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High-Quality 12mm x 1.5 threaded standoff - Trusted Supplier

From the first inquiry to final shipment, I stand behind every 12mm x 1.5 threaded standoff I offer. As a dedicated Supplier, I know B2B buyers need High-Quality parts with precise threading and reliable performance. These standoffs provide solid spacing for PCBs, panels, and enclosures, resisting vibration and loosening in tough environments. I keep stock in stainless steel and brass, with finishes that suit corrosion resistance, weight, and appearance. Whether you’re designing OEM equipment, industrial control panels, or test rigs, these parts install quickly and stay secure under stress. I can tailor lengths, plating, or custom bagging to fit your production line. Fast quotes, dependable lead times, and consistent quality are my promise. If you want a dependable partner for threaded standoffs, I’m ready to help you source the right size and finish to meet your spec.

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12mm x 1.5 threaded standoff Market Leader From Concept to Delivery

12mm x 1.5 threaded standoffs are a compact, reliable solution for spacing and mounting in modern electronics assemblies. The M12x1.5 thread aligns with standard fasteners, while the 12 mm length provides precise chassis separation and protection for sensitive components. Available in stainless steel for strength and corrosion resistance, aluminum for light weight, and brass for conductivity, with plating options such as zinc, nickel, or black oxide to suit environment and aesthetics. Tight tolerances and smooth finishes ensure reliable mating with hardware and components. From concept to delivery, the process starts with clear specifications, CAD review, and rapid prototyping when needed, followed by scalable production with rigorous quality control and traceability. This approach supports high-mix, low-to-mid volume needs, flexible lead times, and compliance with RoHS and REACH. Thoughtful packaging and global logistics ensure consistent, on-time delivery to distributors and manufacturers around the world.

{ 12mm x 1.5 threaded standoff Market Leader From Concept to Delivery}

Parameter Specification Value Notes
End Type End connections Male–Male Two external threads to suit assembly with tapped holes
Thread Size Metric M12 x 1.5 Fine-pitch metric thread
Outer Diameter Diameter of the body 12.0 Measured across the body, excluding threads
Inner Bore Hole through the body 6.0 Provides clearance for mounting hardware
Length Overall length 12.0 Nominal length for stack height calculations
Wall Thickness Body wall thickness 3.0 Approximately half of the outer radius
Material Material type 304 Stainless Steel Common corrosion-resistant grade for hardware spacers
Finish Surface treatment Passivated Improves corrosion resistance
Tolerance (Length) Manufacturing tolerance ±0.20 Projected variation across production lots
Weight Mass ≈ 8.0 Estimated for a 12 mm length, stainless steel
Tensile Strength Ultimate tensile strength ≈ 520 MPa range typical for 304 stainless steel
Yield Strength Yield point ≈ 205 MPa for 304 stainless steel
Hardness (HRC) Rockwell hardness ≈ 85 Hardness range for quenched/murnished microstructure
Operating Temperature Ambient range −40 to 250 In Celsius, depends on load conditions
Surface Roughness Ra value 0.8 Measured on machined surface
Manufacturing Process Fabrication methods CNC Turning; Thread Milling High precision machining for tight tolerances
Compliance Standards RoHS Compliant Restriction on hazardous substances
Packaging Delivery format Tray, 100 pcs per carton Protects from handling damage in bulk orders

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12mm x 1.5 threaded standoff Your End-to-End Solution From Concept to Delivery

Data Dimension: Material Compatibility and Lead Time Across Standoff Grades

This visualization presents the lead times associated with selecting different materials for 12mm x 1.5 threaded standoff components. The data dimension under study is "Lead Time by Material for 12mm x 1.5 Threaded Standoffs," a metric that informs design-for-manufacture decisions in the end-to-end product delivery pipeline. The chart shows six material options commonly used in fastener assemblies: Aluminum 6061-T6, Brass, Stainless Steel 304, Stainless Steel 316, Zinc Alloy, and Delrin (POM). Each bar represents the typical production lead time in days required to complete standard milling, threading, finishing, and packaging for a batch size that aligns with a mid-volume assembly scenario. The color intensity and bar height convey the relative processing speed; shorter bars indicate faster lead times. From the data, Delrin offers the shortest lead time, reflecting its ease of molding and minimal finishing requirements. Aluminum 6061-T6 is slightly longer due to needed surface finishing and tolerance controls but remains among the faster options. Brass and Zinc Alloy fall in the middle, reflecting moderate machining complexity and plating or finishing steps. Stainless Steel 304 is slower, while 316 is the slowest among the set, driven by tighter tolerances, corrosion resistance requirements, and more extensive finishing. The chart is designed for quick visual comparison; the axis labels, grid lines, and category spacing keep the focus on comparative differences rather than absolute values. It assumes a standard milling and threading process for 12mm x 1.5 hardware, with conventional tolerances and a mid-volume production environment. The intent is to support decision-making where speed to market, functional requirements, and cost constraints influence material choice for standoffs in an end-to-end supply chain. The limitations include sample variability by supplier, batch size effects, and process improvements that could shorten lead times. Future enhancements could integrate cost, durability, and supply risk to provide a more comprehensive view for design teams and procurement planners.

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