Exabit to Kibibyte Conversion Calculator: Free Online Tool
Convert exabits to kibibytes with our free online data storage converter.
Exabit to Kibibyte Calculator
How to Use the Calculator:
- Enter the value you want to convert in the 'From' field (Exabit).
- The converted value in Kibibyte will appear automatically in the 'To' field.
- Use the dropdown menus to select different units within the Data Storage category.
- Click the swap button (⇌) to reverse the conversion direction.
How to Convert Exabit to Kibibyte
Converting Exabit to Kibibyte involves multiplying the value by a specific conversion factor, as shown in the formula below.
Formula:
1 Exabit = 122070312500000 kibibytes
Example Calculation:
Convert 10 exabits: 10 × 122070312500000 = 1.2207e+15 kibibytes
Disclaimer: For Reference Only
These conversion results are provided for informational purposes only. While we strive for accuracy, we make no guarantees regarding the precision of these results, especially for conversions involving extremely large or small numbers which may be subject to the inherent limitations of standard computer floating-point arithmetic.
Not for professional use. Results should be verified before use in any critical application. View our Terms of Service for more information.
What is a Exabit and a Kibibyte?
An exabit (Eb) is a unit of digital information equal to 1018 bits, or 1,000,000,000,000,000,000 bits (one quintillion bits). It uses the standard SI decimal prefix 'exa-'.
A kibibyte (KiB) is a unit of digital information storage equal to 210 bytes, which is exactly 1,024 bytes. It uses the binary prefix 'kibi-' established by the International Electrotechnical Commission (IEC) in 1998. The kibibyte was created to provide an unambiguous measurement for byte multiples based on powers of 2, distinguishing it from the kilobyte (KB), which is based on the decimal prefix 'kilo-' (103 or 1,000 bytes).
Note: The Exabit is part of the imperial/US customary system, primarily used in the US, UK, and Canada for everyday measurements. The Kibibyte belongs to the imperial/US customary system.
History of the Exabit and Kibibyte
The prefix 'exa-' (representing 1018) was adopted as an SI prefix by the General Conference on Weights and Measures (CGPM) in 1975. Its application to the bit (exabit) followed the increasing need to quantify extremely large amounts of digital information and data transfer rates in telecommunications and large-scale networking.
The prefix 'kibi-' (representing 210) was defined by the IEC in 1998 alongside other binary prefixes (mebi-, gibi-, tebi-, etc.). Before this standard, the SI prefix 'kilo-' (k) was ambiguously used to represent both 1000 (as per its SI definition) and 1024 in computing contexts. This led to confusion, especially when comparing storage capacities advertised by manufacturers (often using decimal prefixes) and those reported by operating systems (often using binary interpretations). The introduction of the kibibyte (KiB) aimed to resolve this ambiguity by providing a specific term for 1,024 bytes.
Common Uses for exabits and kibibytes
Explore the typical applications for both Exabit (imperial/US) and Kibibyte (imperial/US) to understand their common contexts.
Common Uses for exabits
Exabits are used to measure very large volumes of data, typically in contexts such as:
- Total global internet traffic over extended periods (e.g., annually).
- Aggregate data transfer across major international network backbones.
- Theoretical capacities of future large-scale data storage systems or networks.
- High-level discussions of data generated by large scientific projects (like particle physics or astronomy).
It is less common in consumer contexts compared to smaller units like gigabits or terabits.
Common Uses for kibibytes
Kibibytes are used in contexts where precision based on powers of 2 is necessary:
- Measuring Random Access Memory (RAM) capacity, which is typically manufactured in powers-of-2 sizes.
- Reporting file sizes and disk space usage by some operating systems (like Microsoft Windows) and file systems.
- Software development and technical documentation where exact binary multiples are crucial for calculations or specifications.
- Network file transfer protocols where block sizes might be defined in binary terms.
- Ensuring accuracy when comparing storage defined using binary prefixes (KiB, MiB, GiB) versus decimal prefixes (KB, MB, GB).
Frequently Asked Questions
Questions About Exabit (Eb)
How many bits are in an exabit?
There are 1018 (one quintillion, or 1 followed by 18 zeros) bits in 1 exabit (Eb).
How many petabits (Pb) are in an exabit (Eb)?
There are 1,000 petabits (Pb) in 1 exabit (Eb), since 'peta-' represents 1015 and 'exa-' represents 1018.
What is the difference between an exabit (Eb) and an exabyte (EB)?
An exabit (Eb) measures data in bits, while an exabyte (EB) measures data in bytes. Since 1 byte typically equals 8 bits, 1 exabyte (EB) is equal to 8 exabits (Eb).
What is the difference between an exabit (Eb) and an exbibit (Eib)?
An exabit (Eb) uses the decimal prefix 'exa-' (1018 bits). An exbibit (Eib) uses the binary prefix 'exbi-' (260 bits). An exbibit is significantly larger than an exabit (approximately 1.15 Eb). Exbibits are used when specifically referring to powers-of-2 multiples in computing contexts.
About Kibibyte (KiB)
How many bytes are in a kibibyte (KiB)?
There are exactly 210 bytes in 1 kibibyte (KiB). This equals 1,024 bytes.
How many bits are in a kibibyte (KiB)?
Assuming the standard of 8 bits per byte, 1 kibibyte (KiB) contains 1,024 bytes * 8 bits/byte = 8,192 bits.
What is the difference between a kibibyte (KiB) and a kilobyte (KB)?
A kibibyte (KiB) represents 210 bytes (1,024 bytes), using the IEC binary prefix 'kibi-'. A kilobyte (KB) represents 103 bytes (1,000 bytes), using the SI decimal prefix 'kilo-'. A kibibyte is 2.4% larger than a kilobyte (1 KiB = 1.024 KB). Historically, KB was often used informally to mean 1024 bytes, which the KiB unit now clarifies.
How many kibibytes (KiB) are in a mebibyte (MiB)?
There are 1,024 kibibytes (KiB) in 1 mebibyte (MiB). This follows the binary prefix system where each subsequent prefix is 1024 times the previous one (1 MiB = 1024 KiB).
Why use kibibyte (KiB) instead of kilobyte (KB)?
Using kibibyte (KiB) provides clarity and removes ambiguity. When you see KiB, you know it specifically means 1,024 bytes. Kilobyte (KB) should mean 1,000 bytes according to SI standards, but its historical misuse for 1,024 bytes created confusion. KiB ensures precision, especially in technical fields like computing and data storage.
Conversion Table: Exabit to Kibibyte
Exabit (Eb) | Kibibyte (KiB) |
---|---|
1 | 122,070,312,500,000 |
5 | 610,351,562,500,000 |
10 | 1,220,703,125,000,000 |
25 | 3,051,757,812,500,000 |
50 | 6,103,515,625,000,000 |
100 | 12,207,031,250,000,000 |
500 | 61,035,156,250,000,000 |
1,000 | 122,070,312,500,000,000 |
All Data Storage Conversions
Other Units from Data Storage
- Bit (b)
- Byte (B)
- Kilobit (kb)
- Kilobyte (KB)
- Megabit (Mb)
- Megabyte (MB)
- Gigabit (Gb)
- Gigabyte (GB)
- Terabit (Tb)
- Terabyte (TB)
- Petabit (Pb)
- Petabyte (PB)
- Exabyte (EB)
- Kibibit (Kib)
- Mebibit (Mib)
- Mebibyte (MiB)
- Gibibit (Gib)
- Gibibyte (GiB)
- Tebibit (Tib)
- Tebibyte (TiB)
- Pebibit (Pib)
- Pebibyte (PiB)
- Exbibit (Eib)
- Exbibyte (EiB)