Exbibyte to Bit Conversion Calculator: Free Online Tool

Convert exbibytes to bits with our free online data storage converter.

Exbibyte to Bit Calculator

Exbibyte
Bit

How to Use the Calculator:

  1. Enter the value you want to convert in the 'From' field (Exbibyte).
  2. The converted value in Bit will appear automatically in the 'To' field.
  3. Use the dropdown menus to select different units within the Data Storage category.
  4. Click the swap button (⇌) to reverse the conversion direction.

How to Convert Exbibyte to Bit

Converting Exbibyte to Bit involves multiplying the value by a specific conversion factor, as shown in the formula below.

Formula:

1 Exbibyte = 9223372036854776000 bits

Example Calculation:

Convert 10 exbibytes: 10 × 9223372036854776000 = 9.2234e+19 bits

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 Exbibyte and a Bit?

An exbibyte (EiB) is a unit of digital information storage equal to 260 bytes, which is exactly 1,152,921,504,606,846,976 bytes. It uses the binary prefix 'exbi-' established by the International Electrotechnical Commission (IEC). One exbibyte is equivalent to 1,024 pebibytes (PiB).

A bit (short for binary digit) is the most basic unit of information in computing and digital communications. A single bit can have only one of two values, typically represented as 0 or 1.

Note: The Exbibyte is part of the imperial/US customary system, primarily used in the US, UK, and Canada for everyday measurements. The Bit belongs to the imperial/US customary system.

History of the Exbibyte and Bit

The prefix 'exbi-' (representing 260) was defined by the IEC in 1998 alongside other binary prefixes (kibi-, mebi-, gibi-, tebi-, pebi-). This standardization aimed to eliminate the confusion caused by using SI prefixes (like kilo-, mega-, giga-, exa-) to denote both powers of 1000 (decimal) and powers of 1024 (binary) in computing. The term 'exbibyte' specifically refers to the 260 multiple of bytes, ensuring clarity in technical contexts where binary measurements are crucial, especially as data scales reached astronomical levels.

The term "bit" was first coined by John W. Tukey in a Bell Labs memo in 1947 and popularized by Claude Shannon in his seminal 1948 paper "A Mathematical Theory of Communication". Shannon used the bit as the fundamental unit of information entropy. Early computing relied directly on manipulating bits through mechanical relays or vacuum tubes.

Common Uses for exbibytes and bits

Explore the typical applications for both Exbibyte (imperial/US) and Bit (imperial/US) to understand their common contexts.

Common Uses for exbibytes

Exbibytes are used to measure extremely large data storage capacities, particularly where precision based on powers of 2 is required. Common applications include:

  • Specifying the capacity of very large-scale storage systems and data centers using binary architecture.
  • Reporting storage in high-performance computing (HPC) environments dealing with massive datasets.
  • Technical documentation comparing binary (EiB) and decimal (EB) storage capacities at the exa-scale.
  • Theoretical discussions about future data storage technologies and large file system limits.
  • Certain operating system contexts or software that strictly adhere to binary reporting for storage.

While less common in consumer marketing than the exabyte (EB), the exbibyte is vital for technical accuracy in specific fields.

Common Uses for bits

  • Representing binary states (on/off, true/false).
  • Quantifying information entropy.
  • Measuring data transfer rates (e.g., kilobits per second - kbps).
  • Fundamental building block for all digital data (bytes, kilobytes, etc.).
  • Processor architecture specifications (e.g., 32-bit, 64-bit processors).

Frequently Asked Questions

Questions About Exbibyte (EiB)

How many bytes are in an exbibyte?

There are exactly 260 bytes in 1 exbibyte (EiB). This equals 1,152,921,504,606,846,976 bytes.

How many pebibytes (PiB) are in an exbibyte (EiB)?

There are 1,024 pebibytes (PiB) in 1 exbibyte (EiB). This follows the binary prefix system where each subsequent prefix is 1024 times the previous one (1 EiB = 1024 PiB).

How many gibibytes (GiB) are in an exbibyte (EiB)?

There are 230 gibibytes (GiB) in 1 exbibyte (EiB). Since 1 EiB = 260 bytes and 1 GiB = 230 bytes, the conversion is 260 / 230 = 230, which equals 1,073,741,824 GiB.

What is the difference between an exbibyte (EiB) and an exabyte (EB)?

An exbibyte (EiB) is based on powers of 2 (260 bytes), using the IEC binary prefix 'exbi-'. An exabyte (EB) is based on powers of 10 (1018 bytes), using the SI decimal prefix 'exa-'. An exbibyte is larger than an exabyte, with 1 EiB being approximately 1.15 EB (about 15% larger). EiB provides precision in binary contexts (like RAM or some OS reporting), while EB is often used in marketing storage devices.

About Bit (b)

How many bits are in a byte?

There are typically 8 bits in 1 byte. This is the most common standard in modern computing.

What does a bit represent?

A bit represents the smallest possible unit of information, corresponding to a choice between two possibilities. In electronics, this is often represented by the presence or absence of an electrical charge or voltage level.

Why is it called a binary digit?

It's called a binary digit because it exists in a binary (base-2) system, meaning it can only have one of two possible values (0 or 1), unlike the decimal system (base-10) which uses digits 0 through 9.

Conversion Table: Exbibyte to Bit

Exbibyte (EiB)Bit (b)
19,223,372,036,854,776,000
546,116,860,184,273,880,000
1092,233,720,368,547,760,000
25230,584,300,921,369,400,000
50461,168,601,842,738,800,000
100922,337,203,685,477,600,000
5004,611,686,018,427,388,000,000
1,0009,223,372,036,854,776,000,000

All Data Storage Conversions

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