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Metric Thread Chart – Sizes, Pitch, Dimensions & Tolerance

Metric Thread Chart: Sizes, Pitch, Dimensions & Tolerance | ConcreteCalculate.com
ISO Metric Screw Thread Reference

Metric Thread Chart
Sizes, Pitch, Dimensions & Tolerance

A complete metric thread reference from M1 through M100, covering coarse and fine pitch, major/pitch/minor diameter, tolerance classes, tap drill sizes and identification.

M1 to M100 SizesCoarse & Fine Pitch6H/6g ToleranceTap Drill ReferenceUpdated August 2026
Muhammad Ramzan BabarReviewed by Muhammad Ramzan Babar, PhD Researcher & Calculator Developer · View Profile
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Part of a connected fastener reference set

This Metric Thread Chart is the complete ISO metric reference (sizes, pitch, dimensions, tolerance, identification). It works alongside the Thread Pitch Chart (spacing across both metric and inch systems), the Thread Size Chart (dimension focus), and the Bolt Torque Chart (tightening and preload). Use all four together for a complete fastener specification.

⭐ Metric Thread Chart: Quick Reference

Coarse pitch is the standard, most commonly used pitch for each diameter. Fine pitch is a secondary option that does not exist for every size.

Metric ThreadNominal DiameterCoarse Pitch (mm)Common Fine Pitch (mm)Thread Designation
M33 mm0.5M3 x 0.5
M44 mm0.7M4 x 0.7
M55 mm0.8M5 x 0.8
M66 mm1.00.75M6 x 1.0
M88 mm1.251.0M8 x 1.25
M1010 mm1.51.25, 1.0M10 x 1.5
M1212 mm1.751.5, 1.25M12 x 1.75
M1616 mm2.01.5M16 x 2.0
M2020 mm2.52.0, 1.5M20 x 2.5
M2424 mm3.02.0M24 x 3.0
M3030 mm3.52.0M30 x 3.5
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Standards basis

Nominal diameter and pitch combinations follow ISO 261 general purpose metric screw thread sizing, with ISO 262 selecting the specific diameter/pitch combinations recommended for common commercial fasteners across the 1 mm to 100 mm range.

⭐ What Is a Metric Thread?

A metric thread is a screw thread standardized under the ISO metric system, identified by the M prefix.

M designation

The letter M identifies the ISO metric thread system, distinguishing it from inch-based Unified thread designations.

Nominal diameter

The number following M states the nominal (basic) diameter in millimeters, such as 12 in M12.

Pitch

The axial distance between adjacent thread crests, expressed directly in millimeters per thread.

Internal vs external

External threads form the outside of a bolt or screw; internal threads form the inside of a nut or tapped hole. Both must share identical nominal diameter and pitch to mate correctly.

⭐ Metric Thread Designation Explained

Breaking down a full designation prevents confusing diameter with pitch.

Designation PartExample (M12 x 1.75)Meaning
MMIdentifies the ISO metric thread system
1212Nominal diameter in millimeters
xxSeparator between diameter and pitch
1.751.75Pitch in millimeters (distance between adjacent crests)
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Shortened coarse designations

When a thread uses the standard coarse pitch for its diameter, common practice sometimes shortens the designation to just “M12” without stating the pitch, since coarse pitch is assumed as the default. A fine-pitch thread should always state its pitch explicitly, such as M12 x 1.25, to avoid ambiguity.

⭐ Metric Thread Size Chart: M1 to M100

ISO 262 covers selected metric fastener diameter/pitch combinations across this full range, though most construction and general fastening work uses a much smaller common subset.

Size RangeRepresentative SizesTypical Use Category
Miniature (M1 to M2.5)M1, M1.2, M1.4, M1.6, M2, M2.5Electronics, instruments, small precision hardware
Small (M3 to M5)M3, M4, M5Machine screws, enclosures, light assembly
Common general (M6 to M12)M6, M8, M10, M12General mechanical, automotive, light structural fastening
Structural/heavy (M14 to M30)M14, M16, M18, M20, M22, M24, M27, M30Structural steel, anchors, heavy machinery, threaded rod
Large/custom (M33 to M100)M33, M36, M42, M48, M52, M60, M72, M80, M100Heavy industrial, large structural and special-purpose fasteners

⭐ Metric Coarse Thread Chart

Coarse pitch is the default, most commonly manufactured pitch for each nominal diameter.

Nominal DiameterCoarse Pitch (mm)Thread DesignationCommon Application
M61.0M6 x 1.0General fastening, brackets, light machinery
M81.25M8 x 1.25General mechanical assembly, automotive
M101.5M10 x 1.5General structural hardware, machinery mounts
M121.75M12 x 1.75Structural connections, heavier machinery
M142.0M14 x 2.0Heavier structural and mechanical fastening
M162.0M16 x 2.0Structural steel connections, anchor bolts
M182.5M18 x 2.5Heavy structural and industrial fastening
M202.5M20 x 2.5Structural steel, large anchors
M222.5M22 x 2.5Heavy structural applications
M243.0M24 x 3.0Large structural and industrial fasteners
M273.0M27 x 3.0Heavy industrial and structural applications
M303.5M30 x 3.5Large structural and heavy machinery

⭐ Metric Fine Thread Chart

Fine pitch availability varies by diameter. Do not assume every fine pitch listed elsewhere applies to every size.

Nominal DiameterCommon Fine Pitch (mm)Thread DesignationTypical Application
M60.75M6 x 0.75Precision assembly, thin material
M81.0M8 x 1.0Precision or higher-load assembly
M101.25 or 1.0M10 x 1.25 / M10 x 1.0Automotive, precision machinery
M121.5 or 1.25M12 x 1.5 / M12 x 1.25Automotive, precision structural applications
M141.5M14 x 1.5Specialized mechanical applications
M161.5M16 x 1.5Precision or high-load structural fastening
M181.5M18 x 1.5Specialized industrial applications
M201.5M20 x 1.5Precision structural and industrial fastening
M221.5M22 x 1.5Specialized heavy applications
M242.0M24 x 2.0Precision heavy structural fastening
M272.0M27 x 2.0Specialized heavy industrial use
M302.0M30 x 2.0Precision large structural fastening
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Do not invent combinations

Some diameters have multiple standardized fine pitch options (for example M10 and M12 each have two common fine pitches), while others have only one or none in general commercial use. Always verify the specific fine pitch against ISO 261/262 or the actual part markings rather than assuming a pitch exists.

⭐ Metric Thread Chart by Size

Quick individual reference for the most commonly searched diameters.

M6 Thread Chart

Coarse: M6 x 1.0. Fine: M6 x 0.75. Common in general fastening, brackets and light machinery.

M8 Thread Chart

Coarse: M8 x 1.25. Fine: M8 x 1.0. Common in general mechanical and automotive assembly.

M10 Thread Chart ⭐

Coarse: M10 x 1.5. Fine: M10 x 1.25 or M10 x 1.0. Frequently used in structural hardware and machinery mounts.

M12 Thread Chart ⭐

Coarse: M12 x 1.75. Fine: M12 x 1.5 or M12 x 1.25. Common in structural connections and heavier machinery.

M16 Thread Chart ⭐

Coarse: M16 x 2.0. Fine: M16 x 1.5. Relevant to structural steel connections and larger anchor bolts.

M20 Thread Chart ⭐

Coarse: M20 x 2.5. Fine: M20 x 1.5. Used in larger structural and industrial fastener applications.

M24 Thread Chart ⭐

Coarse: M24 x 3.0. Fine: M24 x 2.0. Used in large structural and heavy industrial fasteners.

Other common sizes

M3 (0.5), M4 (0.7) and M5 (0.8) coarse pitches are common in small machine screws; M14 (2.0), M18 (2.5), M22 (2.5), M27 (3.0) and M30 (3.5) coarse pitches serve heavier structural and industrial needs.

⭐ Metric Thread Diameter Chart: Major, Pitch & Minor

Nominal size, major diameter, pitch diameter and minor diameter are related but distinct measurements.

SizePitch (mm)Major Dia. (mm)Pitch Dia. (mm, approx.)Minor Dia. (mm, approx.)
M30.53.0002.6752.387
M40.74.0003.5453.141
M50.85.0004.4804.019
M61.06.0005.3504.773
M81.258.0007.1886.466
M101.510.0009.0268.160
M121.7512.00010.8639.853
M162.016.00014.70113.546
M202.520.00018.37616.933
M243.024.00022.05120.319

Major diameter

The largest diameter of the thread, measured at the crest for external threads; this equals the nominal size stated in the designation, such as 12.000 mm for M12.

Pitch diameter

An imaginary cylinder diameter where thread width equals groove width; approximated as major diameter minus 0.6495 times pitch. It is the primary reference datum used for screw thread measurement and inspection.

Minor diameter

The smallest diameter of the thread, measured at the root for external threads; approximated as major diameter minus 1.2269 times pitch.

Values calculated using the standard 60 degree ISO thread profile formulas: pitch diameter = major diameter minus 0.649519 x pitch; minor diameter = major diameter minus 1.226869 x pitch. These are theoretical basic dimensions; actual manufactured parts include tolerance allowances per ISO 965.

⭐ Metric Thread Tolerance Classes: 6H and 6g

Tolerance class is separate from pitch. Pitch tells you spacing; tolerance class tells you fit.

ClassThread TypeMeaning
6HInternal (nut)Tolerance grade 6, position H (zero fundamental deviation), the standard general-purpose internal thread class for M1.6 and larger
6gExternal (bolt)Tolerance grade 6, position g (small allowance for plating/production), the standard general-purpose external thread class for M1.6 and larger
6hExternal (bolt)Tolerance grade 6, position h (zero allowance), used for ground threads, gauges and calibration masters
5H / 6hInternal / ExternalApplies specifically to very small threads up to M1.4
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6H/6g is the standard combination

The default general-purpose metric fastener combination is internal thread class 6H paired with external thread class 6g, per ISO 965. This combination provides a medium fit that accommodates thin plating such as zinc coating in the 5 to 12 micrometer range. 6H/6h provides a closer, zero-allowance fit used for ground shafts and thread gauges rather than typical production fasteners.

M12 x 1.75 – 6H

Contains three distinct pieces of information: M12 is the nominal size, 1.75 is the pitch, and 6H is the internal thread tolerance class, describing fit rather than spacing.

Why it matters

Two threads can share identical nominal size and pitch yet differ in tolerance class, which changes how tightly they fit their mating part; critical or precision applications should specify tolerance class explicitly.

Governing Metric Thread Standards

Different ISO standards cover different aspects of the metric thread system.

StandardCovers
ISO 68-1Basic profile for general purpose screw threads (metric, 60 degree thread angle)
ISO 261General purpose metric screw thread nominal diameter and pitch combinations
ISO 262Selected diameter/pitch combinations for common commercial fasteners, drawn from ISO 261, covering 1 mm through 100 mm
ISO 965 seriesTolerances for metric screw threads, including limits of sizes for internal and external threads and tolerance classes such as 6H and 6g

⭐ Metric Thread vs SAE/Unified Inch Thread

These two systems are not interchangeable, even when a diameter or pitch appears numerically close.

FeatureMetricSAE / Unified Inch
Diameter unitsMillimetersInches (fractional or numbered)
Pitch expressed asmm per threadThreads per inch (TPI)
Example designationM12 x 1.751/2-13 UNC
Main governing standardISO 261/262/965ASME B1.1
Common thread seriesCoarse, fineUNC, UNF, UNEF
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Can metric and SAE threads be interchanged?

Generally, no. A 1/2 inch bolt (12.7 mm) is close in diameter to M12 (12 mm), but pitch, thread form and tolerance systems differ between the two standards. Forcing an inch nut onto a metric bolt, or the reverse, can strip threads, create a false sense of secure engagement, or fail under load.

See the Thread Pitch Chart for full UNC/UNF/UNEF pitch tables alongside metric pitch in one comparison view.

⭐ Metric Thread Identification & Measurement

Identifying an unknown metric fastener requires both diameter and pitch measurement.

Measure nominal diameter.

Use a caliper on the major diameter of the external thread, or the tapped hole size for internal threads.

Confirm it is metric.

Metric measurements typically land on round millimeter-based numbers rather than standard inch fractions.

Measure pitch.

Use a metric thread pitch gauge, a set of blades each corresponding to a known pitch, and find the blade that meshes perfectly into the thread without rocking or gapping.

Identify coarse or fine.

Compare the measured pitch against the standard coarse pitch for that diameter; a smaller pitch than coarse indicates a fine thread.

Determine the full designation.

Combine diameter and pitch into the complete designation, such as M10 x 1.5.

Check tolerance class if necessary.

For precision or critical applications, verify or specify the tolerance class, such as 6H or 6g.

Caliper role

A caliper measures diameter accurately but cannot determine pitch on its own.

Pitch gauge role

A pitch gauge identifies spacing directly by matching a blade to the thread, but does not confirm nominal diameter.

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Use both tools together

Combine caliper diameter measurement with pitch gauge spacing measurement to fully and reliably identify an unknown metric fastener.

Step-by-step guide showing how to identify metric thread pitch using a thread pitch gauge, with an M12 bolt and 1.75 mm pitch example

⭐ Metric Thread Tap Drill Chart

Tap drill selection depends on desired thread engagement percentage; the values below use the common practical approximation.

Thread DesignationPitch (mm)Approx. Tap Drill (mm)
M3 x 0.50.52.50
M4 x 0.70.73.30
M5 x 0.80.84.20
M6 x 1.01.05.00
M8 x 1.251.256.75
M10 x 1.51.58.50
M12 x 1.751.7510.25
M16 x 2.02.014.00
M20 x 2.52.517.50
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The practical approximation formula

Tap drill diameter is commonly approximated as major diameter minus pitch, which targets roughly 75 percent thread engagement using the standard 60 degree thread triangle relationship. This is a widely used practical shortcut, not a substitute for a specific tap manufacturer’s recommendation, which can vary by desired thread percentage, hole depth and material.

Metric Thread and Bolt Torque

Size and pitch alone never determine correct tightening torque.

Torque depends on more than size

The same M12 bolt can require very different torque depending on property class (8.8, 10.9, 12.9), friction, lubrication and coating. See the Bolt Torque Chart for the full torque-preload relationship.

Thread size vs property class

Thread size and pitch describe geometry; property class describes material strength. An M12 x 1.75 bolt can be Class 8.8, 10.9 or 12.9, each with a different tensile capacity. See the Bolt Grade Chart.

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Never assume one universal M12 torque value

Do not apply a single torque number to “every M12 bolt.” Confirm property class, coating and lubrication condition before selecting a torque value from any chart.

⭐ Metric Thread for Construction Fasteners

Common metric sizes in construction range from M8 through M24 and beyond, used across structural connections, anchors and threaded rod.

Structural bolts

Metric structural bolt specifications define thread size, pitch, property class and required nut/washer combination together; do not confuse a general metric fastener with a dedicated structural-bolt specification. See the Bolt Grade Chart.

Concrete anchors

Metric anchor bolt threads must match their corresponding nut and any base plate hardware; installation torque is anchor-product specific, not derived from thread size alone. See the Anchor Bolt Size Chart and Bolt Torque Chart.

Threaded rod

Metric threaded rod is commonly stocked in coarse pitch for common construction sizes such as M10, M12, M16 and M20; confirm pitch before ordering matching nuts.

Rebar couplers

Mechanical rebar couplers typically use manufacturer-specific thread systems tied to bar size rather than a generic ISO metric thread; do not assume a standard M-thread applies to a rebar coupler without confirming the manufacturer’s specification.

Metric thread chart showing ISO thread sizes, coarse and fine pitch, thread symbols, tolerance classes, bolt diameter measurements, strength classes, thread forms, and common applications.

⭐ Metric Thread vs NPT Pipe Thread

Metric machine threads are not the same thing as pipe threads such as NPT or BSP.

FeatureMetric M ThreadNPT Pipe Thread
Thread formStraight, parallelTapered (1:16)
SizingNominal diameter equals actual major diameterNominal pipe size does not equal actual outside diameter
Sealing principleMechanical fastening, not primarily sealingMechanical interference from the taper, often with sealant
Designation exampleM12 x 1.751/2 NPT
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Never mix M threads with NPT

A metric machine thread and an NPT pipe thread use fundamentally different standards and geometry. Never attempt to substitute one for the other. See the Pipe Size Chart for nominal pipe sizing and the Thread Pitch Chart for a dedicated NPT pitch reference.

⭐ Metric Thread Visual Guide

Original diagrams explaining thread anatomy, designation, coarse vs fine, and tolerance classes.

CrestRootFlankPitchMajor dia.Pitch dia.
Metric thread anatomy: crest, root, flank, pitch, major diameter and pitch diameter.
M12x1.75SystemDiameter (mm)Pitch (mm)
M12 x 1.75 broken into system, nominal diameter and pitch.
M12 x 1.75 (coarse)M12 x 1.25 (fine)
Same M12 nominal diameter with two different pitch options: coarse and fine.
Internal thread (nut)6HExternal thread (bolt)6g6H internal + 6g external= standard general purpose fit
The standard general-purpose combination pairs internal class 6H with external class 6g.

How to Choose the Correct Metric Thread

Follow this sequence for a reliable identification or selection.

Measure nominal diameter.

Use a caliper on the major diameter.

Confirm it is metric.

Check for round millimeter-based sizing rather than inch fractions.

Measure pitch.

Use a metric thread pitch gauge or measure crest-to-crest distance directly.

Identify coarse or fine.

Compare against the standard coarse pitch for that diameter.

Determine thread designation.

Combine diameter and pitch into the complete designation.

Check the tolerance class where necessary.

Confirm or specify 6H/6g or another applicable class for precision work.

Select the matching nut or tapped hole.

Match diameter, pitch, thread form and class exactly.

Verify against the applicable standard.

Cross-check with ISO 261/262/965 or manufacturer documentation.

⭐ Metric Thread Identification Worked Examples

These examples demonstrate the identification workflow step by step.

1. M8 Bolt

Given: an unknown bolt measuring approximately 8 mm in diameter.Workflow: measure diameter (8 mm), use a metric pitch gauge to find pitch (1.25 mm coarse or 1.0 mm fine), then confirm designation as M8 x 1.25 or M8 x 1.0.

2. M12 Bolt

Given: an unknown bolt measuring approximately 12 mm in diameter.Workflow: measure diameter (12 mm), determine coarse (1.75 mm) versus fine (1.5 or 1.25 mm) by matching a pitch gauge blade, then confirm the final designation.

3. M12 Fine Thread Comparison

Given: two M12 bolts with different pitch.Workflow: M12 x 1.75 is coarse; M12 x 1.25 is a finer alternative. They share nominal diameter but require different matching nuts.

4. Unknown Fastener

Given: a fastener of unclear origin.Workflow: measure diameter with a caliper, then apply a metric pitch gauge; if no metric blade matches cleanly, try an inch pitch gauge to check whether the fastener is actually SAE.

Common Metric Thread Mistakes

Most metric thread problems trace back to one of these errors.

❌ Confusing diameter with pitch

Diameter describes size; pitch describes spacing. Both must be verified separately.

❌ Assuming every M size has every pitch

Fine pitch options vary by diameter; do not invent combinations.

❌ Mixing M threads with NPT

Metric machine threads and NPT pipe threads use entirely different systems.

❌ Mixing metric and SAE threads

Numerically close sizes are still not interchangeable across standards.

❌ Ignoring tolerance class

Class describes fit, separate from pitch, and matters for precision applications.

❌ Using the wrong nut

A nut must match diameter, pitch, thread form and class exactly.

❌ Using the wrong tap

Confirm pitch before selecting a tap; a mismatched tap will not cut a usable thread.

❌ Using a generic tap drill without checking requirements

The major-diameter-minus-pitch approximation is a starting point, not a universal answer.

❌ Assuming all M12 threads are identical

Pitch, tolerance class and property class can all differ between two M12 fasteners.

❌ Confusing property class with thread class

Property class (8.8, 10.9, 12.9) describes material strength; thread class (6H, 6g) describes fit.

❌ Assuming pitch determines bolt strength

Strength depends primarily on material grade/property class, not pitch alone.

❌ Using generic torque without checking grade and lubrication

Torque depends on property class, friction, coating and lubrication, not size alone.

Frequently Asked Questions

A screw thread standardized under the ISO metric system, identified by the M prefix followed by nominal diameter in millimeters.
M identifies the metric system, 12 is the nominal diameter in mm, and 1.75 is the pitch in mm.
1.0 mm coarse; 0.75 mm is a common fine alternative.
1.25 mm coarse; 1.0 mm is a common fine alternative.
1.5 mm coarse; 1.25 or 1.0 mm are common fine alternatives.
1.75 mm coarse; 1.5 or 1.25 mm are common fine alternatives.
Coarse has larger pitch, fewer threads per length and better stripping resistance in soft materials; fine has smaller pitch, more threads per length and finer adjustment.
Permitted dimensional variation and fit defined in ISO 965, using a tolerance grade and position such as 6H or 6g.
A common internal thread tolerance class: grade 6, position H, for nuts and tapped holes.
A common external thread tolerance class: grade 6, position g, for bolts and screws, typically paired with 6H internal threads.
Measure diameter with a caliper, then use a metric pitch gauge to determine pitch, and combine both into a designation.
Generally no; the systems use different pitch, tolerance and standard bases even at similar nominal sizes.
A common approximation is major diameter minus pitch, targeting roughly 75 percent engagement, though exact selection can vary by application.
M threads are straight and sized by actual diameter and pitch; NPT is tapered and its nominal size does not equal actual diameter.
Match nominal diameter, pitch, thread form and tolerance class exactly; diameter alone is not sufficient.

📄 Download Metric Thread Chart PDF

Use the print button to create a print-ready or downloadable reference. Always verify against the current ISO 261/262/965 standards for critical applications.

Master metric thread chartMetric coarse thread chartMetric fine thread chartMetric diameter chartMetric pitch chartThread tolerance chartThread designation guideM-size quick referenceTap drill chartThread identification guideMetric vs SAE comparisonM thread vs NPT comparisonThread profile diagramWorked examplesContractor quick-reference page

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