Fractions of Inch to MM Converter: Standard Chart, Drill Bits, and Nearest Fraction Finder
Three modes: enter any fraction of an inch (e.g. 3/8, 1-1/4) for exact millimeters, browse all standard 1/64-inch fractions from 1/64 to 1 inch, and find the nearest US fraction for any metric measurement. Exact: 1 inch = 25.4 mm. PDF and WhatsApp included.
Fractions of Inch to MM Converter
Conversion Result
Formula Used
Why Fractions of an Inch Still Rule American Manufacturing and Hardware
Walk into any US hardware store, machine shop, or lumber yard, and you will find virtually every fastener, drill bit, pipe fitting, and board dimension expressed in fractions of an inch. The United States is the only major industrialized country that has not transitioned to metric for everyday trade sizes, and as a result, American workers routinely convert between fractional inches and millimeters when working with imported equipment, European specifications, or metric-standard tooling. Knowing that 3/8 inch is 9.525 mm, or that a 10mm socket fits where you would otherwise use a 13/32″ might make the difference between a job done and a trip back to the store for the right tool.
The fractional inch system uses denominators that are powers of 2: halves (1/2), quarters (1/4), eighths (1/8), sixteenths (1/16), thirty-seconds (1/32), and sixty-fourths (1/64). Drill bits sold in the United States go from 1/64″ to 1″ in 1/64″ increments, giving 64 standard sizes from 0.397 mm to 25.4 mm. Precision machining sometimes uses 1/128″ or finer, but hardware store and home improvement drill bits stop at 1/64″. The conversion to millimeters is always the same formula: multiply the fraction by exactly 25.4.
How Does This Three-Mode Fractions to MM Converter Work?
Mode 1: Fraction Entry
The Fraction Entry mode accepts any fraction you type in: enter the optional whole inches, then the numerator (top number) and denominator (bottom number) separately. The tool accepts any denominator from 1 to 256, so you can enter standard fractions like 3/8, uncommon ones like 7/32, and precision fractions like 11/64. For mixed numbers like 1-3/8 inches, enter 1 in the whole field and 3/8 as the fraction. The result shows the exact millimeter value (all standard inch fractions with power-of-2 denominators give exact terminating mm decimals), the decimal inch equivalent, and the centimeter value. The bar chart compares your fraction to the eight standard inch milestones from 1/8 through 1 inch.
Mode 2: Standard 1/64 Fraction List
The Standard 1/64 List mode is a browsable dropdown of all 64 fractions from 1/64″ through 1″, shown in their fully reduced forms (so 2/64 appears as 1/32, 4/64 as 1/16, etc.). Each option shows both the fraction and its exact mm value. Selecting a fraction and clicking Convert shows the mm result, decimal inches, and a chart comparing that fraction to the eight key reference points. This mode is especially useful for drill bit selection: if you need to drill a pilot hole for a 6mm bolt, browse the list to find which standard US drill bit size is closest.
Mode 3: MM to Nearest US Fraction Finder
This is the mode that no other inch-to-mm converter on the internet offers. The Nearest Fraction Finder accepts any metric measurement in millimeters and returns the nearest US fraction at four precision levels: 1/8″, 1/16″, 1/32″, and 1/64″. For each approximation, it shows the fraction, its exact mm value, and the error in mm. A green bar means under 0.1mm error, yellow means 0.1-0.5mm, and red means over 0.5mm. This is the tool you need when a German manual specifies 8mm and you need to know which US drill bit or wrench size to use. Enter 8, click Convert, and see that 5/16″ (7.9375mm) is 0.0625mm under and 21/64″ (8.3344mm) is 0.3344mm over, making 5/16″ the closest 1/16-precision choice.
Three Real Examples: Pipe Fitting, Woodworking Dado, and Drill Bit for Metric Bolt
Example 1: Plumbing Pipe Thread Sizing
Fraction to MM: 3/4-Inch NPT Pipe Fitting
A plumber is replacing a 3/4-inch NPT (National Pipe Thread) ball valve. His digital calipers measure the existing fitting’s outer diameter and he wants to confirm it matches the nominal 3/4″ size.
3/4 inch = 3/4 x 25.4 = 19.05 mm exactly
However, NPT pipe sizing is nominal, not actual. A 3/4″ pipe has an outer diameter of about 1.050 inches (26.67 mm), not 0.75 inches. The plumber would use the Fraction Entry mode to convert 1-1/16 inches (the approximate male thread OD) to get 1.0625 x 25.4 = 26.9875 mm. The nominally 3/4″ pipe actually threads into a fitting bored to roughly 26.9 mm at the thread engagement zone. This discrepancy between nominal and actual sizes in US pipe is why the Fraction Entry mode accepts mixed numbers.
Example 2: Routing a Dado for 3/4-Inch Plywood
Standard List Mode: Finding the Right Dado Width in MM
A woodworker is cutting a dado (a channel joint) in a pine shelf to receive a piece of 3/4-inch plywood. He knows actual plywood is never exactly 3/4 inch thick, typically measuring 23/32 inch (18.256 mm) or even 11/16 inch (17.463 mm). He uses the Standard List to compare 23/32″ and 3/4″ in millimeters.
23/32″ = 18.2563 mm
3/4″ = 19.0500 mm
The difference is 0.7938 mm, or about 1/32 inch. He sets his dado stack to 23/32″ to get a snug fit rather than a sloppy one. The Standard List mode shows this comparison immediately without manual calculation.
Example 3: Selecting a Drill Bit for a Metric Bolt
Nearest Fraction Finder: 8.5mm Clearance Hole for M8 Bolt
A mechanic is drilling a clearance hole for an M8 metric bolt (8mm diameter). The standard clearance hole for an M8 bolt is 8.5mm, but his US drill index only has fractional sizes. He uses the Nearest Fraction Finder to find the best available size.
Target: 8.5mm / 25.4 = 0.3346 inches
Nearest 1/64: 21/64″ = 8.3344 mm (0.166 mm under, perfect for a snug clearance hole)
Nearest 1/32: 11/32″ = 8.7313 mm (0.231 mm over, also works as a loose clearance)
The finder shows that 21/64″ at 8.3344mm is 0.166mm under 8.5mm, while 11/32″ at 8.7313mm is 0.231mm over. For a standard through-bolt application, either works. The mechanic chooses 11/32″ to ensure the bolt passes through cleanly without needing to force it.
The Complete Standard Inch Fraction to MM Reference Chart
All standard US inch fractions with power-of-2 denominators produce exact terminating decimal values in millimeters. This is because 25.4 = 127/5 and all denominators are powers of 2, giving fractions with only 2 and 5 as prime factors in the denominator. The result is exact decimal mm values to a finite number of places (at most 7 decimal places for 1/64 fractions: 1/64 x 25.4 = 0.396875 mm exactly).
| Fraction | Decimal Inches | Exact mm | Common Use |
|---|---|---|---|
| 1/64″ | 0.015625″ | 0.3969 mm | Finest standard drill bit |
| 1/32″ | 0.031250″ | 0.7938 mm | Precision machining, fine detail |
| 1/16″ | 0.062500″ | 1.5875 mm | Small pilot holes, #2 and #3 wood screws |
| 3/32″ | 0.093750″ | 2.3813 mm | #6 wood screw pilot, small rivets |
| 1/8″ | 0.125000″ | 3.1750 mm | #8 wood screw, small bolts, finish nails |
| 5/32″ | 0.156250″ | 3.9688 mm | #10 wood screw clearance, 4mm near-match |
| 3/16″ | 0.187500″ | 4.7625 mm | Lag screw pilot, #12 wood screw |
| 7/32″ | 0.218750″ | 5.5563 mm | Near 5.5mm, 1/4-20 bolt pilot |
| 1/4″ | 0.250000″ | 6.3500 mm | 1/4″ bolts and screws, common hardware size |
| 5/16″ | 0.312500″ | 7.9375 mm | 5/16″ bolts, near 8mm, lag screws |
| 3/8″ | 0.375000″ | 9.5250 mm | 3/8″ bolts, near 9.5mm, structural fasteners |
| 7/16″ | 0.437500″ | 11.1125 mm | 7/16″ bolts, near 11mm |
| 1/2″ | 0.500000″ | 12.7000 mm | 1/2″ bolts, EMT conduit, structural hardware |
| 9/16″ | 0.562500″ | 14.2875 mm | 9/16″ bolts, near 14mm |
| 5/8″ | 0.625000″ | 15.8750 mm | 5/8″ anchor bolts, rebar, near 16mm |
| 11/16″ | 0.687500″ | 17.4625 mm | Near 17.5mm |
| 3/4″ | 0.750000″ | 19.0500 mm | 3/4″ bolts, pipe size nominal, near 19mm |
| 13/16″ | 0.812500″ | 20.6375 mm | Near 21mm |
| 7/8″ | 0.875000″ | 22.2250 mm | 7/8″ bolts, near 22mm |
| 15/16″ | 0.937500″ | 23.8125 mm | Near 24mm |
| 1″ | 1.000000″ | 25.4000 mm | 1-inch hardware, exact metric anchor point |
Finding the Nearest US Fraction for Any Metric Measurement
When you receive a specification in millimeters but only have US fractional tooling, the Nearest Fraction Finder mode solves the problem in one step. The math behind it: divide the mm target by 25.4 to get decimal inches, then round to the nearest multiple of 1/64 (or 1/32, 1/16, 1/8) to find the closest standard fraction. The error is the difference between the approximate fraction’s mm value and your target.
Near-Miss Pairs: Common Metric Sizes and Their Closest US Fractions
Some metric-to-inch pairs are so close that they are nearly interchangeable in practice. Knowing these saves constant reference table lookups. The most useful near-miss pairs for US hardware and tooling:
- 5mm is close to 13/64″ (5.1594 mm, off by +0.159 mm) or 3/16″ (4.7625 mm, off by -0.238 mm)
- 6mm is close to 15/64″ (5.9531 mm, off by -0.047 mm) , an excellent near-match
- 8mm is close to 5/16″ (7.9375 mm, off by -0.063 mm) , widely used in automotive
- 10mm is close to 25/64″ (9.9219 mm, off by -0.078 mm) or 13/32″ (10.319 mm, off by +0.319 mm)
- 12mm is close to 15/32″ (11.9063 mm, off by -0.094 mm) , another strong near-match
- 13mm is close to 33/64″ (13.0969 mm, off by +0.097 mm) , or 1/2″ (12.7mm, off by -0.3mm)
- 14mm is close to 35/64″ (13.8906 mm, off by -0.109 mm) or 9/16″ (14.2875mm, off by +0.288mm)
- 17mm is close to 43/64″ (17.0656 mm, off by +0.066 mm) , strong match for 17mm bolts
- 19mm is close to 3/4″ (19.05 mm, off by +0.05 mm) , essentially identical for most uses
- 22mm is close to 7/8″ (22.225 mm, off by +0.225 mm) , close enough for many applications
- 24mm is close to 15/16″ (23.8125 mm, off by -0.1875 mm)
- 25mm is close to 1″ (25.4 mm, off by +0.4 mm) , the most-used approximate pair in hardware
For mechanical engineering applications where tolerances matter, always use the Nearest Fraction Finder to confirm the error is within your required tolerance before substituting a US fraction for a metric dimension. For official US metric and inch conversion standards, see the National Institute of Standards and Technology (NIST) publication on unit conversions.
Why Is 1 Inch Exactly 25.4 Millimeters?
Before 1959, the inch was not precisely defined in metric terms. The United States used a “US survey inch” = 100/3937 meters = 25.400050800… mm, which differed from the British imperial inch. This tiny discrepancy (50 micrometers per inch) created persistent problems in precision manufacturing, calibration, and international trade. Land surveys in the US still officially use the US survey foot (which is slightly longer than the international foot) for certain legacy applications, though the US formally retired the US survey foot in 2023.
In July 1959, the United States, United Kingdom, Canada, Australia, New Zealand, and South Africa jointly signed the International Yard and Pound Agreement, which defined: 1 yard = 0.9144 meters exactly, making 1 foot = 0.3048 meters exactly and 1 inch = 25.4 mm exactly. This agreement made the inch a derived metric unit, not an independent one. Since then, 25.4 is not an approximation but the exact legal definition of the relationship between inches and millimeters. Any time you see “1 inch = 25.4 mm,” you are reading an exact equality, not a rounded figure. The conversion formula for fractions of an inch is therefore exact: a fraction times 25.4, computed with enough precision, gives the exact mm value.
All standard US fractional inch values (denominators that are powers of 2) produce exact terminating decimal mm values. This is because 25.4 = 127/5 and the denominator of any such fraction is 2^n; the combined denominator 5 x 2^n has only 2 and 5 as prime factors, which means the decimal terminates. No rounding is ever needed for standard US fractions. For official US unit definitions, see the National Institute of Standards and Technology.
Expert Tips for Working Between Inches and Millimeters in Trades
Tip 1: Memorize the Eight Milestone Fractions
For daily use in a shop or on a job site, eight fraction-to-mm conversions are worth memorizing because they cover the most common hardware sizes. They are: 1/8″ = 3.175mm, 1/4″ = 6.35mm, 3/8″ = 9.525mm, 1/2″ = 12.7mm, 5/8″ = 15.875mm, 3/4″ = 19.05mm, 7/8″ = 22.225mm, and 1″ = 25.4mm. Every other standard fraction falls predictably between these. If you know 1/4″ = 6.35mm, then 3/16″ (halfway between 1/8 and 1/4) = 4.7625mm, and 5/16″ (halfway between 1/4 and 3/8) = 7.9375mm. Working from these eight landmarks gets you within 3.175mm of any standard fraction mentally.
Tip 2: Use the 8mm-Near-5/16″ Pair in Automotive Work
In US automotive maintenance, 5/16″ (7.9375mm) and 8mm are often interchangeable for non-critical applications like hose clamp screws and cover bolts. The difference is 0.0625mm (about 2.5 thousandths of an inch), which is within the tolerance of most non-structural fasteners. Similarly, 3/4″ (19.05mm) and 19mm, and 1″ (25.4mm) and 25mm differ by only 0.05mm and 0.4mm respectively. In a pinch at a US parts store without metric sockets, these near-miss pairs let you complete the job. For structural bolts, torque-sensitive fasteners, or precision components, always use the correct size and verify with the Nearest Fraction Finder mode before substituting.
Tip 3: Set Your Digital Calipers to Dual Display for Faster Trade Work
Most digital calipers used in US shops have a mm/inch toggle. When switching between metric parts (imported hardware, metric thread fasteners, European specs) and US-standard holes and fixtures, set your calipers to show both units simultaneously, or toggle quickly with the button. The Fraction Entry mode on this converter complements calipers by converting your caliper reading (which will be a decimal like 0.3750 inches) back into the nearest standard fraction (0.375 = 3/8). Caliper readings in decimal inches map to standard fractions: 0.125 = 1/8, 0.250 = 1/4, 0.375 = 3/8, 0.500 = 1/2, 0.625 = 5/8, 0.750 = 3/4, 0.875 = 7/8. If your caliper reads 0.4063, that is close to 13/32 (0.40625), which is standard. Enter 13 over 32 in the Fraction Entry mode to get the exact mm equivalent.
Precision Machining and Tolerance Stacking with Fractional Inches
In US machine shops, fractional inch dimensions are common in drawings for castings, forgings, and general fabrications, while fine tolerance dimensions are typically shown as decimal inches (0.3750 +/-0.0010″) rather than fractions. However, the nominal sizes that define the basic geometry of a part are almost always fractional: a 3/8-inch bore, a 1/2-inch shaft, a 1-1/4-inch pipe thread. Converting these nominal fractions to millimeters is necessary when checking parts on a metric CMM (coordinate measuring machine), specifying tooling from a metric-catalog supplier, or producing engineering drawings for international manufacture.
The exact mm values of fractional inches are essential for tolerance stack-up analysis. A 3/8″ bore at 9.525mm with a tolerance of +0.001″/-0.000″ (a common light press fit specification) spans from 9.525mm to 9.5504mm in metric terms. If the mating shaft is a 9.5mm metric shaft, the clearance is 0.025mm to 0.0504mm. All four decimal places of the fractional inch to mm conversion matter for this analysis, which is why the Fraction Entry mode displays mm to 4 decimal places by default and the PDF export includes the full conversion with denominator-specific formula. For ASME dimensioning standards used in US engineering drawings, the American Society of Mechanical Engineers (ASME) publishes Y14.5 and related standards.
SAE Versus Metric in American Automotive and Manufacturing
American automotive work splits along a clear historical line. Vehicles manufactured in the United States before roughly 1980 use SAE (Society of Automotive Engineers) fasteners and dimensions almost exclusively: 1/4-20 bolts, 3/8-16 thread, 1/2-13 and larger. Import vehicles and virtually all vehicles manufactured after the mid-1980s mix metric fasteners (M6, M8, M10 bolts) into structures and components that also use SAE dimensions for legacy mounting points. A mechanic working on a 2010 Chevrolet truck may use metric sockets for engine cover bolts and SAE sockets for the body mounting hardware on the same job.
The result is that professional US mechanics maintain two complete socket sets (SAE and metric) and know the near-miss pairs cold. When a metric bolt rusts and the head rounds off, using the nearest SAE socket that is slightly smaller lets you apply more force without slipping. A 10mm bolt head responds to a 3/8″ (9.525mm) socket in an emergency. A 12mm bolt head will accept an 11/32″ (8.731mm) deep socket if necessary. The Nearest Fraction Finder on this converter lets you find these substitutions before you are under a truck on a cold morning. For current SAE and metric fastener standards, the Society of Automotive Engineers (SAE International) publishes comprehensive thread and fastener standards.
Woodworking and Cabinetry: Where Fractions Meet Millimeters Every Day
American woodworking and cabinetry sit at a constant crossroads of fractional inches and millimeters. The traditional trade uses fractional dimensions: a 3/4-inch-thick cabinet panel, a 5/16-inch dado groove, a 1-1/2-inch face frame. European cabinetry hardware (hinges, drawer slides, cam-lock fasteners, and shelf pins) is entirely metric: 37mm cup holes for European hinges, 5mm shelf pin holes on 32mm centers, 15mm connecting bolts. A US cabinet maker installing European hardware in American-dimensioned cabinets makes these conversions constantly.
The 32mm system used in European cabinet construction deserves particular attention. Shelf pin holes are drilled on a 32mm grid (32mm = 1.2598 inches, closest US fraction: 1-17/64″ at 1.2656 inches, 0.006 inches over). The European hinge cup is 35mm (1.3780 inches, nearest US fraction: 1-3/8″ = 1.375 inches, only 0.003 inches under). The 5mm shelf pin hole is best drilled with a 13/64″ bit (5.1594mm, 0.159mm over 5mm) or with a 3/16″ bit (4.7625mm, which makes a snug hole). All of these are routine calculations that the Fraction Entry and Nearest Fraction Finder modes on this converter handle in seconds, with PDF export for the job file.
Pipe and Thread Sizes: When Nominal Fractions Bear No Relation to Actual Dimensions
One of the most confusing aspects of the fractional inch system for newcomers is pipe sizing. A nominal 1/2-inch pipe does not have any dimension that is actually 0.5 inches (12.7 mm). A 1/2″ Schedule 40 steel pipe has an outer diameter of 0.840 inches (21.336 mm) and an inner diameter of 0.622 inches (15.799 mm). The nominal size dates to the approximate bore of early gas pipe, which had much thicker walls and an actual bore close to the stated nominal size. As manufacturing improved and wall thicknesses standardized, the nominal sizes were retained for compatibility even though the actual dimensions drifted away from the names.
The practical implication: when a plumber or pipefitter uses the Fraction Entry mode to convert a pipe size, they should use the actual measured dimension, not the nominal pipe size. A 3/4″ NPT fitting has a thread OD of approximately 1.050 inches = 26.67 mm. A 1″ NPT fitting has a thread OD of approximately 1.315 inches = 33.401 mm. These values can be verified against the ASME B1.20.1 standard for pipe threads. For conduit sizing, 1/2-inch EMT conduit has an outer diameter of 0.706 inches = 17.932 mm. These are the numbers to enter into the Fraction Entry mode when converting for installation planning or material ordering from metric-specified suppliers.
The near-match pairs also appear in thread sizes. An M8 bolt (8mm diameter) is close to a 5/16-18 UNC bolt (5/16″ = 7.9375mm body diameter). An M10 bolt is close to a 3/8-16 UNC bolt (3/8″ = 9.525mm). The thread pitch and depth also differ (metric vs Unified National Thread Standard), but the body diameter near-miss means a metric hex key or wrench sometimes gets you through an American bolt head or vice versa. For official pipe dimension standards, the ASME B1.20.1 Pipe Thread Standard is the authoritative reference.
Frequently Asked Questions About Fractions of an Inch to MM
Related Unit Conversion Calculators
Legal Disclaimer and Editorial Transparency
The Fractions of Inch to MM Converter on USCalculators.com is provided for educational and informational purposes. All calculations use the exact definition of 1 inch = 25.4 millimeters as established by the International Yard and Pound Agreement of 1959. All standard US fractional inch values produce exact terminating decimal mm values with this definition. No rounding is applied to the conversion formula; any apparent rounding in displayed values is display formatting only and can be recovered by requesting additional decimal places.
The Nearest Fraction Finder mode identifies mathematically closest standard US fractions; it does not account for mechanical tolerances, material behavior, drill bit wander, or other real-world factors that affect whether a given substitution is safe or appropriate for a specific application. For precision engineering, tooling, or safety-critical applications, always verify substitutions with a licensed mechanical engineer. For official US unit definitions and conversion standards, consult the National Institute of Standards and Technology (NIST). USCalculators.com does not accept payment for featuring any product, brand, or organization in this content.