SlideShare a Scribd company logo
1 of 19
WiFi / Wireless solution
July 2016
Confidential
Competitive WiFi Technology Cost effective Easy to install
 Electro-Polarization Tech
• Minimized interference
between waves
• Patented over 20
technologies
 Long distance, High
speed
• WiFi AP (802.11ac)
Speed: 1.3Gbps
Distance: 1Km – 1.5Km
max
• Wireless Bridge
100Mbps / 50Km
20Mbps / 20Km
 1/20 of installation cost
• Against wired fiber cable
installation
 1/5 of installation cost
• Against existing
microwave wireless
network installation
 Easy & fast installation
• With Point to Point(1:1)
communication
 Expandable service area
& distance
• Best solution for radio
shadow area such as
island mountain
 Easy to maintain
Confidential
Korea
Public Telco
Global
 Wireless CCTV
• Passed NIS(KCIA)
security evaluation
• Registered as “Excellent
quality product” on PPS
• Low-cost & high efficient
solution for replacing
wired infrastructure
 Smart school
• For 500,000 classes
 Public WiFi
• To invest US$45Million by
local government +
US$3.6Million by Korea
government
 KT
• Backhaul bridge
• BCN
• LTE Backhaul
 LGU+
• Backhaul bridge
 Indonesia – with 5 companies
• PoC contracted with PT. BBT,
PT. Jasnita Telekomindo
• Developed with Bakrie
Telecom, Moratelindo and
Media Akses
 Malaysia
• Smart school business with
SKT(major KoreanTelco)
 Japan
• Mobile WiFi business (Wireless
video transmission) on Japan
express way with NEC
 Vietnam
• MOU signed with HTC Int’l
Communication
ConfidentialConfidential
Confidential
Confidential
Confidential
AP
Bridge
Confidential
[Node] AP & Bridge
(+CCTV)
Municipal WiFi Network
LAN(in network)
Handover
 Wireless Network Infrastructure: Wireless Bridge
 WiFi Service: WiFi AP
Confidential
Model
Bridges Giga Wireless Bridge
PTP-5100 PTP-5200 PTP-5400 PTP-5130G PTP-5230G PTP-5430G
Product
Protocol IEEE 802.11 a/n IEEE 802.11 b/g/n/ac
Purpose
Possible to replace wired & microwave wireless network
Long distance wireless backhaul system (Outdoor type 5G)
Link Rate 300Mbps 300Mbps 300Mbps 1300Mbps 1300Mbps 1300Mbps
Distance 5Km 10Km 20Km
TBD TBD TBD
Performance
180Mbps/2Km
100Mbps/6Km
100Mbps/9Km
30Mbps/25Km
100Mbps/25Km
40Mbps/40Km
Confidential
Model
Dual Wi-Fi AP GIGA Wi-Fi AP
AP-2200D AP-2400D AP-2130G AP-2230G AP-2430G
Product
Protocol IEEE 802.11 a/b/g/n IEEE 802.11 b/g/n/ac
Purpose Outdoor Wi-Fi (2.4G-5G)
Indoor Wi-Fi
(2.4G-5G)
Outdoor Wi-Fi
(2.4G-5G)
Link rate 300Mbps 1300Mbps
*Service distance 500m 1000m 600m 1000m 1500m
Performance
400m/
10Mbps
600m/
10Mbps
600m/
100Mbps
600m/
100Mbps
800m/
100Mbps
Concurrent users 128 users per channel, 256 users per dual channel
* Service distance depends on environment
Confidential
Customer (Date to install) Purpose
Gunpo city, Korea (May 2012)
Suwon city, Korea (Oct. 2012)
Wireless CCTV control
Oncheoncheon, Busan,
Korea (June 2012)
Suyoung District, Busan, Korea
(Oct. 2012)
Wireless disaster
surveillance
Busan, Korea (July 2012) Public WiFi service
Kimhae, Korea (July 2012) Wireless UTIS
UMB Tech, Korea (2012/9) Smart phone service
KBS (May 2013) Broadcasting over wireless
Smart city, Gyeongju, Korea
(Sep. 2014)
Wireless infra & WiFi service
KT (Nov. 2014)
LG U+ (Nov. 2014)
Wireless backhaul system
Argentina, Indonesia, etc.
(2013)
Wireless backhaul system
Smart farm village, Hokkaido,
Japan (Dec. 2013)
Wireless infra & WiFi service
Express way, Japan (Feb.
2014~)
Wireless CCTV control &
WiFi service
Self-Defense Forces, Japan
(Sep. 2014)
Wireless Backhaul system
Project on-going with Telco,
Japan( Sofrbank, NEC, Fujisu,
etc)
Wireless Backhaul system,
Wi-Fi Service
A1. SOMPA Features
A2. SOMPA Performance comparison
A3. SOMPA radio wave intensity
A4. Performance test results
A5-7. Case studies
Isolation features graph of 2-Port SOMPA antenna2-Port SOMPA antenna using electro-polarization
Frequency (GHz)
Normal Patch Antenna SOMPA
Patch shape
(MIMO)
6dBi 9dBi (×2)Gain
63% 95%Efficiency
100% 400%Gain
increasing rate
Field emission
Normal Patch Antenna SOMPA Antenna
Confidential
Unidirectional Bidirectional
Frame size Packet pass Throughput Frame size Packet pass Throughput
64 100% 23 Mbps 64 100% 7.7 Mbps
256 100% 83 Mbps 256 100% 41 Mbps
512 100% 163 Mbps 512 100% 81 Mbps
1024 100% 226 Mbps 1024 100% 108 Mbps
1500 100% 246 Mbps 1500 100% 118 Mbps
Confidential
No. Item Province Distance Q’ty (set)
1
LTE Backhaul
Jeonnam 7Km 1
2 Jeonnam 3Km 1
3 Gyoungnam 4.5Km 1
4 Choongnam - 1
5 Daejeon - 9
6 Gangwon 10.7Km 1
7
Internet broadband
Incheon 7.6Km 2
8 Choongnam 4Km 2
9 “ 7Km 1
10 “ 8Km 1
11 “ 6Km 1
12 Incheon 4Km 1
[Bridge(PTP-5400)]
Confidential
No. Item Province Distance Q’ty (set)
1
LTE backhual
Jeonnam 4.3Km 1
2 “ 12.7Km 1
3 “ 7Km 1
4 Gangwon 10.7Km 1
5 Jeonnam 3Km 1
6 “ 8Km 1
7 “ 5Km 1
8 “ 16Km 1
9 “ 3Km 1
10 “ 7Km 1
11 “ 8Km 1
12 “ 15Km 1
13 “ 3Km 1
14 “ 5Km 1
15 “ 37Km 1
16 “ 5Km 1
17 “ 26Km 1
18 “ 40.5Km 1
19 Wi-Fi Serivce Seoul - 5ea
[Bridge(PTP-5400), AP(AP-2130G)]
Confidential
No. Country Project Product Q’ty
1 Argentine Wireless live media transmission system Oct. 2013 Bridge 4
2
Japan
Wireless infra / smart farm village in
Numatacho
Jan. 2014 AP 8
3 Wireless infra on Hiroshima express way 2nd
half 2014 AP, CPE 70
4 Wireless infra for Japanese company Jun. 2014 Bridge 4
5
Wireless video transmission system for Japan
Self Defense Forces
Sep. 2014 Bridge 2
6 Japanese company Service May 2014 AP 6

More Related Content

What's hot

Millimeter wave technology in 5g
Millimeter wave technology in 5gMillimeter wave technology in 5g
Millimeter wave technology in 5ghari48best
 
THE FUTURE DIRECTIONS IN EVOLVING WI-FI: TECHNOLOGIES, APPLICATIONS AND SERVICES
THE FUTURE DIRECTIONS IN EVOLVING WI-FI: TECHNOLOGIES, APPLICATIONS AND SERVICESTHE FUTURE DIRECTIONS IN EVOLVING WI-FI: TECHNOLOGIES, APPLICATIONS AND SERVICES
THE FUTURE DIRECTIONS IN EVOLVING WI-FI: TECHNOLOGIES, APPLICATIONS AND SERVICESijngnjournal
 
Millimeter wave mobile communication for 5G cellular.
Millimeter  wave  mobile communication for 5G cellular.Millimeter  wave  mobile communication for 5G cellular.
Millimeter wave mobile communication for 5G cellular.Apurv Modi
 
A practical look at_lte_backhaul_capacity_requirements
A practical look at_lte_backhaul_capacity_requirementsA practical look at_lte_backhaul_capacity_requirements
A practical look at_lte_backhaul_capacity_requirementsgimbal123
 
5G Antenna Technology
5G Antenna Technology5G Antenna Technology
5G Antenna TechnologyAL- AMIN
 
UK Spectrum Policy Forum - Prof Stephen Temple, 5GIC - 5G Spectrum
UK Spectrum Policy Forum - Prof Stephen Temple, 5GIC - 5G SpectrumUK Spectrum Policy Forum - Prof Stephen Temple, 5GIC - 5G Spectrum
UK Spectrum Policy Forum - Prof Stephen Temple, 5GIC - 5G SpectrumtechUK
 
WiFi vs WiMax
WiFi vs WiMaxWiFi vs WiMax
WiFi vs WiMaxhysung
 
4g mobile technology and it’s comparisons
4g mobile technology and it’s comparisons4g mobile technology and it’s comparisons
4g mobile technology and it’s comparisonsSunmeet Singh
 
Network technology in mobile
Network technology in mobileNetwork technology in mobile
Network technology in mobileajmal anbu
 
How Mobile Technology Works
How Mobile Technology WorksHow Mobile Technology Works
How Mobile Technology Works3G4G
 
4 g wireless technology11
4 g  wireless technology114 g  wireless technology11
4 g wireless technology11Safal Agrawal
 

What's hot (20)

4G Network
4G Network4G Network
4G Network
 
4 g bba 2nd sem
4 g bba 2nd sem4 g bba 2nd sem
4 g bba 2nd sem
 
Millimeter wave technology in 5g
Millimeter wave technology in 5gMillimeter wave technology in 5g
Millimeter wave technology in 5g
 
THE FUTURE DIRECTIONS IN EVOLVING WI-FI: TECHNOLOGIES, APPLICATIONS AND SERVICES
THE FUTURE DIRECTIONS IN EVOLVING WI-FI: TECHNOLOGIES, APPLICATIONS AND SERVICESTHE FUTURE DIRECTIONS IN EVOLVING WI-FI: TECHNOLOGIES, APPLICATIONS AND SERVICES
THE FUTURE DIRECTIONS IN EVOLVING WI-FI: TECHNOLOGIES, APPLICATIONS AND SERVICES
 
Millimeter wave mobile communication for 5G cellular.
Millimeter  wave  mobile communication for 5G cellular.Millimeter  wave  mobile communication for 5G cellular.
Millimeter wave mobile communication for 5G cellular.
 
MILLIMETER WAVE FOR 5G CELLULAR
MILLIMETER WAVE FOR 5G CELLULARMILLIMETER WAVE FOR 5G CELLULAR
MILLIMETER WAVE FOR 5G CELLULAR
 
Industrial seminnar
Industrial seminnarIndustrial seminnar
Industrial seminnar
 
Opy
OpyOpy
Opy
 
A practical look at_lte_backhaul_capacity_requirements
A practical look at_lte_backhaul_capacity_requirementsA practical look at_lte_backhaul_capacity_requirements
A practical look at_lte_backhaul_capacity_requirements
 
5G Antenna Technology
5G Antenna Technology5G Antenna Technology
5G Antenna Technology
 
UK Spectrum Policy Forum - Prof Stephen Temple, 5GIC - 5G Spectrum
UK Spectrum Policy Forum - Prof Stephen Temple, 5GIC - 5G SpectrumUK Spectrum Policy Forum - Prof Stephen Temple, 5GIC - 5G Spectrum
UK Spectrum Policy Forum - Prof Stephen Temple, 5GIC - 5G Spectrum
 
WiFi vs WiMax
WiFi vs WiMaxWiFi vs WiMax
WiFi vs WiMax
 
4g mobile technology and it’s comparisons
4g mobile technology and it’s comparisons4g mobile technology and it’s comparisons
4g mobile technology and it’s comparisons
 
Your Digital Facility: 3 Gb/s HD Fiber Optic Transport
Your Digital Facility: 3 Gb/s HD Fiber Optic TransportYour Digital Facility: 3 Gb/s HD Fiber Optic Transport
Your Digital Facility: 3 Gb/s HD Fiber Optic Transport
 
Network technology in mobile
Network technology in mobileNetwork technology in mobile
Network technology in mobile
 
3G & 4G presentation
3G & 4G presentation 3G & 4G presentation
3G & 4G presentation
 
Sertse 5 g-presentation
Sertse 5 g-presentationSertse 5 g-presentation
Sertse 5 g-presentation
 
How Mobile Technology Works
How Mobile Technology WorksHow Mobile Technology Works
How Mobile Technology Works
 
4 g wireless technology11
4 g  wireless technology114 g  wireless technology11
4 g wireless technology11
 
3G&4G
3G&4G3G&4G
3G&4G
 

Similar to SOMPA_Wireless_and_WiFi_solutions(E)_rev.1.3_082016

Mobile Backhaul Evolution
Mobile Backhaul EvolutionMobile Backhaul Evolution
Mobile Backhaul EvolutionYankee Group
 
POF a DIY fiber for ubiquitous inhome's gigabit cabling
POF a DIY fiber for ubiquitous inhome's gigabit cablingPOF a DIY fiber for ubiquitous inhome's gigabit cabling
POF a DIY fiber for ubiquitous inhome's gigabit cablingir. Carmelo Zaccone
 
1 a vision on the evolution to 5 g networks
1 a vision on the evolution to 5 g networks1 a vision on the evolution to 5 g networks
1 a vision on the evolution to 5 g networksCPqD
 
5G Wireless Technology
5G Wireless Technology5G Wireless Technology
5G Wireless TechnologyNafees Alam
 
Introduction to 5G by Doug Hohulin
Introduction to 5G by Doug HohulinIntroduction to 5G by Doug Hohulin
Introduction to 5G by Doug HohulinGigabit City Summit
 
Passive Optical Networks - PON: Customer Case Study, Design, Implementation a...
Passive Optical Networks - PON: Customer Case Study, Design, Implementation a...Passive Optical Networks - PON: Customer Case Study, Design, Implementation a...
Passive Optical Networks - PON: Customer Case Study, Design, Implementation a...Bruno Teixeira
 
Simplifying the selection of optical multi mode fibre
Simplifying the selection of optical multi mode fibreSimplifying the selection of optical multi mode fibre
Simplifying the selection of optical multi mode fibreGary Crilly, RCDD/OSP
 
Real life aplications of fiber optics
Real life aplications of fiber opticsReal life aplications of fiber optics
Real life aplications of fiber opticsHasanuzzaman2013
 
INPOWER - Optic Fiber Products Line Presentation 2015
INPOWER - Optic Fiber Products Line Presentation 2015 INPOWER - Optic Fiber Products Line Presentation 2015
INPOWER - Optic Fiber Products Line Presentation 2015 Ennio Bertolini
 
Mobile wireless-networks
Mobile wireless-networksMobile wireless-networks
Mobile wireless-networksPeter R. Egli
 
GPON Optical Lan Overview November 5, 2014
GPON Optical Lan Overview November 5, 2014GPON Optical Lan Overview November 5, 2014
GPON Optical Lan Overview November 5, 2014AFCEA Alaska Chapter
 
apolan-fotc---final_439879.pdf
apolan-fotc---final_439879.pdfapolan-fotc---final_439879.pdf
apolan-fotc---final_439879.pdfRomulo Colmenares
 
Brilliant Broadband 1 2018 Broad Sky Networks
Brilliant Broadband 1 2018 Broad Sky NetworksBrilliant Broadband 1 2018 Broad Sky Networks
Brilliant Broadband 1 2018 Broad Sky NetworksTom Benson
 
5G wireless technology ppt
5G wireless technology ppt5G wireless technology ppt
5G wireless technology pptHanamanta N B
 
QA Fest 2017. Татьяна Люлюченко. Смартфон, интернет и реальная жизнь
QA Fest 2017. Татьяна Люлюченко. Смартфон, интернет и реальная жизньQA Fest 2017. Татьяна Люлюченко. Смартфон, интернет и реальная жизнь
QA Fest 2017. Татьяна Люлюченко. Смартфон, интернет и реальная жизньQAFest
 
Build a Fixed Wireless Network—Provide Value and Reliability
Build a Fixed Wireless Network—Provide Value and ReliabilityBuild a Fixed Wireless Network—Provide Value and Reliability
Build a Fixed Wireless Network—Provide Value and ReliabilityMimosa Networks
 
Iccbn Presentation - optical
Iccbn Presentation - opticalIccbn Presentation - optical
Iccbn Presentation - opticalroysoumya
 

Similar to SOMPA_Wireless_and_WiFi_solutions(E)_rev.1.3_082016 (20)

Mobile Backhaul Evolution
Mobile Backhaul EvolutionMobile Backhaul Evolution
Mobile Backhaul Evolution
 
POF a DIY fiber for ubiquitous inhome's gigabit cabling
POF a DIY fiber for ubiquitous inhome's gigabit cablingPOF a DIY fiber for ubiquitous inhome's gigabit cabling
POF a DIY fiber for ubiquitous inhome's gigabit cabling
 
1 a vision on the evolution to 5 g networks
1 a vision on the evolution to 5 g networks1 a vision on the evolution to 5 g networks
1 a vision on the evolution to 5 g networks
 
5G Wireless Technology
5G Wireless Technology5G Wireless Technology
5G Wireless Technology
 
Introduction to 5G by Doug Hohulin
Introduction to 5G by Doug HohulinIntroduction to 5G by Doug Hohulin
Introduction to 5G by Doug Hohulin
 
EnGenius 2013 Products
EnGenius 2013 Products EnGenius 2013 Products
EnGenius 2013 Products
 
Optelix_NanoWave_G1000_pr3 (1)
Optelix_NanoWave_G1000_pr3 (1)Optelix_NanoWave_G1000_pr3 (1)
Optelix_NanoWave_G1000_pr3 (1)
 
Passive Optical Networks - PON: Customer Case Study, Design, Implementation a...
Passive Optical Networks - PON: Customer Case Study, Design, Implementation a...Passive Optical Networks - PON: Customer Case Study, Design, Implementation a...
Passive Optical Networks - PON: Customer Case Study, Design, Implementation a...
 
Simplifying the selection of optical multi mode fibre
Simplifying the selection of optical multi mode fibreSimplifying the selection of optical multi mode fibre
Simplifying the selection of optical multi mode fibre
 
Real life aplications of fiber optics
Real life aplications of fiber opticsReal life aplications of fiber optics
Real life aplications of fiber optics
 
INPOWER - Optic Fiber Products Line Presentation 2015
INPOWER - Optic Fiber Products Line Presentation 2015 INPOWER - Optic Fiber Products Line Presentation 2015
INPOWER - Optic Fiber Products Line Presentation 2015
 
Mobile wireless-networks
Mobile wireless-networksMobile wireless-networks
Mobile wireless-networks
 
GPON Optical Lan Overview November 5, 2014
GPON Optical Lan Overview November 5, 2014GPON Optical Lan Overview November 5, 2014
GPON Optical Lan Overview November 5, 2014
 
apolan-fotc---final_439879.pdf
apolan-fotc---final_439879.pdfapolan-fotc---final_439879.pdf
apolan-fotc---final_439879.pdf
 
Ss ptp 650_l_may2016
Ss ptp 650_l_may2016Ss ptp 650_l_may2016
Ss ptp 650_l_may2016
 
Brilliant Broadband 1 2018 Broad Sky Networks
Brilliant Broadband 1 2018 Broad Sky NetworksBrilliant Broadband 1 2018 Broad Sky Networks
Brilliant Broadband 1 2018 Broad Sky Networks
 
5G wireless technology ppt
5G wireless technology ppt5G wireless technology ppt
5G wireless technology ppt
 
QA Fest 2017. Татьяна Люлюченко. Смартфон, интернет и реальная жизнь
QA Fest 2017. Татьяна Люлюченко. Смартфон, интернет и реальная жизньQA Fest 2017. Татьяна Люлюченко. Смартфон, интернет и реальная жизнь
QA Fest 2017. Татьяна Люлюченко. Смартфон, интернет и реальная жизнь
 
Build a Fixed Wireless Network—Provide Value and Reliability
Build a Fixed Wireless Network—Provide Value and ReliabilityBuild a Fixed Wireless Network—Provide Value and Reliability
Build a Fixed Wireless Network—Provide Value and Reliability
 
Iccbn Presentation - optical
Iccbn Presentation - opticalIccbn Presentation - optical
Iccbn Presentation - optical
 

SOMPA_Wireless_and_WiFi_solutions(E)_rev.1.3_082016

  • 1. WiFi / Wireless solution July 2016
  • 2. Confidential Competitive WiFi Technology Cost effective Easy to install  Electro-Polarization Tech • Minimized interference between waves • Patented over 20 technologies  Long distance, High speed • WiFi AP (802.11ac) Speed: 1.3Gbps Distance: 1Km – 1.5Km max • Wireless Bridge 100Mbps / 50Km 20Mbps / 20Km  1/20 of installation cost • Against wired fiber cable installation  1/5 of installation cost • Against existing microwave wireless network installation  Easy & fast installation • With Point to Point(1:1) communication  Expandable service area & distance • Best solution for radio shadow area such as island mountain  Easy to maintain
  • 3. Confidential Korea Public Telco Global  Wireless CCTV • Passed NIS(KCIA) security evaluation • Registered as “Excellent quality product” on PPS • Low-cost & high efficient solution for replacing wired infrastructure  Smart school • For 500,000 classes  Public WiFi • To invest US$45Million by local government + US$3.6Million by Korea government  KT • Backhaul bridge • BCN • LTE Backhaul  LGU+ • Backhaul bridge  Indonesia – with 5 companies • PoC contracted with PT. BBT, PT. Jasnita Telekomindo • Developed with Bakrie Telecom, Moratelindo and Media Akses  Malaysia • Smart school business with SKT(major KoreanTelco)  Japan • Mobile WiFi business (Wireless video transmission) on Japan express way with NEC  Vietnam • MOU signed with HTC Int’l Communication
  • 8. Confidential [Node] AP & Bridge (+CCTV) Municipal WiFi Network LAN(in network) Handover  Wireless Network Infrastructure: Wireless Bridge  WiFi Service: WiFi AP
  • 9. Confidential Model Bridges Giga Wireless Bridge PTP-5100 PTP-5200 PTP-5400 PTP-5130G PTP-5230G PTP-5430G Product Protocol IEEE 802.11 a/n IEEE 802.11 b/g/n/ac Purpose Possible to replace wired & microwave wireless network Long distance wireless backhaul system (Outdoor type 5G) Link Rate 300Mbps 300Mbps 300Mbps 1300Mbps 1300Mbps 1300Mbps Distance 5Km 10Km 20Km TBD TBD TBD Performance 180Mbps/2Km 100Mbps/6Km 100Mbps/9Km 30Mbps/25Km 100Mbps/25Km 40Mbps/40Km
  • 10. Confidential Model Dual Wi-Fi AP GIGA Wi-Fi AP AP-2200D AP-2400D AP-2130G AP-2230G AP-2430G Product Protocol IEEE 802.11 a/b/g/n IEEE 802.11 b/g/n/ac Purpose Outdoor Wi-Fi (2.4G-5G) Indoor Wi-Fi (2.4G-5G) Outdoor Wi-Fi (2.4G-5G) Link rate 300Mbps 1300Mbps *Service distance 500m 1000m 600m 1000m 1500m Performance 400m/ 10Mbps 600m/ 10Mbps 600m/ 100Mbps 600m/ 100Mbps 800m/ 100Mbps Concurrent users 128 users per channel, 256 users per dual channel * Service distance depends on environment
  • 11. Confidential Customer (Date to install) Purpose Gunpo city, Korea (May 2012) Suwon city, Korea (Oct. 2012) Wireless CCTV control Oncheoncheon, Busan, Korea (June 2012) Suyoung District, Busan, Korea (Oct. 2012) Wireless disaster surveillance Busan, Korea (July 2012) Public WiFi service Kimhae, Korea (July 2012) Wireless UTIS UMB Tech, Korea (2012/9) Smart phone service KBS (May 2013) Broadcasting over wireless Smart city, Gyeongju, Korea (Sep. 2014) Wireless infra & WiFi service KT (Nov. 2014) LG U+ (Nov. 2014) Wireless backhaul system Argentina, Indonesia, etc. (2013) Wireless backhaul system Smart farm village, Hokkaido, Japan (Dec. 2013) Wireless infra & WiFi service Express way, Japan (Feb. 2014~) Wireless CCTV control & WiFi service Self-Defense Forces, Japan (Sep. 2014) Wireless Backhaul system Project on-going with Telco, Japan( Sofrbank, NEC, Fujisu, etc) Wireless Backhaul system, Wi-Fi Service
  • 12. A1. SOMPA Features A2. SOMPA Performance comparison A3. SOMPA radio wave intensity A4. Performance test results A5-7. Case studies
  • 13. Isolation features graph of 2-Port SOMPA antenna2-Port SOMPA antenna using electro-polarization Frequency (GHz)
  • 14. Normal Patch Antenna SOMPA Patch shape (MIMO) 6dBi 9dBi (×2)Gain 63% 95%Efficiency 100% 400%Gain increasing rate Field emission
  • 15. Normal Patch Antenna SOMPA Antenna
  • 16. Confidential Unidirectional Bidirectional Frame size Packet pass Throughput Frame size Packet pass Throughput 64 100% 23 Mbps 64 100% 7.7 Mbps 256 100% 83 Mbps 256 100% 41 Mbps 512 100% 163 Mbps 512 100% 81 Mbps 1024 100% 226 Mbps 1024 100% 108 Mbps 1500 100% 246 Mbps 1500 100% 118 Mbps
  • 17. Confidential No. Item Province Distance Q’ty (set) 1 LTE Backhaul Jeonnam 7Km 1 2 Jeonnam 3Km 1 3 Gyoungnam 4.5Km 1 4 Choongnam - 1 5 Daejeon - 9 6 Gangwon 10.7Km 1 7 Internet broadband Incheon 7.6Km 2 8 Choongnam 4Km 2 9 “ 7Km 1 10 “ 8Km 1 11 “ 6Km 1 12 Incheon 4Km 1 [Bridge(PTP-5400)]
  • 18. Confidential No. Item Province Distance Q’ty (set) 1 LTE backhual Jeonnam 4.3Km 1 2 “ 12.7Km 1 3 “ 7Km 1 4 Gangwon 10.7Km 1 5 Jeonnam 3Km 1 6 “ 8Km 1 7 “ 5Km 1 8 “ 16Km 1 9 “ 3Km 1 10 “ 7Km 1 11 “ 8Km 1 12 “ 15Km 1 13 “ 3Km 1 14 “ 5Km 1 15 “ 37Km 1 16 “ 5Km 1 17 “ 26Km 1 18 “ 40.5Km 1 19 Wi-Fi Serivce Seoul - 5ea [Bridge(PTP-5400), AP(AP-2130G)]
  • 19. Confidential No. Country Project Product Q’ty 1 Argentine Wireless live media transmission system Oct. 2013 Bridge 4 2 Japan Wireless infra / smart farm village in Numatacho Jan. 2014 AP 8 3 Wireless infra on Hiroshima express way 2nd half 2014 AP, CPE 70 4 Wireless infra for Japanese company Jun. 2014 Bridge 4 5 Wireless video transmission system for Japan Self Defense Forces Sep. 2014 Bridge 2 6 Japanese company Service May 2014 AP 6