Jason Nixon, Telecom Specialist

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1 Nemko Canada Test Report : TRFTTE Applicant : Sangoma Technologies 50 McIntosh Dr. #120 Markham, Ontario L3R 9T3 Canada Apparatus : Sangoma A500 Tested by : Nemko Canada Inc. 303 River Road Ottawa, Ontario K1V 1H2 Canada Author ised by : Jason Nixon, Telecom Specialist Date : May 15, 2008 Total number of pages: 88

2 Report Summary Report Summary Samples of the A500 were submitted for assessment against European telecommunication specifications and were found to be fully compliant. Page 2

3 Report Summary Contents Report Summary 2 SECTION 1 : Introduction Laboratory Author General Apparatus assessed Assessment criteria 6 SECTION 2 : Test schedule Scope of assessment Specifications Special notes Deviations from test schedule Deviations from laboratory test procedures 7 SECTION 3 : Test conditions Test environment Test parameters 8 SECTION 4 : Compliance 10 SECTION 5 : Observations Modifications performed during assessment Record of technical judgements Record of EUT behaviour Test deletion Record of marginal test measurements EUT parameters affecting compliance Additional observations 13 SECTION 6 : Results Summary TBR 3 Layer 1 : Results Summary TBR 3 Layer 2 : Results Summary TBR 3 Layer 3 : Results Summary TBR 3 Clause 8, Overvoltage Protection 30 Page 3

4 Report Summary Appendix A : Electrical Characteristics Laboratory Test Lead 31 Appendix B : Electrical Characteristics Supplied Test Lead 54 Appendix C : Functional Characteristics 77 Appendix D : Power Feeding Tests 78 Appendix E : Overvoltage Protection Test Results 79 Appendix F : Photographs of Test Samples 80 Page 4

5 SECTION 1 : Introduction SECTION 1 : Introduction 1.1 Laboratory Nemko Canada Inc. 303 River Road Ottawa, Ontario Canada K1V 1H2 Telephone: (613) Fax: (613) Web site: Author Paul Van Hoof, Senior Telecom Specialist 1.3 General This report contains an assessment of apparatus against European telecommunication specifications based upon tests carried out on samples submitted at Nemko Canada Inc. Note that the results contained in this report relate only to the items tested and were obtained in the period between the date of initial receipt of samples and the date of issue of the report. This report must not be reproduced except in full without prior written permission of the Laboratory Manager. Page 5

6 SECTION 1 : Introduction 1.4 Apparatus assessed The following apparatus was assessed: Sangoma A500 Software version: Wanpipe p4 The following samples of the apparatus have been submitted for type assessment: Sample No. Description Serial No. 1 Desktop CPU Containing A500 BRI Card 2 Uniden Phone BRI line cables N/A The first samples were received on February 28, Assessment criteria This assessment has been performed in accordance with the requirements of ISO/IEC as accredited by the Standards Council of Canada. Page 6

7 SECTION 2 : Test schedule SECTION 2 : Test schedule 2.1 Scope of assessment Basic Access ISDN Networks conforming to the following European Telecommunications Standards; ETS (layer 1) ETS (layer 2) ETS (layer 3) 2.2 Specifications The apparatus was assessed against the following specifications: TBR 3 - November 1995 TBR 3 Amendment A1, December 1997 ITAAB Permanent Reference Document: IT.01, Version 27 : Special notes The following special notes were noted during this assessment a) Safety and EMC did not form part of this assessment. 2.4 Deviations from test schedule No deviations were made from the test schedule. 2.5 Deviations from laboratory test procedures No deviations were made from laboratory test procedures. Page 7

8 SECTION 3 : Test conditions SECTION 3 : Test conditions 3.1 Test environment All tests were performed under the following environmental conditions: Temperature range : o C Humidity range : % Pressure range : kpa Power supply range : +/- 5% of rated voltages 3.2 Test parameters Parameter Value Layer 1 test parameters Test Cord Type Laboratory reference lead, Customer supplied lead Power Source Type Local power Length of supplied test lead 1.85m TE is designated for operation in restricted mode No Layer 3 Service Type Speech Point-to-multipoint physical link Implemented TE Has connection to earth es TE is capable of transmitting INFO 3 within 5ms of INFO 2/4 es The value of T3 is larger than 4 x T200 es TE Priority Class 1 TEI category tested Point-to-Multi Point TE Timer T3 Value 8s TE Timer TSELFTEST Value 5s Timer TWAIT Value 15s Frame Loss Frames (PX-N) 2 Frame Regain Frames (PX-M) 29 Physical layer test equipment Siemens K1403 So Analyzer V3.03 Layer 2 test selection criteria TE supports Automatic TEI assignment (PC_AUTOMAT_TEI) TE does not use a single point to point data link (PC_PTMP_L2) TE is stable in state 4 for at least 6 seconds (PX_IUT_STA_S4) TE is stable in state 1 for at least 6 seconds (PX_IUT_STA_S1) TRUE TRUE TRUE TRUE Page 8

9 SECTION 3 : Test conditions Parameter Layer 3 test selection criteria TE performs Bearer capability checking (IBCC) TE performs High layer compatibility checking (IHLCC) TE supports the Call rearrangement procedure (BSPRE) TE includes the Sending complete IE in SETUP (EBS) TE supports the Overlap receiving procedure (OVR) TE is capable of sending the ALERT PDU (BAL) TE maintains state U7 for more than 3 seconds (U7_MAINT) TE is capable of sending the CALL PROCEEDING PDU (BCP) TE maintains state U9 for more than 3 seconds (U9_MAINT) TE supports only a single point-to-point data link (PTP) Bearer capabilities supported Incoming calls Outgoing calls Bearer capabilities tested Value TRUE FALSE FALSE TRUE TRUE TRUE TRUE TRUE TRUE FALSE Speech (G.711 A-law) 3.1kHz audio Speech (G.711 A-law) 3.1kHz audio Speech (G.711 A-law) Protocol layers test equipment Acacia Clarinet protocol tester Test software used KTL ISDN TBR 3 software version 2.0 Page 9

10 SECTION 4 : Compliance SECTION 4 : Compliance The apparatus complied in full with the requirements listed in section 2.2. Page 10

11 SECTION 5 : Observations SECTION 5 : Observations 5.1 Modifications performed during assessment The following modifications were performed during assessment: Modification 1 As originally submitted the apparatus was found to be non-compliant to clause CPF4layer, CPF&DIS_I2 and CPF&DIS_IX. After a software change the EUT was re-tested and found to be fully compliant. 5.2 Record of technical judgements No extraordinary technical judgements were made. 5.3 Record of EUT behaviour No unusual EUT behaviour was observed. Page 11

12 SECTION 5 : Observations 5.4 Test deletion The following tests were deleted: Optional tests deleted The following optional tests were deemed inapplicable in accordance with the declarations in the information supplied by the applicant for the reasons stated below, and hence were deleted. TBR (Layer 1 Aspects) Clause Reason AD3aF2_PS-off Apparatus was not powered from PS1 AD9aF3_PS-off Apparatus was not powered from PS1 AD16aF4_PS-off Apparatus was not powered from PS1 AD22aF5_PS-off Apparatus was not powered from PS1 AD22bF5_LP-off Apparatus responds to an Info 2 or 4 within 5msec. AD23F5_RX-I0 Apparatus responds to an Info 2 or 4 within 5msec. AD24F5_RX-I2 Apparatus responds to an Info 2 or 4 within 5msec. AD25F5_RX-I4 Apparatus responds to an Info 2 or 4 within 5msec. AD26F5_RX-IX Apparatus responds to an Info 2 or 4 within 5msec. CPF5PHDI_I0T3 Apparatus responds to an Info 2 or 4 within 5msec. CPF5PHDI_T3expa Apparatus responds to an Info 2 or 4 within 5msec. AD28aF6_PS-off Apparatus was not powered from PS1 AD35aF7_PS-off Apparatus was not powered from PS1 AD40aF8_PS-off Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B.5.3 Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS1 B Apparatus was not powered from PS / Apparatus supports T309 Page 12

13 SECTION 5 : Observations TBR (Layer 3 Aspects) Clause TC10009 TC20001 TC10104 TC10201 TC10202 TC10203 TC10204 TC20203 TC20204 TC10901 TC11501 TC11503 TC11504 TC11508 TC11701 TC11703 TC11706 Reason Apparatus did not implement High Layer compatibility checking Apparatus did not support the Call rearrangement procedure Apparatus did not support Overlap Sending Apparatus did not support Overlap Sending Apparatus did not support Overlap Sending Apparatus did not support Overlap Sending Apparatus did not support Overlap Sending Apparatus did not support Overlap Sending Apparatus did not support Overlap Sending Apparatus was not stable in state U9 Apparatus did not support the Call rearrangement procedure Apparatus did not support the Call rearrangement procedure Apparatus did not support the Call rearrangement procedure Apparatus did not support the Call rearrangement procedure Apparatus did not support the Call rearrangement procedure Apparatus did not support the Call rearrangement procedure Apparatus did not support the Call rearrangement procedure 5.5 Record of marginal test measurements The test results obtained did not contain any marginal measurements. 5.6 EUT parameters affecting compliance The user of the apparatus could not alter parameters that would affect compliance. 5.7 Additional observations The following additional observations were made during this assessment: ISDN S/T interface components The ISDN S/T interface transformer was a VOGT The ISDN S/T interface IC was a Cologne XHFC-2SU. Page 13

14 SECTION 6 : Results Summary SECTION 6 : Results Summary This section contains the following: 6.1 TBR 3 Layer 1 : Results Summary 6.2 TBR 3 Layer 2 : Results Summary 6.3 TBR 3 Layer 3 : Results Summary 6.4 TBR 3 Clause 8, Overvoltage Protection The column headed 'Required' indicates whether the associated clauses, as specified in section 2.2, were invoked for the apparatus under test. The following abbreviations are used: N No : not applicable / not relevant, refer to section es : Mandatory i.e. the apparatus shall conform to these tests. In the column headed 'Result' the following abbreviation is used: N/T Not tested These results apply to the apparatus in their final modified state. Page 14

15 SECTION 6 : Results Summary 6.1 TBR 3 Layer 1 : Results Summary TBR3 Test Test description Required Result 9.1 Physical characteristics 9.2 B.2 Electrical characteristics tests B.2.1 Bit rate when transmitting an INFO B TE jitter measurement characteristics (test A) B TE output phase deviation (test B) B TE transmitter output impedance: Test A B Test B B Test C B Test D B Test E B.2.4 Pulse shape and amplitude B Pulse amplitude B Pulse unbalance of an isolated couple of pulses B Voltage on other test loads: Test A 400Ω load B Test B 5.6Ω load B.2.7 Longitudinal conversion loss of the transmitter output B TE receiver input impedance: Test A B Test B B Test C B Test D B Receiver sensitivity- noise and distortion immunity B Unbalance about earth of receiver input 9.3 B.3 Functional characteristic tests /3/ B Binary organisation of frame:test A B Test B 9.4 B.4 Interface procedure tests D-Channel Access Control Procedure DCBinaryOneCL DCNormalPL0CL DCNormalPL1CL DCPriorityClass DCNormaltoLowPLCL DCLowtoNormalPLCL1 Activation/Deactivation Procedure F1/AD1aF1_PS&LP-on F2/AD3aF2_PS-off N F2/AD3bF2_LP-off F2/AD4F2_RX-I F2/AD5F2_RX-I F2/AD6F2_RX-I F2/AD7F2_RX-IX F3/AD9aF3_PS-off N F3/AD9bF3_LP-off F3/AD10F3_PH-AR F3/AD11F3_RX-I F3/AD12F3_RX-I F3/AD13F3_RX-I4 Page 15

16 SECTION 6 : Results Summary TBR 3 Layer 1 : Results Summary (continued) TBR3 Test Test description Required Result Activation/Deactivation Procedure (continued) F3/AD14F3_RX-IX F3/AD15F3_CHK_T F3/CPF3PHAI F4/AD16aF4_PS-off N F4/AD16bF4_LP-off F4/AD17F4_RX-I F4/AD18F4_RX-I F4/AD19F4_RX-I F4/CPF4PHDI_T3exp F4/CPF4Tlayer F5/AD22aF5_PS-off N F5/AD22bF5_LP-off N F5/AD23F5_RX-I0 N F5/AD24F5_RX-I2 N F5/AD25F5_RX-I4 N F5/AD26F5_RX-IX N F5/CPF5PHDI_I0T3 N F5/CPF5PHDI_T3expa N F6/AD28aF6_PS-off N F6/AD28bF6_LP-off F6/AD29F6_Lostfr F6/AD30F6_PH-AR F6/AD31F6_RX-IO F6/AD32F6 RX-I F6/AD33F6_RX-I F6/CPF6_PHAla F6/CPF6_PHAlb F6/CPF6PHDI_IO F6/CPF6PHARa F7/AD35aF7_PS-off N F7/AD35bF7_LP-off F7/AD36F7_Lostfr F7/AD37F7_RX-I F7/AD38F7_RX-I F7/AD39F7_RX-I F7/CPF7PHDI_I F7/CPF7DIS_IX F7/CPF7DIS_I F8/AD40aF8_PS-off N F8/AD40bF8_LP-off F8/AD41F8_PH-AR F8/AD43F8_RX-I F8/AD44F8_RX-I F8/AD45F8_RX-IX F8/AD46F8_CHK_T F8/CPF8PHARa F8/CPF8PHAlb F8/CPF8PHDI_IOT3 Timers for activation/deactivation F3/TIF3info F4/TIF4info F3/TIF3info F4/TIF4info F3/TItimerT F6/TIF6Physdeact Page 16

17 SECTION 6 : Results Summary TBR 3 Layer 1 : Results Summary (continued) TBR3 Test Test description Required Result F7/TIF7Physdeact / F7/TIF7Compdeact / F8/TIF8Compdeact1 Frame alignment procedure FA/F7/FAinfA_1fr FA/F7/FAinfB_1fr FA/F7/FAinfD_1fr FA/F7/FAinfA_kfr FA/F7/FAinfB_kfr FA/F7/FAinfD_kfr FA/F7/FA regain BC/F7/BCBinaryOne Pass 9.5 B.5 Power feeding B Normal power provision (Test A) N B Normal power provision (Test B) N B Normal power provision (Test C) N B Normal power provision (Test D) B Restricted power provision (Test A) N B Restricted power provision (Test B) N B Restricted power provision (Test C) N B Restricted power provision (Test D) B Restricted power provision (Test F) N B.5.3 Current transient N / B Current/time limitation for TE N B Current/time limitation for TE when connecting B Power start-up test after removal of short-circuit N B Power start-up test at low input voltage N B Protection against short-term interruptions: Normal power N B Protection against short-term interruptions: Restrict power N B Behaviour at the switch-over: Normal power N B Behaviour at the switch-over: Restricted power N B DC Unbalance of TEs using power sink 1 N B Effect of current unbalance B.5.5 Galvanic isolation Page 17

18 SECTION 6 : Results Summary 6.2 TBR 3 Layer 2 : Results Summary TBR 3 Test description Required Result 10 Layer 2 requirements Test Case Id Test description Required Result LM/S10/ TC11013 Ensure that the IUT when in state 1 discards an incoming UI-frame with TEI value different from 127. LM/S30/ TC13008 Ensure that the IUT when in state 3 and receiving an Identity Denied frame remains in state 3. TC13010 Ensure that the IUT when initiating TEI assignment procedure and receiving no response from the network transmits ID-request at least N202 times. TC13014 Ensure that the IUT when in state 3 ignores an ID assign message containing a RI different from the one transmitted in the ID request message. LM/S40/ TC14001 Ensure that the IUT when in state 4 and after receiving an Identity Check Request with Action Indicator set to 127 responds with an Identity Check Response in which the value of the action indicator is equal to the TEI value assigned to the IUT and remains in state 4. TC14002 Ensure that the IUT when in state 4 and after receiving an Identity Check Request with Action Indicator set to the value equal to the TEI value assigned to the terminal responds with an Identity Check Response in which the value of the action indicator is equal to the TEI value assigned to the IUT and remains in state 4. DC/S40/ TC24004 Ensure the normal procedure of establishment of the Multiple Frame Operation initiated by the IUT TC24020 Ensure that the IUT when in state 4 takes no action on receipt of a SABME frame containing a TEI different from the TEI assigned to the IUT. DC/S50/ TC25002 Ensure that the IUT when in state 5 and receiving a DM F=1 enters state 4. TC25005 Ensure that the IUT when in state 5 and receiving no response from the network retransmits SABME at least N200 times. Page 18

19 SECTION 6 : Results Summary TBR 3 Layer 2 : Results Summary (continued) Test Case Id Test description Required Result DC/S70/ TC27003 Ensure the operation of the sequence numbering of N(R) and N(S). TC27004 Ensure that the IUT accepts acknowledgement by an I-frame. TC27011 Ensure that the IUT when in state 7.0 and an I-frame is outstanding and the IUT receives a REJ F=0 indicating request of retransmission of last transmitted I-frame retransmits the requested I-frame. TC27012 Ensure the release procedure for Multiple Frame Established Operation initiated by the network side. TC27015 Ensure that the IUT retransmits the last transmitted I-frame at least twice or transmits an RR command at least twice if no acknowledgement for the last transmitted I-frame is received. If the IUT transmits an RR command frame it is tested whether the IUT retransmits the I-frame after receiving an RR response frame not acknowledging the outstanding I- frame. TC27019 Ensure that the IUT when in state 7.0 and an I-frame is outstanding and the IUT receives no acknowledge for the outstanding I-frame will either retransmit the I-frame or transmit an RR P=1 at expiry of timer T200. TC27022 Ensure the re-establishment procedure of Multiple Frame Operation initiated by the network. TC27027 Ensure that the IUT when in state 7.0 and receiving an I-frame with P=1 and N(S) error transmits a REJect frame with F=1. TC27028 Ensure that the IUT when in state 7.0 and receiving an I-frame with P=0 and N(S) error transmits a REJect frame with F=0. TC27031 Ensure that the IUT when in state 7.0 and receiving an UA F=1 frame either initiates TEI removal or TEI verify procedure. TC27040 Ensure that the IUT when in state 7.0 and receiving a RR command frame with P bit 1 and a N(R) error initiates re-establishment of the data link. TC27043 Ensure that the IUT when in state 7.0 and receiving a RR response frame with F bit 1 and a N(R) error initiates re-establishment of the data link. TC27046 Ensure that the IUT when in state 7.0 and receiving a RR response frame with F bit 0 and a N(R) error initiates re-establishment of the data link. TC27058 Ensure that the IUT when receiving a frame which contains a frame check sequence error discards the frame. DC/S74/ TC27404 Ensure that the IUT when in state 7.4 does not transmit any I-frames and that outstanding I-frames are transmitted after entering state 7.0. TC27411 Ensure that the IUT when in state 7.4 and receiving no response from the network retransmits an RR command frame N200 times. TC27412 Ensure that the IUT when in state 7.4 and receiving an RR P=1 frame transmits an RR F=1 and enters state 7.0. Page 19

20 SECTION 6 : Results Summary TBR 3 Layer 2 : Results Summary (continued) Test Case Id Test description Required Result TC27413 Ensure that the IUT when in state 7.4 and receiving an RR F=0 frame enters state 7.0. TC27414 Ensure that the IUT when in state 7.4 and receiving a RNR P=1 frame transmits an RR F=1 and remains in state 7.4. TC27417 Ensure that the IUT when in state 7.4 and receiving no frames from the network retransmits an RR command frame within the allowed tolerance of timer T200. DC/S80/ TC28005 Ensure that the IUT when in state 8.0 and receiving a REJ F=1 indicating a request for retransmission of the last I-frame enters state 7.0 and retransmits the last transmitted I-frame. TC28012 Ensure that the IUT when in state 8.0 is able to receive I-frames. DC/S84/ TC28406 Ensure that the IUT when in state 8.4 is able to receive I-frames. TC28424 Ensure that the IUT when in state 8.4 and receiving a REJ P=1 frame not acknowledging the last transmitted I-frame transmits an RR F=1 and enters state 8.0. Page 20

21 SECTION 6 : Results Summary 6.3 TBR 3 Layer 3 : Results Summary TBR 3 Test description Required Result 11 Layer 3 requirements Test Case Id Test description Required Result U00/PS/ TC10002 CALLED USER TESTS - STATE U0 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RELEASE PDU, the IUT responds with a RELEASE COMPLETE PDU and remains in the same state. TC10004 CALLED USER TESTS - STATE UO - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a STATUS PDU indicating any state except the Null state NO. the IUT responds with either a RELEASE or RELEASE COMPLETE PDU with cause value 101. TC10005 INCOMING CALL HANDLING TESTS - STATE UO - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a valid SETUP PDU without the Sending complete information element, the IUT responds with any of a SETUP ACKNOWLEDGE, a CALL PROCEEDING, an ALERTING or a CONNECT PDU and moves to the relevant state Overlap Sending U25, Incoming Call Proceeding U9, Call Received U7 or Connect Request U8. TC10006 INCOMING CALL HANDLING TESTS - STATE UO - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a valid SETUP PDU with the Sending complete information element, the IUT responds with any of a CALL PROCEEDING, an ALERTING or a CONNECT PDU and moves to the relevant state Incoming Call Proceeding U9, Call Received U7 or Connect Request U8. TC10008 INCOMING CALL HANDLING TESTS - STATE UO - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a valid SETUP PDU containing an incompatible Bearer capability information element (mandatory parameter) the IUT: - responds with a RELEASE COMPLETE PDU: or ignores the SETUP PDU (broadcast datalink): - responds with a RELEASE COMPLETE PDU (point-to-point datalink). TC10009 INCOMING CALL HANDLING TESTS - STATE UO - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a valid SETUP PDU containing an incompatible High layer compatibility information element (optional parameter) the IUT: - responds with a RELEASE COMPLETE PDU: or ignores the SETUP PDU (broadcast datalink): - responds with a RELEASE COMPLETE PDU (point-to-point datalink). N TC10010 CALLED USER TESTS - STATE UO - IVE IUT BEHAVIOUR INOPPORTUNE TEST EVENTS. Ensure that on receipt of an inopportune PDU (DISCONNECT), the IUT responds with a RELEASE PDU or a RELEASE COMPLETE PDU. Page 21

22 SECTION 6 : Results Summary TBR 3 Layer 3 : Results Summary (continued) Test Case Id Test description Required Result TC10011 INCOMING CALL HANDLING TESTS - STATE UO - IVE IUT BEHAVIOUR INOPPORTUNE TEST EVENTS. Ensure that on receipt of a repeated valid SETUP PDU with the same call reference as the initial SETUP PDU, the IUT does not respond to the second SETUP PDU and remains in the same state. TC10015 INCOMING CALL HANDLING TESTS - STATE UO- IVE IUT BEHAVIOUR SNTACTICALL INVALID TEST EVENTS. Ensure that on receipt of a PDU with mandatory information element missing, the IUT responds with a RELEASE COMPLETE PDU and remains in the same state. TC10024 INCOMING CALL HANDLING TESTS - STATE UO- IVE IUT BEHAVIOUR SNTACTICALL INVALID TEST EVENTS - ERROR CATEGOR 11. Ensure that on receipt of a PDU with duplicated information elements, the IUT ignores the duplication and processes the remaining contents of the PDU as valid. TC10027 INCOMING CALL HANDLING TESTS - STATE UO- IVE IUT BEHAVIOUR SNTACTICALL INVALID TEST EVENTS - ERROR CATEGOR 15. Ensure that on receipt of a PDU with unrecognised information element coded "comprehension required", the IUT responds with a RELEASE COMPLETE PDU and remains in the same state. TC10028 INCOMING CALL HANDLING TESTS - STATE UO- IVE IUT BEHAVIOUR SNTACTICALL INVALID TEST EVENTS - ERROR CATEGOR 16. Ensure that on receipt of a compatible SETUP PDU with all the mandatory information elements correctly coded and an unrecognised optional information element with comprehension not required, the IUT processes the PDU and its remaining contents as valid. An optional STATUS PDU with cause value #99 may be sent before or after the normal response to the SETUP PDU. TC10029 INCOMING CALL HANDLING TESTS - STATE UO- IVE IUT BEHAVIOUR SNTACTICALL INVALID TEST EVENTS - ERROR CATEGOR 17. Ensure that on receipt of a SETUP PDU with non-mandatory information element content error the IUT processes the PDU and its remaining contents as valid. An optional STATUS PDU with cause value #100 may be sent before or after the normal response to the SETUP PDU. U00/AC/ TC20001 CALLED USER TESTS - STATE UO - ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on sending of a RESUME PDU the IUT enters the Resume Request state U17. N TC20002 NULL STATE TESTS - STATE UO - ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT transmits a valid SETUP PDU and enters the Call Initiated state U1. Page 22

23 SECTION 6 : Results Summary TBR 3 Layer 3 : Results Summary (continued) Test Case Id Test description Required Result U01/PS/ TC10101 CALL INITIATED STATE TESTS - STATE U1 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a CALL PROCEEDING PDU the IUT enters the Outgoing Call Proceeding state U3. TC10102 CALL INITIATED STATE TESTS - STATE U1 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RELEASE COMPLETE PDU the IUT does not respond but returns to the Null state U0. TC10103 CALL INITIATED STATE TESTS - STATE U1 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RELEASE PDU the IUT responds with a RELEASE COMPLETE PDU and enters the Null state U0. TC10104 CALL INITIATED STATE TESTS - STATE U1 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a SETUP ACKNOWLEDGE PDU the IUT enters the Overlap Sending state U2. N TC10105 CALL INITIATED STATE TESTS - STATE U1 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a STATUS PDU specifying the Null state N0, the IUT enters the Null state U0. TC10107 CALL INITIATED STATE TESTS - STATE U1 - IVE IUT BEHAVIOUR INOPPORTUNE TEST EVENTS. Ensure that the IUT responds to an inopportune PDU with a STATUS PDU with cause value 98 or 101, or STATUS ENQUIR PDU and remains in the same state. TC10120 CALL INITIATED STATE TESTS - STATE U1 - IVE IUT BEHAVIOUR SNTACTICALL INVALID TEST EVENTS. Ensure that the IUT responds to a syntactically invalid message type with a STATUS PDU with cause value 98 or 97, or with a STATUS ENQUIR PDU and remains in the same state. TC10125 CALL INITIATED STATE TESTS - STATE U1 - IVE IUT BEHAVIOUR INOPPORTUNE TEST EVENTS. Ensure that on receipt of a RELEASE COMPLETE PDU the IUT does not respond and remains in the same state. Page 23

24 SECTION 6 : Results Summary TBR 3 Layer 3 : Results Summary (continued) Test Case Id Test description Required Result U02/PS/ TC10201 TC10202 TC10203 TC10204 OVERLAP SENDING STATE TESTS - STATE U2 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of an ALERTING PDU the IUT enters the Call Delivered state U4. OVERLAP SENDING STATE TESTS - STATE U2 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a CONNECT PDU the IUT enters the Active state U10. OVERLAP SENDING STATE TESTS - STATE U2 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a CALL PROCEEDING PDU the IUT enters the Outgoing Call Proceeding state U3. OVERLAP SENDING STATE TESTS - STATE U2 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a DISCONNECT PDU the IUT responds with a RELEASE PDU and enters the Release Request state U19. N N N N TC20203 TC20204 U02/AC/ OVERLAP SENDING STATE TESTS - STATE U2 - ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT transmits a DISCONNECT PDU and enters the Disconnect Request state U11. OVERLAP SENDING STATE TESTS - STATE U2 - ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT transmits an INFORMATION PDU and remains in the same state. N N U03/PS/ TC10301 OUTGOING CALL PROCEEDING STATE TESTS - STATE U3 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of an ALERTING PDU the IUT enters the Call Delivered state U4. TC10302 OUTGOING CALL PROCEEDING STATE TESTS - STATE U3 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a CONNECT PDU the IUT enters the Active state U10. TC10303 OUTGOING CALL PROCEEDING STATE TESTS - STATE U3 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a DISCONNECT PDU the IUT responds with a RELEASE PDU and enters the Release Request state U19. Page 24

25 SECTION 6 : Results Summary TBR 3 Layer 3 : Results Summary (continued) Test Case Id Test description Required Result U03/AC/ TC20301 OUTGOING CALL PROCEEDING STATE TESTS - STATE U3 -ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT transmits a DISCONNECT PDU and enters the Disconnect Request state U11. U04/PS/ TC10401 CALL DELIVERED STATE TESTS - STATE U4 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a CONNECT PDU the IUT enters the Active state U10. TC10402 CALL DELIVERED STATE TESTS - STATE U4 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT responds to a DISCONNECT PDU with a RELEASE PDU and enters the Release Request state U19. U04/AC/ TC20401 CALL DELIVERED STATE TESTS - STATE U4 - ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT transmits a DISCONNECT PDU and enters the Disconnect Request state U11. U07/PS/ TC10701 CALL RECEIVED STATE TESTS - STATE U7 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT responds to a DISCONNECT PDU with a RELEASE PDU and enters the Release Request state U19. U08/PS/ TC10801 CONNECT REQUEST STATE TEST - STATE U8 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a CONNECT ACKNOWLEDGE PDU the IUT enters the Active state U10. TC10802 CONNECT REQUEST STATE TEST - STATE U8 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a DISCONNECT PDU the IUT responds with a RELEASE PDU and enters the Release Request state U19. TC10805 CONNECT REQUEST STATE TEST - STATE U8 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RELEASE PDU the IUT responds with a RELEASE COMPLETE PDU and enters the Null state U0. Page 25

26 SECTION 6 : Results Summary TBR 3 Layer 3 : Results Summary (continued) Test Case Id Test description Required Result U09/PS/ TC10901 INCOMING CALL PROCEEDING STATE TEST - STATE U9 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT responds to a DISCONNECT PDU with a RELEASE PDU and enters the Release Request state U19. N U10/PS/ TC11003 ACTIVE STATE TEST - STATE U10 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a NOTIF PDU the IUT does not respond and remains in the same state. TC11004 ACTIVE STATE TEST - STATE U10 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RELEASE COMPLETE PDU the IUT does not respond but returns to the Null state. TC11005 ACTIVE STATE TEST - STATE U10 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RELEASE COMPLETE PDU the IUT responds with a RELEASE COMPLETE PDU and enters the Null state U0. TC11007 ACTIVE STATE TEST - STATE U10 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a STATUS PDU specifying the Null state N0, the IUT enters the Null state U0. TC11008 ACTIVE STATE TEST - STATE U10 - IVE IUT BEHAVIOUR INOPPORTUNE TEST EVENTS. Ensure that the IUT responds to an inopportune PDU with a STATUS PDU with cause value 98 or 100, or with a STATUS ENQUIR PDU and that no change of state occurs. TC11021 ACTIVE STATE TEST - STATE U10 - IVE IUT BEHAVIOUR SNTACTICALL INVALID TEST EVENTS. Ensure that the IUT responds to a syntactically invalid message type with a STATUS PDU with cause value 98 or 97, or with a STATUS ENQUIR PDU and remains in the same state. Page 26

27 SECTION 6 : Results Summary TBR 3 Layer 3 : Results Summary (continued) Test Case Id Test description Required Result U10/AC/ TC21001 TIMER TEST - TIMER T308 - ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensures timer T308 is within the range 3s to 15s. TC21003 ACTIVE STATE TEST - STATE U10 - ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT transmits a DISCONNECT PDU and enters the Disconnect Request state U11. TC21005 ACTIVE STATE TEST - STATE U10 - ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on transmission of a SUSPEND PDU the IUT enters the Suspend Request state U15. TC21006 TIMER TEST - TIMER T305 - ACTIVE IUT BEHAVIOUR VALID TEST EVENTS. Ensures timer T305 is within the range 15s to 45s. U11/PS/ TC11101 DISCONNECT REQUEST STATE TESTS - STATE U11 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a DISCONNECT PDU the IUT responds with a RELEASE PDU and enters the Release Request state U19. TC11103 DISCONNECT REQUEST STATE TESTS - STATE U11 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a NOTIF PDU the IUT does not respond or returns a STATUS PDU and remains in the same state. TC11105 DISCONNECT REQUEST STATE TESTS - STATE U11 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RELEASE PDU the IUT responds with a RELEASE COMPLETE PDU and enters the Null state U0. TC11107 DISCONNECT REQUEST STATE TESTS - STATE U11 - IVE IUT BEHAVIOUR INOPPORTUNE TEST EVENTS. Ensure that the IUT responds to an inopportune PDU with a STATUS PDU with cause value 98 or 101, or with a STATUS ENQUIR PDU, and remains in the same state. TC11118 DISCONNECT REQUEST STATE TESTS - STATE U11 - IVE IUT BEHAVIOUR SNTACTICALL INVALID TEST EVENTS ERROR CATEGOR 16. Ensure that on receipt of a RELEASE PDU with unrecognised information element (coded comprehension not required) the IUT sends a RELEASE COMPLETE PDU and enters the Null state U0. Page 27

28 SECTION 6 : Results Summary TBR 3 Layer 3 : Results Summary (continued) Test Case Id Test description Required Result U15/PS/ TC11501 TC11503 TC11504 TC11508 SUSPEND REQUEST STATE TESTS - STATE U15 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT responds to a DISCONNECT PDU with a RELEASE PDU and enters the Release Request state U19. SUSPEND REQUEST STATE TESTS - STATE U15 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a NOTIF PDU the IUT does not respond or returns a STATUS PDU and remains in the same state. SUSPEND REQUEST STATE TESTS - STATE U15 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a SUSPEND ACKNOWLEDGE PDU the IUT enters to the state U0. SUSPEND REQUEST STATE TESTS - STATE U15 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a SUSPEND REJECT PDU the IUT returns to the state U10. N N N N TC11701 U17/PS/ RESUME REQUEST STATE TESTS - STATE U17 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that the IUT responds to a DISCONNECT PDU with a RELEASE PDU and enters the Release Request state U19. N TC11703 TC11706 RESUME REQUEST STATE TESTS - STATE U17 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RESUME ACKNOWLEDGE PDU IUT returns to the state U10. RESUME REQUEST STATE TESTS - STATE U17 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RESUME REJECT PDU the IUT returns to the state U0. N N Page 28

29 SECTION 6 : Results Summary TBR 3 Layer 3 : Results Summary (concluded) Test Case Id Test description Required Result U19/PS/ TC11903 RELEASE REQUEST STATE TESTS - STATE U19 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RELEASE COMPLETE PDU the IUT does not respond but returns to the Null state U0. TC11904 RELEASE REQUEST STATE TESTS - STATE U19 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a RELEASE PDU the IUT does not respond and enters the Null state U0. This is a test of RELEASE collision handling. TC11906 RELEASE REQUEST STATE TESTS - STATE U19 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a STATUS PDU specifying the Null state N0, the IUT enters the Null state U0. TC11908 RELEASE REQUEST STATE TESTS - STATE U19 - IVE IUT BEHAVIOUR INOPPORTUNE TEST EVENTS. Ensure that the IUT responds to an inopportune PDU with a STATUS PDU with cause value 98 or 101, or with a STATUS ENQUIR PDU and remains in the same state. TC11909 RELEASE REQUEST STATE TESTS - STATE U19 - IVE IUT BEHAVIOUR SNTACTICALL INVALID TEST EVENTS. Ensure that the IUT responds to a syntactically invalid message type with a STATUS PDU with cause value 98 or 97, or with a STATUS ENQUIR PDU and remains in the same state. U25/PS/ TC12501 OVERLAP RECEIVING STATE TESTS - STATE U25 IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of a DISCONNECT PDU the IUT responds with a RELEASE PDU and enters the Release Request state U19. TC12503 OVERLAP RECEIVING STATE TESTS - STATE U25 IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensure that on receipt of an INFORMATION PDU with sufficient called number information the IUT responds with either a CALL PROCEEDING ALERTING or CONNECT PDU and moves to the relevant state Incoming Call Proceeding U9, Call Received U7 or Connect Request U8. R00/PS/ TC19003 GLOBAL CALL REF - STATE R0 - IVE IUT BEHAVIOUR VALID TEST EVENTS. Ensures that on receipt of a RESTART PDU the specified channel is returned to the Idle condition, the Call Reference is returned to the Null state and a RESTART ACKNOWLEDGE PDU is sent. Page 29

30 SECTION 6 : Results Summary 6.4 TBR 3 Clause 8, Overvoltage Protection TBR 3 Clause Test description Required Result 8.1 Impulse transfer from mains, common mode 8.2 Impulse transfer from mains, transverse mode 8.3 Conversion of common mode to transverse mode Page 30

31 Appendix A : Electrical Characteristics Laboratory Test Lead Appendix A : Electrical Characteristics Laboratory Test Lead These results apply to the apparatus in their final modified state. TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B.2.1 Bit rate when transmitting INFO ppm (24kHz)± 100ppm B.2.2 TE Jitter Characteristics B TE jitter measurement characteristics (test A) Line Configuration: (i) (B=1) 3.20% t < 14% (B=AA) 3.60% t < 14% (B=2 19-1) 4.80% t < 14% Line Configuration:(ii) Load Near (B=1) 2.80% t < 14% (B=AA) 3.20% t < 14% (B=2 19-1) 3.60% t < 14% Line Configuration: (iiia) Load Far : High Capacitance (B=1) 3.20% t < 14% (B=AA) 3.60% t < 14% (B=2 19-1) 3.60% t < 14% Line Configuration: (iiib) Load Far : Low Capacitance (B=1) 3.20% t < 14% (B=AA) 3.60% t < 14% (B=2 19-1) 3.60% t < 14% Line Configuration: (iv) Ideal (B=1) 3.20% t < 14% (B=AA) 3.60% t < 14% (B=2 19-1) 3.60% t < 14% NB: TBR 3 clause B states a compliance limit of -7% to +7% of a bit period. The test apparatus used to perform this measurement returns a peak-to-peak value hence compliance limit of t < 14%. Page 31

32 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B TE output phase deviation (test B) (a) Jitter 5Hz Line Configuration: (i) Point -to-point (B=1) t min 0.05% -7%<=p<=15% t max 3.25% -7%<=p<=15% t ave 0.85% -7%<=p<=15% (B=0) t min -0.35% -7%<=p<=15% t max 2.85% -7%<=p<=15% t ave 0.05% -7%<=p<=15% (B=AA) t min 0.45% -7%<=p<=15% t max 3.65% -7%<=p<=15% t ave 2.05% -7%<=p<=15% (B=2 19-1)t min 0.25% -7%<=p<=15% t max 4.65% -7%<=p<=15% t ave 2.65% -7%<=p<=15% Line Configuration: (ii) Load Near (B=1) t min 5.79% -7%<=p<=15% t max 8.95% -7%<=p<=15% t ave 6.19% -7%<=p<=15% (B=0) t min 5.99% -7%<=p<=15% t max 9.19% -7%<=p<=15% t ave 7.59% -7%<=p<=15% (B=AA) t min 5.99% -7%<=p<=15% t max 9.19% -7%<=p<=15% t ave 7.99% -7%<=p<=15% (B=2 19-1)t min 5.79% -7%<=p<=15% t max 9.39% -7%<=p<=15% t ave 7.79% -7%<=p<=15% Line Configuration: (iiia) Load Far: High Capacitance (B=1) t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=0) t min 9.04% -7%<=p<=15% t max 12.24% -7%<=p<=15% t ave 10.24% -7%<=p<=15% (B=AA) t min N/A 8.64% -7%<=p<=15% t max N/A 11.84% -7%<=p<=15% t ave N/A 9.04% -7%<=p<=15% (B=2 19-1)t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 9.84% -7%<=p<=15% Page 32

33 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (a) Jitter 5Hz Line Configuration: (iiib) Load Far: Low Capacitance (B=1) t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=0) t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=AA) t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=2 19-1)t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 10.24% -7%<=p<=15% Line Configuration: (iv) Ideal (B=1) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=0) t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=AA) t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 10.24% -7%<=p<=15% (B=2 19-1)t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 9.44% -7%<=p<=15% Page 33

34 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (b) Jitter 20Hz Line Configuration: (i) Point-to-Point (B=1) t min 0.25% -7%<=p<=15% t max 3.05% -7%<=p<=15% t ave 1.45% -7%<=p<=15% (B=0) t min -0.35% -7%<=p<=15% t max 2.85% -7%<=p<=15% t ave 0.85% -7%<=p<=15% (B=AA) t min 0.05% -7%<=p<=15% t max 3.25% -7%<=p<=15% t ave 0.85% -7%<=p<=15% (B=2 19-1)t min -0.15% -7%<=p<=15% t max 4.25% -7%<=p<=15% t ave 1.85% -7%<=p<=15% Line Configuration: (ii) Load Near (B=1) t min 6.59% -7%<=p<=15% t max 9.79% -7%<=p<=15% t ave 7.79% -7%<=p<=15% (B=0) t min 6.39% -7%<=p<=15% t max 9.59% -7%<=p<=15% t ave 7.99% -7%<=p<=15% (B=AA) t min 6.39% -7%<=p<=15% t max 9.59% -7%<=p<=15% t ave 7.59% -7%<=p<=15% (B=2 19-1)t min 6.39% -7%<=p<=15% t max 9.59% -7%<=p<=15% t ave 7.59% -7%<=p<=15% Line Configuration: (iiia) Load Far : High Capacitance (B=1) t min 9.04% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=0) t min 9.04% -7%<=p<=15% t max 12.24% -7%<=p<=15% t ave 10.64% -7%<=p<=15% (B=AA) t min 9.04% -7%<=p<=15% t max 12.24% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=2 19-1)t min 9.04% -7%<=p<=15% t max 12.24% -7%<=p<=15% t ave 10.64% -7%<=p<=15% Page 34

35 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (b) Jitter 20Hz Line Configuration: (iiib) Load Far : Low Capacitance (B=1) t min 8.64% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=0) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=AA) t min 8.64% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 10.64% -7%<=p<=15% (B=2 19-1)t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.44% -7%<=p<=15% Line Configuration: (iv) Ideal (B=1) t min 8.64% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 10.24% -7%<=p<=15% (B=0) t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=AA) t min 8.64% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 8.24% -7%<=p<=15% (B=2 19-1)t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 10.24% -7%<=p<=15% Page 35

36 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (c) Jitter 50Hz Line Configuration: (i) Point-to-Point (B=1) t min -0.35% -7%<=p<=15% t max 2.85% -7%<=p<=15% t ave 2.05% -7%<=p<=15% (B=0) t min 0.05% -7%<=p<=15% t max 3.25% -7%<=p<=15% t ave 1.25% -7%<=p<=15% (B=AA) t min 0.25% -7%<=p<=15% t max 3.45% -7%<=p<=15% t ave 1.45% -7%<=p<=15% (B=2 19-1)t min -0.75% -7%<=p<=15% t max 3.65% -7%<=p<=15% t ave 1.25% -7%<=p<=15% Line Configuration: (ii) Load Near (B=1) t min 6.39% -7%<=p<=15% t max 9.59% -7%<=p<=15% t ave 6.39% -7%<=p<=15% (B=0) t min 6.39% -7%<=p<=15% t max 9.59% -7%<=p<=15% t ave 6.79% -7%<=p<=15% (B=AA) t min 6.59% -7%<=p<=15% t max 9.79% -7%<=p<=15% t ave 8.19% -7%<=p<=15% (B=2 19-1)t min 6.39% -7%<=p<=15% t max 9.59% -7%<=p<=15% t ave 6.79% -7%<=p<=15% Line Configuration: (iiia) Load Far : High Capacitance (B=1) t min 9.04% -7%<=p<=15% t max 12.24% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=0) t min 9.04% -7%<=p<=15% t max 12.24% -7%<=p<=15% t ave 10.64% -7%<=p<=15% (B=AA) t min 9.04% -7%<=p<=15% t max 12.24% -7%<=p<=15% t ave 10.24% -7%<=p<=15% (B=2 19-1)t min 9.04% -7%<=p<=15% t max 12.24% -7%<=p<=15% t ave 9.84% -7%<=p<=15% Page 36

37 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (c) Jitter 50Hz Line Configuration: (iiib) Load Far : Low Capacitance (B=1) t min 8.64% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=0) t min 8.64% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 10.64% -7%<=p<=15% (B=AA) t min 8.64% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=2 19-1)t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.84% -7%<=p<=15% Line Configuration: (iv) Ideal (B=1) t min 8.64% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=0) t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 10.24% -7%<=p<=15% (B=AA) t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 10.64% -7%<=p<=15% (B=2 19-1)t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 10.24% -7%<=p<=15% Page 37

38 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (d) Jitter 2kHz Line Configuration: (i) Point-to-Point (B=1) t min -0.15% -7%<=p<=15% t max 5.05% -7%<=p<=15% t ave 1.15% -7%<=p<=15% (B=0) t min -0.15% -7%<=p<=15% t max 5.05% -7%<=p<=15% t ave 1.05% -7%<=p<=15% (B=AA) t min 0.05% -7%<=p<=15% t max 5.25% -7%<=p<=15% t ave 1.65% -7%<=p<=15% (B=2 19-1)t min -0.55% -7%<=p<=15% t max 5.85% -7%<=p<=15% t ave 1.45% -7%<=p<=15% Line Configuration: (ii) Load Near (B=1) t min 6.59% -7%<=p<=15% t max 11.79% -7%<=p<=15% t ave 9.39% -7%<=p<=15% (B=0) t min 6.19% -7%<=p<=15% t max 11.49% -7%<=p<=15% t ave 9.39% -7%<=p<=15% (B=AA) t min 6.19% -7%<=p<=15% t max 11.79% -7%<=p<=15% t ave 8.19% -7%<=p<=15% (B=2 19-1)t min 5.99% -7%<=p<=15% t max 11.59% -7%<=p<=15% t ave 8.39% -7%<=p<=15% Line Configuration: (iiia) Load Far : High Capacitance (B=1) t min 8.64% -7%<=p<=15% t max 13.84% -7%<=p<=15% t ave 10.64% -7%<=p<=15% (B=0) t min 8.64% -7%<=p<=15% t max 13.84% -7%<=p<=15% tave 9.84% -7%<=p<=15% (B=AA) t min 8.64% -7%<=p<=15% t max 13.84% -7%<=p<=15% t ave 10.64% -7%<=p<=15% (B=2 19-1)t min 8.64% -7%<=p<=15% t max 13.84% -7%<=p<=15% tave 10.64% -7%<=p<=15% Page 38

39 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (d) Jitter 2kHz Line Configuration: (iiib) Load Far : Low Capacitance (B=1) t min 8.24% -7%<=p<=15% t max 13.44% -7%<=p<=15% tave 9.84% -7%<=p<=15% (B=0) t min 8.24% -7%<=p<=15% t max 13.44% -7%<=p<=15% tave 10.64% -7%<=p<=15% (B=AA) t min 8.24% -7%<=p<=15% t max 13.44% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=2 19-1)t min 8.24% -7%<=p<=15% t max 13.84% -7%<=p<=15% t ave 10.64% -7%<=p<=15% Line Configuration: (iv) Ideal (B=1) t min 8.64% -7%<=p<=15% t max 13.84% -7%<=p<=15% t ave 10.24% -7%<=p<=15% (B=0) t min 8.64% -7%<=p<=15% t max 13.84% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=AA) t min 8.64% -7%<=p<=15% t max 13.84% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=2 19-1)t min 8.964% -7%<=p<=15% t max 13.84% -7%<=p<=15% t ave 9.84% -7%<=p<=15% Page 39

40 Appendix A : Electrical Characteristics Laboratory Test Lead B.2.3 TBR 3 Clause Test Description Verdict Result Compliance Limit TE transmitter output impedance Comments B TEST A Tx Binary 1 State F3 Fig 9.4/TBR 3 See Plot A.1 B TEST B Tx Binary 0 R L =50Ω Positive 38.7 Ω 20Ω Negative 38.7 Ω 20Ω R L =400Ω Positive 37.4 Ω 20Ω Negative 36.6 Ω 20Ω B TEST C Output Peak Current State F3 463 µa 600µA B TEST D State F1 Fig 9.4/TBR 3 See Plot A.2 B TEST E Output Peak Current State F1 355 µa 600µA B.2.4 Pulse Shape and Amplitude Pulse Shape 50Ω Positive Fig 9.5/TBR 3 See Plot A.3 Load Negative Fig 9.5/TBR 3 See Plot A.4 B.2.5 Pulse Unbalance B Pulse Amplitude 42v Normal du+/u nom -5.43% 10% du-/u nom -4.95% 10% 24v Normal du+/u nom -5.48% 10% du-/u nom -4.95% 10% 32v Restricted du+/u nom -5.40% 10% du-/u nom -4.98% 10% B Pulse Unbalance 42v Normal df/f nom -2.13% 5% 24v Normal df/f nom -3.41% 5% 32v Restricted df/f nom -1.67% 5% B.2.6 Voltage on other test loads B Pulse Shape 400Ω Positive Fig 9.6/TBR 3 See Plot A.5 Load Negative Fig 9.6/TBR 3 See Plot A.6 B Pulse Shape 5.6Ω Positive 20% pulse See Plot A.7 Load Negative amplitude See Plot A.8 Page 40

41 Appendix A : Electrical Characteristics Laboratory Test Lead B.2.7 TBR 3 Clause Test Description Verdict Result Compliance Limit Longitudinal coversion loss of transmitter output Comments State F3, 42v Normal 54dB See Plot A.9 State F3, 24v Normal 54dB See Plot A.10 State F3, 42v Restricted 54dB See Plot A.11 State F3, 32v Restricted 54dB See Plot A.12 State F1 54dB See Plot A.13 B.2.8 Receiver Input Characteristics B TE receiver input impedance B TEST A State F3 32v Restricted Fig 9.4/TBR 3 See Plot A.14 B TEST B Output Peak Current State F3 375 µa 600µA B TEST C State F1 Fig 9.4/TBR 3 See Plot A.15 B TEST D Output Peak Current State F1 448 µa 600µA B Receiver Sensitivity - noise and distortion immunity (a) Jitter 5Hz Line Configuration (i) Point-to-Point (-1.5dB) (200kHz noise) (2MHz) For each line Line Configuration (ii) configuration Load Near no errors are (+1.5dB) allowed for (-1.5dB) t 60s Line Configuration (iii) Load Far : High Cap (+1.5dB) (-1.5dB) Line Configuration (iii) Load Far : Low Cap (+1.5dB) (-1.5dB) Line Configuration (iv) Ideal (+1.5dB) Page 41

42 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause B (cont) Test Description Verdict Compliance Limit Receiver Sensitivity - noise and distortion immunity (b) Jitter 20Hz Comments Line Configuration (i) Point-to-Point (-1.5dB) (200kHz noise) (2MHz) Line Configuration (ii) Load Near (+1.5dB) (-1.5dB) Line Configuration (iii) Load Far : High Cap (+1.5dB) (-1.5dB) Line Configuration (iii) Load Far : Low Cap (+1.5dB) (-1.5dB) Line Configuration (iv) Ideal (+1.5dB) For each line configuration no errors are allowed for t 60s (c) Jitter 50Hz Line Configuration (i) Point-to-Point (-1.5dB) (200kHz noise) (2MHz) For each line Line Configuration (ii) configuration Load Near no errors are (+1.5dB) allowed for (-1.5dB) t 60s Line Configuration (iii) Load Far : High Cap (+1.5dB) (-1.5dB) Line Configuration (iii) Load Far : Low Cap (+1.5dB) (-1.5dB) Line Configuration (iv) Ideal (+1.5dB) Page 42

43 Appendix A : Electrical Characteristics Laboratory Test Lead TBR 3 Clause B (cont) Test Description Verdict Compliance Limit Receiver Sensitivity - noise and distortion immunity Comments (d) Jitter 2kHz Line Configuration (i) Point-to-Point (-1.5dB) (200kHz noise) (2MHz) For each line Line Configuration (ii) configuration Load Near no errors are (+1.5dB) allowed for (-1.5dB) t 60s Line Configuration (iii) Load Far : High Cap (+1.5dB) (-1.5dB) Line Configuration (iii) Load Far : Low Cap (+1.5dB) (-1.5dB) Line Configuration (iv) Ideal (+1.5dB) B Unbalance about earth of receiver input State F3, 42v Normal 54dB See Plot A.16 State F3, 24v Normal 54dB See Plot A.17 State F3, -42v Restricted 54dB See Plot A.18 State F3, -32v Restriced 54dB See Plot A.19 State F1 54dB See Plot A.20 Page 43

44 Appendix A : Electrical Characteristics Laboratory Test Lead A.1 : TE Transmitter Output Impedance (State F3) A.2 : TE Transmitter Output Impedance (State F1) Page 44

45 Appendix A : Electrical Characteristics Laboratory Test Lead A.3 : Pulse Shape 50 Ω load (Positive pulse) A.4 : Pulse Shape 50 Ω load (Negative pulse) Page 45

46 Appendix A : Electrical Characteristics Laboratory Test Lead A.5 : Pulse Shape 400 Ω load (Positive pulse) A.6 : Pulse Shape 400 Ω load (Negative pulse) Page 46

47 Appendix A : Electrical Characteristics Laboratory Test Lead A.7 : Pulse Shape 5.6 Ω load (Positive pulse) A.8 : Pulse Shape 5.6 Ω load (Negative pulse) Page 47

48 Appendix A : Electrical Characteristics Laboratory Test Lead A.9 : Longitudinal Conversion Loss of Transmitter Output (State F3, 42v Normal) A.10 : Longitudinal Conversion Loss of Transmitter Output (State F3, 24v Normal) Page 48

49 Appendix A : Electrical Characteristics Laboratory Test Lead A.11 : Longitudinal Conversion Loss of Transmitter Output (State F3, 42v Restricted) A.12 : Longitudinal Conversion Loss of Transmitter Output (State F3, 32v Restricted) Page 49

50 Appendix A : Electrical Characteristics Laboratory Test Lead A.13 : Longitudinal Conversion Loss of Transmitter Output (State F1) A.14 : TE Receiver Input Impedance (State F3, 32v Restricted) Page 50

51 Appendix A : Electrical Characteristics Laboratory Test Lead A.15 : TE Receiver Input Impedance (State F1) A.16 : Unbalance about earth of Receiver Input (State F3, 42v Normal) Page 51

52 Appendix A : Electrical Characteristics Laboratory Test Lead A.17 : Unbalance about earth of Receiver Input (State F3, 24v Normal) A.18 : Unbalance about earth of Receiver Input (State F3, 42v Restricted) Page 52

53 Appendix A : Electrical Characteristics Laboratory Test Lead A.19 : Unbalance about earth of Receiver Input (State F3, 32v Restricted) A.20 : Unbalance about earth of Receiver Input (State F1) Page 53

54 Appendix B : Electrical Characteristics Supplied Test Lead Appendix B : Electrical Characteristics Supplied Test Lead These results apply to the apparatus in their final modified state. TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B.2.1 Bit rate when transmitting INFO ppm (24kHz)± 100ppm B.2.2 TE Jitter Characteristics B TE jitter measurement characteristics (test A) Line Configuration: (i) (B=1) 3.20% t < 14% (B=AA) 3.60% t < 14% (B=2 19-1) 4.40% t < 14% Line Configuration:(ii) Load Near (B=1) 3.20% t < 14% (B=AA) 3.60% t < 14% (B=2 19-1) 3.60% t < 14% Line Configuration: (iiia) Load Far : High Capacitance (B=1) 3.20% t < 14% (B=AA) 3.20% t < 14% (B=2 19-1) 3.20% t < 14% Line Configuration: (iiib) Load Far : Low Capacitance (B=1) 3.20% t < 14% (B=AA) 3.60% t < 14% (B=2 19-1) 3.60% t < 14% Line Configuration: (iv) Ideal (B=1) 3.20% t < 14% (B=AA) 3.20% t < 14% (B=2 19-1) 3.20% t < 14% NB: TBR 3 clause B states a compliance limit of -7% to +7% of a bit period. The test apparatus used to perform this measurement returns a peak-to-peak value hence compliance limit of t < 14%. Page 54

55 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B TE output phase deviation (test B) (a) Jitter 5Hz Line Configuration: (i) Point -to-point (B=1) t min -0.95% -7%<=p<=15% t max 2.25% -7%<=p<=15% t ave 1.05% -7%<=p<=15% (B=0) t min -0.95% -7%<=p<=15% t max 2.25% -7%<=p<=15% t ave 0.65% -7%<=p<=15% (B=AA) t min -0.75% -7%<=p<=15% t max 2.45% -7%<=p<=15% t ave 1.25% -7%<=p<=15% (B=2 19-1)t min -1.55% -7%<=p<=15% t max 2.85% -7%<=p<=15% t ave 0.05% -7%<=p<=15% Line Configuration: (ii) Load Near (B=1) t min 5.19% -7%<=p<=15% t max 8.39% -7%<=p<=15% t ave 6.79% -7%<=p<=15% (B=0) t min 5.59% -7%<=p<=15% t max 8.39% -7%<=p<=15% t ave 5.99% -7%<=p<=15% (B=AA) t min 5.99% -7%<=p<=15% t max 9.19% -7%<=p<=15% t ave 7.59% -7%<=p<=15% (B=2 19-1)t min 5.59% -7%<=p<=15% t max 8.79% -7%<=p<=15% t ave 7.99% -7%<=p<=15% Line Configuration: (iiia) Load Far: High Capacitance (B=1) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 10.24% -7%<=p<=15% (B=0) t min 8.24% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=AA) t min N/A 8.24% -7%<=p<=15% t max N/A 11.04% -7%<=p<=15% tave N/A 9.44% -7%<=p<=15% (B=2 19-1)t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.84% -7%<=p<=15% Page 55

56 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (a) Jitter 5Hz Line Configuration: (iiib) Load Far: Low Capacitance (B=1) t min 7.44% -7%<=p<=15% t max 10.24% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=0) t min 7.44% -7%<=p<=15% t max 10.14% -7%<=p<=15% tave 8.64% -7%<=p<=15% (B=AA) t min 7.44% -7%<=p<=15% t max 10.24% -7%<=p<=15% t ave 8.24% -7%<=p<=15% (B=2 19-1)t min 7.44% -7%<=p<=15% t max 10.64% -7%<=p<=15% t ave 9.44% -7%<=p<=15% Line Configuration: (iv) Ideal (B=1) t min 7.44% -7%<=p<=15% t max 10.64% -7%<=p<=15% t ave 8.64% -7%<=p<=15% (B=0) t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 10.64% -7%<=p<=15% (B=AA) t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 10.24% -7%<=p<=15% (B=2 19-1)t min 8.64% -7%<=p<=15% t max 11.84% -7%<=p<=15% t ave 10.64% -7%<=p<=15% Page 56

57 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (b) Jitter 20Hz Line Configuration: (i) Point-to-Point (B=1) t min -1.35% -7%<=p<=15% tmax 1.85% -7%<=p<=15% t ave -0.15% -7%<=p<=15% (B=0) t min -0.75% -7%<=p<=15% t max 2.45% -7%<=p<=15% t ave 0.85% -7%<=p<=15% (B=AA) t min -0.75% -7%<=p<=15% t max 2.45% -7%<=p<=15% t ave 0.85% -7%<=p<=15% (B=2 19-1)t min -1.15% -7%<=p<=15% t max 3.25% -7%<=p<=15% t ave 1.25% -7%<=p<=15% Line Configuration: (ii) Load Near (B=1) t min 5.59% -7%<=p<=15% t max 8.79% -7%<=p<=15% t ave 7.19% -7%<=p<=15% (B=0) t min 5.59% -7%<=p<=15% t max 8.79% -7%<=p<=15% t ave 6.39% -7%<=p<=15% (B=AA) t min 5.79% -7%<=p<=15% t max 8.99% -7%<=p<=15% t ave 7.39% -7%<=p<=15% (B=2 19-1)t min 5.59% -7%<=p<=15% t max 8.79% -7%<=p<=15% t ave 6.39% -7%<=p<=15% Line Configuration: (iiia) Load Far : High Capacitance (B=1) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=0) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=AA) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=2 19-1)t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 8.24% -7%<=p<=15% Page 57

58 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (b) Jitter 20Hz Line Configuration: (iiib) Load Far : Low Capacitance (B=1) t min 7.84% -7%<=p<=15% tmax 11.04% -7%<=p<=15% t ave 8.24% -7%<=p<=15% (B=0) t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=AA) t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=2 19-1)t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 8.24% -7%<=p<=15% Line Configuration: (iv) Ideal (B=1) t min 8.24% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=0) t min 8.24v -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=AA) t min 8.24% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=2 19-1)t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 8.64% -7%<=p<=15% Page 58

59 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (c) Jitter 50Hz Line Configuration: (i) Point-to-Point (B=1) t min -0.75% -7%<=p<=15% tmax 2.45% -7%<=p<=15% t ave -0.35% -7%<=p<=15% (B=0) t min -0.75% -7%<=p<=15% t max 2.05% -7%<=p<=15% t ave 0.05% -7%<=p<=15% (B=AA) t min -0.95% -7%<=p<=15% t max 2.25% -7%<=p<=15% t ave -0.95% -7%<=p<=15% (B=2 19-1)t min -1.15% -7%<=p<=15% t max 3.25% -7%<=p<=15% t ave 0.45% -7%<=p<=15% Line Configuration: (ii) Load Near (B=1) t min 5.59% -7%<=p<=15% tmax 8.79% -7%<=p<=15% t ave 6.79% -7%<=p<=15% (B=0) t min 5.59% -7%<=p<=15% t max 8.79% -7%<=p<=15% t ave 7.19% -7%<=p<=15% (B=AA) t min 5.99% -7%<=p<=15% t max 8.79% -7%<=p<=15% t ave 6.39% -7%<=p<=15% (B=2 19-1)t min 5.59% -7%<=p<=15% t max 8.79% -7%<=p<=15% t ave 7.19% -7%<=p<=15% Line Configuration: (iiia) Load Far : High Capacitance (B=1) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=0) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=AA) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=2 19-1)t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 8.64% -7%<=p<=15% Page 59

60 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (c) Jitter 50Hz Line Configuration: (iiib) Load Far : Low Capacitance (B=1) t min 7.44% -7%<=p<=15% t max 10.64% -7%<=p<=15% t ave 8.24% -7%<=p<=15% (B=0) t min 7.44% -7%<=p<=15% tmax 10.64% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=AA) t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 8.24% -7%<=p<=15% (B=2 19-1)t min 7.84% -7%<=p<=15% t max 11.04% -7%<=p<=15% t ave 9.84% -7%<=p<=15% Line Configuration: (iv) Ideal (B=1) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 9.84% -7%<=p<=15% (B=0) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% tave 10.24% -7%<=p<=15% (B=AA) t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 8.64% -7%<=p<=15% (B=2 19-1)t min 8.24% -7%<=p<=15% t max 11.44% -7%<=p<=15% t ave 8.24% -7%<=p<=15% Page 60

61 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (d) Jitter 2kHz Line Configuration: (i) Point-to-Point (B=1) t min -1.15% -7%<=p<=15% tmax 4.45% -7%<=p<=15% t ave 0.45% -7%<=p<=15% (B=0) t min -1.15% -7%<=p<=15% t max 4.45% -7%<=p<=15% t ave 0.45% -7%<=p<=15% (B=AA) t min -0.94% -7%<=p<=15% t max 4.25% -7%<=p<=15% tave 1.45% -7%<=p<=15% (B=2 19-1)t min -1.55% -7%<=p<=15% t max 4.85% -7%<=p<=15% t ave 0.85% -7%<=p<=15% Line Configuration: (ii) Load Near (B=1) t min 5.59% -7%<=p<=15% t max 10.79% -7%<=p<=15% t ave 6.39% -7%<=p<=15% (B=0) t min 5.79% -7%<=p<=15% t max 10.99% -7%<=p<=15% t ave 7.79% -7%<=p<=15% (B=AA) t min 5.79% -7%<=p<=15% t max 10.99% -7%<=p<=15% t ave 8.59% -7%<=p<=15% (B=2 19-1)t min 5.59% -7%<=p<=15% t max 10.79% -7%<=p<=15% t ave 7.19% -7%<=p<=15% Line Configuration: (iiia) Load Far : High Capacitance (B=1) t min 8.24% -7%<=p<=15% t max 13.44% -7%<=p<=15% t ave 10.24% -7%<=p<=15% (B=0) t min 8.24% -7%<=p<=15% t max 13.44% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=AA) t min 7.84% -7%<=p<=15% t max 13.44% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=2 19-1)t min 7.84% -7%<=p<=15% t max 13.44% -7%<=p<=15% t ave 9.84% -7%<=p<=15% Page 61

62 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B (cont) TE output phase deviation (test B) (d) Jitter 2kHz Line Configuration: (iiib) Load Far : Low Capacitance (B=1) t min 7.44% -7%<=p<=15% t max 12.64% -7%<=p<=15% t ave 9.44% -7%<=p<=15% Line Configuration: (iv) Ideal (B=0) t min 7.44% -7%<=p<=15% t max 12.64% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=AA) t min 7.44% -7%<=p<=15% t max 12.64% -7%<=p<=15% t ave 9.04% -7%<=p<=15% (B=2 19-1)t min 7.44% -7%<=p<=15% t max 12.64% -7%<=p<=15% tave 8.64% -7%<=p<=15% (B=1) t min 7.84% -7%<=p<=15% t max 13.44% -7%<=p<=15% t ave 10.64% -7%<=p<=15% (B=0) t min 8.24% -7%<=p<=15% t max 13.44% -7%<=p<=15% tave 10.64% -7%<=p<=15% (B=AA) t min 7.84% -7%<=p<=15% t max 13.44% -7%<=p<=15% t ave 9.44% -7%<=p<=15% (B=2 19-1)t min 7.84% -7%<=p<=15% t max 13.44% -7%<=p<=15% t ave 10.24% -7%<=p<=15% Page 62

63 Appendix B : Electrical Characteristics Supplied Test Lead B.2.3 TBR 3 Clause Test Description Verdict Result Compliance Limit TE transmitter output impedance Comments B TEST A Tx Binary 1 State F3 Fig 9.4/TBR 3 See Plot B.1 B TEST B Tx Binary 0 R L =50Ω Positive 36.3 Ω 20Ω Negative 37.8 Ω 20Ω R L =400Ω Positive 32.2 Ω 20Ω Negative 32.0 Ω 20Ω B TEST C Output Peak Current State F3 138 µa 600µA B TEST D State F1 Fig 9.4/TBR 3 See Plot B.2 B TEST E Output Peak Current State F1 47 µa 600µA B.2.4 Pulse Shape and Amplitude Pulse Shape 50Ω Positive Fig 9.5/TBR 3 See Plot B.3 Load Negative Fig 9.5/TBR 3 See Plot B.4 B.2.5 Pulse Unbalance B Pulse Amplitude 42v Normal du+/u nom 1.30% 10% du-/u nom 0.78% 10% 24v Normal du+/u nom 2.35% 10% du-/u nom 0.51% 10% 32v Restricted du+/u nom 1.94% 10% du-/u nom 1.10% 10% B Pulse Unbalance 42v Normal df/f nom -3.19% 5% 24v Normal df/f nom -3.33% 5% 32v Restricted df/f nom -2.68% 5% B.2.6 Voltage on other test loads B Pulse Shape 400Ω Positive Fig 9.6/TBR 3 See Plot B.5 Load Negative Fig 9.6/TBR 3 See Plot B.6 B Pulse Shape 5.6Ω Positive 20% pulse See Plot B.7 Load Negative amplitude See Plot B.8 Page 63

64 Appendix B : Electrical Characteristics Supplied Test Lead B.2.7 TBR 3 Clause Test Description Verdict Result Compliance Limit Longitudinal coversion loss of transmitter output Comments State F3, 42v Normal 54dB See Plot B.9 State F3, 24v Normal 54dB See Plot B.10 State F3, 42v Restricted 54dB See Plot B.11 State F3, 32v Restricted 54dB See Plot B.12 State F1 54dB See Plot B.13 B.2.8 Receiver Input Characteristics B TE receiver input impedance B TEST A State F3 32v Restricted Fig 9.4/TBR 3 See Plot B.14 B TEST B Output Peak Current State F3 172 µa 600µA B TEST C State F1 Fig 9.4/TBR 3 See Plot B.15 B TEST D Output Peak Current State F1 60 µa 600µA B Receiver Sensitivity - noise and distortion immunity (a) Jitter 5Hz Line Configuration (i) Point-to-Point (-1.5dB) (200kHz noise) (2MHz) For each line Line Configuration (ii) configuration Load Near no errors are (+1.5dB) allowed for (-1.5dB) t 60s Line Configuration (iii) Load Far : High Cap (+1.5dB) (-1.5dB) Line Configuration (iii) Load Far : Low Cap (+1.5dB) (-1.5dB) Line Configuration (iv) Ideal (+1.5dB) Page 64

65 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause B (cont) Test Description Verdict Compliance Limit Receiver Sensitivity - noise and distortion immunity (b) Jitter 20Hz Line Configuration (i) Point-to-Point (-1.5dB) (200kHz noise) (2MHz) For each line Line Configuration (ii) configuration Load Near no errors are (+1.5dB) allowed for (-1.5dB) t 60s Comments Line Configuration (iii) Load Far : High Cap (+1.5dB) (-1.5dB) Line Configuration (iii) Load Far : Low Cap (+1.5dB) (-1.5dB) Line Configuration (iv) Ideal (+1.5dB) (c) Jitter 50Hz Line Configuration (i) Point-to-Point (-1.5dB) (200kHz noise) (2MHz) For each line Line Configuration (ii) configuration Load Near no errors are (+1.5dB) allowed for (-1.5dB) t 60s Line Configuration (iii) Load Far : High Cap (+1.5dB) (-1.5dB) Line Configuration (iii) Load Far : Low Cap (+1.5dB) (-1.5dB) Line Configuration (iv) Ideal (+1.5dB) Page 65

66 Appendix B : Electrical Characteristics Supplied Test Lead TBR 3 Clause B (cont) Test Description Verdict Compliance Limit Receiver Sensitivity - noise and distortion immunity Comments (d) Jitter 2kHz Line Configuration (i) Point-to-Point (-1.5dB) (200kHz noise) (2MHz) For each line Line Configuration (ii) configuration Load Near no errors are (+1.5dB) allowed for (-1.5dB) t 60s Line Configuration (iii) Load Far : High Cap (+1.5dB) (-1.5dB) Line Configuration (iii) Load Far : Low Cap (+1.5dB) (-1.5dB) Line Configuration (iv) Ideal (+1.5dB) B Unbalance about earth of receiver input State F3, 42v Normal 54dB See Plot B.16 State F3, 24v Normal 54dB See Plot B.17 State F3, -42v Restricted 54dB See Plot B.18 State F3, -32v Restriced 54dB See Plot B.19 State F1 54dB See Plot B.20 Page 66

67 Appendix B : Electrical Characteristics Supplied Test Lead B.1 : TE Transmitter Output Impedance (State F3) B.2 : TE Transmitter Output Impedance (State F1) Page 67

68 Appendix B : Electrical Characteristics Supplied Test Lead B.3 : Pulse Shape 50 Ω load (Positive pulse) B.4 : Pulse Shape 50 Ω load (Negative pulse) Page 68

69 Appendix B : Electrical Characteristics Supplied Test Lead B.5 : Pulse Shape 400 Ω load (Positive pulse) B.6 : Pulse Shape 400 Ω load (Negative pulse) Page 69

70 Appendix B : Electrical Characteristics Supplied Test Lead B.7 : Pulse Shape 5.6 Ω load (Positive pulse) B.8 : Pulse Shape 5.6 Ω load (Negative pulse) Page 70

71 Appendix B : Electrical Characteristics Supplied Test Lead B.9 : Longitudinal Conversion Loss of Transmitter Output (State F3, 42v Normal) B.10 : Longitudinal Conversion Loss of Transmitter Output (State F3, 24v Normal) Page 71

72 Appendix B : Electrical Characteristics Supplied Test Lead B.11 : Longitudinal Conversion Loss of Transmitter Output (State F3, 42v Restricted) B.12 : Longitudinal Conversion Loss of Transmitter Output (State F3, 32v Restricted) Page 72

73 Appendix B : Electrical Characteristics Supplied Test Lead B.13 : Longitudinal Conversion Loss of Transmitter Output (State F1) B.14 : TE Receiver Input Impedance (State F3, 32v Restricted) Page 73

74 Appendix B : Electrical Characteristics Supplied Test Lead B.15 : TE Receiver Input Impedance (State F1) B.16 : Unbalance about earth of Receiver Input (State F3, 42v Normal) Page 74

75 Appendix B : Electrical Characteristics Supplied Test Lead B.17 : Unbalance about earth of Receiver Input (State F3, 24v Normal) B.18 : Unbalance about earth of Receiver Input (State F3, 42v Restricted) Page 75

76 Appendix B : Electrical Characteristics Supplied Test Lead B.19 : Unbalance about earth of Receiver Input (State F3, 32v Restricted) B.20 : Unbalance about earth of Receiver Input (State F1) Page 76

77 Appendix C : Functional Characteristics Appendix C : Functional Characteristics These results apply to the apparatus in their final modified state. TBR 3 Clause Test Description Verdict Compliance Limit Comments B.3 Functional characteristic tests B Binary organisation of INFO 3 frames B Binary organisation of INFO 1 frames B.4 Interface procedure tests D-Channel Access Control Procedure Activation/Deactivation Procedure Timers for activation/deactivation F3/TIF3info ms 100 ms F4/TIF4info ms 100 ms F3/TIF3info ms 100 ms F4/TIF4info ms 100 ms F3/TItimerT3 8.0 s 30 s F6/TIF6Physdeact 0.5 ms 0.25ms t 25ms F7/TIF7Physdeact 0.5 ms 0.25ms t 25ms F7/TIF7Compdeact1 F8/TIF8Compdeact1 Frame Alignment Procedures FA/F7/FAinfA_1fr FA/F7/FAinfB_1fr FA/F7/FAinfD_1fr FA/F7/FAinfA_kfr n = 2 FA/F7/FAinfB_kfr FA/F7/FAinfD_kfr FA/F7/FAregain m = 29 BC/F7/BCBinaryOne Page 77

78 Appendix D : Power Feeding Tests Appendix D : Power Feeding Tests These results apply to the apparatus in their final modified state. TBR 3 Clause Test Description Verdict Result Compliance Limit Comments B.5 Power Feeding B.5.1 B Normal Power Conditions Test D with connection detector 42v Normal State F1 0.90µW < 3mW State F3 0.92µW < 3mW State F3 + Local Action 0.90µW < 3mW State F7 7.08µW < 3mW State F7 Layer 3 Active 6.54µW < 3mW 24v Normal State F1 0.90µW < 3mW State F3 0.90µW < 3mW State F3 + Local Action 0.90µW < 3mW State F7 3.78µW < 3mW State F7 Layer 3 Active 3.61µW < 3mW B.5.2 B Restricted Power Conditions Test D with connection detector 42v Restricted State F1 0.90µW < 3mW State F3 0.90µW < 3mW State F3 + Local Action 0.90µW < 3mW State F7 5.24µW < 3mW State F7 Layer 3 Active 5.31µW < 3mW 32v Restricted State F1 0.90µW < 3mW State F3 0.90µW < 3mW State F3 + Local Action 0.90µW < 3mW State F7 3.87µW < 3mW State F7 Layer 3 Active 3.99µW < 3mW B.5.4 Limitation on power sink during transient conditions B Current/time limitation for TE when connecting Pass 0 µa < 75µA for t 100µs B Effect of current unbalance Fig 9.4/TBR 3 B.5.5 Galvanic isolation 100µA Page 78

79 Appendix E : Overvoltage Protection Test Results Appendix E : Overvoltage Protection Test Results Waveform Class / Level Surge onto: (inc. mode) Measure Transfer onto: Pass Criteria Measured Peak Voltage (from 0v, after x100) 1.2/50 us (clause 5.7.3) (use: E502K Out= 0 ohms) kv ISDN port - common mode ISDN port - transverse mode kv ISDN port ISDN port - common mode - transverse mode < 250 V 80 < 250 V 70 Verdict: Page 79

80 Appendix F : Photographs of Test Samples Appendix F : Photographs of Test Samples Photographs were taken of relevant samples during assessment. These are detailed below and are included in this appendix. F.1 Front view of BRI Card F.2 View of AFT base card and Remora BRI Daughter card F.3 Front view of AFT base card F.4 Back view of AFT base card F.5 Front view of Remora BRI Daughter card with BRI modules F.6 Front view of Remora BRI Daughter card without BRI modules F.7 Back view of Remora BRI Daughter card F.8 View of S/T BRI Modules The photographs depict the samples in their final modified state. Page 80

81 Appendix F : Photographs of Test Samples F.1 Front view of BRI Card Page 81

82 Appendix F : Photographs of Test Samples F.2 View of AFT base card and Remora BRI Daughter card Page 82

83 Appendix F : Photographs of Test Samples F.3 Front view of AFT base card Page 83

84 Appendix F : Photographs of Test Samples F.4 Back view of AFT base card Page 84

85 Appendix F : Photographs of Test Samples F.5 Front view of Remora BRI Daughter card with BRI modules Page 85

86 Appendix F : Photographs of Test Samples F.6 Front view of Remora BRI Daughter card without BRI modules Page 86

87 Appendix F : Photographs of Test Samples F.7 Back view of Remora BRI Daughter card Page 87

88 Appendix F : Photographs of Test Samples F.8 View of S/T BRI Modules Page 88

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