Florence Biennale Brand Color Codes

with HEX, RGB, CMYK, Pantone & RAL

  • Flamingo: #F0582E
  • Froly: #F48989
  • Black: #000000
Florence Biennale color logo

What are the Florence Biennale brand color codes?

The Florence Biennale colors are Flamingo, Froly, Black. The Florence Biennale brand color codes in HEX, RGB, CMYK, and Pantone formats can be found below. The following table provides standardized color codes across multiple systems, including HEX, RGB, and CMYK, along with Pantone (PMS), RAL, and NCS (Natural Color System). HEX and RGB formats are specifically intended for digital applications such as web design and user interfaces, while CMYK values are optimized for professional printing purposes.

Color Names & Codes of the Florence Biennale Brand

Flamingo
Color Codes
Hex
#F0582E
RGB
240, 88, 46
CMYK
0, 63, 81, 6
Froly
Color Codes
Hex
#F48989
RGB
244, 137, 137
CMYK
0, 44, 44, 4
Black
Color Codes
Hex
#000000
RGB
0, 0, 0
CMYK
0, 0, 0, 100

*The color values above are not explicitly specified in the Florence Biennale brand guidelines, but represent the closest approximations based on the official color references available.

The Florence Biennale brand colors are Flamingo, Froly, Black. The Flamingo color code for the brand is HEX: #F0582E, RGB: 240, 88, 46, CMYK: 0, 63, 81, 6.  The Froly color code for the brand is HEX: #F48989, RGB: 244, 137, 137, CMYK: 0, 44, 44, 4.  The Black color code for the brand is HEX: #000000, RGB: 0, 0, 0, CMYK: 0, 0, 0, 100.

Florence Biennale Brand Image with Color Palette

Florence Biennale brand color palette

Download Florence Biennale Color Palette

Download the Florence Biennale brand color palette image, which includes all official HEX codes in a single visual format designed for digital use. These HEX values are recommended for applications such as web design, UI components, and digital presentations. For professional print production or spot color requirements, refer to the Pantone® (PMS) and RAL codes listed above, which are standardized for accurate color reproduction in physical materials.

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