Cables

Cat6 vs Cat6a vs Cat7 vs Cat8: Which Ethernet Cable You Actually Need

G Gurpreet Singh September 3, 2026 15 min read
Cat6 vs Cat6a vs Cat7 vs Cat8: Which Ethernet Cable You Actually Need
Buy Cat6 for almost every home and office run: it carries 1 Gbps to the full 100 metres and 10 Gbps to 55 metres. Buy Cat6a only for 10 Gbps beyond 55 metres or runs near heavy electrical equipment. Skip Cat7, because it is an ISO standard requiring GG45 or TERA connectors and has never been recognised by the TIA, so cables sold as Cat7 with RJ45 ends are not Cat7 to specification. Cat8 reaches 40 Gbps but only to 30 metres and exists for data centre racks.
Key takeaways

  • ["A cable cannot make a link faster than the slowest port at either end, so Cat8 on a gigabit port changes nothing.","Cat6 carries 10 Gbps to 55 metres, which is further than any run inside a house.","Cat7 requires GG45 or TERA connectors, so Cat7 cables sold with RJ45 ends are not Cat7 to specification.","Cat8 is limited to a 30 metre channel by design, because it exists for switch to server runs in a rack.","A shield only works if grounded at one end, and an ungrounded shield can act as an antenna.","Bare copper and 23 AWG matter more than category, especially for Power over Ethernet runs."]
Short answer

Buy Cat6. It carries 1 Gbps to the full 100 metres and 10 Gbps to 55 metres, which covers every run in a house and almost every run in an office. From $8.49.

Buy Cat6a only if you need 10 Gbps over more than 55 metres, or the cable runs alongside heavy electrical equipment where shielding helps.

Do not buy Cat7. Cat7 is an ISO standard that specifies GG45 or TERA connectors, not RJ45. The TIA, which defines Ethernet cabling in North America, has never recognised it. Anything sold as “Cat7 with RJ45 ends” is not Cat7 to specification.

Cat8 is a data centre cable. It reaches 40 Gbps but only to 30 metres, and it exists for short switch to server runs in a rack. In a home it changes nothing.

The rule that settles it: a cable cannot make a link faster than the slowest port at either end. If your router has gigabit ports, Cat5e already saturates them and Cat8 will not add a single megabit.

CategoryBandwidthMax speedAt that speedConnectorBuy it when
Cat5e100 MHz1 Gbps100 mRJ45Never, Cat6 costs the same
Cat6Right for almost everyone250 MHz10 Gbps55 mRJ45Any home or office run
Cat6aFor long 10G runs500 MHz10 Gbps100 mRJ4510G over 55 m, or heavy EMI
Cat7Not a TIA standard600 MHz10 Gbps100 mGG45 or TERASkip it entirely
Cat8Data centre only2000 MHz40 Gbps30 mRJ45Rack to server, 25G or 40G

The rule that makes this simple

A network link runs at the speed of the slowest component in it. That is the cable, the port on the router or switch, and the port on the device.

Almost every home router has gigabit ports. A gigabit port moves 1 Gbps and nothing more, no matter what you plug into it. Cat5e handles 1 Gbps comfortably. So does Cat6, Cat6a and Cat8.

Buying Cat8 for a gigabit port is like fitting a wider fuel line to a car with a fixed throttle. The restriction is elsewhere.

The cable only becomes the limit when both ends are faster than the cable, and that means 2.5 Gbps, 5 Gbps or 10 Gbps ports at each end. That is real, and it is increasingly common with multi gig routers and network storage, but it is not what most people have.

Check your ports before you spend anything. If the router says 10/100/1000, you have gigabit, and every category from Cat5e upward delivers the same result.

Cat6, and why it is the right default

Cat6 runs at 250 MHz and carries 1 Gbps to the full 100 metre limit.

Its 10 Gbps figure comes with the caveat that matters: 10 Gbps only to 55 metres, and as little as 37 metres in bundles where cables interfere with each other, which is called alien crosstalk.

For a house that is irrelevant, because no domestic run approaches 55 metres. From a router to the far corner of a large home is typically 20 to 30 metres including the vertical drops.

So in a home, Cat6 is a 10 Gbps cable in every practical sense, and it costs a dollar or two more than Cat5e.

That is the whole argument. It is cheap, it is thin and flexible enough to pull easily, and it will not be the limiting factor in any house for the life of the building.

Cat6a, and the two reasons to pay more

Cat6a doubles the bandwidth to 500 MHz and carries 10 Gbps to the full 100 metres. It achieves that with tighter twists, thicker insulation and usually a shield.

Two situations justify it.

Long 10 Gbps runs. An office backbone between floors, or a run from a comms room to a distant workstation, where the distance exceeds 55 metres and you genuinely need 10 Gbps.

Electrical interference. Shielded Cat6a resists electromagnetic interference from motors, fluorescent lighting, lift machinery and mains cable running in parallel. In a workshop, a plant room or an industrial setting this is a real benefit.

A warning about shielding that catches people out. A shield only works if it is properly earthed at one end, through shielded connectors and a shielded patch panel or switch port. An ungrounded shield can behave like an antenna and pick up more interference than an unshielded cable would. If you are not terminating with shielded hardware, plain unshielded Cat6 is the better choice.

The practical costs of Cat6a are thickness and stiffness. It is harder to pull through conduit and has a larger bend radius, which matters in a full cable tray or behind a wall plate.

Cat7, and why you should skip it

This is the part most buying guides get wrong.

Cat7 is an ISO/IEC standard, not a TIA one. The TIA defines structured cabling in North America and has never recognised Cat7 as a category. It went from Cat6a to Cat8.

More importantly, the Cat7 specification requires GG45 or TERA connectors. Those are physically different from RJ45. A true Cat7 channel does not terminate in the socket on the back of your router.

So when a listing offers “Cat7 cable with RJ45 connectors”, it is describing a cable that may have Cat7 grade conductors and shielding, terminated in a connector the standard does not permit. The result is not a Cat7 channel. It is, at best, a well built Cat6a cable with a different label.

Those cables usually work fine. The point is that the label buys you nothing. If you want performance above Cat6, buy Cat6a, which is a recognised standard with defined RJ45 performance and testable results.

The same reasoning applies to “Cat7a” and “Cat6e”. Cat6e is not a standard at all; it is a marketing term with no defined specification behind it.

Cat8, and what it is genuinely for

Cat8 is a real, recognised TIA standard, and it is not a home product.

It runs at 2000 MHz and supports 25GBASE-T and 40GBASE-T. The specification limits it to a 30 metre channel with two connectors, which is far shorter than every other category here.

That distance limit is not a flaw. It is the design intent. Cat8 exists for top of rack, middle of row and end of row runs in a data centre, connecting switches to servers a few metres apart at 25 or 40 Gbps.

It is heavily shielded, thick and stiff, which makes it awkward to route in a house and easy to damage by over bending.

For a console or a gaming PC on a gigabit connection, it delivers exactly the same result as a $9 Cat6 cable. Our guides to the best Ethernet cables for PS5 and the best Ethernet cables for Xbox Series X go into the console side of this in detail.

One legitimate niche: Cat8’s heavy shielding and thick conductors handle PoE heat well in dense bundles. That is a data centre concern rather than a home one.

Two specifications that matter more than the category

Copper, not copper clad aluminium

Some cheap cables use copper clad aluminium, abbreviated CCA: an aluminium core with a thin copper coating. It is cheaper and it is worse in three ways.

Aluminium has higher electrical resistance than copper, so signals attenuate faster over distance. It is more brittle, so it breaks when bent or when a connector is crimped. And it is not permitted under TIA specifications, which assume solid copper conductors.

The resistance problem becomes serious with Power over Ethernet. Higher resistance means more heat and more voltage drop, so a camera or access point at the end of a long CCA run may not receive enough power.

Look for “bare copper” or “100 percent copper” in the listing. If it says CCA, or says nothing at all about the conductor, choose another cable.

Wire gauge, especially for PoE

AWG measures conductor thickness, and lower numbers are thicker.

23 AWG is standard for solid in wall cable. Thicker, lower resistance, better for long runs and for PoE.

26 to 28 AWG is used for slim flexible patch cables. Convenient in a crowded rack, and it has meaningfully higher resistance.

For short patch leads that is fine. For a long run powering a device, thickness matters: thin conductors run hotter under PoE load and drop more voltage along the way. If you are wiring cameras or access points, as in our office network guide, use 23 AWG solid copper for the permanent runs.

What to buy

Amazon Basics Cat6 ethernet cable
Right for almost everyone

Amazon Basics Cat6, 50 ft

Cat6, 250 MHzGold plated RJ45Round standard jacket$10.99

Eleven dollars for fifty feet of plain, correctly specified Cat6. For connecting a television, console, desktop or printer, this is the whole answer.

The listing is honest in a way that is unusual in this category: it states 1,000 Mbps rather than claiming a 10 Gbps figure the connection will never reach. A gigabit port moves a gigabit, and that is what you get.

Gold plated RJ45 connectors resist corrosion, which matters on a cable that will sit behind furniture for a decade.

A standard round jacket rather than a flat one. Round cable holds its twisted pair geometry better, and that geometry is what rejects interference. Flat cables flatten the pairs, which is a small compromise that rarely matters at home but is a real one.

Where this is enough: any run in a house, any device on a gigabit port, PoE for a camera or access point over a short distance, and 10 Gbps over anything under 55 metres.

Where it is not: 10 Gbps over more than 55 metres, or a run alongside heavy electrical equipment where you want a shield.

The Jadaol flat Cat6 at $8.49 is cheaper and includes 20 cable clips, which is genuinely useful for running along a skirting board. Note its listing mixes Cat6, Cat7 and Cat8 claims together, which is marketing noise rather than specification, and it uses thin 30 AWG conductors. Fine for a short patch lead, not ideal for a long PoE run.

What works

  • Correctly specified Cat6 at a price Cat5e used to cost
  • States a realistic 1 Gbps rather than an unreachable figure
  • Round jacket preserves pair geometry better than flat cable
  • Gold plated connectors resist corrosion over years

What doesn’t

  • Unshielded, so not for heavy interference environments
  • 10 Gbps only to 55 metres, which no house reaches anyway
  • Patch cable, so not for permanent in wall installation

Buy this for any normal home or office run. It is the correct default.

Check price on Amazon

TuokaJu Cat6a shielded ethernet cable
For 10G and interference

TuokaJu Cat6a Shielded, 50 ft

Cat6a, 550 MHzF/UTP shielded28 AWG bare copper$15.99

Sixteen dollars for shielded Cat6a. Buy it for one of two reasons, not because the number is higher.

F/UTP shielding means a foil screen around all four pairs. It rejects electromagnetic interference from mains cable, motors and lighting, which is why this belongs in a workshop, a plant room or a rack where cables run beside power.

Remember the earthing rule: a shield must be grounded at one end through shielded connectors and a shielded port. Terminated into unshielded hardware, the screen does nothing useful and can make things marginally worse.

Bare copper conductors, stated explicitly, which is the specification that matters most and one many cheap cables quietly omit.

It is 28 AWG and 4.5 mm in diameter, which TuokaJu markets as 40 percent thinner and 50 percent more bendable than standard Cat6a. That is a genuine convenience in a crowded rack or behind a wall plate, where standard Cat6a is stiff and awkward.

The trade is resistance. 28 AWG has higher resistance than 23 AWG, so for long PoE runs powering cameras or access points, a thicker solid core cable is the better choice despite being harder to route.

For permanent in wall installation at 10 Gbps, the Cable Matters 23 AWG bulk Cat6a at $279.99 for 1,000 ft is the correct product, terminated into keystone jacks or a patch panel rather than modular plugs.

What works

  • Foil shielding rejects interference near power cable and motors
  • Bare copper conductors stated explicitly
  • 10 Gbps to the full 100 metres, unlike Cat6
  • Slim and flexible for crowded racks and wall plates

What doesn’t

  • Shield needs grounding through shielded hardware to work
  • 28 AWG has higher resistance, so weaker for long PoE runs
  • Pointless if both ports are gigabit

Buy this for 10G over long distances or runs beside electrical equipment.

Check price on Amazon

Cable Matters certified Cat8 cable
Only for a rack

Cable Matters Certified Cat8, 50 ft

Cat8, 2000 MHz25G and 40GBASE-TS/FTP shielded$25.99

If you genuinely need Cat8, buy a certified one. Most Cat8 sold is not tested against the standard, and this is.

Certification matters more here than in any other category, because Cat8’s 2000 MHz performance depends on manufacturing precision that cheap production does not achieve. An uncertified Cat8 cable is a Cat6a cable with a bigger number printed on it.

S/FTP construction, meaning foil around each pair plus an overall braided screen, which is what 2 GHz operation requires.

Cable Matters is explicit about the purpose: top of row, middle of row and end of row data centre configurations, with optimal distance and power handling for 25 or 40 Gbps within a 30 metre two connection channel.

That sentence is the whole story. Thirty metres. Beyond it, Cat8 is not a 40 Gbps cable, and this listing is at the upper end of its own usable range at 50 feet.

It does have a genuine advantage for dense PoE: Cat8 supports up to 280 cables in a bundle against Cat6a’s 101, and withstands 75 degrees Celsius for 100W transmission. That is a real data centre benefit and irrelevant at home.

Do not buy this for a console, a PC or a home router. On a gigabit or even a 2.5 Gbps port it performs identically to a $9 Cat6 cable, while being thicker, stiffer and harder to route. The cheaper Cat8 options such as the Orbram 50 ft at $9.99 and UGREEN 15 ft at $15.99 exist, and the same reasoning applies: at home they are Cat6 with extra bulk.

What works

  • Genuinely certified rather than labelled Cat8
  • S/FTP construction, which 2 GHz operation actually requires
  • Supports 25GBASE-T and 40GBASE-T in a rack
  • Handles dense PoE bundles better than Cat6a

What doesn’t

  • Thirty metre limit, the shortest of any category here
  • Thick, stiff and awkward to route in a building
  • Identical to Cat6 on any gigabit or 2.5G port

Buy this only for 25G or 40G runs inside a rack, never for a home connection.

Check price on Amazon

Frequently asked questions

Is Cat8 worth it for home use?

No. A cable cannot make a link faster than the slowest port at either end, and almost every home router has gigabit ports that Cat5e already saturates. Cat8 is designed for 25 and 40 Gbps runs inside a data centre rack, limited to 30 metres, and at home it performs identically to Cat6.

Is Cat7 better than Cat6a?

Not in any way that helps you. Cat7 is an ISO standard requiring GG45 or TERA connectors, and the TIA has never recognised it. Cables sold as Cat7 with RJ45 ends are not Cat7 to specification. If you need more than Cat6, buy Cat6a, which is a recognised standard with defined RJ45 performance.

What is the difference between Cat6 and Cat6a?

Cat6 runs at 250 MHz and carries 10 Gbps to 55 metres. Cat6a doubles that to 500 MHz and carries 10 Gbps to the full 100 metres, usually with shielding. Cat6a is thicker and stiffer to install, and the difference only matters over long 10 Gbps runs or in high interference environments.

Do I need shielded Ethernet cable?

Only near sources of electrical interference such as motors, fluorescent lighting or mains cable running in parallel. A shield must be earthed at one end through shielded connectors and ports to work, and an ungrounded shield can act as an antenna and perform worse than unshielded cable.

What is CCA cable and should I avoid it?

Copper clad aluminium: an aluminium core with a thin copper coating. It has higher resistance so signals attenuate faster, it is brittle and breaks when crimped, and it is not permitted under TIA specifications. It is particularly bad for Power over Ethernet. Look for bare copper in the listing.

Does a better Ethernet cable improve gaming ping?

No, provided the current cable is working. Latency comes from physical distance to the game server and routing, not from cable category. Moving from WiFi to any wired cable does reduce jitter substantially, which is a real improvement, but Cat8 does not beat Cat6.

The verdict

Buy Cat6. The Amazon Basics 50 ft at $10.99 covers every run in a house and almost every run in an office, carries 10 Gbps over any distance a building actually contains, and costs about what Cat5e does.

Buy Cat6a, such as the TuokaJu shielded at $15.99, for one of two reasons only: 10 Gbps beyond 55 metres, or a run alongside heavy electrical equipment. Terminate the shield into shielded hardware or leave it unshielded.

Skip Cat7 entirely; it is not an RJ45 standard. Buy Cat8 only for 25 or 40 Gbps runs inside a rack under 30 metres.

And check two things the category number does not tell you: bare copper rather than CCA, and 23 AWG for permanent runs carrying PoE. Those matter far more than moving up a category.

Disclosure: Networking Signal is a participant in the Amazon Services LLC Associates Program. We earn a commission on qualifying purchases made through links on this page, at no additional cost to you. Prices shown were accurate at the time of writing and may change. Distance and bandwidth figures are from the TIA-568 and ISO/IEC 11801 cabling standards; real world performance depends on installation quality, bundling and termination.

GU
Written by

Gurpreet Singh

Hey! I"m Gurpreet Singh and I Have 7+ Years of experience in the Network & Security Domain as well as the Cloud Infra Domain. I am Certified with Cisco ( CCNA ), CheckPoint ( CCSA ), 1xAWS, 3xAZURE, and 3xNSE. So I love to share my tech knowledge with you.

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