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M64 × 1.5 Thread Dimensions & Specifications

M64 ×1.5 Thread Overview

When precision matters more than speed, M64 × 1.5 fine threads deliver superior performance. Unlike coarse alternatives, this metric fine thread configuration provides:

  • Enhanced Positioning Accuracy– more engaged threads within the same mounting length
  • Smoother Adjustment Resolution– Finer pitch enables micro-adjustments in optical and mechanical systems
  • Reduced Vibration Loosening– Greater thread engagement increases resistance to self-loosening under dynamic loads
  • Space-Efficient Design– Achieves higher clamping force without requiring additional axial length

Industries leveraging M64 × 1.5: precision optics, medical devices, instrumentation, aerospace components, and calibration equipment.

M64 × 1.5 Thread Dimensions

Schematic of basic thread dimensions for LCA threaded feed‑through EMI filter, illustrates major diameter, pitch, pitch diameter, minor diameter, thread height and 60° thread profile

ParameterSpecification
Thread StandardISO Metric Threads
Major Diameter64.0mm2.5197 in
Pitch1.5 mm0.0591 in
Pitch Diameter63.026 mm2.4813 in
Minor Diameter62.376 mm2.4557 in
Thread Height0.812 mm0.032 in
Addendum0.487 mm0.0192 in
Thread Angle60°

Understanding the M64 × 1.5 Designation

The designation identifies the basic geometry of the thread:

  • M= ISO Metric Thread
  • 64= Nominal major diameter of 64 mm
  • 5= Thread pitch of 1.5 mm

The pitch should be stated when specifying the thread because the same nominal M64 diameter can be manufactured with different pitches. Writing M64 × 1.5 removes ambiguity during design, machining, and purchasing.

Characteristics of M64 × 1.5 Fine Thread

  • Smaller pitch than the standard M64× 6 coarse thread.
  • Finer axial adjustment and greater adjustment resolution.
  • More engaged threads over the same threaded length.
  • Useful where available axial space is limited.
  • Suitable for precision mechanical assemblies and fine adjustment mechanisms.

M64 × 1.5 Thread Tolerance Classes

Thread tolerance classes define the permissible dimensional variation and determine how mating external and internal threads fit together. ISO metric fine threads, a complete tolerance designation combines a numerical tolerance grade with a tolerance-position letter.

Example: M64 × 1.5 – 6g

  • 6 — Tolerance grade.
  • g — Tolerance position for an external thread.

The corresponding internal thread is typically specified as M64 × 1.5 – 6H.

Thread TypeCommon ClassTypical Application
External Thread6gGeneral-purpose screws and bolts
Internal Thread6HGeneral-purpose tapped holes and nuts
External Thread4g6gPrecision mechanical assemblies
External Thread8gLoose fit or coated fasteners
Internal Thread5HHigher positioning accuracy

When to Use M64 × 6 (Coarse) Instead

M64× 1.5 and M64 × 6 have the same nominal major diameter, but their pitches are different. The choice depends on the required assembly characteristics and application.

FeatureM64 × 1.5M64 × 6
Thread TypeFine threadStandard coarse thread
Pitch1.5 mm6 mm
AdjustmentMore preciseFaster
Thread EngagementMore threads per lengthFewer threads per length
AssemblySuitable for precision adjustmentGenerally easier and faster
Typical UsePrecision assemblies and fine adjustmentGeneral-purpose fastening

Typical Applications

M64 × 1.5 fine threads can be used in applications where controlled adjustment, positioning accuracy, or compact threaded engagement is required. Examples include:

Optical instruments

  • Precision measuring devices
  • Fine adjustment mechanisms
  • Precision mechanical assemblies

By comparison, M64×6 coarse threads are commonly selected for general-purpose fastening applications, including industrial equipment, enclosures, and control panels.

Frequently Asked Questions (FAQ)

Q1. Is M64 × 1.5 a standard thread?

Yes. M64 × 1.5 is a standardized ISO metric fine thread defined by ISO 965-1 and ISO 965-2. It is less common than M64 × 6 but fully recognized in international engineering standards and specifications.

Q2.What happens if I specify just “M64” on an engineering drawing?

Drawings specifying only “M64” default to M64 × 6 coarse thread. To ensure the fine-pitch version is used, explicitly write M64 ×1.5. This prevents costly manufacturing and procurement errors.

Q3: Can I substitute M64 × 1.5 with M64 × 6 in an existing assembly?

No. The different pitches produce incompatible thread geometries. Using M64 × 6 fasteners in M64 × 1.5 tapped holes will cross-thread and damage both components. Always match pitch specifications exactly.

Q4.What does 6g mean for an M64 × 1.5 thread?

6g is a commonly used tolerance designation for an external ISO metric thread, combining tolerance grade 6 with tolerance position g.

Q5.What is the typical internal-thread designation?

The corresponding internal thread is typically specified as M64 × 1.5 – 6H.

Q6. Can LCA provide EMI filters with M64 threads?

Yes. LCA supports customized mechanical designs involving metric and inch thread configurations.

Customization options include:

  • Thread size
  • Housing dimensions
  • Electrical parameters
  • Sealing structure
  • Plating options

Engineering Support CTA: Selecting a threaded EMI filter or feedthrough capacitor? Share the thread standard and size, panel thickness, voltage/current, capacitance, and environmental requirements with LCA engineers. View Thread Mount Feedthrough Filters

Related Engineering Resources

Thread Standards

Thread Specifications

Thread Guide

Customization

LCA is customer demand-centric. With professional technical capabilities, rigorous implementation processes, and considerate full-cycle services, it creates exclusive solutions for customers with diverse needs!