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HJ 2508-2011

Chinese Standard: 'HJ 2508-2011'
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HJ 2508-2011English469 Add to Cart Days<=3 Technical requirement for environmental labeling products. Phones Valid HJ 2508-2011
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Detail Information of HJ 2508-2011; HJ2508-2011
Description (Translated English): Technical requirement for environmental labeling products. Phones
Sector / Industry: Environmental Protection Industry Standard
Classification of Chinese Standard: M40
Classification of International Standard: 33.040.60
Word Count Estimation: 18,112
Date of Issue: 2011-03-02
Date of Implementation: 2011-04-01
Quoted Standard: GB/T 18455; GB/T 15279; GB/T 16288; GB/Z 20288-2006; SJ/T 11365-2006; SN/T 1877.2-2007; YD/T 1591; YD/T 1644.1-2007; YD/T 1760.1; YD/T 1760.2; YD/T 1885
Drafting Organization: China-Japan Friendship Center for Environmental Protection
Regulation (derived from): Department of Environmental Protection Notice No. 20 of 2011
Summary: This standard specifies the telephone environmental labeling product terms and definitions, basic requirements, technical contents and test method. This standard applies to telephones, including landline and mobile phones.


HJ 2508-2011
Technical requirement for environmental labeling products.Phones
National Environmental Protection Standard of the People's Republic
Environmental Labeling Product Technical Requirements Telephone
Technical requirement for environmental labeling products
-Phones
Published on.2011-03-02
2011-04-01 Implementation
Ministry of Environmental Protection released
Ministry of Environmental Protection
announcement
No. 20 of.2011
In order to implement the "Environmental Protection Law of the People's Republic of China", protect the environment, and promote technological progress, the technology of environmental labeling products is now approved.
Seeking the first part of printing. lithography and other six standards are national environmental protection standards, and released.
The standard name and number are as follows.
I. Environmental Labeling Products Technical Requirements Printing Part I. Lithography (HJ 2503-2011)
Second, environmental labeling products technical requirements camera (HJ 2504-2011)
Third, environmental labeling products technical requirements mobile hard disk (HJ 2505-2011)
Fourth, environmental labeling products technical requirements color television broadcast receiver (HJ 2506-2011)
V. Environmental Labeling Product Technical Requirements Network Server (HJ 2507-2011)
Environmental Labeling Products Technical Requirements Printing Part 1. Lithographic Printing (HJ 2503-2011) is implemented from the date of publication, the rest
The standard has been implemented since April 1,.2011.
From April 1,.2011, the "Technical Requirements for Environmental Labeling Products Color TV Broadcast Receiver" (HJ/T 306-2006) will be abolished.
Special announcement.
March 2,.2011
Content
Foreword..iv
1 Scope..1
2 Normative references..1
3 Terms and Definitions.1
4 Basic requirements..2
5 Technical content..2
6 Inspection method..3
Appendix A (Normative) Preparation of Polycyclic Aromatic Hydrocarbons in Plastic Materials 4
Appendix B (Normative Appendix) Detection of average current of mobile phones during call and standby..7
Iv
Foreword
To implement the Environmental Protection Law of the People's Republic of China, reduce the impact of telephone calls on the environment and human health, effectively use and conserve resources,
Energy, develop this standard.
This standard measures the leakage current of wired telephones, the average efficiency of external power adapters, electromagnetic radiation of mobile phones, and power supply chargers.
Average efficiency and the limits of toxic and hazardous substances in the phone, design, production process, packaging materials, recycling and public information
The request.
This standard is the first release.
Appendix A and Appendix B of this standard are normative appendices.
This standard applies to China Environmental Labeling Product Certification.
This standard was formulated by the Science and Technology Standards Department of the Ministry of Environmental Protection.
This standard is mainly drafted by. China-Japan Friendship Environmental Protection Center, China Taier Laboratory.
This standard was approved by the Ministry of Environmental Protection on March 2,.2011.
This standard has been implemented since April 1,.2011.
This standard is explained by the Ministry of Environmental Protection.
Environmental Labeling Product Technical Requirements Telephone
1 Scope of application
This standard specifies the terms and definitions, basic requirements, technical content and testing methods of telephone environmental labeling products.
This standard applies to telephones, including wireline and mobile phones.
2 Normative references
The contents of this standard refer to the terms in the following documents. For undated references, the valid version applies to this standard.
GB/T 18455 packaging recycling mark
GB/T 15279 automatic telephone technical conditions
GB/T 16288 logo for plastic products
GB/Z 20288-2006 General requirements for the separation of test samples for hazardous substances in electrical and electronic products
SJ/T 11365-2006 Methods for the detection of toxic and hazardous substances in electronic information products
SN/T 1877.2-2007 Method for determination of polycyclic aromatic hydrocarbons in plastics and their products
YD/T 1591 mobile communication terminal power adapter and charging/data interface technical requirements and test methods
YD/T 1644.1-2007 Electromagnetic irradiation of human body by wireless communication equipment for hand-held and body wear--human body model, instrument
And the first part of the procedure. SAR evaluation procedures for handheld wireless communication devices used near the ear
(frequency range 300 MHz to 3 GHz)
YD/T 1760.1 Digital mobile terminal peripheral interface data exchange Part 1. Data format technical requirements
YD/T 1760.2 Digital mobile terminal peripheral interface data exchange Part 2. Data exchange file format technical requirements
YD/T 1885 mobile communication handset wired headset interface technical requirements and test methods
3 Terms and definitions
The following terms and definitions apply to this standard.
3.1
Phone phone
Fixed telephone terminals, cordless telephone terminals and mobile connected to public communication networks (including fixed communication networks and wireless communication networks)
User terminal products.
3.2
Wired telephone wirephone
It is connected to a fixed telephone terminal and a cordless telephone terminal product in a public fixed communication network.
3.3
Mobile phone
Connected to a mobile user terminal product within a public wireless communication network.
4 basic requirements
4.1 Product quality and safety performance should meet the requirements of relevant standards.
4.2 Pollutant emissions from product manufacturing enterprises shall comply with national or local standards for pollutant discharge.
4.3 Product manufacturers should strengthen clean production in the production process.
5 Technical content
5.1 Wired telephone
5.1.1 Only wired telephones with telephone line power supply and LCD display shall have leakage current in the on-hook state in accordance with GB/T 15279.
Requirements; other wired telephones that are only powered by telephone lines should have a leakage current of no more than 20 μA in the on-hook state.
5.1.2 For wired telephones powered by an external power supply, the actual average efficiency of the external power adapter shall comply with the requirements of YD/T 1591.
5.2 Mobile Phone
5.2.1 The electromagnetic radiation specific absorption rate (SAR) value of mobile phones should be no more than 0.8 W/kg.
5.2.2 Mobile phone power charger and charging/data interface shall comply with YD/T 1591 requirements.
5.2.3 Mobile phone wired headset interface shall comply with YD/T 1885 requirements.
5.2.4 The data format of the mobile phone software shall comply with the requirements of YD/T 1760.1, and the data exchange file format shall conform to YD/T 1760.2.
Claim.
5.3 Product requirements
5.3.1 The limit of toxic and hazardous substances in homogeneous materials in products shall comply with the requirements of Table 1.
Table 1 Limits of toxic and hazardous substances in homogeneous materials in products 1
Project limit (quality score)
Lead (Pb) ≤ 0.1%
Mercury (Hg) ≤ 0.1%
Cadmium (Cd) ≤0.01%
Hexavalent chromium (Cr6) ≤0.1%
Polybrominated biphenyls (PBBs) ≤0.1%
Polybrominated diphenyl ethers (PBDEs) ≤0.1%
Note 1. Exemptions can be waived for exceptions. See Table 2 for exceptions.
Table 2 Exceptional Limits for Toxic and Hazardous Substances in Homogeneous Materials in Products
Serial number content
1 Lead (Pb) is applied to the glass of electronic components
2 Lead (Pb) and cadmium (Cd) are used in optical glass and filter glass
3 Lead (Pb) is used in ceramics of electronic ceramic parts
4 Lead (Pb) is used as an alloying component in steel alloys and its content (mass fraction) ≤0.35%
5 Lead (Pb) is used as an alloying component in aluminum alloys and its content (mass fraction) ≤0.4%
6 Lead (Pb) is used as an alloying component in copper alloys and its content (mass fraction) ≤ 4%
7 Lead (Pb) is used in high temperature solders and its content (mass fraction) ≥ 85%
8 Lead (Pb) is used in the solder used for microprocessor pins and package connections, and its content (mass fraction) is 80% to 85%.
9 Lead (Pb) is used in the internal bonding solder of integrated circuit flip chip packages
10 Lead (Pb) is used in the surface treatment of fine pitch components (except connectors) with a pitch not exceeding 0.65 mm and with an iron-nickel lead frame or a copper lead frame
5.3.2 Product enclosures and cables Polycyclic aromatic hydrocarbons (PAHs) in plastic materials shall meet the requirements of Table 3.
Table 3 Polycyclic Aromatic Hydrocarbons (PAHs) in Product Shells and Cable Plastic Materials
Project limit (quality score)
Benzo[a]pyrene (BaP) ≤0.000 1%
Naphthalene, AcPy, Acp, Flu, PA, Ant, Fluoride (FL), Pyr (Pyr),
Quinoa (CHR), benzo[a]pyrene (BaA), benzo[b]fluoranthene (BbF), benzo[k]fluoranthene (BkF), benzo[a]pyrene (BaP),
Dibenzo[a,h]indole (DBA), indene [1,2,3-cd]indole (IND), benzo[g,h,i]indole (BghiP) 16 polycyclic aromatic hydrocarbons (PAHs)
sum
≤0.001%
5.3.3 Product design requirements
5.3.3.1 The parts of the product shall be standardized.
5.3.3.2 The same size battery of the mobile phone should be used in at least 3 models of mobile phones.
5.3.4 Product production process requirements
Hydrochlorofluorocarbons (HCFCs), 1,1,1-trichloroethane (C2H3Cl3), trichloroethylene should not be used in the production of products and boards.
(C2HCl3), dichloroethane (CH3CHCl2), chloroform (CHCl3), bromopropane (C3H7Br), n-hexane (C6H14), toluene (C7H8),
Xylene [C6H4(CH3)2] was used as a washing solvent.
5.3.5 Material identification requirements
The abbreviations or codes of the material identification shall comply with the requirements of GB/T 16288.
5.3.6 Packaging material requirements
5.3.6.1 The content of vinyl chloride monomer shall not exceed 1 mg/kg.
5.3.6.2 Hydrochlorofluorocarbons (HCFCs) should not be used as blowing agents.
5.3.6.3 Mark according to the requirements of GB/T 18455.
5.3.7 Recycling and disposal requirements
Enterprises should establish waste product recycling and recycling treatment systems to provide information on product recycling and recycling.
5.3.8 Public Information Requirements
5.3.8.1 should include product recycling information.
5.3.8.2 The mobile phone shall include the average power consumption information during the call and standby states.
6 Test methods
6.1 Technical content 5.1.1 The test shall be carried out in accordance with the method specified in GB/T 15279.
6.2 Technical content The detection of 5.1.2 and 5.2.2 is carried out in accordance with the method specified in YD/T 1591.
6.3 Technical content The detection of 5.2.1 is carried out in accordance with the method specified in YD/T 1644.1-2007.
6.4 Technical content The detection of 5.2.3 is carried out in accordance with the method specified in YD/T 1885.
6.5 Technical content The detection of 5.3.1 is carried out in accordance with the method specified in SJ/T 11365-2006.
6.6 Technical content The detection of 5.3.2 shall be carried out in accordance with the method specified in SN/T 1877.2-2007, and the sample preparation shall be in accordance with the method specified in Appendix A.
get on.
6.7 Technical content The average power consumption test in 5.3.8.2 is carried out by the enterprise in accordance with the method specified in Appendix B.
6.8 Other requirements in the technical content shall be verified by means of document review in conjunction with on-site inspection.
Appendix A
(normative appendix)
Preparation of polycyclic aromatic hydrocarbons test samples in plastic materials
A.1 Method summary
The method is used to prepare a test sample of polycyclic aromatic hydrocarbons (PAHs) in a plastic material. The split sample is pulverized to 2 to 3 by a grinder
Mm, weigh the sample mass about 0.5 g, add the internal standard substance and 20 ml of toluene, and extract it in a 60 ° C ultrasonic water bath for 1 h, then cool to the room.
After the temperature, the test was carried out in accordance with the method specified in SN/T 1877.2-2007.
A.2 Equipment and materials
A.2.1 Equipment
a) a fume hood for the experiment;
b) grinding machine (liquid nitrogen cooling);
c) electronic analytical balance, accurate to 0.1 mg;
d) microinjection needles;
e) needle sample filter (organic system);
f) pipetting gun 20 ~.200 μl,.200 ~ 1 000 μl;
g) Glassware. chromatography bottle (2 ml), volumetric flask, 20/10 ml headspace bottle, beaker;
h) ultrasonic cleaner, centrifuge;
i) Centrifuge tubes and thermometers.
A.2.2 Reagents and other
a) internal standard and reference materials
1) Internal standard. Acenaphthene-d10, Chrysene-d12, Phenanthrene-d10.
2) PAHs reference materials.
Table A.1 PAHs Reference Materials
Compound Chinese name compound English name short name
Naphthalene Napene Nap
Terenaphthylene AcPy
苊Acenaphthene Acp
芴Fluorene Flu
Philippine Phenanthrene PA
蒽Anthracene Ant
Fluoranthine Fluoranthene FL
芘Pyrene Pyr
Quarry Chrysene CHR
Benzo[a]蒽Benzo[a]anthracene BaA
Benzo[b]fluoranthene Benzo[b]fluoranthene BbF
Benzo[k]fluoranthene Benzo[k]fluoranthene BkF
Continued
Compound Chinese name compound English name short name
Benzo[a]芘Benzo[a]pyrene BaP
Dibenzo[a,h]蒽Dibenzo[a,h]anthrancene DBA
Benzene [1,2,3-cd]芘Indeno[1,2,3-cd]pyrene IND
Benzo[g,h,i]芘Benzo[g,h,i]perylene BghiP
PAHs 16 compound mixed standard.200 μg/ml
3) Quasi-standard product. 1-fluoronaphthalene.
b) reagent
Toluene. analytically pure; toluene. chromatographically pure.
c) carrier gas
Pure helium. purity 99.999%.
A.3 Standard solution preparation requirements
Before the chromatographic analysis, the standard solution should be prepared using the above standard materials, and the working curve should be used. The standard curve concentration point (excluding the zero point) is
Five points less.
A.4 Sample preparation
A.4.1 Number of samples
If the sample to be tested needs to be removed from the finished product or component, the sample is split according to the national standard GB/Z 20288-2006. Split
The amount of sample material should be no less than 5 g.
A.4.2 Sample preparation
The sample to be tested is pulverized to 2 to 3 mm, and a sample weighing approximately 500 mg can be weighed accurately to a sample weighing about 500 mg and the actual number is recorded.
Take the quality.
A.4.3 Sample extraction
Add 20 ml of toluene (adding internal standard) to the headspace bottle, press the aluminum cover and place in an ultrasonic water bath.
At 60 ° C. The mixture was shaken for 1 h using ultrasonic waves, and after extraction, it was taken out and allowed to cool to room temperature.
A.4.4 Sample purification
After standing, transfer the sample solution to the centrifuge tube, place it symmetrically, turn on the centrifuge, and centrifuge for 5 min (4 000 r/min). Take the supernatant
1 to 2 ml, filter with a syringe and an organic filter (0.45 μm), transfer the filtrate to a chromatography bottle, shake and prepare for testing.
A.5 Test project
The following 16 polycyclic aromatic hydrocarbon compounds were tested according to the method specified in SN/T 1877.2-2007.
Table A.2 16 polycyclic aromatic hydrocarbon compounds
Compound Chinese name compound English name short name
Naphthalene Napene Nap
Terenaphthylene AcPy
苊Acenaphthene Acp
芴Fluorene Flu
Continued
Compound Chinese name compound English name short name
Philippine Phenanthrene PA
蒽Anthracene Ant
Fluoranthine Fluoranthene FL
芘Pyrene Pyr
Quarry Chrysene CHR
Benzo[a]蒽Benzo[a]anthracene BaA
Benzo[b]fluoranthene Benzo[b]fluoranthene BbF
Benzo[k]fluoranthene Benzo[k]fluoranthene BkF
Benzo[a]芘Benzo[a]pyrene BaP
Dibenzo[a,h]蒽Dibenzo[a,h]anthrancene DBA
Benzene [1,2,3-cd]芘Indeno[1,2,3-cd]pyrene IND
Benzo[g,h,i]芘Benzo[g,h,i]perylene BghiP
Appendix B
(normative appendix)
Detection of average current of mobile phone during call and standby
B.1 Overview
The following abbreviations apply to this appendix.
AMR Adaptive Multi Rate Adaptive Multirate
CDMA Code Division Multiple Access Code Division Multiple Access
CPICH Common Pilot Channel Common Pilot Channel
DPCH Dedicated Physical Channel
DRX discontinuous Receive
DTX Discontinuous Transmission
GPRS General Packet Radio Service
GSM Global System for Mobi le Communications Global System for Mobile Communications
MMS Multimedia Message Service Multimedia Information Service
PCCPCH Primary Common Control Physical Channel
PCL Power Control Level
RSCP Received Signal Code Power Receive Signal Code Domain Power
SIM Subscriber Identity Module User Authentication Module
SMS Short Messaging Service short message service
SS System Simulator System Simulator
TDMA Time Division Multiple Access Time Division Multiple Access
TD-SCDMA Time Division Synchronize Code Time Division Synchronous Code Division Multiple Access
Division Multiple Access
UE User Equipment User Equipment
WCDMA Wideband Code Division Multiple Access Wideband Code Division Multiple Access
The schematic diagram of the mobile terminal power consumption test system, as shown in Figure B.1, includes the network environment, the current acquisition system, and the terminal under test.
DC power supply and electricity
Flow collection device
UE
The internet
Figure B.1 Power Test System Schematic
Considering the consistency and compatibility of the UE's Uu interface, as a simplified way, allowing the use of a system simulator (base station simulation
Replace the real network test environment for power consumption testing of the terminal. This system simulator (base station simulator) should be detected by the entity
Or provided by a third-party test equipment R&D entity, and the Uu interface shall comply with the 3GPP/3GPP2 specifications. The terminal transceiver should meet the corresponding
Industry standard requirements.
The power consumption test system is shown in Figure B.2 and Figure B.3.
DC power supply
Control computer
Data line
UE
system
Simulator
Figure B.2 Schematic diagram of DC source power consumption test system
Control computer
system
Simulator
Data line
battery
UE
Figure B.3 Schematic diagram of battery power consumption test system
Instrument Description. The main test instruments are high precision current/voltmeter and system simulator. High precision current/voltage meter as mobile terminal
The test device is consumed; the system simulator establishes various communication service states with the UE. The measurement requirements of the test equipment are shown in Table B.1 and Table B.2.
Table B.1 Standby measurement requirements
Measurement condition requirement limit
Measuring resistance ≤0.5 Ω
Accuracy/Type 1%, 0.5 W, High Precision Metal Film Resistors
Sampling rate ≥50,000 times/s
Resolution ≤0.1 mA
Noise floor is less than the lowest ADC step
Table B.2 Business Measurement Requirements
Measurement condition requirement limit
Measuring resistance ≤0.1 Ω
Accuracy/Type 1%, 2 W, High Precision Metal Film Resistors
Sampling rate ≥50,000 times/s
Resolution ≤0.5 mA
Noise floor is less than the lowest ADC step
Note 1. It is recommended to establish a good connection between the comprehensive tester and the mobile terminal; the mobile terminal is shielding the environment to avoid interference.
Note 2. It is recommended to use a resistor with a sensing wire. Otherwise, you need to measure the resistance accurately and consider the impedance of the connecting cable.
B.2 Standby power test
B.2.1 Test conditions
The network environment adopted by this standard is an analog network. If there are no conditions, the live network environment can also be used in the test, but the existing network environment should be adopted.
Be explained.
Table B.3 General parameter settings
Set parameter settings value comments
Cell reselection without -
Cell broadcast no -
SIM/USIM/UIM card - support clock stop mode
SMS/MMS None -
PLMN Local -
Additional business closed -
Terminal additional function is off -
B.2.1.1 GSM/GPRS terminal
B.2.1.1.1 GSM/GPRS general network environment
Table B.4 GSM/GPRS Universal Network Environment Parameter Settings
Set parameter settings value comments
The center frequency of the frequency band in which the working frequency band UE works shall indicate the terminal frequency band in the test result.
UE receive level −82 dBm -
Switch settings no -
BA list (Note) 16 -
DTX None -
DRX 7 This value is the default value. If you choose other values, it should be indicated in the test results.
Adjacent cell no -
Periodic location update off T3212 = 0
Note. The neighbor cell is required to be measured according to the list, but the SS does not provide the neighbor cell signal to avoid the terminal from initiating synchronization.
B.2.1.1.2 GPRS network environment
Table B.5 GPRS network environment parameter settings
Set parameter settings value comments
DRX 7 This value is the default value. If you choose other values, it should be indicated in the test results.
Network operation mode Note 1 -
Paging channel CCCH-PCH -
Adjacent cell no -
Note. The network operation mode indicates that all paging information is sent over the PPCH channel. If there is no PPCH channel, it can also be sent using the CCCH-PCH channel. when
CS domain paging signaling is transmitted by the PDTCH channel when the PS domain is connected.
Table B.6 BA list neighbor cell channel number
Parameter working band parameter value
Neighbor cell channel number
900 bands 1,9,17,26,34,42,50,58,67,75,83,91,99,108,116,124
1800 bands 512,536,560,585,610,635,660,685,710,735,760,785,810,835,
860,885
B.2.1.1.3 Terminal settings
Table B.7 Terminal Settings
Set parameter settings
Other auxiliary peripherals such as Bluetooth/infrared/camera are off
No button press
volume-
Display power saving mode
The backlight is off or set to a minimum
B.2.1.2 TD-SCDMA terminal
B.2.1.2.1 Network environment
Table B.8 Network Environment Parameter Settings
Set parameter settings value comments
Frequency band center frequency in which the working frequency band UE works
The terminal frequency band should be indicated in the test result
2010-2025 MHz band
Median.2017.4 MHz
(This value is the default value. If other frequency bands are involved, please indicate in the result)
There are no less than 4 neighboring cell lists -
PCCPCH RSCP −80 dBm -
DRX 7 This value is the default value. If you choose other values, it should be indicated in the test results.
Periodic position update off T3212=0
B.2.1.2.2 Terminal settings
Table B.9 Terminal Settings
Set parameter settings
Other auxiliary peripherals such as Bluetooth/infrared/camera are off
No button press
volume-
Display power saving mode
The backlight is off or set to a minimum
B.2.1.3 WCDMA terminal
B.2.1.3.1 Network environment
Table B.10 Network Environment Parameter Settings
Set parameter settings value comments
The center frequency of the frequency band in which the working frequency band UE works shall indicate the terminal frequency band in the test result.
List of neighboring cells (Note) 16 -
DRX 7 This value is the default value. If you choose other values, it should be indicated in the test results.
CPICH_RSCP(Ec) (Common Pilot Channel)
Received power) −82 dBm -
DPCH_Ec/Ior −5 dB -
Ec/No >−12 dB -
Periodic location update off T3212 = 0
Note. It is required to measure the same-frequency neighboring cell according to the list, but the SS does not provide the neighboring cell signal to avoid the terminal from initiating synchronization.
Note 3. By default, only the intra-frequency neighbor cell search is performed. If there are other settings, please indicate in the test results.
B.2.1.3.2 Terminal settings
Table B.11 Terminal Settings
Set parameter settings
Other auxiliary peripherals such as Bluetooth/infrared/camera are off
No button press
volume-
Display power saving mode
The backlight is off or set to a minimum
B.2.1.4 CDMA terminal
B.2.1.4.1 Network environment
Table B.12 Network Environment Parameter Settings
Set parameter settings value comments
The center frequency of the frequency band in which the working frequency band UE works shall indicate the terminal frequency band in the test result.
Band actually used in BAND class0 and BAND class6
Ior −75 dBm -
Pilot Ec
Ior
−7 dB -
Paging Ec
Ior
−12 dB -
Quick paging channel 0− not supported -
REG_PRD 58 registration period is approximately 31 min
SLOT CYCLE INDEX 1 (Reset time slot parameter) 1 MAX SLOT CYCLE INDEX set to 1 or 0
B.2.1.4.2 Terminal settings
Table B.13 Terminal Settings
Set parameter settings
Other auxiliary peripherals such as Bluetooth/infrared/camera are off
No button press
volume-
Display power saving mode
The backlight is off or set to a minimum
B.2.1.5 Dual mode terminal
System Simulator A
System Simulator B
UE
Power supply DC
Source and current
Set equipment.
   
 
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