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휴대인터넷 단말 기술 및 개발 현황

휴대인터넷 단말 기술 및 개발 현황. 2005. 4. 13. Jin-Sung Choi Ph.D Head of Mobile Communication Technology Research Lab. Contents. 1. WiBro 단말 개요 2. WiBro 단말 Requirement 3. WiBro 단말 Architecture 4. WiBro 단말 개발 현황. 1. WiBro 단말 개요 1) WiBro 서비스와 단말 types 2) WiBro 서비스 및 단말기 발전 전망

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휴대인터넷 단말 기술 및 개발 현황

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  1. 휴대인터넷 단말 기술 및 개발 현황 2005. 4. 13. Jin-Sung Choi Ph.D Head of Mobile Communication Technology Research Lab.

  2. Contents 1. WiBro 단말 개요 2. WiBro 단말 Requirement 3. WiBro 단말 Architecture 4. WiBro 단말 개발 현황

  3. 1. WiBro 단말 개요 1) WiBro 서비스와 단말 types 2) WiBro 서비스 및 단말기 발전 전망 3) WiBro 표준화 현황

  4. WiBro 단말 개요 • WiBro 서비스와 단말 Types • 대략 4개의 SVC Category로 구분되며 Focus하는 서비스 내용에 따라 Concept 차별화 및 다양한 형태의 단말기가 출현할 것으로 예상됨 단말 형태 SVC Category • Web Browsing • File Downloading • 원격 교육 / 의료 Information • 대용량 VOD, MOD, AOD • 실시간 Streaming 방송 • 3D Network Game Entertainment • Instant Messaging 서비스 • Multimedia Messaging 서비스 • 화상 채팅 및 게시판 Communication • M-Commerce • 텔레매틱스 • 물류 등 전문 서비스 Commerce / Biz

  5. WiBro 단말 개요 • WiBro 서비스 및 단말기 발전 전망 `06년 초 `07년 ~ `09년 ~ 도입기 성장기 성숙기 단말기 Notebook + WiBro(PCMCIA Type) CDMA / WiBroDBDM Handset Modem 1 Chip 화 PDA + WiBro Module SmartPhone 사업자 제공서비스 - Web Browsing을 통한 자료검색 및 D/L - E-mail - 채팅 및 메신저 SVC - VOD/MOD - 실시간 방송 - MMS - 위치기반 Push SVC - Network Game - 화상 Chatting - Mobile to Mobile SVC - Upgrade VOD/MOD - VoIP - 화상통화 - 위치기반 확장 SVC - 텔레매틱스 - 그룹웨어 연계 - Commerce/Payment 유선인터넷의 무선확장 EV-DO Data SVC의 WiBro망 이용저렴/고품질 Multimedia SVC 제공 Value added 차별화 SVC

  6. TTA 정통부 WiBro 기술 권고안 발표 (’04. 7월) Phase I Phase I 개정 Phase II 2004.6 2004.10 2004.4Q ~ 2005. 4Q • OFDMA/TDD • 1024FFT, BW : 10MHz • PHY Harmonization • MAC Harmonization • 최대전송속도(50Mbps) • AAS, MIMO 적용 802.16d/e 802.16d/e TTA TTA (HPi) 현재 TTA 휴대인터넷 표준은 사실상 IEEE802.16의 Subset 임 구 분 802.16d/e TTA (HPi) 구 분 TTA Preamble 1 Symbol 2 Symbols Preamble 1 Symbol Sampling Frequency BW x 8/7 BW Sampling Frequency BW x 8/7 Permutation PUSC(M), FUSC(M) O-PUSC(M), O-FUSC(M), AMC(M) Permutation PUSC 지원 Mobile WiMAX (802.16e) Issue 802.16e/D6 802.16e/D6 Sponsor Ballot Session 34 IEEE 802.16e Published 2004.11 2004.11.30 2004.12 2005.2Q WiBro 단말 개요 • WiBro 표준화 현황

  7. 2. WiBro 단말 Requirement

  8. WiBro 단말 Requirement • 기본 Requirement • 기존 유선 수준의 다양한 서비스를 제공하기 위해 기존의 이동통신단말에 비해 향상된 사양 필요 • High Quality Display • 고성능 CPU • 대용량 Memory • 단말 type 별 Requirement • WiBro 서비스에 따라 단말의 Requirement 세분화 • Information, Communication SVC • Wide LCD, QWERTY KBD, Camera 등 • Entertainment SVC • Wide LCD, Game Pad, T-DMB 기능 등 • Other Requirement • 무게, 확장 Memory, 외부 interface (CF, IrDA, Bluetooth, USB) 등

  9. 3. WiBro 단말 Architecture 1) WiBro DBDM 단말 Architecture 2) WiBro PDA 단말 Architecture 3) WiBro Laptop (PCMCIA) Architecture

  10. WiBro 단말 기술 • WiBro DBDM 단말 Architecture SDRAM 16Mx32bit NANDFLASH EBI2 EBI2 MIDI RF Interface RF Module GPIO (WiBro) Glue Logic GPIO (UIM) MAC/BB RF MSM6550 GPIO (I2C) GPIOEXPENSIONModule GPIO (MMC) WiBRO Module GPIO (UART1) RS232-CTransceiver GPIO (Camera) GPIO (USB) USBTransceiver 3M Pixel GPIO (IrDA) Key pad, Power management, etc. GPIO (Others) IrDA SIR

  11. WiBro 단말 기술 • WiBro PDA 단말 Architecture GPIO Key Pad, Qwerty keyboard NAND Flash 128MB DFI 3M Pixel GPIO (camera) NOR Flash 128MB Intel Monahans @ 806MHz ( Discrete ) SDRAM 64MB EMPI GPIO (UART) IrDA SIR T-DMB Module / WLAN 802.11b/g GPIO GPIO (SD/MMC#2) SD Socket (TBD) WiBRO Module 3.5” VGA TFT LCD GPIO (LCD Controller) GPIO (SD/MMC) MAC/BB RF RS232-C Transceiver GPIO (FFUART) USB Transceiver GPIO (USB) Speaker Audio Codec GPIO (AC97) Battery Module Mic GPIO (USB) Headset

  12. WiBro 단말 기술 • WiBro Laptop (PCMCIA) Architecture Application Software Operating System BIOS MemoryCard DeviceDriver Flash File System CardServices 68 PIN Socket MemoryTechnologyDriver WiBRO PCMCIA Card Connector to host PCMCIADriver 68 PIN Connector SocketServices MAC/BB RF Laptop

  13. 4. WiBro 단말 Technical Issue 1) Chipset Size and Power consumption 2) Device Driver Porting 3) Interface between CDMA and WiBro chipset

  14. 16mm SoC 16mm 25mm Filter Amp RF diplexer S/W Filter 25mm BB TCXO This layout is just an example. WiBro 단말 Technical Issue • Chipset Size and Power consumption • SoC Type : Feb `06 • Reasonable Size : 16 x 16 mm2 • Power Consumption (TBD) : about Max 700 mw • All in one solution (RF + BB) • FPGA Type (Two Chip) : May `05 • Reasonable Size (Area) : 25 x 25 mm(RF + BB) • But Power Consumption : We won’t care of it at this chips

  15. WiBro 단말 Technical Issue • How will WiBro Module “Device Driver Porting” to “Rex OS ” in the MSM Chipset (CDMA/WiBro DBDM) • WiBro Module won’t depend on CDMA S/W Module • REX OS : Qualcomm’s CDMA S/W module • But can provide API and device driver for WiBro Module Frame Processing Applications REX WAP, WIPI, HTTP,FTP DHCP Client Session UI interface, sockets, … WiBro Extension Lower MAC Device Driver Interface Transport TCP/UDP Tx/Rx Buffer Mgmt Network IP EAP-MD5, -TLS, -TTLS, -LEAP Data Link RLP,PPP CS WiBro PHY Upper MAC Serial I/O API, … WiBro Module Driver RAM SoC Physical Host IO Host IO WiBro Module Qualcomm Software

  16. WiBro 단말 Technical Issue • Interface between “CDMA MSM Chipset ” and “WiBro BaseBand chipset” (CDMA/WiBro DBDM) i) The First Choice • Memory BUS Interface (DPRAM) ii) The Second Choice • SDIO Interface  flexible host bus interface (can be converted to SDIO using Glue Logic) TBD TBD 2.5 ~ 2.7 V MSM 65xx Wibro Chip 3.3 V TBD Rex_OS OS ? 1.375V  5% Analog voltage Analog voltage Digital Core voltage Digital Core voltage MSM65XX Chipset doesn’t support “Wait signal” 1.8 V  5% 2.7 V  5% 1.8 V  5% 2.7 V  5% Peripheral Voltage Peripheral Voltage MMC Interface I/F In case of SDIO Interface - 1bit transfer mode (SD/SDIO) - 4bit transfer mode (SD/SDIO) SD/SDIO 1bit and 4 bit interface

  17. 2.3G~2.4G Wibro ADC PHY/BB MAC/BB AFC RF DAC Memory (?) WiBro 단말 Technical Issue • Memory BUS Interface Core : 1.65V~1.95V Typ:1.8V I/O : 2.6V~2.8V Typ:2.7V Interface between MSM and Wibro BB ChipSet EBI2 - External Bus Interface 2 NAND (Flash) EBI2 MSM 8bit or 16bit interface EBI1 SDRAM We can use Dual Port RAM at this Interface I hope to use the same I/O voltage in your Wibro chipset

  18. WiBro 단말 Technical Issue • CF, PCI, SDIO interface We can also choice a CF or PCI Interface. But in this case, we have to make a Glue Logic for digital signal conversion. NAND 2.3G~2.4G EBI2 MSM ADC CF GLUE LOGIC PHY/BB MAC/BB PCI AFC RF SD I/F SDIO I/F DAC EBI1 MEMORY SDRAM MSM chipset internally has a SDIO Interface.(MSM6500 -> 1bit, MSM6550 -> 4 bit) therefore it will be one of the most simple connection between MSM and Wibro BB chipset.

  19. 5. WiBro 단말 개발 현황 1) Intel WiMAX Chip Roadmap 2) WiBro 단말 개발 Schedule

  20. WiBro 단말 기술 • Intel WiMAX Chip Roadmap: Nov 2004 802.16e Infrastructure Silicon & Reference Platform (2007) Reference Platform(s) Silicon Q2/Q3’05 802.16-2004 WiMAX Modem Reference Platform(s) 1H’07 802.16e Express Card Reference Design 802.16e Handset Silicon & Reference Platform (2008) Q3’05* 802.16-2004 PHY & MAC API 2H’06 Q1’05 802.16-2004 MAC/PHY solution 802.16e MAC/PHY solution Silicon/Software 2004 2005 2006 2007 Planning Exploration Development

  21. ‘04 ’05 ’06 3Q 4Q 1Q 2Q 3Q 4Q 1Q 2Q 3Q 4Q 기술 확보 CDMA/WiBro 상용 폰 개발 모듈 확보 WiBro Test Module (FPGA Type) Performance Test & Parameter Optimization • Field Test • Phase Ⅱ: 상용DBDM단말 개발- PDA Type(’06.2Q) - DBDM Type(’06.3Q) • WiBro Test Module 개발 • PhaseⅠ: - Module Base 선행 개발(’05.3Q) (CDMA 폰 Interface 활용 정합) - 성능시험 최적화(’05.4Q) • WiBro Requirement Spec WiBro Network상에서의 Business기회 점검 WiBro 서비스 상에서 최적 UI 및단말기 Form Factor, Feature개발 WiBro 핵심 SVC 발굴 WiBro 단말 개발 현황 • LGE PSS 개발 Schedule • 현재 PDA, 핸드셋 단말 위주로 Chipset Solution발굴 및 개발 진행 중이며 DBDM(CDMA+WiBro) Type으로 `06년 3Q에 시장 출시 예정 (*PSS : Portable Subscriber Station)

  22. Great Company Great People감사합니다

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