3G
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3G is the third generation of
3G telecommunication networks support services that provide an information transfer rate of at least 144
A new generation of cellular standards has appeared approximately every tenth year since 1G systems were introduced between 1979 and the early to mid-1980s. Each generation is characterized by new frequency bands, higher data rates and non–backward-compatible transmission technology. The first commercial 3G networks were introduced in mid-2001.[4][5][6][7]
Overview
Several telecommunications companies marketed wireless mobile Internet services as 3G, indicating that the advertised service was provided over a 3G wireless network. However, 3G services have largely been supplanted in marketing by 4G and 5G services in most areas of the world. Services advertised as 3G are required to meet
3G branded standards:
- The UMTS (Universal Mobile Telecommunications System) system, standardized by 3GPP in 2001, was used in Europe, Japan, China (with a different radio interface) and other regions predominated by GSM (Global Systems for Mobile Communications) 2G system infrastructure. The cell phones are typically UMTS and GSM hybrids. Several radio interfaces are offered, sharing the same infrastructure:
- The original and most widespread radio interface is called W-CDMA(Wideband Code Division Multiple Access).
- The TD-SCDMAradio interface was commercialized in 2009 and only offered in China.
- The latest UMTS release, HSPA+, can provide peak data rates up to 56 Mbit/s in the downlink in theory (28 Mbit/s in existing services) and 22 Mbit/s in the uplink.
- The original and most widespread radio interface is called
- The EVDORev. B offers peak rates of 14.7 Mbit/s downstream.
The 3G systems and radio interfaces are based on
The common standards complying with the IMT2000/3G standard are:
- GMSKmodulation scheme. EDGE is still used extensively due to its ease of upgrade from existing 2G GSM infrastructure and cell phones.
- system spectral efficiency than the original UMTS and CDMA2000systems, but it is difficult to reach much higher peak data rates due to the limited GSM spectral bandwidth of 200 kHz, and it is thus a dead end.
- EDGE was also a mode in the IS-136TDMA system, no longer used.
- Evolved EDGE, the latest revision, has peaks of 1 Mbit/s downstream and 400 kbit/s upstream but is not commercially used.
- The Universal Mobile Telecommunications System, created and revised by the W-CDMAformat.
- W-CDMA is the most common deployment, commonly operated on the 2,100 MHz band. A few others use the 850, 900, and 1,900 MHz bands.
- HSPA is an amalgamation of several upgrades to the original W-CDMA standard and offers speeds of 14.4 Mbit/s down and 5.76 Mbit/s up. HSPA is backward-compatible and uses the same frequencies as W-CDMA.
- HSPA+, a further revision and upgrade of HSPA, can provide theoretical peak data rates up to 168 Mbit/s in the downlink and 22 Mbit/s in the uplink, using a combination of air interface improvements as well as multi-carrier HSPA and MIMO. Technically though, MIMO and DC-HSPA can be used without the "+" enhancements of HSPA+.
- W-CDMA is the most common deployment, commonly operated on the 2,100 MHz band. A few others use the 850, 900, and 1,900 MHz bands.
- The 3GPP2(differing from the 3GPP), evolving from the original IS-95 CDMA system, is used especially in North America, China, India, Pakistan, Japan, South Korea, Southeast Asia, Europe, and Africa.
- CDMA2000 1x Rev. E has an increased voice capacity (by three times the original amount) compared to Rev. 0 EVDORev. B offers downstream peak rates of 14.7 Mbit/s while Rev. C enhanced existing and new terminal user experience.
- CDMA2000 1x Rev. E has an increased voice capacity (by three times the original amount) compared to Rev. 0
While DECT cordless phones and
Break-up of 3G systems
The 3G (UMTS and CDMA2000) research and development projects started in 1992. In 1999, ITU approved five radio interfaces for IMT-2000 as a part of the ITU-R M.1457 Recommendation; WiMAX was added in 2007.[11]
There are evolutionary standards (EDGE and CDMA) that are backward-compatible extensions to pre-existing
While
History
3G technology was the result of research and development work carried out by the
The first European pre-commercial network was an UMTS network on the Isle of Man by Manx Telecom, the operator then owned by British Telecom, and the first commercial network (also UMTS based W-CDMA) in Europe was opened for business by Telenor in December 2001 with no commercial handsets and thus no paying customers.
The first network to go commercially live was by
The first commercial United States 3G network was by Monet Mobile Networks, on
The first commercial United Kingdom 3G network was started by
The first pre-commercial demonstration network in the southern hemisphere was built in Adelaide, South Australia, by m.Net Corporation in February 2002 using UMTS on 2100 MHz. This was a demonstration network for the 2002 IT World Congress. The first commercial 3G network was launched by Hutchison Telecommunications branded as Three or "3" in June 2003.[18]
In India, on 11 December 2008, the first 3G mobile and internet services were launched by a state-owned company, Mahanagar Telecom Nigam Limited (MTNL), within the metropolitan cities of Delhi and Mumbai. After MTNL, another state-owned company, Bharat Sanchar Nigam Limited (BSNL), began deploying the 3G networks country-wide.
Emtel launched the first 3G network in Africa.[19]
Adoption
Japan was one of the first countries to adopt 3G, the reason being the process of 3G spectrum allocation, which in Japan was awarded without much upfront cost. The frequency spectrum was allocated in the US and Europe based on auctioning, thereby requiring a huge initial investment for any company wishing to provide 3G services. European companies collectively paid over 100 billion dollars in their spectrum auctions.[20]
Nepal Telecom adopted 3G Service for the first time in southern Asia. However, its 3G was relatively slow to be adopted in Nepal. In some instances, 3G networks do not use the same radio frequencies as 2G, so mobile operators must build entirely new networks and license entirely new frequencies, especially to achieve high data transmission rates. Other countries' delays were due to the expenses of upgrading transmission hardware, especially for UMTS, whose deployment required the replacement of most broadcast towers. Due to these issues and difficulties with deployment, many carriers could not or delayed the acquisition of these updated capabilities.
In December 2007, 190 3G networks were operating in 40 countries and 154
The roll-out of 3G networks was delayed by the enormous costs of additional spectrum licensing fees in some countries. The license fees in some European countries were particularly high, bolstered by government auctions of a limited number of licenses and
The 3G standard is perhaps well known because of a massive expansion of the mobile communications market post-2G and advances of the consumer mobile phone. An especially notable development during this time is the
Market penetration
By June 2007, the 200 millionth 3G subscriber had been connected of which 10 million were in
at the 32% migration level.According to ITU estimates,
Decline and decommissions
Since the increasing adoption of 4G networks across the globe, 3G use has been in decline. Several operators around the world have already or are in the process of shutting down their 3G networks (see table below). In several places, 3G is being shut down while its older predecessor 2G is being kept in operation; Vodafone Europe is doing this, citing 2G's usefulness as a low-power fallback.[25] EE in the UK, plans to switch off their 3G networks in early 2024.[26] In the US, Verizon shutdown their 3G services on 31 December 2022,[27] T-Mobile shut down Sprint's networks on 31 March 2022 and shutdown their main networks on 1 July 2022,[28] and AT&T has done so on 22 February 2022.[29]
Currently 3G around the world is declining in availability and support. Technology that depends on 3G for usage are becoming inoperable in many places. For example, the European Union plans to ensure that member countries maintain 2G networks as a fallback[citation needed], so 3G devices that are backwards compatible with 2G frequencies can continue to be used. However, in countries that plan to decommission 2G networks or have already done so as well, such as the United States and Singapore, devices supporting only 3G and backwards compatible with 2G are becoming inoperable.[30] As of February 2022, less than 1% of cell phone customers in the United States used 3G; AT&T offered free replacement devices to some customers in the run-up to its shutdown.[31]
Patents
It has been estimated that there are almost 8,000 patents declared essential (
).Even then, some patents
Furthermore, the existing 3G Patent Platform Partnership Patent pool has little impact on
Features
Data rates
ITU has not provided a clear[36][vague] definition of the data rate that users can expect from 3G equipment or providers. Thus users sold 3G service may not be able to point to a standard and say that the rates it specifies are not being met. While stating in commentary that "it is expected that IMT-2000 will provide higher transmission rates: a minimum data rate of 2 Mbit/s for stationary or walking users, and 348 kbit/s in a moving vehicle,"[37] the ITU does not actually clearly specify minimum required rates, nor required average rates, nor what modes[clarification needed] of the interfaces qualify as 3G, so various[vague] data rates are sold as '3G' in the market.
In a market implementation, 3G downlink data speeds defined by telecom service providers vary depending on the underlying technology deployed; up to 384 kbit/s for UMTS (WCDMA), up to 7.2 Mbit/sec for HSPA, and a theoretical maximum of 21.1 Mbit/s for HSPA+ and 42.2 Mbit/s for DC-HSPA+ (technically 3.5G, but usually clubbed under the tradename of 3G).[citation needed]
Compare data speeds with
Security
3G networks offer greater security than their 2G predecessors. By allowing the UE (User Equipment) to authenticate the network it is attaching to, the user can be sure the network is the intended one and not an impersonator. 3G networks use the
In addition to the 3G network infrastructure security, end-to-end security is offered when application frameworks such as IMS are accessed, although this is not strictly a 3G property.
Applications of 3G
The bandwidth and location information available to 3G devices gives rise to applications not previously available to mobile phone users. It became possible to conveniently surf the
Evolution
Both
On 14 December 2009,
Phase-out
Country | Status | Network | Shutdown end date | Standard | References | Notes |
---|---|---|---|---|---|---|
Argentina | Personal | TBD | UMTS | [42] | Local shutdowns commenced in Q1 2023. | |
Australia | Optus | 2024-09 (est.) | UMTS | [43][44] | ||
Telstra | 2024-10-18 (est.) | UMTS | [45][46][44] | 2100MHz band shutdown on 25 Mar 2019. | ||
TPG / Vodafone | 2023-12-15 | UMTS | [47][48] | |||
Austria | Magenta Telekom | 2024 (est.) | UMTS | [49] | ||
Belgium | Orange | 2025-12-31 (est.) | UMTS | [50][51] | Local shutdowns to commence in Jan 2024. | |
Telenet
|
TBD | UMTS | [52] | Local shutdowns to commence in Sep 2024. | ||
Proximus | 2024-12-31 (est.) | UMTS | [53] | |||
Canada | Bell | 2025-12-31 (est.) | UMTS | [54] | ||
Rogers | 2025-12-31 (est.) | UMTS | [54][55][56][57] | 1900 MHz shutdown in Jun 2021. 850 MHz remains active. | ||
Telus | 2025-12-31 (est.) | UMTS | [54] | |||
China | China Mobile | TBD | TD-SCDMA
|
[58][59][60][61] | Local shutdowns commenced on 16 Mar 2016. | |
China Telecom | 2025 (est.) | CDMA2000 | [62][63][64] | CDMA2000 1X, 1xEV-DO Rev. A Local shutdowns commenced on 16 Jun 2020. | ||
China Unicom | TBD | UMTS | [65] | Local shutdowns commenced in Q4 2022. | ||
Croatia | HT | 2025 (est.) | UMTS | [66] | Local shutdown commenced in Dec 2023. | |
Czech Republic | No Service | O2 | 2021-11-30 | UMTS | [67] | |
Telekom | 2021-11-30 | UMTS | [67] | |||
Vodafone | 2021-03-31 | UMTS | [68] | |||
Denmark | 3 | 2025-12-01 (est.) | UMTS | [69] | Local shutdown commenced in 2019. | |
TDC
|
TBD | UMTS | [70] | Local shutdown commenced in 2022. | ||
TT-Netværket (Telenor, Telia) |
2023-03-20 | UMTS | [71][72] | Service on the 2100 MHz band ended in 2021. Shutdown on the 900 MHz band commenced in summer 2022. | ||
Estonia | Tele2 | 2025-12-31 (est.) | UMTS | [73] | ||
Telia Eesti | 2023-12-13 | UMTS | [74][75][76][77] | |||
Finland | DNA | 2024-01-25 | UMTS | [78][79][80][81] | Local shutdowns commenced in May 2023. | |
Elisa | 2023-11-30 | UMTS | [82] | Local shutdowns commenced in Apr 2023. | ||
Finnish Shared Network | 2024-12 (est.) | UMTS | [78][83] | Joint company by Telia and DNA to manage networks in Northern and Eastern Finland. | ||
Telia | 2024-06 (est.) | UMTS | [84][85] | Local shutdowns commenced on 09 Sep 2023. | ||
France | Bouygues | 2029 (est.) | UMTS | [86] | ||
Orange | 2028-12-31 (est.) | UMTS | [50] | |||
SFR | 2028 (est.) | UMTS | [87] | |||
Germany | No Service | Deutsche Telekom | 2021-07-01 | UMTS | [88] | |
O2 | 2021-12-31 | UMTS | [89][90][91] | |||
Vodafone | 2021-06-30 | UMTS | [92] | |||
Greece | No Service | Cosmote
|
2021-12-31 | UMTS | [93] | |
NOVA | 2023-03-27 | UMTS | [94][95][96][97] | |||
Vodafone | 2023-05-31 | UMTS | [98] | |||
Greenland | Tusass | TBD | UMTS | [99] | ||
Hungary | No Service | Magyar Telekom | 2022-06-30 | UMTS | [100][101][102] | |
Yettel Hungary | 2023-11-13 | UMTS | [100][102][103] | |||
Vodafone Hungary | 2023-03-31 | UMTS | [104][102] | |||
Iceland | 2025 (est.) | [105] | Per government statement | |||
India | Airtel | 2020-03-31 | UMTS | [106][107] | ||
Vodafone Idea | 2022-10-06 | UMTS | [108] | Complete network refarming to 4G/LTE. | ||
Indonesia | Smartfren | 2017-11-13 | CDMA2000 | [109] | CDMA2000 1X, 1xEV-DO Rel. 0, 1xEV-DO Rev. A, EV-DO Rev. B | |
Telkomsel | TBD | UMTS | [110][111] | Local shutdowns commenced in Mar 2022. | ||
Indosat | 2022-12-31 | UMTS | [112] | |||
XL Axiata | TBD | UMTS | [113][114] | Local shutdowns commenced in June 2021. | ||
Ireland | Vodafone | TBD | UMTS | [115] | Local shutdowns commenced in Feb 2023. | |
Israel | 2025-12-31 (est.) | [116] | Per government statement | |||
Italy | TIM
|
2022-10-21 | UMTS | [117][118][119][120] | ||
Vodafone | 2021-02-28 | UMTS | [121] | |||
Japan | KDDI | 2022-03-31 | CDMA2000 | [122][123][124] | CDMA2000 1X, 1xEV-DO Rel. 0, 1xEV-DO Rev. A, EV-DO Rev. B | |
NTT docomo
|
2026-03-31 (est.) | UMTS | [125] | |||
Softbank
|
2024-04-15 | UMTS | [126][127][128] | |||
Kazakhstan | Tele2 | TBD | UMTS | [129] | Local shutdown commenced on 28 Mar 2024. | |
Lithuania | Telia | 2022-12-15 | UMTS | [130][131][132] | ||
Luxembourg | Orange | 2025-12-31 (est.) | UMTS | [50] | ||
Tango / Telindus | 2024-01-31 | UMTS | [133] | |||
Macau | China Telecom | 2025 (est.) | CDMA2000 | [134][135] | CDMA2000 1X, 1xEV-DO Rev. A | |
Malaysia | No Service | Celcom | 2021-12-31 | UMTS | [136][137] | |
Maxis | 2021-12-31 | UMTS | [138] | |||
U Mobile | 2021-12-31 | UMTS | [138] | |||
Digi
|
2021-12-31 | UMTS | [138][137] | |||
Moldova | Interdnestrcom | 2023-08-01 | CDMA2000 | [139] | ||
Montenegro | Crnogorski Telekom | 2024-01-22 | UMTS | [140][141] | ||
Netherlands | KPN | 2023-05-10 | UMTS | [142][143][144] | Local shutdown commenced on 31 Mar 2022. | |
Vodafone | 2020-02-04 | UMTS | [145] | |||
New Zealand | 2degrees | 2025 Q4 (est.) | UMTS | [146] | ||
One | 2024 Q4 (est.) | UMTS | [147] | Local shutdown will commence by Aug 2024. | ||
Spark | 2025-12-31 (est.) | UMTS | [148] | |||
Norway | No Service | Telia | 2021-11-11 | UMTS | [149] | |
Telenor | 2021-01-31 | UMTS | [150] | |||
Oman | Omantel | 2024 Q3 (est.) | UMTS | [151][152] | ||
Philippines | Smart (PLDT) | TBD | UMTS | [153] | ||
Poland | T-Mobile
|
2023-04 (est.) | UMTS | [154][155][156] | Shutdown commenced in Apr 2023. | |
Orange | 2025-12-31 (est.) | UMTS | [50][157][158] | Local shutdown commenced on 26 Sep 2023. | ||
Portugal | MEO | 2024-01-31 | UMTS | [159] | Local shutdown commenced on 4 Sep 2023. | |
Vodafone | 2024-07 (est.) | UMTS | [160] | |||
NOS | 2024-05 (est.) | UMTS | [161] | Shutdown commenced in May 2024. | ||
Romania | Digi | 2023-08-29 | UMTS | [162] | ||
Orange | 2025-12-31 (est.) | UMTS | [50] | |||
Telekom | 2023-03-31 | UMTS | [163] | |||
Russia | Beeline | 2025 (est.) | UMTS | [164] | Shutdown commenced in Moscow in Feb 2023. | |
MTS
|
2025 (est.) | UMTS | [165] | |||
Saudi Arabia | stc
|
2022-12-31 | UMTS | [166] | ||
Singapore | M1 | 2024-08-01 | UMTS | [167] | SingTel and StarHub delayed shutdown due to government agencies (HDB and LTA) replacing 3G devices. | |
Singtel | 2024-11-01 (est.) | |||||
StarHub | 2024-11-01 (est.) | |||||
Slovakia | O2 | TBD | UMTS | [168] | Local shutdown commences in Jan 2024. | |
Orange | 2024-02-22 | UMTS | [50][169][170] | |||
Slovak Telekom | 2023-11-23 | UMTS | [171][172] | Local shutdown commenced on 3 Oct 2023. | ||
Slovenia | Telekom Slovenije | 2022-09-30 | UMTS | [173] | ||
A1 Slovenija | 2023-06-30 | UMTS | [174] | |||
South Africa | 2025-03 (est.) | [175][176] | Per government statement | |||
South Korea | KT | 2012-03-19 | CDMA2000 | [177][178][179] | CDMA2000 was also referred to as "2G" in South Korea, besides cdmaOne (IS-95).[180] CDMA2000 1X, 1xEV-DO Rel. 0 KT also operates an UMTS "3G" network. | |
LG U+ | 2021-06-30 | CDMA2000 | [181][182][177][183] | CDMA2000 1X, 1xEV-DO Rev. A, EV-DO Rev. B | ||
SK Telecom | 2020-07-27 | CDMA2000 | [184][179][177][185] | CDMA2000 was also referred to as "2G" in South Korea, besides cdmaOne (IS-95).[180] CDMA2000 1X, 1xEV-DO Rel. 0 SKT also operates an UMTS "3G" network. | ||
Spain | Orange | 2025-12-31 (est.) | UMTS | [50] | ||
Sri Lanka | Airtel
|
2022-06-12 | UMTS | [186] | ||
Dialog Axiata | TBD | UMTS | [187] | |||
Sweden | Telenor | 2025-12 (est.) | UMTS | [188] | ||
Telia | 2025 (est.) | UMTS | [189] | |||
Three | 2025-12-01 (est.) | UMTS | [190][191] | Local shutdown for 2100 MHz commenced in late 2021. | ||
Switzerland | Sunrise | 2025-06 (est.) | UMTS | [192] | ||
Swisscom
|
2025-12-01 (est.) | UMTS | [193] | |||
Taiwan | No Service | Asia Pacific Telecom | 2017-12-31 | CDMA2000 | [194][195] | CDMA2000 1X, 1xEV-DO Rev. A |
Chunghwa Telecom | 2018-12-31 (Data) 2024-06-30 (Voice) |
UMTS | [196][197][198] | |||
Far EasTone | 2018-12-31 (Data) 2024-06-30 (Voice) |
UMTS | [196][197][198] | |||
Taiwan Mobile | 2018-12-31 (Data) 2024-06-30 (Voice) |
UMTS | [196][197][198] | |||
Taiwan Star
|
2018-12-31 (Data) 2024-06-30 (Voice) |
UMTS | [196][197][198] | |||
United Kingdom | EE | 2024-02-25 | UMTS | [199][200][201][202] | ||
Three | 2024-12-31 (est.) | UMTS | [203] | |||
O2 | 2025-12-31 (est.) | UMTS | [204] | |||
Vodafone | 2024-02-28 | UMTS | [205][206][207][208] | Local shutdown commenced in Jun 2023. | ||
United States Puerto Rico US Virgin Islands |
No Service | Appalachian Wireless | 2023-01-03 | CDMA2000 | [209][210][211] | CDMA2000 1X, 1xEV-DO Rev. A |
AT&T | 2022-02-22 | UMTS | [212][213] | |||
Cellcom | 2023-03-31 | CDMA2000 | [214] | |||
Cellular One of North East Arizona | 2023-05-04 | UMTS | [215] | |||
Commnet Wireless (Choice) | 2022-12-31 | CDMA2000 | [216] | |||
Liberty | 2022-02-22 | UMTS | [217] | |||
Silver Star | 2022-12-30 | CDMA2000 | [218][219] | CDMA2000 1X & 1xEV-DO Rev. A | ||
Strata Networks | 2022-12-31 | CDMA2000 | [220] | |||
T-Mobile | 2022-07-01 | UMTS | [221][222][223][224] | |||
T-Mobile (Sprint) | 2022-05-31 | CDMA2000 | [225][221][222][223] [226][227] |
CDMA2000 1X, 1X Adv. (Rev.E), 1xEV-DO Rel. 0, 1xEV-DO Rev. A Shutdown commenced on 31 Mar 2022. | ||
UScellular
|
2024-01-14 | CDMA2000 | [228][229][230] | CDMA2000 1X 1xEV-DO (Rel. 0 & Rev. A) shutdown commenced in 2021. | ||
Verizon
|
2022-12-31 | CDMA2000 | [231][232][233] | CDMA2000 1X, 1xEV-DO Rel. 0, 1xEV-DO Rev. A |
See also
- List of mobile phone generations
- Mobile radio telephone (also known as "0G")
- Mobile broadband
- Wireless device radiation and health
- 1G
- 2G
- 4G
- 5G
- LTE (telecommunication)
References
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- ^ Charny, Ben (1 October 2001). "World's first 3G phone network goes live". ZDNet. Retrieved 16 August 2019.
- ^ McCarthy, Kieren (1 October 2001). "World's first 3G network live today". theregister.co.uk. Retrieved 16 August 2019.
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- ^ "First 3G mobiles launched in Japan". 1 October 2001. Retrieved 16 August 2019.
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- ^ "HSPA". 3gpp.org. Retrieved 17 August 2019.
- ^ "HTC – Touch Phone, PDA Phone, Smartphone, Mobile Computer". 22 November 2008. Archived from the original on 22 November 2008. Retrieved 17 August 2019.
- ^ ITU. "ITU Radiocommunication Assembly approves new developments for its 3G standards". press release. Archived from the original on 19 May 2009. Retrieved 1 June 2009.
- ^ "EDGE, 3G, H+, Etc: What Are All These Mobile Networks?". MakeUseOf. 15 February 2019. Retrieved 17 August 2019.
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- ^ "Economists' Pick | HKTDC Research". economists-pick-research.hktdc.com. Archived from the original on 31 March 2020. Retrieved 12 January 2020.
- ^ "broadbandmag.co.uk/3G grinds to a start". Archived from the original on 23 April 2009. Retrieved 7 April 2009.
- ^ "DoCoMo Delays 3G Launch". Wired. 24 April 2001.
- ^ "3G in UK". 3g.co.uk.
- ^ "About Hutchison". Hutchison Telecommunications (Australia) Limited. 11 June 2008. Retrieved 7 April 2012.
- ^ "Emtel | Africa Outlook Magazine". Africa Outlook Magazine. Archived from the original on 3 February 2018. Retrieved 3 February 2018.
- ^ "Radiocommunications Agency : The Auction of Radio Spectrum for the Third Generation of Mobile Telephones – National Audit Office (NAO) Report". National Audit Office. 19 October 2001. Retrieved 17 August 2019.
- ^ "Plus 8 Star presentation, "Is 3G a Dog or a Demon – Hints from 7 years of 3G Hype in Asia"". Plus8star.com. 11 June 2008. Archived from the original on 18 February 2012. Retrieved 6 September 2010.
- ^ a b c "Global mobile statistics 2013 Part A: Mobile subscribers; handset market share; mobile operators". mobiThinking. May 2013. Archived from the original on 6 September 2014. Retrieved 15 October 2013.
- ^ "The 100 million club: the top 10 mobile markets by number of mobile subscriptions". mobiThinking. 13 December 2012. Archived from the original on 26 September 2013. Retrieved 15 October 2013.
- ^ Steven Millward (29 July 2014). "China now has 486.5 million 3G subscribers, but only 14 million on new 4G network". Tech in Asia. Retrieved 4 August 2014.
- ^ Hall, Kat. "Sod 3G, that can go, but don't rush to turn off 2G, UK still needs it – report". www.theregister.com.
- ^ "We're Switching Off Our 3G Network". EE. Retrieved 2 January 2024.
- ^ "3G CDMA Network Shut off date set for December 31, 2022". www.verizon.com. 30 March 2021. Retrieved 2 January 2024.
- ^ "T-Mobile Network Evolution". T-Mobile Support. Retrieved 2 January 2024.
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- ^ AT&T is shutting down its 3G network. Here’s how it could impact you
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- ^ Polytechnic Institute of New York University. Archived from the original(PDF) on 20 June 2015. Retrieved 24 June 2012.
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Pools that cover only a fraction of the actual IPR for a standard are not very useful. It is essential that the large licensees sign up. Examples of pools that have little impact are the 3G Licensing pool (which excludes the four largest IPR owners for 3G) and the 802.11 pool by ViaLicensing.
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External links
- Media related to 3G at Wikimedia Commons