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 RTL8192CE  

User’s Manual

 

   

1. General Description 

 

The Realtek RTL8192CE m iniCard is a highly integr ated MIMO wireless LAN (W LAN) used for high 

speed wireless local network access. The card is built with a MAC and 2T2R capable RF/baseband single 

chip RTL8192CE. 
 
The RTL8192CE m iniCard im plements m ultiple i nput, m ultiple output (MIMO) orthogonal frequency 

division multiplexing (OFDM) with 2 transm it and 2 receive paths and is com patible with 802.11n Draft 

specification 2.0. Other features include two spatial  streams transmission, Long guard interval (GI) of 

800ns, spatial spreading, and transmission over 20 MHz and 40 MHz bandwidth. Moreover, RTL8192CE 

provides one spatial stream  space-time block code (S TBC) to extend the range of transm ission. At the 

receiver, extended range and good m inimum sensitivity  is achieved by having receiver diversity up to 2 

antennas. As the recipient, the RTL8192CE miniCard also supports explicit sounding packet feedback that 

helps senders with beamforming capability.  
 
For legacy com patibility, direct sequence spread  spectrum (DSSS), com plementary code keying (CCK) 

and OFDM baseband processing are included to  support all 802.11b, and 802.11g data rates. Differential 

phase shift keying modulation schemes, DBPSK and DQPSK with data scrambling capability, are available 

along with complementary code keying to provide the data rates of 1, 2, 5.5 and 11Mbps with long or short 

preamble. The high speed FFT/IFFT paths, com

bined with BPSK, QPSK, 16QAM, and 64QAM 

modulation of the individual subcarriers and rate  compatible punctured convolutional coding with coding 

rate of 1/2, 2/3, 3/4, and 5/6, provides the maximum data rate of 54 Mbps and 300 Mbps for IEEE 802.11g 

and 802.11n MIMO OFDM respectively.  
 
The RTL8192CE PCI-E miniCard supports 802.11e for multimedia applications, 802.11i for security, and 

802.11n for enhanced MAC protocol e fficiency. Using packet aggrega tion techniques such as A-MPDU 

with BA and A-MSDU, protocol efficiency is signi ficantly improved. Power saving mechanisms such as 

U-APSD, APSD, and MIMO power saving reduces the power wasted during idle time, and compensates for 

the extra power required to transm it MIMO OFDM . The RTL8192CE PCI-E m iniCard provides sim ple 

legacy and 20Mhz/40Mhz co-existence mechanisms to ensure backward and network compatibility. 

                                                                                            4                                                                                       Rev.1.0

 

Summary of Contents for RTL8192CE

Page 1: ...92CE PCI Express miniCard User s Manual Rev 1 0 11 Feb 2010 Realtek Semiconductor Corp No 2 Innovation Road II Hsinchu Science Park Hsinchu 300 Taiwan Tel 886 3 578 0211 Fax 886 3 577 6047 www realtek com tw ...

Page 2: ... product described in this document at any tim e This docum ent could include technical inaccuracies or typographical errors TRADEMARKS Realtek is a trademark of Realtek Semiconductor Corporation Other names mentioned in this document are trademarks registered trademarks of their respective owners USING THIS DOCUMENT This docum ent is intended for the software engi neer s reference and provides de...

Page 3: ...ONMENTAL 8 3 3 1 Operating 8 3 3 2 Storage 8 3 4 FUNCTIONAL SPECIFICATIONS 8 3 5 WARNING 9 4 5 1 Federal Communication Commission Interference Statement 9 4 5 2 INDUSTRY CANADA STATEMENT 11 4 5 3 NCC警語 12 List of Tables TABLE 1 MINI PCI EXPRESS PIN ASSIGNMENT 7 TABLE 2 FUNCTIONAL SPECIFICATIONS 8 List of Figures FIGURE 2 RTL8192CE MINICARD MECHANICAL SPECIFICATION 8 iii Rev 1 0 ...

Page 4: ... DSSS com plementary code keying CCK and OFDM baseband processing are included to support all 802 11b and 802 11g data rates Differential phase shift keying modulation schemes DBPSK and DQPSK with data scrambling capability are available along with complementary code keying to provide thedata rates of 1 2 5 5 and 11Mbps with long or short preamble The high speed FFT IFFT paths com bined with BPSK ...

Page 5: ...pecification Revision 1 1 Standards supported IEEE 802 11b g n compatible WLAN 802 11e QoS Enhancement WMM WMM SA Client mode 802 11i WPA WPA2 Open shared key and pair wise key authentication services Cisco Compatible Extensions CCX4 CCX MAC Features Frame aggregation increase MAC efficiency A MSDU A MPDU Low latency Immediate High Throughput Block Acknowledgement HT BA Long NAV for media reservat...

Page 6: ...ble OFDM with BPSK QPSK 16QAM 64QAM and 256 QAM modulations Convolutional coding rate 1 2 2 3 3 4 and 5 6 Maximum data rate 54Mbps in 802 11g and 300Mbps in 802 11n OFDM receive diversity with MRC using up to 4 r eceive paths Switch diversity used for DSSS CCK Hardware antenna diversity Selectable digital transmit and receiver FIR filters Programmable scaling in transmitter and receiver to trade q...

Page 7: ...ERVED NC 15 GND YES 16 RESERVED NC 17 RESERVED NC 18 GND YES 19 RESERVED NC 20 W_DISABLE YES 21 GND YES 22 PERST YES 23 PERn0 YES 24 3 3Vaux YES 25 PERp0 YES 26 GND YES 27 GND YES 28 1 5V NC 29 GND YES 30 SMB_CLK NC 31 PETn0 YES 32 SMB_DATA NC 33 PETp0 YES 34 GND YES 35 GND YES 36 USB_D NC 37 RESERVED NC 38 USB_D NC 39 RESERVED NC 40 GND YES 41 RESERVED NC 42 LED_WWAN NC 43 RESERVED NC 44 LED_WLAN...

Page 8: ... 0 to 70 C Relative Humidity 5 90 non condensing 3 3 2 Storage Temperature 55 to 125 C Relevant Humidity 5 95 non condensing 3 4 Functional Specifications Table 2 Functional Specifications POWER SUPPLY DC 3 3V 0 3V from host equipment MODULATION TYPE CCK DQPSK DBPSK for DSSS 64QAM 16QAM QPSK BPSK for OFDM MODULATION Technology DSSS OFDM 8 Rev 1 0 ...

Page 9: ... no guarantee that interference will not occur in a particular installation If this equipment does cause harmful interference to radio or television reception which can be determined by turning the equipment off and on the user is encouraged to try to correct the interference by one of the following measures Reorient or relocate the receiving antenna Increase the separation between the equipment a...

Page 10: ...including interference that may cause undesired operation of the device This device has been designed to operate with an antenna having a maximum gain of 1 49dBi with 0 51 cable loss Antenna having a higher gain is strictly prohibited per regulations of Industry Canada The required antenna impedance is 50 ohms To reduce potential radio interference to other users theantenna type and its gain shoul...

Page 11: ...ion Exposure Statement This equipment complies with IC radiation exposure limits set forth for an uncontrolled environment This equipment should be installed and operated with minimum distance 20cm between the radiator your body This device is intended only for OEM integrators under the following conditions The transmitter module may not be co located with any other transmitter or antenna As long ...

Page 12: ...must not be co located or operating in conjunction with any other antenna or transmitter 4 5 3 NCC 警語 經型式認證合格之低功率射頻電機 非經許可 公司 商號或使用者均不得擅自變更頻率 加大功 率或變更原設計之特性及功能 低功率射頻電機之使用不得影響飛航安全及干擾合法通信 經發現有干擾現象時 應立即停用 並 改善至無干擾時方得繼續使用 前項合法通信 指依電信法規定作業之無線電通信 低功率射頻電 機須忍受合法通信或工業 科學及醫療用電波輻射性電機設備之干擾 本模組於取得認證後將依規定於模組本體標示審合格籤 並要求平台上標示 本產品內含射頻模 組 ID編號 Realtek Semiconductor Corp Headquarters No 2 Innovation Road II Hsinchu...

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