this syntax are configuration parameters that control the Loop Diagnostic mode for a VDSL2/ADSL/ADSL2 or ADSL2+ link. The possible values are: inhibit (0) - Inhibit Loop Diagnostic mode force (1) - Force/In… |
| Xdsl2LineLimitMask | BITS { profile8Limit1(0), profile8Limit2(1), profile8Limit3(2), profile8Limit4(3), profile8Limit5(4), profile8Limit6(5), profile8Limit7(6), profile8Limit8(7), profile8Limit9(8), profile8Limit10(9), profile8Limit11(10), profile8Limit12(11), profile8Limit13(12), profile8Limit14(13), profile8Limit15(14), profile8Limit16(15), profile12Limit1(16), profile12Limit2(17), profile12Limit3(18), profile12Limit4(19), profile12Limit5(20), profile12Limit6(21), profile12Limit7(22), profile12Limit8(23), profile12Limit9(24), profile12Limit10(25), profile12Limit11(26), profile12Limit12(27), profile12Limit13(28), profile12Limit14(29), profile12Limit15(30), profile12Limit16(31), profile17Limit1(32), profile17Limit2(33), profile17Limit3(34), profile17Limit4(35), profile17Limit5(36), profile17Limit6(37), profile17Limit7(38), profile17Limit8(39), profile17Limit9(40), profile17Limit10(41), profile17Limit11(42), profile17Limit12(43), profile17Limit13(44), profile17Limit14(45), profile17Limit15(46), profile17Limit16(47), profile30Limit1(48), profile30Limit2(49), profile30Limit3(50), profile30Limit4(51), profile30Limit5(52), profile30Limit6(53), profile30Limit7(54), profile30Limit8(55), profile30Limit9(56), profile30Limit10(57), profile30Limit11(58), profile30Limit12(59), profile30Limit13(60), profile30Limit14(61), profile30Limit15(62), profile30Limit16(63) } | current | The G.993.2 limit PSD mask for each class of profile. The profiles are grouped in following profile classes: - Class 8: Profiles 8a, 8b, 8c, 8d. - Class 12: Profiles 12a, 12b. - Class 17: Profile 17a. - Class 30: Profil… |
| Xdsl2LinePmMode | BITS { allowTransitionsToIdle(0), allowTransitionsToLowPower(1) } | current | Objects with this syntax are configuration parameters that reference the power modes/states into which the xTU-C or xTU-R may autonomously transit. It is a BITS structure that allows control of the following transit opt… |
| Xdsl2LineProfiles | BITS { profile8a(0), profile8b(1), profile8c(2), profile8d(3), profile12a(4), profile12b(5), profile17a(6), profile30a(7) } | current | Objects with this syntax reference the list of ITU-T G.993.2 implementation profiles supported by an xTU, enabled on the VDSL2 line or active on that line. |
| Xdsl2LinePsdMaskSelectUs | INTEGER { adlu32Eu32(1), adlu36Eu36(2), adlu40Eu40(3), adlu44Eu44(4), adlu48Eu48(5), adlu52Eu52(6), adlu56Eu56(7), adlu60Eu60(8), adlu64Eu64(9) } | current | This type is used to define which upstream PSD mask is enabled. This type is used only for Annexes J and M of ITU-T Recommendations G.992.3 and G.992.5. adlu32Eu32 (1), - ADLU-32 / EU-32 adlu36Eu36 (2), - ADLU-36 / EU-3… |
| Xdsl2LineReset | INTEGER { idle(1), reset(2) } | current | This type is used to request a line reset to occur. idle (1) - This state indicates that there is currently no request for a line reset. reset (2) - This state indicates that a line reset request has been issued. |
| Xdsl2LineSnrMode | INTEGER { virtualNoiseDisabled(1), virtualNoiseEnabled(2) } | current | This type is used to enable the transmitter-referred virtual noise. The value of 1, indicates that virtual noise is disabled. The value of 2, indicates that virtual noise is enabled. virtualNoiseDisabled (1) - virtual n… |
| Xdsl2LineStatus | BITS { noDefect(0), lossOfFraming(1), lossOfSignal(2), lossOfPower(3), initFailure(4) } | current | Objects with this syntax are status parameters that reflect the failure status for a given endpoint of a VDSL2/ADSL/ADSL2 or ADSL2+ link. This BITS structure can report the following failures: noDefect (0) - This bit po… |
| Xdsl2LineTxRefVnDs | OCTET STRING (SIZE(0..96)) | current | This is a structure that represents up to 32 PSD mask breakpoints. Each breakpoint occupies 3 octets: The first two octets hold the index of the subcarrier associated with the breakpoint. The third octet holds the PSD r… |
| Xdsl2LineTxRefVnUs | OCTET STRING (SIZE(0..48)) | current | This is a structure that represents up to 16 PSD mask breakpoints. Each breakpoint occupies 3 octets: The first two octets hold the index of the subcarrier associated with the breakpoint. The third octet holds the PSD r… |
| Xdsl2LineUs0Disable | BITS { profile8Us0Disable1(0), profile8Us0Disable2(1), profile8Us0Disable3(2), profile8Us0Disable4(3), profile8Us0Disable5(4), profile8Us0Disable6(5), profile8Us0Disable7(6), profile8Us0Disable8(7), profile8Us0Disable9(8), profile8Us0Disable10(9), profile8Us0Disable11(10), profile8Us0Disable12(11), profile8Us0Disable13(12), profile8Us0Disable14(13), profile8Us0Disable15(14), profile8Us0Disable16(15), profile12Us0Disable1(16), profile12Us0Disable2(17), profile12Us0Disable3(18), profile12Us0Disable4(19), profile12Us0Disable5(20), profile12Us0Disable6(21), profile12Us0Disable7(22), profile12Us0Disable8(23), profile12Us0Disable9(24), profile12Us0Disable10(25), profile12Us0Disable11(26), profile12Us0Disable12(27), profile12Us0Disable13(28), profile12Us0Disable14(29), profile12Us0Disable15(30), profile12Us0Disable16(31), profile17Us0Disable1(32), profile17Us0Disable2(33), profile17Us0Disable3(34), profile17Us0Disable4(35), profile17Us0Disable5(36), profile17Us0Disable6(37), profile17Us0Disable7(38), profile17Us0Disable8(39), profile17Us0Disable9(40), profile17Us0Disable10(41), profile17Us0Disable11(42), profile17Us0Disable12(43), profile17Us0Disable13(44), profile17Us0Disable14(45), profile17Us0Disable15(46), profile17Us0Disable16(47), profile30Us0Disable1(48), profile30Us0Disable2(49), profile30Us0Disable3(50), profile30Us0Disable4(51), profile30Us0Disable5(52), profile30Us0Disable6(53), profile30Us0Disable7(54), profile30Us0Disable8(55), profile30Us0Disable9(56), profile30Us0Disable10(57), profile30Us0Disable11(58), profile30Us0Disable12(59), profile30Us0Disable13(60), profile30Us0Disable14(61), profile30Us0Disable15(62), profile30Us0Disable16(63) } | current | Indicates if US0 is disabled for each limit PSD mask. The profiles are grouped in following profile classes: - Class 8: Profiles 8a, 8b, 8c, 8d. - Class 12: Profiles 12a, 12b. - Class 17: Profile 17a. - Class 30: Profil… |
| Xdsl2LineUs0Mask | BITS { eu32(0), eu36(1), eu40(2), eu44(3), eu48(4), eu52(5), eu56(6), eu60(7), eu64(8), eu128(9), reserved1(10), reserved2(11), reserved3(12), reserved4(13), reserved5(14), reserved6(15), adlu32(16), adlu36(17), adlu40(18), adlu44(19), adlu48(20), adlu52(21), adlu56(22), adlu60(23), adlu64(24), adlu128(25), reserved7(26), reserved8(27), reserved9(28), reserved10(29), reserved11(30), reserved12(31) } | current | The US0 PSD masks to be allowed by the near-end xTU on the line. This parameter is only defined for G.993.2 Annex A. It is represented as a bitmap (0 if not allowed and 1 if allowed) with the following definitions. |
| Xdsl2MaxBer | INTEGER { eminus3(1), eminus5(2), eminus7(3) } | current | Objects with this syntax are configuration parameters that reference the maximum Bit Error Rate (BER). The possible values are: eminus3 (1) - Maximum BER=E^-3 eminus5 (2) - Maximum BER=E^-5 eminus7 (3) - Maximum BER=E^-7 |
| Xdsl2MrefPsdDs | OCTET STRING (SIZE(0..192)) | current | Objects with this syntax are MEDLEY Reference PSD status parameters in the downstream direction. This is expressed as the set of breakpoints exchanged at initialization. The OCTET STRING contains up to 48 pairs of value… |
| Xdsl2MrefPsdUs | OCTET STRING (SIZE(0..128)) | current | Objects with this syntax are MEDLEY Reference PSD status parameters in the upstream direction. This is expressed as the set of breakpoints exchanged at initialization. The OCTET STRING contains up to 32 pairs of values … |
| Xdsl2OperationModes | INTEGER { defMode(1), ansit1413(2), etsi(3), g9921PotsNonOverlapped(4), g9921PotsOverlapped(5), g9921IsdnNonOverlapped(6), g9921isdnOverlapped(7), g9921tcmIsdnNonOverlapped(8), g9921tcmIsdnOverlapped(9), g9922potsNonOverlapped(10), g9922potsOverlapped(11), g9922tcmIsdnNonOverlapped(12), g9922tcmIsdnOverlapped(13), g9921tcmIsdnSymmetric(14), g9923PotsNonOverlapped(20), g9923PotsOverlapped(21), g9923IsdnNonOverlapped(22), g9923isdnOverlapped(23), g9924potsNonOverlapped(26), g9924potsOverlapped(27), g9923AnnexIAllDigNonOverlapped(30), g9923AnnexIAllDigOverlapped(31), g9923AnnexJAllDigNonOverlapped(32), g9923AnnexJAllDigOverlapped(33), g9924AnnexIAllDigNonOverlapped(34), g9924AnnexIAllDigOverlapped(35), g9923AnnexLMode1NonOverlapped(36), g9923AnnexLMode2NonOverlapped(37), g9923AnnexLMode3Overlapped(38), g9923AnnexLMode4Overlapped(39), g9923AnnexMPotsNonOverlapped(40), g9923AnnexMPotsOverlapped(41), g9925PotsNonOverlapped(42), g9925PotsOverlapped(43), g9925IsdnNonOverlapped(44), g9925isdnOverlapped(45), g9925AnnexIAllDigNonOverlapped(48), g9925AnnexIAllDigOverlapped(49), g9925AnnexJAllDigNonOverlapped(50), g9925AnnexJAllDigOverlapped(51), g9925AnnexMPotsNonOverlapped(52), g9925AnnexMPotsOverlapped(53), g9932AnnexA(58), g9932AnnexB(59), g9932AnnexC(60) } | current | The VDSL2 management model specified includes an xDSL Mode object that identifies an instance of xDSL Mode-Specific PSD Configuration object in the xDSL Line Profile. The following classes of xDSL operating mode are def… |
| Xdsl2PowerMngState | INTEGER { l0(1), l1(2), l2(3), l3(4) } | current | Objects with this syntax uniquely identify each power management state defined for the VDSL2/ADSL/ADSL2 or ADSL2+ link. In VDSL2, only L0 and L3 states are defined. The possible values are: l0(1) - L0: Full power. Synch… |
| Xdsl2PsdMaskDs | OCTET STRING (SIZE(0..96)) | current | This is a structure that represents up to 32 PSD mask breakpoints. Each breakpoint occupies 3 octets: The first two octets hold the index of the subcarrier associated with the breakpoint. The third octet holds the PSD r… |
| Xdsl2PsdMaskUs | OCTET STRING (SIZE(0..48)) | current | This is a structure that represents up to 16 PSD mask breakpoints. Each breakpoint occupies 3 octets: The first two octets hold the index of the subcarrier associated with the breakpoint. The third octet holds the PSD r… |
| Xdsl2RaMode | INTEGER { manual(1), raInit(2), dynamicRa(3) } | current | Specifies the rate adaptation behavior for the line. The three possible behaviors are: manual (1) - No Rate-Adaptation. The initialization process attempts to synchronize to a specified rate. raInit (2) - Rate-Adaptatio… |
| Xdsl2RfiBands | OCTET STRING (SIZE(0..64)) | current | This type defines a subset of downstream PSD mask breakpoints used to notch radio frequency interference (RFI) bands. Each RFI band is represented by 4 octets: a 16-bit start subcarrier index followed by a 16-bit stop s… |
| Xdsl2ScMaskDs | OCTET STRING (SIZE(0..512)) | current | Each one of the 4096 bits in this OCTET STRING array represents the corresponding subcarrier in the downstream direction. A bit value of one indicates that a subcarrier is masked. |
| Xdsl2ScMaskUs | OCTET STRING (SIZE(0..512)) | current | Each one of the 4096 bits in this OCTET STRING array represents the corresponding subcarrier in the upstream direction. A bit value of one indicates that a subcarrier is masked. |
| Xdsl2SymbolProtection | INTEGER { noProtection (1), halfSymbol (2), singleSymbol (3), twoSymbols (4), threeSymbols (5), fourSymbols (6), fiveSymbols (7), sixSymbols (8), sevenSymbols (9), eightSymbols (10), nineSymbols (11), tenSymbols (12), elevenSymbols (13), twelveSymbols (14), thirteeSymbols (15), fourteenSymbols (16), fifteenSymbols (17), sixteenSymbols (18) } | current | This type specifies the minimum impulse noise protection for the bearer channel if it is transported over DMT symbols with a subcarrier spacing of 4.3125 kHz. The possible values are: 'noProtection' (i.e., INP not requi… |
| Xdsl2SymbolProtection8 | INTEGER { noProtection (1), singleSymbol (2), twoSymbols (3), threeSymbols (4), fourSymbols (5), fiveSymbols (6), sixSymbols (7), sevenSymbols (8), eightSymbols (9), nineSymbols (10), tenSymbols (11), elevenSymbols (12), twelveSymbols (13), thirteeSymbols (14), fourteenSymbols (15), fifteenSymbols (16), sixteenSymbols (17) } | current | This type specifies the minimum impulse noise protection for the bearer channel if it is transported over DMT symbols with a subcarrier spacing of 8.625 kHz. The possible values are: 'noProtection' (i.e., INP not requir… |
| Xdsl2TransmissionModeType | BITS { ansit1413(0), etsi(1), g9921PotsNonOverlapped(2), g9921PotsOverlapped(3), g9921IsdnNonOverlapped(4), g9921isdnOverlapped(5), g9921tcmIsdnNonOverlapped(6), g9921tcmIsdnOverlapped(7), g9922potsNonOverlapped(8), g9922potsOverlapped(9), g9922tcmIsdnNonOverlapped(10), g9922tcmIsdnOverlapped(11), g9921tcmIsdnSymmetric(12), reserved1(13), reserved2(14), reserved3(15), reserved4(16), reserved5(17), g9923PotsNonOverlapped(18), g9923PotsOverlapped(19), g9923IsdnNonOverlapped(20), g9923isdnOverlapped(21), reserved6(22), reserved7(23), g9924potsNonOverlapped(24), g9924potsOverlapped(25), reserved8(26), reserved9(27), g9923AnnexIAllDigNonOverlapped(28), g9923AnnexIAllDigOverlapped(29), g9923AnnexJAllDigNonOverlapped(30), g9923AnnexJAllDigOverlapped(31), g9924AnnexIAllDigNonOverlapped(32), g9924AnnexIAllDigOverlapped(33), g9923AnnexLMode1NonOverlapped(34), g9923AnnexLMode2NonOverlapped(35), g9923AnnexLMode3Overlapped(36), g9923AnnexLMode4Overlapped(37), g9923AnnexMPotsNonOverlapped(38), g9923AnnexMPotsOverlapped(39), g9925PotsNonOverlapped(40), g9925PotsOverlapped(41), g9925IsdnNonOverlapped(42), g9925isdnOverlapped(43), reserved10(44), reserved11(45), g9925AnnexIAllDigNonOverlapped(46), g9925AnnexIAllDigOverlapped(47), g9925AnnexJAllDigNonOverlapped(48), g9925AnnexJAllDigOverlapped(49), g9925AnnexMPotsNonOverlapped(50), g9925AnnexMPotsOverlapped(51), reserved12(52), reserved13(53), reserved14(54), reserved15(55), g9932AnnexA(56), g9932AnnexB(57), g9932AnnexC(58), reserved16(59), reserved17(60), reserved18(61), reserved19(62), reserved20(63) } | current | A set of xDSL line transmission modes, with one bit per mode. The notes (F) and (L) denote Full-Rate and Lite/splitterless, respectively: Bit 00 : Regional Std. (ANSI T1.413) (F) Bit 01 : Regional Std. (ETSI DTS/TM06006… |
| Xdsl2Tssi | OCTET STRING (SIZE(0..96)) | current | This is a structure that represents up to 32 transmit spectrum shaping (TSSi) breakpoints. Each breakpoint is a pair of values occupying 3 octets with the following structure: First 2 octets - Index of the subcarrier us… |
| Xdsl2Unit | INTEGER { xtuc(1), xtur(2) } | current | |
| Xdsl2UpboKLF | INTEGER { auto(1), override(2), disableUpbo(3) } | current | Defines the upstream power backoff force mode (UPBOKLF). The three possible mode values are: auto(1) - The VDSL Transceiver Unit (VTUs) will autonomously determine the electrical length. override(2) - Forces the VTU-R t… |