The gigabit is a unit of digital information equal to one thousand million bits, or one billion in the short scale. Its symbol is Gbit. It is the unit that names the current standard of wired networking, and the word gigabit has become shorthand for a particular level of capability rather than merely a quantity.
Gigabit Ethernet, standardised in 1998 and 1999, carries one gigabit per second over ordinary twisted-pair copper cabling up to a hundred metres. It replaced the hundred-megabit standard that preceded it and remains the connection built into most computers, switches and routers. That single decision fixed the meaning of gigabit for a generation of engineers.
In octets, a gigabit is 125 megaoctets. A gigabit-per-second link therefore moves about 125 megaoctets each second in ideal conditions, so a two-gigaoctet film transfers in around sixteen seconds. Real transfers are slower because protocol overhead, disc speed and the far end of the connection all impose their own limits, and it is unusual for storage to keep up with the network at these rates.
Domestic fibre services now advertise gigabit speeds routinely, and in many countries the figure has become a marketing threshold rather than a technical one. Very few households can use it: a gigabit connection is enough to stream around two hundred high-definition video services at once. Its real benefit is not peak speed but headroom, since a link that is never near capacity has consistently low latency.
Memory chips are specified in gigabits for the same reason smaller ones are specified in megabits: the count reflects the number of storage cells on the die. An 8-gigabit chip holds one gigaoctet, and eight such chips make an 8-gigaoctet memory module. Flash memory follows the same convention, so a 512-gigabit flash die holds 64 gigaoctets.
Above the gigabit the scale continues in thousands. Ten-gigabit Ethernet is standard in data centres, forty and hundred-gigabit links join buildings and cities, and the backbone of the internet runs at multiples of these. Each step keeps the same relationship to the octet, and each step is quoted in bits per second because that is what the optics and the copper actually carry.
One gigabit equals 1,000,000,000 bits, 1,000 megabits, 125 megaoctets, or about 0.9313 gibibits.
| Unit | Symbol | 1 Gigabit equals | 1 of these equals | Converter |
|---|---|---|---|---|
| Bit | bit | 1000000000 bit | 0.000000001 Gbit | Gigabits to Bits |
| Kilobit | kbit | 1000000 kbit | 0.000001 Gbit | Gigabits to Kilobits |
| Megabit | Mbit | 1000 Mbit | 0.001 Gbit | Gigabits to Megabits |
| Terabit | Tbit | 0.001 Tbit | 1000 Gbit | Gigabits to Terabits |
| Petabit | Pbit | 0.000001 Pbit | 1000000 Gbit | Gigabits to Petabits |
| Exabit | Ebit | 0.000000001 Ebit | 1000000000 Gbit | Gigabits to Exabits |
| Zettabit | Zbit | 1 × 10-12 Zbit | 1000000000000 Gbit | Gigabits to Zettabits |
| Yottabit | Ybit | 1 × 10-15 Ybit | 1 × 1015 Gbit | Gigabits to Yottabits |
| Octet | octet | 125000000 octet | 0.000000008 Gbit | Gigabits to Octets |
| Kilooctet | ko | 125000 ko | 0.000008 Gbit | Gigabits to Kilooctets |
| Megaoctet | Mo | 125 Mo | 0.008 Gbit | Gigabits to Megaoctets |
| Gigaoctet | Go | 0.125 Go | 8 Gbit | Gigabits to Gigaoctets |
| Teraoctet | To | 0.000125 To | 8000 Gbit | Gigabits to Teraoctets |
| Petaoctet | Po | 0.000000125 Po | 8000000 Gbit | Gigabits to Petaoctets |
| Exaoctet | Eo | 1.25 × 10-10 Eo | 8000000000 Gbit | Gigabits to Exaoctets |
| Zettaoctet | Zo | 1.25 × 10-13 Zo | 8000000000000 Gbit | Gigabits to Zettaoctets |
| Yottaoctet | Yo | 1.25 × 10-16 Yo | 8 × 1015 Gbit | Gigabits to Yottaoctets |
| Kibibit | Kibit | 976562.5 Kibit | 0.000001024 Gbit | Gigabits to Kibibits |
| Mebibit | Mibit | 953.674316406 Mibit | 0.001048576 Gbit | Gigabits to Mebibits |
| Gibibit | Gibit | 0.931322574615 Gibit | 1.073741824 Gbit | Gigabits to Gibibits |
| Tebibit | Tibit | 0.000909494701773 Tibit | 1099.51162778 Gbit | Gigabits to Tebibits |
| Pebibit | Pibit | 0.0000008881784197 Pibit | 1125899.90684 Gbit | Gigabits to Pebibits |
| Exbibit | Eibit | 8.67361737988 × 10-10 Eibit | 1152921504.61 Gbit | Gigabits to Exbibits |
| Zebibit | Zibit | 8.47032947254 × 10-13 Zibit | 1180591620717 Gbit | Gigabits to Zebibits |
| Yobibit | Yibit | 8.27180612553 × 10-16 Yibit | 1.20892581961 × 1015 Gbit | Gigabits to Yobibits |
| Kibioctet | Kio | 122070.3125 Kio | 0.000008192 Gbit | Gigabits to Kibioctets |
| Mebioctet | Mio | 119.209289551 Mio | 0.008388608 Gbit | Gigabits to Mebioctets |
| Gibioctet | Gio | 0.116415321827 Gio | 8.589934592 Gbit | Gigabits to Gibioctets |
| Tebioctet | Tio | 0.000113686837722 Tio | 8796.09302221 Gbit | Gigabits to Tebioctets |
| Pebioctet | Pio | 0.000000111022302463 Pio | 9007199.25474 Gbit | Gigabits to Pebioctets |
| Exbioctet | Eio | 1.08420217249 × 10-10 Eio | 9223372036.85 Gbit | Gigabits to Exbioctets |
| Zebioctet | Zio | 1.05879118407 × 10-13 Zio | 9444732965739 Gbit | Gigabits to Zebioctets |
| Yobioctet | Yio | 1.03397576569 × 10-16 Yio | 9.67140655692 × 1015 Gbit | Gigabits to Yobioctets |