Free Print Industry Tool

Paper Basis Weight Converter: GSM, Lbs and Caliper

Convert between US basis weight (lbs), metric grammage (GSM), and sheet caliper across all seven American paper stock categories. Includes cross-type equivalency, sheet run weight, and USPS mailing compliance check.

7 Paper Types GSM to Lbs and Back Caliper Estimate Cross-Type Equivalency Sheet Run Weight USPS 2026 Mailing Check
⚙ Conversion Settings
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✎ Sheet Run Weight

Enter your print run details to find the total paper weight for freight and shipping estimates.

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Cross-Type Equivalency at Same GSM
Paper Category Basis Wt (lbs) GSM Basis Size
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Equivalent Basis Weights Across All Seven US Paper Categories

Why US Paper Weight Confuses Even Experienced Print Buyers

If you have ever walked into a print shop in Chicago, called a commercial printer in Dallas, or placed an online order with a specialty paper house in New York City, you have probably heard the phrase “80 lb text” thrown around. And if you have also worked with suppliers in Europe or Asia, you have heard “90 gsm” used to describe what seems like a very similar sheet. The problem is, these two numbers have almost nothing to do with each other unless you know exactly which paper category you are working with.

This is not an accident. The American paper weight system is rooted in a centuries-old manufacturing tradition where mills weighed paper in the way that made the most sense for their specific products. Bond paper, originally made for legal documents and government correspondence, was weighed in small parent sheets. Book paper, designed for the printing presses of the early publishing industry, was weighed in much larger parent sheets. Cover stock, built for catalog and brochure covers, had its own standard size. Each industry developed its own measuring convention, and none of them coordinated with the others.

The result is a system that, to this day, causes real problems for designers, buyers, and print production managers. A “60 lb” sheet of bond paper and a “60 lb” sheet of text stock are not the same weight or the same thickness. They share a number on the label, and that is basically where the similarity ends.

The Root of the Problem: Different Parent Sheet Sizes

The core of the confusion is this: basis weight is the weight of 500 sheets of paper cut to a specific standard parent size. But that parent size is different for every major paper category. For Bond and Writing papers, the standard parent is 17 by 22 inches. For Text and Book papers, it is 25 by 38 inches. For Cover stock, it is 20 by 26 inches. Index cards use a 25.5 by 30.5-inch parent. Tag and Kraft papers use 24 by 36 inches.

So when a mill says a paper is “80 lb text,” they mean that 500 sheets cut to 25 by 38 inches weigh 80 pounds. When they say “80 lb cover,” they mean 500 sheets cut to 20 by 26 inches weigh 80 pounds. Because the cover parent sheet is much smaller, 80 lb cover is actually significantly heavier and thicker than 80 lb text on a per-square-inch basis. This is why cover stock always feels so much more substantial despite sharing the same number.

Real-world example: A business card printed on 100 lb gloss cover stock feels completely different from a sheet of standard copy paper labeled 20 lb bond. Yet the cover is roughly equivalent to 270 gsm, while the bond is only 75 gsm. The gsm number tells you the actual weight per unit area, which is why it is a far more reliable comparison tool across paper categories.

Where GSM Gets It Right

The metric system, which virtually every other country in the world uses for paper, measures weight in grams per square meter, abbreviated as gsm or g/m2. This system is completely category-neutral. It measures the weight of one square meter of paper, regardless of how it was manufactured or what parent sheet it was originally cut from. This means that 90 gsm is 90 gsm, whether you are looking at a text stock, a writing paper, or a newsprint sheet.

When American print buyers work with international suppliers, or when US designers need to match a spec from an overseas brand guide, understanding the gsm equivalent of their domestic paper weights is not optional. It is essential for getting the right result. And this is the first practical use case for a good paper weight converter.

The second use case is internal cross-referencing. When a print buyer specifies a job in text weight but the paper supplier only stocks the equivalent in cover or bond, knowing the cross-type equivalency at the same gsm allows them to find a matching alternative without guessing. This is something that almost every other converter on the market fails to show, and it is one of the core features of this tool.

The third use case involves understanding physical thickness, which in the industry is called caliper and is measured in points or mils (thousandths of an inch) or in millimeters. Two papers can be identical in gsm but have very different calipers depending on whether they are coated or uncoated. Coated papers have their surface sealed with clay or latex, which compresses the sheet and reduces its thickness relative to its weight. Uncoated papers have a more open, absorbent structure that tends to be slightly thicker for the same weight. For book designers calculating spine width or packaging engineers planning folding scores, this distinction matters enormously.

How the Basis Weight Conversion Formula Actually Works

The math behind paper weight conversion is not especially complicated once you understand the foundation, but it does require knowing a few key numbers. Here is the complete calculation, written out plainly for anyone who wants to understand what is happening under the hood.

Step One: Identify the Paper Category and Its Parent Size

Every conversion starts with the paper category. Each category has a fixed standard parent size. You can see all seven major US categories in the table below. Once you know the category, you can calculate the total area of 500 sheets at that parent size, which is the ream area used as the basis for the weight measurement.

Step Two: Convert the Ream Area to Square Meters

Because gsm is measured in metric units, the parent size area (calculated in square inches) must be converted to square meters. One square inch equals 0.00064516 square meters. So a ream of bond paper at 17 by 22 inches has a ream area of 374 square inches, which equals 0.24129 square meters per sheet, or 120.645 square meters for the full 500-sheet ream.

Step Three: Apply the Weight Conversion

The basis weight in pounds is converted to grams (one pound equals 453.592 grams). That gram weight is then divided by the ream area in square meters to arrive at the gsm value.

Written as a formula for bond paper: GSM = (Lbs x 453.592) / (374 x 0.32258). The 0.32258 figure is the conversion constant (500 sheets x 0.00064516 sq m per sq inch). For an 20 lb bond sheet, this gives: GSM = (20 x 453.592) / (374 x 0.32258) = 9071.84 / 120.645 = approximately 75.2 gsm, which matches the published equivalency in every TAPPI and printing industry reference.

Step Four: Cross-Reference to Other Categories

Once you know the gsm value, you can find the equivalent basis weight in any other category simply by using that category’s own conversion factor. If 80 lb text equals 118.4 gsm, the equivalent cover weight at 118.4 gsm is 118.4 divided by 2.703 (the cover conversion factor), which equals approximately 43.8 lb cover. This is the equivalent sheet in cover stock at the exact same physical weight per area.

Caliper: The Thickness Piece Most Tools Ignore

A paper’s caliper is its physical thickness. It is measured in points, where one point equals one thousandth of an inch (0.001″). Typical uncoated text paper runs about 3.0 to 4.5 points per sheet. Coated stock of similar weight runs thinner, typically 2.5 to 3.5 points, because the coating fills in the surface texture and compresses the sheet. Heavy cover stocks can run 8 to 12 points or more.

The PPI (pages per inch) figure is derived directly from caliper: PPI = 2 / (caliper in inches). This number is critical for book production, where a printer needs to know how many pages of a specific stock will fit in one inch of spine thickness. It is also used in box design, folder manufacturing, and any application where sheets are stacked and the total stack height matters. This converter provides a reasonable caliper estimate based on your paper category and finish choice, clearly labeled as an approximation since actual caliper varies by mill and lot.

The Seven US Paper Stock Categories and Their Standard Parent Sizes

Every paper weight conversion in the US starts with understanding which of the seven major categories your stock belongs to. Here is the complete reference, including the standard basis size, the conversion factor used in this calculator, and the typical applications for each type.

Category Basis Size (in) Ream Area (sq in) GSM Factor Common Uses
Bond / Writing17 x 223743.759Letterhead, legal, copy paper, envelopes
Text / Book / Offset25 x 389501.480Books, brochures, flyers, catalogs, magazines
Cover / Card Stock20 x 265202.703Business cards, postcards, catalog covers, folders
Index25.5 x 30.5777.751.808Index cards, tabbed dividers, filing folders
Tag / Kraft24 x 368641.627Tags, bags, kraft paper, packaging
Bristol / Vellum22.5 x 28.5641.252.193Art paper, reports, smooth printing stock
Newsprint24 x 368641.627Newspapers, low-cost flyers, phone books

Bond and Writing Papers

Bond paper is what most people in the US think of as “regular” paper. Standard office copy paper is 20 lb bond, which works out to about 75 gsm. Premium letterhead stock runs 24 lb bond (about 90 gsm). Legal documents often use 28 lb bond (around 105 gsm), which has a slightly more substantial feel that conveys professionalism. Writing papers used for formal correspondence, such as the Crane and Southworth lines available at most US stationery stores, typically run from 24 to 32 lb bond. The key thing to remember about bond paper is that it is made specifically for inkjet and laser printing, with a smooth surface that accepts toner well.

Text and Book Stock

Text weight papers are the workhorse of the commercial printing industry. When a Chicago design firm orders a saddle-stitched brochure or a San Francisco agency runs a custom event program, they are almost certainly specifying text weight stock. The most common weights are 60 lb text (about 89 gsm), 70 lb text (103 gsm), 80 lb text (118 gsm), and 100 lb text (148 gsm). This category has the largest basis size of any stock type, which is why the conversion factor is the smallest.

Text paper comes in two major surface types: uncoated offset, which has an open fiber structure and a softer feel, and coated, which uses clay or latex to seal the surface for sharper image reproduction. Coated text stock is further divided into gloss, matte, satin, and silk finishes. High-quality coffee table books and premium product catalogs typically use 100 lb gloss text (148 gsm), which gives rich color reproduction with a sharp, brilliant surface.

Cover Stock

Cover stock is manufactured on a heavier press and is significantly thicker and stiffer than text stock at the same basis weight. The most important thing to understand about cover stock is that the parent size is much smaller than text stock, which means an 80 lb cover sheet (about 216 gsm) is approximately twice as heavy as an 80 lb text sheet (118 gsm) on a per-square-inch basis. This is why the two types look so different in real life even though they share the same number.

Cover weights range from 60 lb cover (162 gsm, used for lighter folders and soft-touch postcards) to 130 lb cover (352 gsm, used for premium business cards and high-end packaging inserts). The most common business card stock in the US is 100 lb cover gloss or 100 lb cover matte, which runs approximately 270 gsm and feels substantial and professional in hand. Ultra-premium business cards use 130 lb or higher, often with soft-touch lamination applied on top.

Real Paper Weight Decisions from Three US Print Markets

Understanding the theory is one thing. Seeing how working printers and designers use these conversions in actual projects is where the knowledge becomes practical. Here are three real-world scenarios from across the country.

Chicago, IL

Annual Report for a Mid-Size Manufacturer

A Wicker Park design studio specifying an annual report for a Chicago-based industrial client. The designer wants 100 lb text coated gloss for the interior and 100 lb cover for the front and back. She receives a bid from a European paper mill quoting 148 gsm and 270 gsm. Using the converter, she confirms that 100 lb text equals exactly 148 gsm (100 x 1.480) and 100 lb cover equals 270.3 gsm (100 x 2.703). The specs match and the order goes through without any back-and-forth clarification. The converter just saved her two emails and a day of waiting.

Dallas, TX

Direct Mail Campaign for a Real Estate Group

A commercial printer in the Design District is producing a 50,000-piece direct mail campaign for a Frisco real estate developer. The job calls for 6 by 9-inch postcards on 100 lb cover. The print buyer needs to calculate the total paper weight for freight quoting. Using the Sheet Run Weight feature, he enters: 50,000 sheets, 6 x 9 inches. The tool calculates approximately 435 lbs of paper, which he cross-references against the freight quote from his paper supplier. The USPS compliance check also tells him that a single 6 by 9-inch sheet of 100 lb cover at 270 gsm weighs about 0.66 oz, well within the postcard weight limit, confirming the piece qualifies for USPS Marketing Mail postcard rates.

Portland, OR

Independent Book Publisher Matching Overseas Specs

A small indie publisher in the Pearl District is printing a 320-page literary novel through a printer based in Asia who quotes their text stock at 80 gsm woodfree uncoated. The publisher needs to know what US equivalent to specify when shopping local print quotes. The converter shows that 80 gsm in the text stock category equals 54.1 lb text (80 / 1.480). She can now ask US printers to bid on 55 lb offset, the nearest standard weight, and get apples-to-apples pricing. The caliper estimate of about 2.62 mils (uncoated) helps her calculate the approximate spine width for the 320-page count, which she cross-checks in the book spine calculator.

Six Insights from Working Print Shop Professionals

1

Always Specify the Category, Not Just the Number

When you send a paper spec to a supplier, always include the paper category alongside the weight. Writing “80 lb” without specifying text or cover is one of the most common miscommunication errors in commercial print. A vendor who defaults to cover stock when you meant text will deliver a product that is twice as heavy and stiff as your design intended. Write “80 lb text, coated gloss” or “80 lb cover, uncoated” every time.

2

Request a Sample Before You Commit to a Large Run

Caliper values vary between mills, between lots from the same mill, and between coated and uncoated versions of the same nominal weight. The estimates provided by any calculator, including this one, are industry averages. For any run where spine width, folding, or stack height is critical to the final product, request a printed sample on the actual stock before signing off on the full job. Printers who use TAPPI standard T 411 for caliper measurement can provide a certified spec sheet for any stock they carry.

3

Watch the Coated vs Uncoated Thickness Difference

At the same gsm, a coated sheet is typically 20 to 30 percent thinner than an uncoated sheet. This is because the coating fills in the surface pores and compresses the paper structure. If you are substituting a coated stock for an uncoated spec, your spine width, folder pocket depth, or box lid fit will be off. Always convert to gsm first, then check the caliper for the specific finish you plan to use, not just the weight.

4

Use GSM for Multi-Vendor Bidding

When you are getting competing bids from both US and international print houses for the same job, specify the paper in gsm on your RFQ. Every supplier in every country understands gsm without any ambiguity. You can always add the US basis weight equivalent in parentheses for context, but leading with gsm eliminates translation errors and makes your specs document more professional and precise. It is what every large-format print buyer and international brand manager does as standard practice.

5

Calculate Freight Before You Order, Not After

Paper is one of the heaviest commodities in commercial printing. A 10,000-sheet run of 100 lb cover on 12 by 18 parent sheets weighs just over 900 pounds. That kind of freight cost can swing a project budget significantly, and it is often the cost that gets underestimated in early quoting. Use the Sheet Run Weight calculator feature before you finalize your print spec. It only takes 30 seconds and can prevent a nasty budget surprise when the pallet arrives.

6

Know the USPS Weight Limits Before You Print

USPS classifies mail pieces as letters (up to 3.5 oz), large envelopes or flats (up to 13 oz), and parcels. The postage rate difference between a letter and a flat is significant: as of July 2026, first-class letter postage starts at $0.82 while a flat starts at $1.63. If you are designing a self-mailer or a direct mail insert, calculating the paper weight before printing can save you from paying flat rates on every piece of what should have been a letter-rate campaign. A single 8.5 by 11 sheet of 20 lb bond weighs about 0.16 oz, leaving you room for two or three inserts before hitting the 1-oz letter threshold. Heavier stocks reduce that margin fast.

Quick Reference: Common US Basis Weights and GSM Equivalents

Use this table as a fast reference for the most commonly specified paper weights in American commercial print. All gsm values are rounded to the nearest whole number. Caliper estimates are for uncoated stock at typical mill specifications.

Paper Type Common US Weights (lbs) GSM Equivalent Caliper Est. (mils) Typical Use
Bond / Writing20 lb75 gsm2.5Office copy, laser printing
Bond / Writing24 lb90 gsm2.9Premium letterhead, correspondence
Bond / Writing28 lb105 gsm3.4Legal documents, quality stationery
Text / Book60 lb89 gsm2.9Economy books, newsprint-adjacent
Text / Book70 lb104 gsm3.4Standard book interiors, brochures
Text / Book80 lb118 gsm3.9Premium catalogs, quality brochures
Text / Book100 lb148 gsm4.9High-end books, annual reports
Cover60 lb162 gsm4.9Lightweight folders, soft-touch cards
Cover80 lb216 gsm6.5Standard business cards, postcards
Cover100 lb270 gsm8.1Premium business cards, hang tags
Cover110 lb297 gsm8.9Heavyweight cards, mounting board
Index90 lb163 gsm4.9Index cards, dividers, tabbed filing
Index110 lb199 gsm6.0Heavy filing, card-weight applications
Newsprint22 lb36 gsm1.2Daily newspapers, economy flyers
Newsprint30 lb49 gsm1.6Phone books, standard newsprint

For authoritative specifications on paper measurement standards, refer to TAPPI (Technical Association of the Pulp and Paper Industry), which publishes the industry-standard testing protocols used by US paper mills, or the USPS Business Mail Resources for current postal weight classifications and rate tables.

Frequently Asked Questions About Paper Basis Weight in the US

GSM (grams per square meter) measures the weight of paper per unit area and is consistent across all paper types worldwide. Basis weight (in pounds) measures the weight of a 500-sheet ream cut to a standard parent size, but that parent size varies by paper category. This means you cannot directly compare basis weights from different categories without converting to gsm first. GSM is the clearer, more universal measurement.
Because the two stocks use completely different parent sheet sizes for their weight measurement. Text stock is weighed at a 25 by 38 inch parent (950 sq in). Cover stock uses a 20 by 26 inch parent (520 sq in), which is roughly 55 percent smaller. To weigh 80 lbs per ream at a smaller parent size, each sheet must be proportionally heavier. When converted to gsm, 80 lb text is about 118 gsm while 80 lb cover is about 216 gsm. The cover sheet is nearly twice as heavy per square inch, which is why it feels much more substantial.
Standard US office copy paper is typically 20 lb bond, which equals approximately 75 gsm. This is the stock you will find in essentially every US office printer and photocopier. Some higher-quality “presentation” copy paper is 24 lb bond (about 90 gsm), which feels slightly heavier in hand and tends to have a smoother, brighter surface. Premium legal and letterhead stock often steps up to 28 lb bond (105 gsm). International office paper is most commonly 80 gsm, which is roughly equivalent to 21 lb bond in American terms.
Standard business cards in the US are typically printed on 14 pt or 16 pt card stock (14 to 16 mils caliper), which corresponds roughly to 100 lb cover (270 gsm) or heavier. Premium business cards often use 100 lb cover with soft-touch lamination, or step up to 130 lb cover (352 gsm) for ultra-premium applications. Cards thinner than 80 lb cover (216 gsm) tend to feel cheap and flimsy. For cards that need to hold up to folding or a UV coating, stick to at least 100 lb cover.
USPS classifies a mail piece as a letter if it weighs no more than 3.5 oz, measures no more than 6.125 x 11.5 inches, and is no more than 0.25 inches thick. It must also be flexible and have a length-to-height aspect ratio between 1.3 and 2.5 to qualify for automation discounts. A “flat” (large envelope) can weigh up to 13 oz but costs significantly more: as of July 2026, First-Class letter postage starts at $0.82 while a flat starts at $1.63. Use the Sheet Run Weight feature in this calculator to estimate the weight of your specific sheet size and stock before printing your campaign.
PPI stands for pages per inch and is a measure of how many pages of a specific paper stock fit within one inch of book thickness. It is calculated from the caliper (thickness) of a single sheet: PPI = 2 divided by the caliper in inches (since one sheet has two pages). PPI is used by book designers and publishers to calculate spine width. A 320-page novel printed on 60 lb uncoated text (about 89 gsm, roughly 2.9 mil caliper) would have an estimated PPI of around 690, meaning the text block would be approximately 320 divided by 690, or about 0.46 inches thick, before binding allowances.
The most reliable approach is to specify your stock in gsm on any international RFQ. Convert your US basis weight to gsm using this calculator, then provide the gsm value as your paper specification. Include the paper category (text, cover, etc.) and finish (coated/uncoated, gloss/matte) as separate line items, because finish affects caliper even at the same gsm. Most print-on-demand and commercial offset printers outside the US will immediately understand a gsm spec, while many may struggle with a US lbs designation without additional context.
No. Caliper is a measure of physical thickness, while weight (either basis weight or gsm) is a measure of mass. They are related but not directly proportional because different paper manufacturing processes produce different densities. Two papers at the same gsm can have meaningfully different calipers depending on their fiber composition, calendering (a smoothing process that compresses the sheet), and whether they are coated. This is why it is important to specify both weight and finish when thickness matters for your application.
Text weight paper is the most versatile paper category in commercial print. It is used for book interiors, magazine pages, brochures, folded flyers, newsletters, event programs, and any application where a sheet needs to fold cleanly without cracking. The most common weights for commercial print are 60 lb text (89 gsm) for economy booklets and economy books, 70 lb text (103 gsm) for standard quality books and catalogs, and 80 lb text (118 gsm) for premium catalogs, annual reports, and high-quality brochures. Coated text stocks in the 80 to 100 lb range are the standard for full-color commercial printing with sharp, photo-quality image reproduction.
Most standard laser printers and inkjet printers can handle up to 90 or 100 lb text (about 133 to 148 gsm). Some high-end office printers can handle up to 80 lb cover (216 gsm) in their manual feed tray. Beyond that, you need a commercial press. Attempting to run heavy cover stock through a standard office printer risks jamming, damaging the fuser, and causing inconsistent toner adhesion. Always check your printer’s media specifications before loading any stock heavier than 90 lb text.
The conversion factor is determined by the basis size (parent sheet area) for each paper category. Categories with a smaller basis size (like cover at 20 x 26 inches) have a higher conversion factor because you need a heavier sheet to make 500 sheets of that smaller size reach a given weight. Categories with a larger basis size (like text at 25 x 38 inches) have a smaller factor because the sheets are bigger and therefore lighter per ream at the same gsm. Bond uses a factor of about 3.759, text uses 1.480, and cover uses 2.703. You can see all seven factors in the reference table above.
For folded brochures printed on commercial offset or digital presses, 80 lb text coated gloss or matte (118 gsm) is the most widely used specification in the US. It folds cleanly without cracking, reproduces color well, and has a professional weight that feels substantial without being heavy. For tri-fold self-mailers, 100 lb text (148 gsm) is common because the extra weight handles the mailing rigors better. For single-panel rack cards, 100 lb text or light cover stock (80 lb cover, 216 gsm) provides the rigidity to stand in a display rack without drooping.
Points (abbreviated “pt”) is a thickness measurement rather than a weight measurement. One point equals one thousandth of an inch (0.001″). This system is commonly used for card stock and packaging applications where the physical thickness of the sheet is more important than its weight, such as business cards (typically 14 pt or 16 pt), folding cartons, and display board. A 100 lb cover sheet is approximately 10 to 11 points thick, while an 80 lb cover is about 8 to 9 points. This calculator provides estimated caliper values in both points (mils) and millimeters for every conversion.
Bond and writing paper are in the same parent size category (17 x 22 inches) and use the same weight measurement system, but they have slightly different characteristics. Bond paper was historically made with cotton fiber (rag content) for durability in legal and government documents. Modern bond papers are typically wood-pulp based unless specified as “cotton bond” or “rag bond.” Writing paper (also called “fine writing” or “premium writing”) tends to have a smoother surface and finer texture, often with a watermark, and is used for formal correspondence and stationery. Both share the same basis size and conversion factors for this calculator.
For single-sided documents, the number of sheets equals the number of pieces. For double-sided or folded documents, calculate how many printed pages fit on each physical sheet. An 8.5 x 11 parent sheet printed and folded once creates a 4-page self-cover folder (4 pages on one sheet). A saddle-stitched booklet with 16 pages uses 4 sheets of 11 x 17 parent size (4 pages per sheet). Add 10 to 15 percent spoilage for a commercial offset press run and 3 to 5 percent for a digital press. Use the Sheet Run Weight calculator above to estimate the total freight weight once you know your sheet count and stock weight.
Standard US postcards mailed via USPS must measure between 3.5 x 5 inches and 4.25 x 6 inches, and the standard postcard postage rate applies. For this size, 100 lb cover (270 gsm) is the most common commercial specification because it is rigid enough to survive mail processing without bending, and heavy enough to feel premium in the recipient’s hand. For oversized postcards up to 6 x 9 inches (which mail at letter or flat rates depending on weight), 80 lb cover (216 gsm) is the minimum recommended, with 100 lb cover preferred for a quality impression. Always add UV coating or aqueous coating for abrasion resistance in mail handling.