Document Title
Version
Date
Status
Document Control ID
T5320 User Guide
1.04
2013-04-15
Release
T5320 User Guide V1.04
General Notes
SIMCom offers this information as a service to its customers, to support application and engineering efforts that
use the products designed by SIMCom. The information provided is based upon requirements specifically
provided to SIMCom by the customers. SIMCom has not undertaken any independent search for additional
relevant information, including any information that may be in the customer’s possession. Furthermore, system
validation of this product designed by SIMCom within a larger electronic system remains the responsibility of the
customer or the customer’s system integrator. All specifications supplied herein are subject to change.
Copyright
This document contains proprietary technical information which is the property of SIMCom Limited, copying of
this document and giving it to others and the using or communication of the contents thereof, are forbidden
without express authority. Offenders are liable to the payment of damages. All rights reserved in the event of grant
of a patent or the registration of a utility model or design. All specification supplied herein are subject to change
without notice at any time.
This device complies with part 15B of the FCC rules. Operation is subject to the following two conditions:
(1) this device may not cause harmful interference
(2) this device must accept any interference, including interference that may cause undesired operation.”
WARNING: Changes or modifications to this unit not expressly approved by the party responsible for compliance
could void the user's authorityto operate the equipment.
Version History........................................................................................................................................................ 6
6.1 Power Supply.......................................................................................................................................... 14
6.2 Serial Interface........................................................................................................................................ 15
6.4 LED indicator ......................................................................................................................................... 21
6.5 Micro USB interface............................................................................................................................... 22
6.7.2 Antenna type ....................................................................................................................................... 24
7.4 Operating frequency ............................................................................................................................... 26
7.5 Transmitter output power and receiver sensitivity ................................................................................. 26
A. Related Documents.......................................................................................................................................... 30
B. Terms and Abbreviations................................................................................................................................. 31
C. Safety Caution ................................................................................................................................................. 32
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Table Index
TABLE 1: T5320 SERIES FREQUENCY BANDS........................................................................................................... 7
FIGURE 8: DIMENSIONS OF POWER LINE(UNIT: MM)..................................................................................... 14
FIGURE 9: POWER INTERFACE ..................................................................................................................................15
2012-08-10 1.02 Figure 7 & Figure 11 are replaced to new pictures. Libing
2012-10-08 1.03 Modify T5320 GPIO example 1. Libing
2013-04-15 1.04 Add description of RF bands and frequencies. Libing
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1 Introduction
This document describes features, functions and interfaces of T5320 terminal in great detail.
T5320 is a quad-band GSM/GPRS/EDGE and dual-band UMTS /HSDPA that works on frequencies of GSM
850MHz, EGSM 900 MHz, DCS 1800 MHz, PCS 1900MHz and WCDMA 2100/900MHz, 2100/850 MHz or
1900/850MHz, which is a ideal solution for wireless m2m applications, the terminal features HSDPA Category
5/6 -3.6 Mbps.
With the help of this document user can understand T5320 interface specifications, electrical and mechanical
quickly.
Table 1: T5320 series frequency bands
Standard Frequency T5320E T5320J T5320A
GSM
WCDMA
HSPA
GSM 850MHz
EGSM 900MHz
DCS1800MHz
PCS1900MHz
WCDMA 850MHz
WCDMA 900MHz
WCDMA 1900MHz
WCDMA 2100MHz
HSDPA
HSUPA
3 3 3
3
3 3
3 3 3
3 3 3
3 3 3
3
3 3 3
3
3
Figure 1: T5320 overview
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2 Key features
T5320 terminal terminal has the following features:
1. Standard AT commands set
2. SIMCom proprietary AT commands set
3. watch-dog function
4. Short circuit protection
5. Voice call
6. GPIOs
7. ADC function
Table 2: T5320 key features
Feature Implementation
Power supply 5V ~ 30V
Transmission data
Transmitting power
Temperature range
CSD
SMS
● Dual-mode UMTS/HSDPA/EDGE/GPRS operation
● GPRS Class B, multislot class 12 operation, Supports coding scheme: CS1-4
● EDGE multislot class 12 operation, Supports coding schemes MSC1-9
● UMTS R99 data rates-384 kbps DL/UL
● HSDPA Category 5/6 -3.6 Mbps and Category12-1.8 Mbps
● Integrate the TCP/IP protocol
z Class 4 (+33dBm) for GSM850 and EGSM900
z Class 1 (+30dBm) for DCS 1800 PCS GSM1900
z Class 3 (+24dBm) for WCDMA 2100, WCDMA FDD BDI
z Class 3 (+24dBm) for WCDMA 1900, WCDMA FDD BDII
z Class 3 (+24dBm) for WCDMA 900, WCDMA FDD BDVIII
z Class 3 (+24dBm) for WCDMA 850, WCDMA FDD BDV
z Normal operation: -30°C ~ +75°C
z Restricted operation: -35°C ~ -30°C and +75 °C ~ +80°C*
z Storage temperature -40°C ~ +85°C
z CSD feature: 9.6, 14.4, 64 kbps UL/DL
● MT, MO, CB, Text and PDU mode
● SMS storage: SIM card
● Support transmission of SMS alternatively over CSD or GPRS. User can
choose preferred mode.
FAX Group 3 Class 1
USIM interface Support USIM card: 1.8V, 3V
External antenna SMA type RF connector
Speech codec modes:
● Half Rate (ETS 06.20)
Audio features
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● Full Rate (ETS 06.10)
● Enhanced Full Rate (ETS 06.50 / 06.60 / 06.80)
● AMR (WCDMA)
● AMR+QCP (GSM)
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● A5/1, A5/2, and A5/3 ciphering
USB Support USB2.0 Slave mode
Serial port:
zFull modem interface with status and control lines, unbalanced,
asynchronous.
RS232 serial port
z 1200bps to 115200bps.
z Default rate is 115200bps.
z Can be used for AT commands data stream.
z Support RTS/CTS hardware handshake and software ON/OFF flow control.
z Multiplex ability according to GSM 07.10 Multiplexer Protocol.
Phonebook management Support phonebook types: SM, FD, LD, RC, ON, MC.
SIM application toolkit
Support SAT class 3, GSM 11.14 Release 98
Support USAT
Physical characteristics
Size: 98*60*23mm
Weight: 128g
Firmware upgradeable by USB interface Firmware upgrade
*
T5320 does work at this temperature, but some radio frequency characteristics may deviate from the GSM specification.
3 Terminal dimensions
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Figure 2: Mechanical dimensions of T5320(Unit: mm)
4 Installation
The terminal can be fixed by two kickstands (Optional) that provided by SIMCom, the following figure is the
illustration.
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Figure 3: Installation of the terminal
5 Interface introduction
5.1 Overview
T5320 Terminal provides the following connectors for power supply, GPIOs, Audio, ADC, Serial port and
antenna:
z The GSM/WCDMA antenna interface(SMA type female connector)
z The 4 PIN I/O port for power supply
z The 10 PIN I/O port for audio, GPIOs and ADC
z The standard RS232 interface
z LED indicator for power (Red) and GSM/WCDMA netlight (Green)
z USIM card holder
z Micro USB interface
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Figure 4: T5320 interface Front view
Figure 5: T5320 interface Back view
Note: For the I/O interface, SIMCom provides 4-line cable and 10-line cable (optional) to assist developers, it
will be introduced at the following chapter.
5.2 T5320 Functional Diagram
The following figure shows a functional diagram of T5320 and typical accessories.
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5.3 Accessory information
Figure 6: T5320 functional diagram
Figure 7: Accessory information
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A: T5320 Terminal
B: GSM Antenna
C: Male to Female DB9 Line
D: 5V Adapter
E: Two kickstands (Optional)
F: 10-Line cable (Optional)
G: Micro-USB cable
6 Application Interface
6.1 Power Supply
Customer can use the DC adapter that SIMCom provides as the power source.
If customer does not use the adapter, then DC source should be satisfied with the following requirements.
z Input voltage range 5-30V
z Normal voltage 12V
z Current ability 1A
The following chapter introduces the power line that SIMCom provides to customers, customer can power the
terminal by connect the terminal to the DC source via this line.
The power line includes four lines as the following figure shows, and table 2 gives a detailed description.
:
NOTE
side. User can login http://www.asia-atom.com/en/ for more information.
Table 3: The power line assignment
4 Black Ground
The part number ofpower line connector is ATOM GROUP LIMITED ATOM010070190003 in T5320
Colour Item PIN Number
white NC 1
Red Power 2
Yellow NC 3
Figure 8: dimensions of power line(Unit: mm)
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Figure 9: Power interface
When a valid power appears the terminal will power up automatic, for the MCU that inside the terminal processed
the power up part, MCU also acts as a Watch Dog, when the terminal runs wrong, MCU will cut off the power
and recover it immediately to restart the terminal.
6.2 Serial Interface
T5320 provides one asynchronous RS232 serial port (female).The RS232 standard interface serves to connect a
PC, Data Terminal Equipment (DTE) or other application, which acts as host controller of the T5320 Terminal
with all its functions. Through the RS232 interface it can be used as GSM/GPRS modem for sending and
Note: User can use AT command “AT+IPR=x” to set a fixed baud rate and the setting will be saved to
non-volatile flash memory automatically. After the configuration is set as fixed baud rate, the URC such as
"RDY", "+CFUN: 1" and "+CPIN: READY” will be reported when T5320 is powered on.
Hyper terminal usually as the PC software tool to operate T5320; customer can set up a connection between PC
and terminal, configure the port properties as the figure 9 shows.
Figure 11: COM port properties of the hyper terminal
6.3
10 PIN I/O interface
T5320 provides a 10 PIN I/O interface for customer use, including Audio, GPIOs and 1 ADC channel.
The following figure gives a brief view of signal assignment.
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Figure 12: signal assignment of 10PIN I/O port
:
NOTE
The part number of the 10 PIN I/O connector is ATOM GROUP LIMITED ATOM010070190005 in
T5320 side. User can login http://www.asia-atom.com/en/ for more information.
To make the usage conveniently, SIMCom provides a cable for customer, it can be inserted to the 10 PIN I/O port
so customer can develop their application by connecting some devices.
Figure 11 shows the specification of cable.
Figure 13: Dimensions of 10-line cable
Table 5: signal assignment of 10 pin cable
Connecting diagram
P1
1 Green GPIO3 I/O
2 Yellow
length
Signal name I/O Command
GPIO1 I/O
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Terminal signal Wire color and cutting
Configurable
by AT
commands
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3 Black GND Ground
4 Orange SPK+ O
1007 26#
5 Brown MIC+ I
6 White GPIO4 I/O
7 Gray GPIO2 I/O
8 Red ADC I
Configurable
by AT
commands
9 Purple SPK- O
10 Blue
MIC- I
6.3.1 Audio interface
T5320 has one pair of audio input and audio output; it can be connected to a speakerphone directly.
Figure 14: Speaker reference circuit
Firstly, customer must use the “AT +CSDVC=3” to select speaker audio channel.
Customer can set the terminal MIC gain level to make the sounds louder so that the listener can hear more clearly.
And if the sound a little lower on the terminal side, customer can use the “AT +CLVL” to make the sound higher
so that customer can hear clearly.
The AT commands should be send to the terminal by RS232 or USB interface, and the following table shows the
detail commands.
Table 6: MIC input characteristics
Parameter Min Typ Max Unit
Work i ng Vol tage - 1.8 - V
Working Current 0.07 0.4 1 mA
External Microphone Load Resistance 1.2
2.2 k Ohms
Table 7: Speaker output characteristics
Parameter Min Typ Max Unit
Quiescent Current - 2.5 4 mA
Load resistance - 8 - Ohm
Output power(1KHz) - 500 - mW
Table 8: Audio parameter
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Parameter Influence to Range Gain rangeCalculationAT command
MICP/MICN
micAmp1
analogue amplifier
0…1 0…24dB 2 steps AT+CMICAMP1
gain before ADC
txVol
txGain
txFilter
rxGain
rxVol
Digital gain of input
signal after ADC
0,
1...65535
Digital gain of input
signal after
summation of
0,
1...65535
sidetone
Input PCM 13-tap
filter parameters, 7
0...65535 ---
values
Digital gain of
output signal after
summation of
0,
1...65535
sidetone
Digital Volume of
output signal after
speech decoder,
-300…300 dbm
before summation of
sidetone and DAC
Mute,
-84...+12dB
Mute,
-84...+12dB
Mute,
-84...+12dB
20 * log
(txVol/
16384)
20 * log
(txGain/
16384)
MATLAB
calculate
20 * log
(rxGain/
16384)
-300…300d
bm
AT+CTXVOL
AT+CTXGAIN
AT+CTXFTR
AT+CRXGAIN
AT+CLVL
AT+CVLVL
AT+CRXVOL
20 * log
(stGain/
16384) -12
MATLAB
calculate
AT+SIDET
AT+CRXFTR
stGain
rxFilter
Digital attenuation
of sidetone
Output PCM 13-tap
filter parameters, 7
values
0, 1...65535
Mute,
-96...0dB
0...65535 ---
Please refer to document [1] and document [3] for details.
6.3.2 ADC channel
T5320 provides an auxiliary ADC, which can be used to measure the voltage. User can use AT command
“AT+CADC=2” to read the voltage value.
Table 9: ADC specification
Parameter Min Typ Max Unit
Voltage range 0 - 2.2 V
ADC Resolution - 12 - bits
Sampling rate - - 200K Hz
Note: the maximum voltage that the ADC can gather is 2.2 V
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Table 10: AT+CADC Read ADC
Description
Read the ADC value from modem. We support 3 type of ADC, raw type, temperature type and voltage type.
SIM PIN References
NO Vendor
Syntax
Test Command Responses
AT+CADC=? +CADC: (range of supported <adc>s)
OK
Write Command Responses
AT+CADC=<adc>
+CADC: <value>
OK
ERROR
Execution Command Responses
AT+CADC
Same as AT+CADC= 0:
+CADC: <value>
OK
Defined values
<adc>
ADC type:
0 – raw type.
1 – temperature type.
2 – voltage type(mv)
<value>
Integer type value of the ADC.
Examples
AT+CADC=?
+CADC:(0-2)
OK
AT+CADC=0
+CADC: 187
OK
6.3.3 GPIO interfaces
T5320 provides 4 GPIO pins. All GPIOs can be configured as inputs or outputs. User can use AT Commands to
read or write GPIOs status. Refer to document [1] for details.
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Table 11: T5320 GPIOs
T5320 GPIO CPU Pin No. I/OFunction
I/O
GPIO1 GPIO0
GPIO2 GPIO2
GPIO3 GPIO3
General input/output PIN. It can be used as wake/interrupt
signal to host from module If it is unused, left open.
I/O
General input/output PIN.
I/O
General input/output PIN.
GPIO4 GPIO5 I/O
General input/output PIN.
Example 1: If user use T5320 GPIO1 pin as an output GPIO:
1) AT+CGDRT=0,1 //set T5320 GPIO1 to output
2) AT+CGSETV=0,1 //set T5320 GPIO1 to high value
Example 2: If user use T5320 GPIO4 pin as an input GPIO:
1) AT+CGDRT=5,0 //set T5320 GPIO4 to input
Please refer to document [1] and document [2] for details.
6.4 LED indicator
A red led indicates the power status, when a valid power appears, the red led will lighten up. But a lighten up red
led does not mean that the terminal has been powered up.
A green led indicates the terminal status and GSM net status, after the terminal been powered up and registered to
the network, it will blink at a certain frequency.
Figure 15: Indicator LED
Table 12: Status of the NETLIGHT indicator (Green)
LED Status T5320 behavior
Always On Searching Network/Call Connect
200ms ON, 200ms OFF Data Transmit
800ms ON, 800ms OFF Registered network
Off
Power off / Sleep
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6.5 Micro USB interface
T5320 provides a Micro USB interface. This interface is compliant with the USB2.0 specification. The USB2.0
specification requires hosts such as the computer to support full-speed (12Mbps) and high-speed (480Mbps).
USB charging and USB-OTG is not supported.
Figure 16: Micro USB interface
Table 13: AT+CUSBSPD Switch T5320 USB high or full speed
Description
This command is used to switch the speed of USB between high speed and full speed. If you just want to use full
speed to simplify the circuit then you can use this command to switch the USB speed. This command will save your
configuration so if you don’t change the speed the module will use the latest configuration forever.
This command will only takes effect on the next start-up.
SIM PIN References
NOVendor
Syntax
Test Command Responses
AT+CUSBSPD=? +CUSBSPD: (list of supported <speed>s)
OK
Read Command Responses
AT+CUSBSPD? +CUSBSPD: <speed>
OK
Write Command Responses
AT+CUSBSPD=<speed>
OK
ERROR
Defined values
<speed>
Integer type and nonvolatile value.
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0 – High speed
1 – Full speed (default value)
Examples
AT+CUSBSPD=?
+CUSBSPD: (0-1)
OK
AT+CUSBSPD=0
OK
AT+CUSBSPD=1
OK
6.6 USIM Card Interface
The USIM provides the required subscription verification information to allow the mobile equipment to attach to a
GSM or UMTS network. Both 1.8V and 3.0V SIM Cards are supported.
T5320 does not support USIM card “hot” plug.
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6.7 Antenna interface
6.7.1 Antenna connector
Antenna connector allows transmission of radio frequency (RF) signals between the modem and the external
supplied antenna. The T5320 modem is fitted with a 50Ω male SMA connector.
Figure 18: Antenna interface
6.7.2 Antenna type
The antenna is a very important component in the system. Since the antenna transmits and receives
electromagnetic signal, and its efficiency depends on the antenna’s type, placement and the environment of the
antenna operating.
.The recommended antenna specifications are showed in following table:
Table 14: antenna choosing consideration
GSM 850/900/1800/1900MHz
Frequency range
WCDMA 1900/850MHz(T5320A)
WCDMA 2100/900MHz(T5320E)
WCDMA 2100/850MHz(T5320J)
Impedance 50 ohm
Input power
>33dBm (2W) peak power in GSM
>24dBm (0.25W) peak power in WCDMA
VSWR absolute max. ≤10:1
VSWR recommended ≤2:1
Gain < 3dBi
6.7.3 Antenna placement
The antenna performance is very easily influenced by other electronic devices. So the antenna placement should
be considered carefully as follow.
1. Place away from other electronic devices or other antennas.
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2. Place far away from metal material.
3. Face the base station antenna directly if the signal strength is very weak.
7 Electrical, Reliability and Radio Characteristics
7.1 Absolute Maximum Ratings
The absolute maximum ratings stated in following table are stress ratings under non-operating conditions. Stresses
beyond any of these limits will cause permanent damage to T5320.
Table 15: Absolute maximum ratings
Symbol Parameter Min Typ Max Unit
VBAT Power supply voltage 5 - 30 V
*
V
Input voltage -0.3 - 2.8 V
I
*
I
Input current - - 6 mA
I
*
I
Output current - - 6 mA
O
*
These parameters are for digital interface pins, such as GPIO, UART.
7.2 Recommended Operating Conditions
Table 16: Recommended operating conditions
Symbol Parameter Min Typ Max Unit
VBAT Power supply voltage 5 5 30 V
IIH High-level input current -10 - 10 uA
IIL Low-level input current -10 - 10 uA
VIH High-level input voltage 2.4 - - V
VIL Low-level input voltage - - 0.4 V
VOH High-level output voltage 2.6 - - V
VOL Low-level output voltage - - 0.1 V
T
Operating temperature -35 +25 +80 ℃
OPER
T
Storage temperature -40 +85 ℃
STG
7.3 Electro-Static Discharge
T5320 is an ESD sensitive component, so more attention should be paid to the procedure of handling and
packaging. The ESD test results are shown in the following table.
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Table 17: The ESD characteristics (Temperature: 25, Humidity℃: 45 %)
Pin Contact discharge Air discharge
Shell ±10KV ±15KV
RF interface ±10KV ±15KV
RS232 interface ±10KV ±15KV
Audio interface ±10KV ±15KV
SIM card holder ±10KV ±15KV
7.4 Operating frequency
The operating frequencies in GSM850, EGSM900, DCS, PCS and WCDMA modes are conform to the
7.5 Transmitter output power and receiver sensitivity
The T5320’s conducted transmitter output power and receiver sensitivity are shown as bellow:
Table 19: Transmitter output power and receiver sensitivity
Mode Power(dBm) Sensitivity(dBm)
GSM-850 +33 -106
E-GSM-900 +33 -106
DCS-1800 +30 -107
PCS-1900 +30 -107
WCDMA2100 +24 -106
WCDMA1900 +24 -106
WCDMA900 +24 -106
WCDMA850 +24 -106
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8 Software/ Firmware Upgrade
The software can be upgraded via the Micro USB interface with the help of tools provided by SIMCom,
8.1 Tool introduction
The tool name is “SIMCOM 3G Module Software update tools(QDL)”, which runs on the windows OS, customers
can upgrade software conveniently by it.
This tool is a single-road download tool, one terminal can be upgraded by it every time. SIMCom also provides
multi-road download tools for customer’s factory use. Contact SIMCom sales for support.
Please do not power off T5320 during the upgrade.
8.2 Illustration of software updating
z Connect the Micro USB port of T5320 to the PC USB port and connect the direct current source adapter.
z Installing module USB driver on PC OS. USB interface is mapped to five virtual ports: “SIMTECH USB
Figure 19: Virtual ports in computer manager window
z Open the tools, the main operation interface as the following figure shows:
Figure 20: QDL window
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z Browse the source file
z Software download
Click the
Figure 21: Browse the source file
button, then the window will change like the following figure shows.
Figure 22: click download button without power up
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z Upgrade in proceeding
Figure 23: Upgrade in proceeding
zFinish upgrading
Now the software is the new version, customer can check the software version by “ATI”.
Figure 24: Finish upgrading
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Appendix
A. Related Documents
Table 20: Related documents
SN Document name Remark
[1]
[2] SIM5xxx_GPIO_Applicat
[3] Audio Application Note
[4]
[5] GSM 07.07
[6] GSM 07.10 Support GSM 07.10 multiplexing protocol
[7] GSM 07.05
[8] GSM 11.14
[9] GSM 11.11
SIM5320_ATC
ion_note
V1.01
ITU-T Draft new
recommendationV.25ter
SIM5320 AT Command Manual
Applications Note About SIM5xxx_GPIO
Applications Note About T5320 Audio
Serial asynchronous automatic dialing and control
Digital cellular telecommunications (Phase 2+); AT command set for GSM
Mobile Equipment (ME)
Digital cellular telecommunications (Phase 2+); Use of Data Terminal
Equipment – Data Circuit terminating Equipment (DTE – DCE) interface
for Short Message Service (SMS) and Cell Broadcast Service (CBS)
Digital cellular telecommunications system (Phase 2+); Specification of
the SIM Application Toolkit for the Subscriber Identity Module – Mobile
Equipment (SIM – ME) interface
Digital cellular telecommunications system (Phase 2+); Specification of
the Subscriber Identity Module – Mobile Equipment (SIM – ME) interface
[10] GSM 03.38
[11] GSM 11.10
[12] 3GPP TS 51.010-1
[13] 3GPP TS 34.124
[14] 3GPP TS 34.121
[15] 3GPP TS 34.123-1
[16] 3GPP TS 34.123-3
[17] EN 301 908-02 V2.2.1
Digital cellular telecommunications system (Phase 2+); Alphabets and
language-specific information
Digital cellular telecommunications system (Phase 2); Mobile Station
(MS) conformance specification; Part 1: Conformance specification
Digital cellular telecommunications system (Release 5); Mobile Station
(MS) conformance specification
Electromagnetic Compatibility (EMC) for mobile terminals and ancillary
equipment.
Electromagnetic Compatibility (EMC) for mobile terminals and ancillary
equipment.
Technical Specification Group Radio Access Network; Terminal
conformance specification; Radio transmission and reception (FDD)
User Equipment (UE) conformance specification; Part 3: Abstract Test
Suites.
Electromagnetic compatibility and Radio spectrum Matters
(ERM); Base Stations (BS) and User Equipment (UE) for
IMT-2000. Third Generation cellular networks; Part 2:
Harmonized EN for IMT-2000, CDMA Direct Spread
(UTRA FDD) (UE) covering essential requirements of article
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s
R
o
l
3.2 of the R&TTE Directive
Electromagnetic compatibility and Radio Spectrum Matters
[18] EN 301 489-24 V1.2.1
Electromagnetic Compatibility (EMC) standard for radio equipment and
Part 24: Specific conditions for IMT-2000 CDMA Direct Spread (UT
Mobile and portable (UE) radio and ancillary equipment
[19] IEC/EN60950-1(2001)
[20] 3GPP TS 51.010-1
[21] GCF-CC V3.23.1
Safety of information technology equipment (2000)
Digital cellular telecommunications system (Release 5); Mobile Stati
conformance specification
Global Certification Forum - Certification Criteria
Directive of the European Parliament and of the Council of 27 January 200
[22] 2002/95/EC
restriction of the use of certain hazardous substances in electrical and e
equipment (RoHS)
B. Terms and Abbreviations
Table 21: Terms and Abbreviations
Abbreviation Description
ADC Analog-to-Digital Converter
AMR Adaptive Multi-Rate
AT Attention commands
CS Coding Scheme
CSD Circuit Switched Data
CTS Clear to Send
DTE Data Terminal Equipment (typically computer, terminal, printer)
DTR Data Terminal Ready
DTU Data Transmit Unit
DTX Discontinuous Transmission
EFR Enhanced Full Rate
EGSM Enhanced GSM
ESD Electrostatic Discharge
ETS European Telecommunication Standard
FR Full Rate
GPRS General Packet Radio Service
GSM Global Standard for Mobile Communications
HR Half Rate
IMEI International Mobile Equipment Identity
Li-ion Lithium-Ion
MO Mobile Originated
MS Mobile Station (GSM engine), also referred to as TE
MT Mobile Terminated
PAP Password Authentication Protocol
PBCCH Packet Broadcast Control Channel
PCB Printed Circuit Board
PCL Power Control Level
T5320_User Guide_V1.04 31 2013- 04-15
Smart Machine Smart Decision
PCS Personal Communication System, also referred to as GSM 1900