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How Many Pixels Per Inch Should I Use in Photoshop?

Last updated on September 24, 2022 @ 12:13 pm

When it comes to pixels per inch (ppi), there is no “one size fits all” answer for Photoshop users. The ppi setting you use will be based on a number of factors, including the type of image you’re working with and the final output destination for your image. Here’s a look at some common scenarios and the ppi setting you should use in each case:

If you’re working with web images: Use a low ppi setting, such as 72 ppi or 96 ppi. Images used on the web don’t need to be as high-resolution as images that will be printed, so a lower ppi can help keep file sizes down.

If you’re working with images for print: Use a high ppi setting, such as 300 ppi or even 600 ppi. Print images need to be high-resolution to avoid looking blurry or pixelated when they’re printed.

If you’re working with images for both print and web: Use two versions of your image, one at a high ppi for print and one at a low ppi for the web. That way, you can have the best of both worlds—a high-quality print image and a smaller file size for the web.

No matter what type of image you’re working with, remember that you can always change the ppi later if you need to. So if you’re not sure what setting to use, start with a higher ppi and then reduce it later if necessary.

PRO TIP: When creating graphics for the web, it’s important to use the correct pixel density, or pixels per inch (ppi). If you use too many ppi, your web page will load slowly. If you use too few ppi, your images will appear pixelated or blurry. The correct ppi for web graphics is 72 ppi.

Conclusion:

There is no definitive answer to the question of how many pixels per inch should be used in Photoshop. The appropriate setting will depend on the type of image being edited and the intended output destination. However, starting with a higher pixel per inch setting and reducing it later if necessary is always an option.

Madison Geldart

Madison Geldart

Cloud infrastructure engineer and tech mess solver.