CHARACTER 1A8F·U+1A8F

Character Information

Code Point
U+1A8F
HEX
1A8F
Unicode Plane
Basic Multilingual Plane

Character Representations

Click elements to copy
EncodingHexBinary
UTF8
E1 AA 8F
11100001 10101010 10001111
UTF16 (big Endian)
1A 8F
00011010 10001111
UTF16 (little Endian)
8F 1A
10001111 00011010
UTF32 (big Endian)
00 00 1A 8F
00000000 00000000 00011010 10001111
UTF32 (little Endian)
8F 1A 00 00
10001111 00011010 00000000 00000000
HTML Entity
᪏
URI Encoded
%E1%AA%8F

Description

The Unicode character U+1A8F (CHARACTER 1A8F) is a symbol that holds significant importance in the realm of typography and digital text representation. As part of the Unicode Standard, which encompasses a vast array of characters from various scripts and languages worldwide, this particular character serves a unique function. Although it may not be widely recognized or frequently used, its presence in digital text is vital for accurate representation of specific content in certain contexts. The U+1A8F (CHARACTER 1A8F) primarily finds utility in specialized domains such as cryptography, computing, and information technology, where it might serve as a control character or delimiter for data manipulation and communication. Its role could be crucial in binary-encoded systems and may help maintain data integrity during transfer or processing. While its usage might be limited, the significance of this character lies in its ability to ensure precise encoding and decoding, thereby facilitating seamless information exchange within niche fields that demand high levels of accuracy. In summary, U+1A8F (CHARACTER 1A8F) is an essential component of digital text representation, catering to specific use cases in cryptography, computing, and IT sectors. Although its application might be narrowly focused, the character plays a crucial role in maintaining data accuracy and integrity across specialized domains.

How to type the symbol on Windows

Hold Alt and type 6799 on the numpad. Or use Character Map.

  1. Step 1: Determine the UTF-8 encoding bit layout

    The character has the Unicode code point U+1A8F. In UTF-8, it is encoded using 3 bytes because its codepoint is in the range of 0x0800 to 0xffff.

    Therefore we know that the UTF-8 encoding will be done over 16 bits within the final 24 bits and that it will have the format: 1110xxxx 10xxxxxx 10xxxxxx
    Where the x are the payload bits.

    UTF-8 Encoding bit layout by codepoint range
    Codepoint RangeBytesBit patternPayload length
    U+0000 - U+007F10xxxxxxx7 bits
    U+0080 - U+07FF2110xxxxx 10xxxxxx11 bits
    U+0800 - U+FFFF31110xxxx 10xxxxxx 10xxxxxx16 bits
    U+10000 - U+10FFFF411110xxx 10xxxxxx 10xxxxxx 10xxxxxx21 bits
  2. Step 2: Obtain the payload bits:

    Convert the hexadecimal code point U+1A8F to binary: 00011010 10001111. Those are the payload bits.

  3. Step 3: Fill in the bits to match the bit pattern:

    Obtain the final bytes by arranging the paylod bits to match the bit layout:
    11100001 10101010 10001111