1. SteinwayTransitCorp's Avatar
    Thought this would help with the questions, why does my phone not fully work?

    Cellular Phone Frequency Bands Guide 2022

    by GREG KNELL on FEBRUARY 1, 2022

    For many consumers out there, the technology and importance of radio waves to cell phones is out of sight/out of mind. Most people use their smartphone every day without truly knowing what makes its functionality possible. This updated cellular phone frequency bands guide explains this information simply as well as how this knowledge is helpful to everyone who uses a cell phone.
    Of all the individual technologies and components that allow your smartphone to function, radio waves are perhaps the most important. Your smartphone must connect to a mobile network in order to browse the web, stream videos, send text messages, and make calls. And it can’t connect to a mobile network without radio frequencies.
    For many consumers out there, the technology and importance of radio waves as pertaining to their cell phone is out of sight/out of mind. But this knowledge is very helpful to technology nerds and lay-people alike. Certain bandwidths and networks may serve your area better than others. Not every provider uses the same frequencies. Some devices are compatible with certain radio frequencies and not others. All of this information proves very helpful, for instance, to people thinking about switching carriers or to people who are in the market for a new device.
    cellular phone frequency bands 02
    Cellular Phone Frequency Bands: What Are They?

    As you may remember from high school science, the number of sound waves that occur per second is the definition of a frequency. Frequencies are measures in Hz (Hertz). If the sound waves are moving fast, these are higher frequencies. If they’re moving slowly, these are lower frequencies. We categorize frequencies into groups called spectrums. For example, the spectrum that comprises the range from 3 kHz to 300 GHz is called the RF spectrum. This is where all cellular frequencies fall.
    In an attempt to organize spectrum and frequency use in America, the US government tasks the FCC (Federal Communications Commission) and the NTIA (National Telecommunications and Information Administration) with
    leasing them to cellular carriers. These two agencies divide the spectra into what we call bands (multiple ranges of frequencies). The majority of cellular bands are between 600 MHz and 39 GHz, which is part of the RF spectrum, as previously mentioned. The carrier and device you use determines what specific frequencies your personal device is linked to for your service.
    One thing to remember is that a band represents many frequencies – not just one – as is sometimes mistakenly assumed. The 700 MHz frequency, for instance, includes all frequencies between 699 MHz and 798 MHz.
    cellular phone frequency bands 03
    Why Do Cellular Carriers Use Multiple Frequencies?

    In order for a cellular carrier to use a given cellular band, they need a license for it, which is given by the FCC. In most cases, when a cellular carrier is given license to a particular band, a small section of that band is all the carrier is allowed to use. These small sections are referred to as channels or blocks (either term is acceptable). The reason it is set up this way is to avoid carriers interfering with each other. Some bands are used by multiple carriers, but by allotting particular channels of use per carrier, they can use the same band without interference. In other words, bands are not exclusive to one carrier, but channels are (or at least can be, depending on the license).
    Because these various channels are located on different sections of the RF spectrum, naturally some of them consist of low frequencies and some of them are high frequencies. High frequencies can transmit data faster than low frequencies, but they can’t penetrate obstacles (buildings, hills, trees) as well, and they can’t travel as far. Low frequencies are the opposite. They are much better at penetrating obstacles but have lower data transmission rates. Though it may seem counterintuitive on the surface, lower frequency bands are better for metropolitan, urban areas.
    So, if a carrier wants to have the most reliable network possible, they seek to gain as many licenses throughout the RF spectrum as possible.
    Cellular Phone Frequency Bands: How Do They Work?

    After all that, let’s talk about your phone; the one you’re likely holding right now. In order for your cell phone to work, it needs to have access to the frequency bands that your carrier uses. This is usually done automatically for you when you sign up with a carrier. Your carrier – especially if you’re with a major one – uses a range of frequencies. And it’s via these frequencies that your phone is able to transmit information. When your phone communicates with your nearest cell tower, it’s doing so through your carrier’s specific frequency bands.

    A Little More About Cellular Phone Frequency Bands

    When acquiring frequency licenses from the FCC, carriers usually follow a blueprint of sorts to make sure the bands they’re purchasing don’t interfere with other carrier’s bands. They purchase them in sets of three; one in the middle (a guard band) and two on the outside. This “blueprint” is called FDD (Frequency Division Duplex). Carriers that acquire their bands in this way increase the odds that their data and voice transmissions will operate at maximum efficiency.
    Another way carriers go about purchasing frequency bands is called TDD (Time Division Duplex). It’s not as effective as FDD because it uses a single band for downlink and a single band for uplink (rather than the 3-band approach of FDD). Though to the end-user, the difference between the two methods is probably unnoticeable, carriers are prone to experience more problems in their network in a TDD scenario.
    cellular phone frequency bands 04
    More Terms To Know

    3G

    A mobile telecommunications system that can only handle things like text, talk, and very basic mobile internet. It was widely used in the 2000s. 3G stands for third-generation.
    4G

    A mobile telecommunications system that can handle text, talk, and data-heavy, fast internet. 4G essentially made mobile apps possible (iTunes, Spotify, Google Maps, Google Chrome, Safari, Facebook Netflix, Hulu, YouTube). It was widely used in the 2010s and is still widely used today. 4G stands for fourth-generation.
    LTE

    Considered the global mobile standard for many years now, LTE is a subform of 4G. It allows mobile phones to work across countries by automatically accessing differing frequencies depending on what country the phone happens to be in. LTE stands for long-term evolution. It quickly replaced WiMax, which was the first 4G standard.
    5G

    The newest telecommunications system. Though it has not yet reached its potential, 5G infrastructures are well on their way. It’s expected to be twenty times faster than 4G LTE, causing an evolution of what IoT is capable of. 5G stands for fifth-generation. It’s typically a blanket term for all speeds above 100 Mbps, and can operate on the lower, mid-, and high-band frequencies. For this reason, all SureCall cell phone signal boosters will continue to boost your phones signal for years to come.
    Mid-Band or C-Band

    In the US the C-Band is between 3.7 to 3.98GHz. Because it’s in the middle of the higher frequency mmWave and lower frequencies currently used for 4G LTE, it’s literally in the middle by performance as well. It’s capable of higher speeds than lower frequencies, and can cover greater areas than higher frequencies, though each is better at the opposite in their respective areas. Sascha Segan has a great article on C-Band that’s worth the read.
    Millimeter-wave

    Frequency waves in the 30-300 GHz range inside the RF spectrum. mmWave can handle massive amounts of data movement at the same time with ultra-low latency. The full impact of this frequency will be realized over the next few years.
    Cellular Phone Frequency Bands By Carrier

    Here is the list of the frequencies and bands that major US carriers use as of April 2021. Each frequency is noted as 5G, 4G, or 3G.
    AT&T

    850 MHz: Band n5 (5G)
    39GHz: Band n260 (5G)
    700 MHz: Bands 12/17/29 (4G)
    850 MHz: Band 5 (4G)
    1900 MHz: Band 2 (4G)
    1700 MHz /2100 MHz: Bands 4/66 (4G)
    2300 MHz: Band 30 (4G)
    850 MHz: Band 5 (3G)
    1900 MHz: Band 2 (3G)
    Verizon Wireless

    28 GHz: Band n261 (5G)
    39 GHz: Band n260 (5G)
    700 MHz: Band 13 (5G)
    850 MHz: Band 5 (4G)
    1700/2100 MHz: Bands 4/66 (4G)
    1900 MHz: Band 2 (4G)
    850 MHz: Band 0 (3G)
    1900 MHz: Band 1 (3G)
    T-Mobile

    600 MHz: Band n71 (5G)
    2.5 GHz: Band n41 (5G)
    39 GHz: Band n260 (5G)
    28 GHz: Band n261 (5G)
    600 MHz: Band 71 (4G)
    700 MHz: Band 12 (4G)
    850 MHz: Band 5 (4G)
    1700/2100 MHz: Bands 4/66 (4G)
    1900 MHz: Band 2 (4G)
    1900 MHz: Band 2 (3G)
    1700/2100 MHz: Band 4 (3G)
    Sprint

    2.5 GHz: Band n41 (5G)
    800 MHz: Band 26 (4G)
    1900 MHz: Band 25 (4G)
    2500 MHz: Band 41 (4G)
    800 MHz: Band 10 (3G)
    1900 MHz: Band 2 (3G)
    U.S. Cellular

    600 MHz: Band n71 (5G)
    700 MHz: Band 12 (4G)
    850 MHz: Band 5 (4G)
    1700/2100: Band 4 (4G)
    1900: Band 2 (4G)
    850 MHz: Band 5 (3G)
    1900 MHz: Band 2 (3G)
    Cricket Wireless

    850 MHz: Band n5 (5G)
    700 MHz: Bands 17 (4G)
    1900 MHz: Band 2 (4G)
    1700 MHz /2100 MHz: Band 4 (4G)
    2300 MHz: Band 30 (4G)
    850 MHz: Band 5 (3G)
    1900 MHz: Band 2 (3G)
    Boost Mobile

    2.5 GHz: Band n41 (5G)
    800 MHz: Band 26 (4G)
    1900 MHz: Band 25 (4G)
    2500 MHz: Band 41 (4G)
    800 MHz: Band 10 (3G)
    1900 MHz: Band 2 (3G)
    Metro by T-Mobile

    600 MHz: Band n71 (5G)
    600 MHz: Band 71 (4G)
    700 MHz: Band 12 (4G)
    850 MHz: Band 5 (4G)
    1700/2100 MHz: Bands 4/66 (4G)
    1900 MHz: Band 2 (4G)
    1900 MHz: Band 2 (3G)
    1700/2100 MHz: Band 4 (3G)
    cellular phone frequency bands 05
    Why are Cellular Frequencies Important?

    Knowing this information is especially important if (1) you want to activate your phone with a different carrier and you want to perform the activation yourself, or (2) you purchased an unlocked device that was not manufactured by your carrier. You’ll almost certainly need to know what frequency bands are supported by the device you have in order to succeed in either of these endeavors. This is because the carrier’s frequency band must be compatible with the device you’re using. If they aren’t compatible, the device won’t work (or it won’t work well).
    It’s also worth noting that if your particular situation involves the purchase and setup of a cell phone signal booster, frequency band information will be helpful in choosing a booster.
    Fusion4Home Cell Phone Signal Booster
    The Fusion4Home Cell Phone Signal Booster
    How Do I Know Which Frequency Bands My Device Supports?

    We don’t know of any phone manufacturer that makes this information directly available to the user on store packaging or in phone’s settings. So getting this information often requires some digging.
    We recommend looking in three places. No matter what your situation is, it’s good to check all three places to make sure the information is correct. (1) Use the list we provided above. (2) Call your carrier and ask them to verify. (3) Call a few of the other major providers, get their frequency info, and then cross-reference that with the info you got from the provider you’re considering joining. The third step is important because the more bands your device supports, the better your reception and service is likely to be.
    One reliable source of frequency information and compatible devices is wirelessadvisor.com. You can also visit carrier websites. For example, go to T-Mobile’s site and go to the page where it shows you all the devices you can buy from them. Find your device and go to “Specs”. You’ll likely find additional tabs or sections with names like Network, Frequency, or Wireless Technology. Click on it and it will show you all the technologies and bands that your device supports. We are not aware if every carrier’s website provides this information, but we know that many do.
    cellular phone frequency bands 06
    If you can’t find the frequency information you’re searching for online, most carriers will still help you in other ways. Sometimes they provide an online tool directly on their site that helps you determine if your unlocked device is compatible with their network. Or you can simply call their customer service line and ask them.
    11-03-22 06:46 AM
  2. Dunt Dunt Dunt's Avatar
    Being that's an article about the USA.... the 3G frequency info isn't very relevant at this point, and neither it the mention of 5G... as there are no 5G BlackBerry (or Unihertz) phones.
    11-04-22 08:26 AM
  3. Yamahammer's Avatar
    Type your phone into the search and bingo.

    https://www.kimovil.com/en/frequency-checker
    11-04-22 10:28 AM
  4. SteinwayTransitCorp's Avatar
    Being that's an article about the USA.... the 3G frequency info isn't very relevant at this point, and neither it the mention of 5G... as there are no 5G BlackBerry (or Unihertz) phones.
    Well for you yes, but there are many people who do not understand the here or why of why their phone no longer connects. Now they can see why.

    BTW the report came out this year and a few smaller companies are keeping 3G alive.
    11-05-22 05:05 PM
  5. SteinwayTransitCorp's Avatar
    Being that's an article about the USA.... the 3G frequency info isn't very relevant at this point, and neither it the mention of 5G... as there are no 5G BlackBerry (or Unihertz) phones.
    Unihertz now has a5G phone for sale under 400 bucks
    11-06-22 12:48 PM
  6. Yamahammer's Avatar
    Unihertz now has a5G phone for sale under 400 bucks
    Who in their right mind is going to spend $400 on a Unihertz 5G slab? So many better and cheaper options available.

    "The CB 1M Challenge, where the pantless people go"
    11-06-22 12:54 PM
  7. SteinwayTransitCorp's Avatar
    It’s 349 dollars, not bad at all.
    11-06-22 01:02 PM
  8. SteinwayTransitCorp's Avatar
    Who in their right mind is going to spend $400 on a Unihertz 5G slab? So many better and cheaper options available.

    "The CB 1M Challenge, where the pantless people go"
    Specification

    Dimensions: 167*78*11mm
    Weight: 233g(with battery)
    CPU: MT6765 Octa Core
    Memory: 4 GB+64 GB UFS 2.1

    Display size: Main screen: 6.517 inch/Sub screen: 1.28 inch
    Resolution: Main screen:720*1600 pixels / Sub screen: 240*240 pixels
    SIM card type: Dual Nano SIM card
    Camera: Primary (Rear) camera: 48MP AF, Macro lens : 0.3MP /Front camera:8MP FF
    Band
    GSM: GSM850/GSM900/ DCS1800/PCS1900;
    WCDMA: Band1/2/4/5/6/8;
    LTE-FDD: Band1/2/3/4/5/6/7/8/ 12/13/17/18/19/20/ 25/26/28A/28B/66;
    LTE-TDD: Band34/38/39/40/41
    Battery: Non-removable 6000 mAh battery
    NFC: Yes
    USB OTG: Yes
    Sensors: Fingerprint (Combined with Power button), G-sersor, Gyroscope, Proximity, Ambient Light sensor, Compass
    Infrared port: Yes
    USB: USB Type C
    Micro SD: Yes
    Bluetooth: 4.2
    Wifi: WLAN 802.11 a/b/g/n/ac 2.4GHz/5GHz WiFi Direct, WiFi Hotspot
    GPS: GPS+GLONASS+BeiDou+Galileo
    Loudspeaker: Yes
    Headphone Jack: No
    Radio: FM radio
    OS: Android 12
    Colors: Blue
    Programmable Key: 2
    Misc: Not water-resistant

    Pretty slick
    Attached Thumbnails Cell phone provider frequency list 2022 for US-962d165e-a59b-4fec-a203-5f66bbabe716.jpeg  
    11-06-22 01:05 PM
  9. Yamahammer's Avatar
    It’s 349 dollars, not bad at all.
    Nokia has 5g phones with better specs and $80-120 cheaper.

    https://www.nokia.com/phones/en_us/s...group:g-series

    "The CB 1M Challenge, where the pantless people go"
    11-06-22 01:16 PM
  10. SteinwayTransitCorp's Avatar
    Nokia has 5g phones with better specs and $80-120 cheaper.

    https://www.nokia.com/phones/en_us/s...group:g-series

    "The CB 1M Challenge, where the pantless people go"
    Not with a rear screen
    11-06-22 04:07 PM
  11. Yamahammer's Avatar
    Not with a rear screen
    Hahahaha, maybe that little circle screen could be used to look like a railway watch!

    "The CB 1M Challenge, where the pantless people go"
    11-06-22 04:24 PM
  12. Yamahammer's Avatar
    Not with a rear screen
    Like this?

    "The CB 1M Challenge, where the pantless people go"
    11-06-22 04:37 PM
  13. Yamahammer's Avatar
    Like this?[IMG=864x561]https://uploads.tapatalk-cdn.com/20221106/f2711f5a761a665f0475fadb31cc48b5.jpg[/url]

    "The CB 1M Challenge, where the pantless people go"
    Of course it should be a 24 clock.... My bad.

    "The CB 1M Challenge, where the pantless people go"
    11-06-22 04:38 PM
  14. SteinwayTransitCorp's Avatar
    Like this?[IMG=864x561]https://uploads.tapatalk-cdn.com/20221106/f2711f5a761a665f0475fadb31cc48b5.jpg[/url]

    "The CB 1M Challenge, where the pantless people go"
    That’s cool
    11-06-22 08:19 PM
  15. Yamahammer's Avatar
    That’s cool
    Hehe! Thanks

    "The CB 1M Challenge, where the pantless people go"
    11-06-22 08:19 PM
  16. SteinwayTransitCorp's Avatar
    Hehe! Thanks

    "The CB 1M Challenge, where the pantless people go"
    Nothing like it 5G railroad watch and a Tesla……..I am moving into the twenty first century Whether I like it or not…..LMAO
    11-06-22 08:21 PM
  17. Yamahammer's Avatar
    Nothing like it 5G railroad watch and a Tesla……..I am moving into the twenty first century Whether I like it or not…..LMAO
    Found a clock app for your Tesla...

    "The CB 1M Challenge, where the pantless people go"
    11-06-22 08:39 PM
  18. SteinwayTransitCorp's Avatar
    Found a clock app for your Tesla...[IMG=864x460]https://uploads.tapatalk-cdn.com/20221107/0f61eed0d4acc6f59a60d4d35dd2119a.jpg[/url]

    "The CB 1M Challenge, where the pantless people go"
    You send it and I will use it
    11-06-22 08:59 PM

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