Go/No Go Test Script Specification, Electrical
Go/No Go Test Script Specification,
Electrical
Applicable for K200a, K200c, K200i, K205a, K205i, K220c and K220i
Contents
General.............................................................................................................................3
1
1.1 About This Document .......................................................................................3
1.2 Script Requirements..........................................................................................3
1.3 Channel Allocation Table..................................................................................4
1.4 Power Level Allocation Table...........................................................................4
1.5 Test Limits.........................................................................................................4
1.6 Attenuation Factors ...........................................................................................5
1.7 Scripts................................................................................................................5
2 K200c, K200i, K205i, K220c and K220i Test Sequence using an RF Shield Box and
Coupler ............................................................................................................................5
2.1 Initializing and Call Setup.................................................................................5
2.2 Audio Loopback................................................................................................7
2.3 Measurement Group ALLMEAS LCH 900 ......................................................7
2.4 Measurement Group ALLMEAS MCH 900.....................................................7
2.5 Measurement Group ALLMEAS HCH 900......................................................8
2.6 Measurement Group ALLMEAS LCH 1800 ....................................................8
2.7 Measurement Group ALLMEAS MCH 1800...................................................9
2.8 Measurement Group ALLMEAS HCH 1800....................................................9
3 K200c, K200i, K205i, K220c and K220i Test Sequence using a Direct Line Connection
........................................................................................................................................10
3.1 Initializing and Call Setup...............................................................................10
3.2 Audio Loopback..............................................................................................11
3.3 Measurement Group ALLMEAS LCH 900 ....................................................11
3.4 Measurement Group ALLMEAS MCH 900...................................................11
3.5 Measurement Group ALLMEAS HCH 900....................................................12
3.6 Measurement Group ALLMEAS LCH 1800 ..................................................12
3.7 Measurement Group ALLMEAS MCH 1800.................................................13
3.8 Measurement Group ALLMEAS HCH 1800..................................................13
4 K200a, K205a Test Sequence using an RF Shield Box and Coupler........................14
4.1 Initializing and Call Setup...............................................................................14
4.2 Audio Loopback..............................................................................................15
4.3 Measurement Group ALLMEAS LCH 850 ....................................................15
4.4 Measurement Group ALLMEAS MCH 850...................................................15
4.5 Measurement Group ALLMEAS HCH 850....................................................16
4.6 Measurement Group ALLMEAS LCH 1900 ..................................................16
4.7 Measurement Group ALLMEAS MCH 1900.................................................17
4.8 Measurement Group ALLMEAS HCH 1900..................................................17
5 K200a, K205a Test Sequence using a Direct Line Connection.................................18
5.1 Initializing and Call Setup...............................................................................18
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5.2 Audio Loopback..............................................................................................19
5.3 Measurement Group ALLMEAS LCH 850 ....................................................19
5.4 Measurement Group ALLMEAS MCH 850...................................................19
5.5 Measurement Group ALLMEAS HCH 850....................................................20
5.6 Measurement Group ALLMEAS LCH 1900 ..................................................20
5.7 Measurement Group ALLMEAS MCH 1900.................................................21
5.8 Measurement Group ALLMEAS HCH 1900..................................................21
6 Attenuation Factors......................................................................................................22
6.1 K200c, K200i, K205i, K220c and K220i in the Rohde & Schwarz RF Shield Box
and Coupler .....................................................................................................22
6.2 K200a in the Rohde & Schwarz RF Shield Box and Coupler.........................23
6.3 K205a in the Rohde & Schwarz RF Shield Box and Coupler.........................23
6.4 Using a Direct Line Connection......................................................................24
7 Revision history.............................................................................................................24
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1 General
1.1 About This Document
This document contains the test requirements for a GSM dual-band (900/1800 and 850/1900)
pocket transceivers using an antenna coupler or direct line connection. These test sequences
should be used as an arrival and verification test of radio functionality.
Tests are done in signaling mode, i.e. a call has been established to the test instrument. The test
instrument controls the transceiver unit. RF performance is measured with an antenna coupler or
the direct line connection, whichever method is selected.
1.2 Script Requirements
• The test should be designed so those users with little or no system expertise can perform
accurate testing.
• The measurements should run automatically, though a certain amount of manual work is
included (and mandatory), such as MS call setup (i.e. dialling number).
• It should be possible to print or store the measurement results.
• It should be possible to change the channels used in testing due to possible local radio
interference. The ranges for these settings are specified under the Channel Allocation
Table.
• All functions and settings should be protected in such a manner that the end-user cannot
directly change them. (For example, a password or encrypted settings file.)
• The attenuation factors that should be used are stated in section 6. The test instrument must
be capable of using different attenuation factors for RX and TX. It must also be possible to
use various attenuation factors for different channels in each band.
NOTE! Any setups other than the one stated in this document must be discuss ed and
exempted by Sony Ericsson to be approved.
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1.3 Channel Allocation T able
Band Ch definition Any ARFCN of:
GSM850 Low 128-132
GSM850 Mid 187-191
GSM850 High 247-251
GSM900 Low 975-979
GSM900 Mid 36-40
GSM900 High 120-124
GSM 1800 Low 512-516
GSM 1800 Mid 697-701
GSM 1800 High 881-885
GSM1900 Low 512-516
GSM1900 Mid 658-662
GSM1900 High 806-810
1.4 Power Level Allocation Table
Band PL definition Power level (PL)
GSM850 Lowest 19
GSM850 Mid 12
GSM850 Highest 7
GSM900 Lowest 19
GSM900 Mid 12
GSM900 Highest 5
GSM1800/1900 Lowest 15
GSM1800/1900 Mid 8
GSM1800/1900 Highest 0
1.5 Test Limits
The test limits for each measurement are specified in the Sequence Tables.
1. Since the coupler introduces higher measurement inaccuracy, some measurements
may have wider limits than stated in the GSM specifications.
2. The direct line connection limits conform to the phase 2 GSM specification.
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1.6 Attenuation Factors
The different scripts must be configured with the correct attenuation factors and named after the
product that they are designed to test. The attenuation factors to be used are stated in section
1.7 Scripts
General scripts for the different system/system combinations may be developed. No hand-over is
necessary if not stated, however, Sony Ericsson mobiles are capable of hand-over between
GSM900/1800 and GSM850/1900 and might therefore be used to decrease test time.
4.
2 K200c, K200i, K205i, K220c and K220i Test Sequence
using an RF Shield Box and Coupler
2.1 Initializing and Call Setup
Parameter Value Unit
BCCH Mid Ch
TCH Mid Ch
TX power level High PL
RF output power -40 dBm
System GSM 900
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2.1.1 Sequence
1. Initialize instrument
2. Insert a test SIM and attach a fully charged standard battery to the mobile.
very important that a fully charged battery is used otherwise there is a high risk for
incorrect test results.
3. Position the mobile in the coupler according to the picture.
It’s
Rohde & Schwarz Shield Box and Coupler (Position G6)
4. Turn on the mobile and wait for registration.
5. Set up a call to the instrument or let the instrument call the MS.
6. Close the lid on the shielding box.
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2.2 Audio Loopback
1. Set power level to high.
2. Activate audio loopback in the instrument.
3. Operator must acknowledge passed or failed before the test is continued.
2.3 Measurement Group ALLMEAS LCH 900
Parameter Value Unit
TCH Low Ch
TX power level High PL
RF output power -68 dBm
System GSM 900
2.3.1 Sequence
Measurement Time Limits Unit
TX power 33 +/-4 dB
RMS Phase error 0 +/-5 deg
Rx Level 34-50 dB
Rx Quality 0-3 Units
2.4 Measurement Group ALLMEAS MCH 900
Parameter Value Unit
TCH Mid Ch
TX power level Mid PL
RF output power -102 dBm
System GSM 900
2.4.1 Sequence
Measurement Time Limits Unit
TX power 19 +/-5 dB
RMS Phase error 0 +/-5 deg
Peak Phase error 0 +/-20 deg
Freq error +/-0.1 ppm Hz
Rx Level 2-14 dB
Rx Quality 0-3 Units
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2.5 Measurement Group ALLMEAS HCH 900
Parameter Value Unit
TCH High Ch
TX power level Low PL
RF output power -68 dBm
System GSM 900
2.5.1 Sequence
Measurement Time Limits Unit
TX power 5 +/-7 dB
RMS Phase error 0 +/-5 deg
2.6 Measurement Group ALLMEAS LCH 1800
Parameter Value Unit
TCH Low Ch
TX power level High PL
RF output power -68 dBm
System GSM 1800
2.6.1 Sequence
Measurement Time Limits Unit
TX power 30 +/-4 dB
RMS Phase Error 0 +/-5 deg
Rx Level 34-50 dB
RX Quality 0-3 Units
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2.7 Measurement Group ALLMEAS MCH 1800
Parameter Value Unit
TCH Mid Ch
TX power level Mid PL
RF output power -102 dBm
System GSM 1800
2.7.1 Sequence
Measurement Time Limits Unit
TX power 14 +/-5 dB
RMS Phase error 0 +/-5 deg
Peak Phase error 0 +/-20 deg
Freq. error +/-0.1 ppm Hz
Rx Level 2-14 dB
Rx Quality 0-3 Units
2.8 Measurement Group ALLMEAS HCH 1800
Parameter Value Unit
TCH High Ch
TX power level Low PL
RF output power -68 dBm
System GSM 1800
2.8.1 Sequence
Measurement Time Limits Unit
TX power 0 +/-7 dB
RMS Phase error 0 +/-5 deg
2.8.2 Call Disconnect Sequence
1. Disconnect call.
2. End test.
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3 K200c, K200i, K205i, K220c and K220i Test Sequence
using a Direct Line Connection
3.1 Initializing and Call Setup
Parameter Value Unit
BCCH Mid Ch
TCH Mid Ch
TX power level High PL
RF output power -40 dBm
System GSM 900
3.1.1 Sequence
1. Initialize instrument
2. Remove the battery and antenna covers, insert a Test SIM and attach a fully
charged standard battery to the mobile.
battery is used otherwise there is a high risk for incorrect test results. A dummy
battery can also be used.
3. Connect the mobile to the RF fixture according to the picture.
It’s very important that a fully charged
4. Turn on the mobile and wait for registration.
5. Set up a call to the instrument or let the instrument call the MS.
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3.2 Audio Loopback
1. Set power level to high.
2. Activate audio loopback in the instrument.
3. Operator must acknowledge passed or failed before the test is continued.
3.3 Measurement Group ALLMEAS LCH 900
Parameter Value Unit
TCH Low Ch
TX power level High PL
RF output power -68 dBm
System GSM 900
3.3.1 Sequence
Measurement Time Limits Unit
TX power 33 +/-2 dB
RMS Phase error 0 +/-5 deg
Rx Level 36-48 dB
Rx Quality 0-3 Units
3.4 Measurement Group ALLMEAS MCH 900
Parameter Value Unit
TCH Mid Ch
TX power level Mid PL
RF output power -102 dBm
System GSM 900
3.4.1 Sequence
Measurement Time Limits Unit
TX power 19 +/-3 dB
RMS Phase error 0 +/-5 deg
Peak Phase error 0 +/-20 deg
Freq error +/-0.1 ppm Hz
Rx Level 4-12 dB
Rx Quality 0-3 Units
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3.5 Measurement Group ALLMEAS HCH 900
Parameter Value Unit
TCH High Ch
TX power level Low PL
RF output power -68 dBm
System GSM 900
3.5.1 Sequence
Measurement Test Limits Unit
TX power 5 +/-5 dB
RMS Phase error 0 +/-5 deg
3.6 Measurement Group ALLMEAS LCH 1800
Parameter Value Unit
TCH Low Ch
TX power level High PL
RF output power -68 dBm
System GSM 1800
3.6.1 Sequence
Measurement Time Limits Unit
TX power 30 +/-2 dB
RMS Phase error 0 +/-5 deg
Rx Level 36-48 dB
RX Quality 0-3 Units
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3.7 Measurement Group ALLMEAS MCH 1800
Parameter Value Unit
TCH Mid Ch
TX power level Mid PL
RF output power -102 dBm
System GSM 1800
3.7.1 Sequence
Measurement Time Limits Unit
TX power 14 +/-3 dB
RMS Phase error 0 +/-5 deg
Peak Phase error 0 +/-20 deg
Freq. error +/-0.1 ppm Hz
Rx Level 4-12 dB
Rx Quality 0-3 Units
3.8 Measurement Group ALLMEAS HCH 1800
Parameter Value Unit
TCH High Ch
TX power level Low PL
RF output power -68 dBm
System GSM 1800
3.8.1 Sequence
Measurement Time Limits Unit
TX power 0 +/-5 dB
RMS Phase error 0 +/-5 deg
3.8.2 Call Disconnect Sequence
1. Disconnect call.
2. End test.
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4 K200a, K205a Test Sequence using an RF Shield Box
and Coupler
4.1 Initializing and Call Setup
Parameter Value Unit
BCCH Mid Ch
TCH Mid Ch
TX power level High PL
RF output power -40 dBm
System GSM 850
4.1.1 Sequence
1. Initialize instrument
2. Insert a test-SIM and attach a fully charged standard battery to the mobile. It’s
very important that a fully charged battery is used otherwise there is a high risk for
incorrect test results.
3. Position the mobile in the coupler according to the picture.
. Rohde & Schwarz Shield Box and Coupler (G6)
4. Turn on the mobile and wait for registration.
5. Set up a call to the instrument or let the instrument call the MS.
6. Close the lid on the shielding box.
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4.2 Audio Loopback
1. Set power
2. Activate audio loopback
3. Operator must acknowledge passed or failed
4.3 Measurement Gr
TCH Low Ch
TX power level High PL
RF output power d -68 Bm
System G 0 SM 85
4.3.1
Sequence
Measurement Time Limits Unit
TX power 29 +/-4 dB
RMS Phase error 0 +/-5 deg
Rx Level 34-50 dB
Rx Quality 0-3 Units
level to high.
in the instrument.
before the test is continued.
oup ALLMEAS LCH 850
Parameter Val
ue Unit
4.4 Measurement Group ALLMEAS MCH 850
e Unit Parameter Valu
TCH Mid Ch
TX power level Mid PL
RF output power d -102 Bm
System GS 0 M 85
4.4.1 Sequence
Measurement Time Limits Unit
TX power 19 +/-5 dB
RMS Phase error 0 +/-5 deg
Peak Phase error 0 +/-20 deg
Freq error +/ -0.1 ppm Hz
Rx Level 2-14 dB
Rx Quality U 0-3 nits
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4.5 Measurement Group ALLMEAS HCH 850
ue Unit Parameter Val
TCH High Ch
TX power level Low PL
RF output power -68 d Bm
System G 0 SM 85
4.5.1 Sequence
Measurement Time Limits Unit
TX power 5 +/-7 dB
RMS Phase error 0 +/-5 deg
4.6 Measurement Group ALLMEAS LCH 1900
TCH Low Ch
TX power level Low PL
RF output power -68 d Bm
System GS 0 M 190
4.6.1 Sequence
Measurement Time Limits Unit
TX power 0 +/-7 dB
RMS Phase Error 0 +/-5 deg
Rx Level 34-50 dB
RX Quality 0-3 Units
Unit Parameter Value
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4.7 Measurement Group ALLMEAS MCH 1900
Unit Parameter Value
TCH Mid Ch
TX power level Mid PL
RF output power -102 d Bm
System GS 0 M 190
4.7.1 Sequence
Measurement Time Limits Unit
TX power 14 +/-5 dB
RMS Phase error 0 +/-5 deg
Peak Phase error 0 +/-20 deg
Freq. error + / m -0.1 pp Hz
Rx Level 2-14 dB
Rx Quality 0-3 Units
4.8 Measurement Group ALLMEAS HCH 1900
TCH High Ch
TX power level High PL
RF output power -68 d Bm
System GS 0 M 190
4.8.1 Sequence
Measurement Time Limits Unit
TX power 30 +/-4 dB
RMS Phase error 0 +/-5 deg
4.8.2 Call Discon ce nect Sequen
1. Disconnect call.
2. End Test.
Unit Parameter Value
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5 K200a, K205a Test Sequence using a Direct Line
Connection
5.1 Initializing and Call Setup
Parameter Value Unit
BCCH Mid Ch
TCH Mid Ch
TX power level High PL
RF output power -40 dBm
System GSM 850
5.1.1 Sequence
1. Initialize instrument
2. Remove battery and antenna covers, insert a test-SIM and attach a fully charged
3. Connect the mobile to the RF fixture according to the picture.
standard battery to the mobile.
used otherwise there is a high risk for incorrect test results. A dummy battery can
also be used.
It’s very important that a fully charged battery is
.
4. Turn on the mobile and wait for registration.
5. Set up a call to the instrument or let the instrument call the MS.
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5.2 Audio Loopback
1. Set power level to high.
2. Activate audio loopback in the instrument.
3. Operator must acknowledge passed or failed before the test is continued.
5.3 Measurement Group ALLMEAS LCH 850
Parameter Value Unit
TCH Low Ch
TX power level High PL
RF output power -68 dBm
System GSM 850
5.3.1 Sequence
Measurement Time Limits Unit
TX power 29 +/-2 dB
RMS Phase error 0 +/-5 deg
Rx Level 36-48 dB
Rx Quality 0-3 Units
5.4 Measurement Group ALLMEAS MCH 850
Parameter Value Unit
TCH Mid Ch
TX power level Mid PL
RF output power -102 dBm
System GSM 850
5.4.1 Sequence
Measurement Time Limits Unit
TX power 19 +/-3 dB
RMS Phase error 0 +/-5 deg
Peak Phase error 0 +/-20 deg
Freq error +/-0.1 ppm Hz
Rx Level 4-12 dB
Rx Quality 0-3 Units
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5.5 Measurement Group ALLMEAS HCH 850
Parameter Value Unit
TCH High Ch
TX power level Low PL
RF output power -68 dBm
System GSM 850
5.5.1 Sequence
Measurement Time Limits Unit
TX power 5 +/-5 dB
RMS Phase error 0 +/-5 deg
5.6 Measurement Group ALLMEAS LCH 1900
Parameter Value Unit
TCH Low Ch
TX power level Low PL
RF output power -68 dBm
System GSM 1900
5.6.1 Sequence
Measurement Time Limits Unit
TX power 0 +/-5 dB
RMS Phase error 0 +/-5 deg
Rx Level 36-48 dB
RX Quality 0-3 Units
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5.7 Measurement Group ALLMEAS MCH 1900
Parameter Value Unit
TCH Mid Ch
TX power level Mid PL
RF output power -102 dBm
System GSM 1900
5.7.1 Sequence
Measurement Time Limits Unit
TX power 14 +/-3 dB
RMS Phase error 0 +/-5 deg
Peak Phase error 0 +/-20 deg
Freq. error +/-0.1 ppm Hz
Rx Level 4-12 dB
Rx Quality 0-3 Units
5.8 Measurement Group ALLMEAS HCH 1900
Parameter Value Unit
TCH High Ch
TX power level High PL
RF output power -68 dBm
System GSM 1900
5.8.1 Sequence
Measurement Time Limits Unit
TX power 30 +/-2 dB
RMS Phase error 0 +/-5 deg
5.8.2 Call Disconnect Sequence
1. Disconnect call.
2. End Test.
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6 Attenuation Factors
6.1 K200c, K200i, K205i, K220c and K220i in the Rohde & Schwarz
RF Shield Box and Coupler
The following values shall be used when testing the in the Rohde & Schwarz RF shield box
(R&S part # 1150.1008.02) using the Rohde & Schwarz coupler (R&S part # 1150.0801.02 )
and SEMC RF-cable (SEMC part # RPM 119 855 ). A precision type N Male to SMA Female
adapter is required to connect the cable to the RF shield box.
NOTE! These values are only valid if you are using the Grid Positioning Plate (R&S part
number 1158.9789.00)
Attenuation
Band Channel*
GSM 900 Low 9.15 8.59
Mid 10.80 5.64
High 11.40 4.11
GSM 1800 Low 9.55 8.72
Mid 9.85 8.11
High 12.35 8.38
• See Channel Allocation Table
RX TX
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6.2 K200a in the Rohde & Schwarz RF Shield Box and Coupler
The following values shall be used when testing the in the Rohde & Schwarz RF shield box
(R&S part # 1150.1008.02) using the Rohde & Schwarz coupler (R&S part # 1150.0801.02 )
and SEMC RF-cable (SEMC part # RPM 119 855 ). A precision type N Male to SMA Female
adapter is required to connect the cable to the RF shield box.
NOTE! These values are only valid if you are using the Grid Positioning Plate (R&S part
number 1158.9789.00)
Attenuation
Band Channel*
GSM 850 Low 11.34 14.84
Mid 8.51 17.94
High 8.62 19.09
GSM 1900 Low 10.78 11.62
Mid 12.83 10.70
High 16.28 10.29
RX TX
6.3 K205a in the Rohde & Schwarz RF Shield Box and Coupler
The following values shall be used when testing the in the Rohde & Schwarz RF shield box
(R&S part # 1150.1008.02) using the Rohde & Schwarz coupler (R&S part # 1150.0801.02 )
and SEMC RF-cable (SEMC part # RPM 119 855 ). A precision type N Male to SMA Female
adapter is required to connect the cable to the RF shield box.
NOTE! These values are only valid if you are using the Grid Positioning Plate (R&S part
number 1158.9789.00)
Attenuation
Band Channel*
GSM 850 Low 13.34 14.84
Mid 8.51 17.94
High 8.62 19.09
GSM 1900 Low 10.78 11.62
Mid 12.83 10.70
High 16.28 10.29
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6.4 Using a Direct Line Connection
1. The following values shall be used when testing with a Direct Line connection. The Direct
Line connection shall consist of a SEMC RF-cable (SEMC part # RPM 119 855 ) and RF
Adapter (SEMC part RPM 119 854/1) .
Attenuation
Band Channel*
GSM 850 ALL 0.9 0.9
GSM 900 ALL 0.9 0.9
GSM 1800 ALL 1.5 1.5
GSM 1900 ALL 1.5 1.5
• See Channel Allocation Table
7 Revision history
Rev. Date Changes / Comments
A 2007-07-06 Initial Release
B 2007-07-16 Simple Document Corrections
C 2007-09-13 Added Support for the K200a
D 2007-11-02 Added support for the K205a handset.
4 2008-01-17 Added Support for the K205i handset.
RX TX
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