{"id":626,"date":"2022-11-07T00:53:54","date_gmt":"2022-11-07T00:53:54","guid":{"rendered":"https:\/\/neosumk.com\/?page_id=626"},"modified":"2026-08-30T16:23:56","modified_gmt":"2026-08-30T08:23:56","slug":"titanium-nitrate-coating-for-magnets","status":"publish","type":"page","link":"https:\/\/osenc.com\/de\/titanium-nitrate-coating-for-magnets\/","title":{"rendered":"Magnete mit Titaniumnitratbeschichtung"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-page\" data-elementor-id=\"626\" class=\"elementor elementor-626\" data-elementor-post-type=\"page\">\n\t\t\t\t<div class=\"elementor-element elementor-element-94e29e5 e-con e-atomic-element e-div-block-base e-94e29e5-071ce5b \" data-id=\"94e29e5\" data-element_type=\"e-div-block\" data-e-type=\"e-div-block\" data-interaction-id=\"94e29e5\" data-e-type=\"e-div-block\" data-id=\"94e29e5\">\n    \n<\/div>\n<div class=\"elementor-element elementor-element-8ef6525 e-con e-atomic-element e-div-block-base e-8ef6525-80b5383 \" data-id=\"8ef6525\" data-element_type=\"e-div-block\" data-e-type=\"e-div-block\" data-interaction-id=\"8ef6525\" data-e-type=\"e-div-block\" data-id=\"8ef6525\">\n    \t\t<div class=\"elementor-element elementor-element-a7b8b05 elementor-widget elementor-widget-html\" data-id=\"a7b8b05\" data-element_type=\"widget\" data-e-type=\"widget\" data-widget_type=\"html.default\">\n\t\t\t\t\t\r\n<style>\r\n.osenc-pdp,.osenc-pdp *{box-sizing:border-box}\r\n.osenc-pdp{--osenc-navy:#0b2542;--osenc-blue:#123b63;--osenc-cyan:#1a8a9e;--osenc-text:#1e2936;--osenc-muted:#5e6b78;--osenc-soft:#eef4f7;--osenc-line:#d7e1e8;--osenc-white:#fff;--osenc-warn:#fff8e7;--osenc-radius:14px;--osenc-shadow:0 10px 28px rgba(11,37,66,.08);width:100%;font-family:inherit;font-size:17px;line-height:1.7;color:var(--osenc-text)}\r\n.osenc-pdp .osenc-section{width:100%;padding:74px 0}\r\n.osenc-pdp .osenc-section--soft{background:var(--osenc-soft)}\r\n.osenc-pdp .osenc-wrap{width:100%;max-width:1280px;margin:0 auto;padding:0 32px}\r\n.osenc-pdp h1,.osenc-pdp h2,.osenc-pdp h3{margin-top:0;color:var(--osenc-navy);line-height:1.25}\r\n.osenc-pdp h1{font-size:36px;margin-bottom:18px}\r\n.osenc-pdp h2{font-size:28px;margin-bottom:18px}\r\n.osenc-pdp h3{font-size:21px;margin-bottom:9px}\r\n.osenc-pdp p{margin:0 0 17px}.osenc-pdp ul,.osenc-pdp ol{margin:0 0 20px;padding-left:24px}.osenc-pdp li{margin-bottom:7px}\r\n.osenc-pdp a{color:var(--osenc-blue);text-underline-offset:3px}.osenc-pdp a:focus-visible,.osenc-pdp .osenc-btn:focus-visible{outline:3px solid var(--osenc-cyan);outline-offset:3px}\r\n.osenc-pdp .osenc-hero{padding:70px 0;background:linear-gradient(135deg,#eef4f7 0%,#fff 64%,#edf7f8 100%)}\r\n.osenc-pdp .osenc-hero-grid{display:grid;grid-template-columns:minmax(0,1.04fr) minmax(360px,.96fr);gap:42px;align-items:center}\r\n.osenc-pdp .osenc-kicker{display:inline-block;margin-bottom:12px;color:var(--osenc-cyan);font-size:14px;font-weight:800;letter-spacing:.07em;text-transform:uppercase}\r\n.osenc-pdp .osenc-lead{font-size:19px;max-width:760px}.osenc-pdp .osenc-actions{display:flex;flex-wrap:wrap;gap:12px;margin:25px 0}\r\n.osenc-pdp .osenc-btn{display:inline-flex;align-items:center;justify-content:center;min-height:48px;padding:12px 22px;border-radius:8px;background:var(--osenc-blue);color:#fff!important;font-weight:800;text-decoration:none!important}\r\n.osenc-pdp .osenc-btn--secondary{background:#fff;color:var(--osenc-blue)!important;border:1px solid var(--osenc-blue)}\r\n.osenc-pdp .osenc-proof-row{display:grid;grid-template-columns:repeat(3,minmax(0,1fr));gap:12px;margin-top:22px}.osenc-pdp .osenc-proof{padding:15px;border:1px solid var(--osenc-line);border-radius:12px;background:#fff;box-shadow:var(--osenc-shadow)}.osenc-pdp .osenc-proof strong{display:block;color:var(--osenc-navy);margin-bottom:3px}\r\n.osenc-pdp .osenc-figure{width:100%;margin:0}.osenc-pdp .osenc-figure img{display:block;width:100%;height:auto;aspect-ratio:4\/3;object-fit:cover;border-radius:var(--osenc-radius);border:1px solid var(--osenc-line);background:#e9eef2}.osenc-pdp .osenc-media-note{margin-top:9px;color:var(--osenc-muted);font-size:13px}\r\n.osenc-pdp .osenc-quick{padding:25px 27px;border-left:5px solid var(--osenc-cyan);border-radius:var(--osenc-radius);background:#fff;box-shadow:var(--osenc-shadow)}\r\n.osenc-pdp .osenc-grid-3{display:grid;grid-template-columns:repeat(3,minmax(0,1fr));gap:18px;margin-top:23px}.osenc-pdp .osenc-card{padding:21px;border:1px solid var(--osenc-line);border-radius:var(--osenc-radius);background:#fff}.osenc-pdp .osenc-card h3{font-size:20px}\r\n.osenc-pdp .osenc-callout{margin:25px 0;padding:20px 22px;border-left:4px solid var(--osenc-cyan);border-radius:10px;background:#f4fafb}.osenc-pdp .osenc-warning{margin:25px 0;padding:20px 22px;border:1px solid #e8d39e;border-radius:10px;background:var(--osenc-warn)}\r\n.osenc-pdp .osenc-table-wrap{width:100%;overflow-x:auto;-webkit-overflow-scrolling:touch;margin:25px 0;border:1px solid var(--osenc-line);border-radius:var(--osenc-radius);background:#fff}.osenc-pdp .osenc-table{width:100%;min-width:850px;border-collapse:collapse}.osenc-pdp .osenc-table th,.osenc-pdp .osenc-table td{padding:14px 15px;border-bottom:1px solid var(--osenc-line);text-align:left;vertical-align:top}.osenc-pdp .osenc-table th{background:#e6eef4;color:var(--osenc-navy);font-weight:800}.osenc-pdp .osenc-table tbody tr:nth-child(even) td{background:#fbfcfd}.osenc-pdp .osenc-table tr:last-child td{border-bottom:0}\r\n.osenc-pdp .osenc-tag{display:inline-block;padding:3px 8px;border-radius:999px;background:#e6f3f5;color:#0d6170;font-size:12px;font-weight:800;white-space:nowrap}.osenc-pdp .osenc-tag--conditional{background:#fff0ce;color:#79590a}\r\n.osenc-pdp .osenc-steps{display:grid;grid-template-columns:repeat(4,minmax(0,1fr));gap:16px;margin-top:23px}.osenc-pdp .osenc-step{padding:20px;border:1px solid var(--osenc-line);border-radius:var(--osenc-radius);background:#fff}.osenc-pdp .osenc-step-no{display:inline-flex;width:34px;height:34px;align-items:center;justify-content:center;margin-bottom:11px;border-radius:50%;background:var(--osenc-blue);color:#fff;font-weight:900}\r\n.osenc-pdp .osenc-check-grid{display:grid;grid-template-columns:repeat(2,minmax(0,1fr));gap:9px 28px;margin:21px 0}.osenc-pdp .osenc-check{position:relative;padding-left:26px}.osenc-pdp .osenc-check:before{content:\"\u2713\";position:absolute;left:0;color:var(--osenc-cyan);font-weight:900}\r\n.osenc-pdp .osenc-value-grid{display:grid;grid-template-columns:repeat(3,minmax(0,1fr));gap:18px;margin-top:23px}.osenc-pdp .osenc-value{padding:21px;border:1px solid var(--osenc-line);border-radius:var(--osenc-radius);background:#fff}.osenc-pdp .osenc-value strong{display:block;margin-bottom:5px;color:var(--osenc-navy);font-size:18px}\r\n.osenc-pdp .osenc-inline-links{display:flex;flex-wrap:wrap;gap:10px;margin-top:19px}.osenc-pdp .osenc-inline-links a{display:inline-block;padding:9px 13px;border:1px solid #bfcfd9;border-radius:999px;background:#fff;text-decoration:none}\r\n.osenc-pdp .osenc-faq-item{padding:20px 0;border-bottom:1px solid var(--osenc-line)}.osenc-pdp .osenc-faq-item:last-child{border-bottom:0}.osenc-pdp .osenc-faq-item h3{font-size:20px;margin-bottom:7px}\r\n.osenc-pdp .osenc-ref-list li{margin-bottom:11px}.osenc-pdp .osenc-final-cta{background:var(--osenc-navy);color:#e4edf4;text-align:center}.osenc-pdp .osenc-final-cta h2,.osenc-pdp .osenc-final-cta strong{color:#fff}.osenc-pdp .osenc-final-inner{max-width:900px;margin:0 auto}.osenc-pdp .osenc-final-cta .osenc-btn{background:var(--osenc-cyan)}\r\n.osenc-pdp .osenc-mobile-sticky{display:none}\r\n@media(max-width:1024px){.osenc-pdp .osenc-wrap{padding:0 24px}.osenc-pdp .osenc-hero-grid{grid-template-columns:1fr}.osenc-pdp .osenc-steps{grid-template-columns:repeat(2,minmax(0,1fr))}.osenc-pdp .osenc-value-grid{grid-template-columns:repeat(2,minmax(0,1fr))}}\r\n@media(max-width:767px){.osenc-pdp{font-size:16px;padding-bottom:68px}.osenc-pdp .osenc-wrap{padding:0 16px}.osenc-pdp .osenc-section{padding:50px 0}.osenc-pdp .osenc-hero{padding:48px 0}.osenc-pdp h1{font-size:30px}.osenc-pdp h2{font-size:24px}.osenc-pdp h3{font-size:20px}.osenc-pdp .osenc-lead{font-size:17px}.osenc-pdp .osenc-proof-row,.osenc-pdp .osenc-grid-3,.osenc-pdp .osenc-steps,.osenc-pdp .osenc-check-grid,.osenc-pdp .osenc-value-grid{grid-template-columns:1fr}.osenc-pdp .osenc-actions{flex-direction:column}.osenc-pdp .osenc-btn{width:100%}.osenc-pdp .osenc-quick,.osenc-pdp .osenc-card,.osenc-pdp .osenc-callout,.osenc-pdp .osenc-warning{padding:18px}.osenc-pdp .osenc-mobile-sticky{display:block;position:fixed;left:0;right:0;bottom:0;z-index:9999;padding:10px 16px;background:#fff;border-top:1px solid var(--osenc-line);box-shadow:0 -8px 22px rgba(11,37,66,.12)}.osenc-pdp .osenc-mobile-sticky .osenc-btn{min-height:46px}}\r\n@media(prefers-reduced-motion:reduce){.osenc-pdp *{scroll-behavior:auto!important;transition:none!important;animation:none!important}}\r\n<\/style>\r\n\r\n<div class=\"osenc-pdp\">\r\n  <section class=\"osenc-hero\">\r\n    <div class=\"osenc-wrap\">\r\n      <div class=\"osenc-hero-grid\">\r\n        <div>\r\n          <span class=\"osenc-kicker\">Custom TiN Coated NdFeB Magnets<\/span>\r\n          <h1>Titanium Nitride (TiN) Coated Neodymium Magnets<\/h1>\r\n          <p class=\"osenc-lead\"><strong>OSENC supplies custom titanium nitride coated neodymium magnets engineered as finished magnetic components, not simply gold-colored parts.<\/strong> Our current TiN project framework uses low-temperature PVD, with DC\/RF magnetron sputtering and Ti\/TiN architectures preferred when the application needs a hard, thin functional surface while controlling magnetic and dimensional risk.<\/p>\r\n          <div class=\"osenc-actions\">\r\n            <a class=\"osenc-btn\" href=\"https:\/\/osenc.com\/contact-us\/\">Send Drawing for TiN Magnet Quote<\/a>\r\n            <a class=\"osenc-btn osenc-btn--secondary\" href=\"#capability\">Review TiN Capability<\/a>\r\n          <\/div>\r\n          <div class=\"osenc-proof-row\">\r\n            <div class=\"osenc-proof\"><strong>1\u20135 \u03bcm Design Window<\/strong>2\u20134 \u03bcm is the normal starting range; 3 \u03bcm nominal is a practical first specification for review.<\/div>\r\n            <div class=\"osenc-proof\"><strong>Finished-Part Tolerance<\/strong>\u00b10.05 mm standard and \u00b10.02 mm precision targets, subject to geometry and inspection review.<\/div>\r\n            <div class=\"osenc-proof\"><strong>Low-Temperature Process Control<\/strong>Coating sequence, substrate temperature and post-coating magnetic checks are reviewed together.<\/div>\r\n          <\/div>\r\n        <\/div>\r\n        <figure class=\"osenc-figure\">\r\n          <img fetchpriority=\"high\" src=\"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/titanium-nitride-coated-neodymium-magnets-finished.webp\" alt=\"Titanium nitride coated neodymium magnets with gold TiN surface\" width=\"1200\" height=\"900\" decoding=\"async\" fetchpriority=\"high\">\r\n          <figcaption class=\"osenc-media-note\">Representative TiN-coated NdFeB visual. Final coating stack, color, thickness and acceptance follow the approved drawing and order specification.<\/figcaption>\r\n        <\/figure>\r\n      <\/div>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section osenc-section--soft\">\r\n    <div class=\"osenc-wrap\">\r\n      <div class=\"osenc-quick\">\r\n        <h2>Titanium Nitride Coated Neodymium Magnets: Quick Answer<\/h2>\r\n        <p><strong>TiN is a thin PVD ceramic coating used when surface wear, tight dimensional build, or another controlled surface function justifies more process control than a conventional magnet coating.<\/strong> For OSENC projects, the coating and NdFeB core are specified as one finished part: grade, geometry, magnetization, TiN stack, coating thickness, final dimensions, temperature exposure and inspection method must agree before production.<\/p>\r\n        <p>TiN is not automatically the best coating for every magnet. Nickel remains a practical industrial default, epoxy is useful where a polymer barrier is preferred, and Parylene can be valuable for thin conformal coverage. OSENC uses TiN when the application gives a clear engineering reason to use it.<\/p>\r\n      <\/div>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section\" id=\"capability\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>OSENC TiN Coated Neodymium Magnet Capability<\/h2>\r\n      <div class=\"osenc-table-wrap\">\r\n        <table class=\"osenc-table\">\r\n          <thead><tr><th>Parameter<\/th><th>Current Project Framework<\/th><th>Buying Boundary<\/th><\/tr><\/thead>\r\n          <tbody>\r\n            <tr><td><strong>TiN process<\/strong><\/td><td>Low-temperature PVD; DC\/RF magnetron sputtering preferred. Cathodic Arc PVD can be evaluated.<\/td><td>Cathodic arc and other higher-energy routes require substrate-temperature and magnetic-loss validation.<\/td><\/tr>\r\n            <tr><td><strong>Coating architecture<\/strong><\/td><td>NdFeB \u2192 Ti adhesion layer \u2192 TiN; Ti\/TiN multilayer preferred for higher corrosion-control requirements.<\/td><td>Ni-based barrier + Ti\/TiN is a development option, not a default stack; adhesion and corrosion must be re-qualified.<\/td><\/tr>\r\n            <tr><td><strong>TiN thickness<\/strong><\/td><td>1\u20135 \u03bcm design capability; 2\u20134 \u03bcm typical; 3 \u03bcm nominal starting point.<\/td><td>Thickness is locked only after wear, fit, geometry and process review.<\/td><\/tr>\r\n            <tr><td><strong>Thickness control<\/strong><\/td><td>\u00b10.5 \u03bcm or \u00b115% can be used as a drawing target.<\/td><td><span class=\"osenc-tag osenc-tag--conditional\">Qualification target<\/span> Not a universal default tolerance for every geometry.<\/td><\/tr>\r\n            <tr><td><strong>NdFeB grades<\/strong><\/td><td>N35\u2013N52 standard range; M\/H\/SH\/UH\/EH\/AH temperature series available by project. N55\/N55M by drawing review.<\/td><td>Final grade depends on operating point, geometry, temperature and coating sequence.<\/td><\/tr>\r\n            <tr><td><strong>Finished tolerance<\/strong><\/td><td>\u00b10.05 mm standard; \u00b10.02 mm precision target.<\/td><td>Tighter micro-part tolerances require dimensional-chain and inspection review; do not assume one tolerance applies to every feature.<\/td><\/tr>\r\n            <tr><td><strong>Shapes<\/strong><\/td><td>Disc, block, ring, arc, sphere, trapezoid, countersunk, stepped, slotted and custom geometry.<\/td><td>Deep holes, recesses, masks and shadowed areas require separate PVD coverage review.<\/td><\/tr>\r\n            <tr><td><strong>Magnetization<\/strong><\/td><td>Axial and diametrical are common; block-axis, angle and multipole patterns can be customized.<\/td><td>True radial rings and special pole patterns require grade, geometry and tooling feasibility review.<\/td><\/tr>\r\n          <\/tbody>\r\n        <\/table>\r\n      <\/div>\r\n      <div class=\"osenc-callout\"><strong>For precision projects:<\/strong> specify dimensions in the <em>finished coated state<\/em>. The customer assembles the coated magnet, not the bare NdFeB blank, so coating build belongs in the tolerance chain.<\/div>\r\n      <figure class=\"osenc-figure\">\r\n        <img loading=\"lazy\" src=\"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/tin-coated-neodymium-magnets-gold-surface.webp\" alt=\"Close view of TiN coated NdFeB magnet surface and finished geometry\" width=\"1200\" height=\"900\" loading=\"lazy\" decoding=\"async\">\r\n      <\/figure>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section osenc-section--soft\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>Low-Temperature PVD, Ti\/TiN Structure and Coating Thickness<\/h2>\r\n      <p>Published NdFeB research supports RF magnetron sputtering and Ti\/TiN multilayers as technically credible routes for TiN protection. A 2014 study deposited Ti\/TiN multilayers directly on sintered NdFeB by radio-frequency magnetron sputtering and reported improved corrosion behavior versus bare NdFeB. A 2021 NdFeB study also showed that substrate temperature materially changes both corrosion protection and magnetic loss, which is why the deposition route cannot be separated from the magnetic specification.<\/p>\r\n      <div class=\"osenc-grid-3\">\r\n        <div class=\"osenc-card\"><h3>Why Use a Ti Adhesion Layer?<\/h3><p>The Ti interlayer provides a controlled transition between reactive NdFeB and the hard TiN surface. For demanding corrosion projects, a Ti\/TiN multilayer can be evaluated instead of treating TiN as a single decorative film.<\/p><\/div>\r\n        <div class=\"osenc-card\"><h3>Why 2\u20134 \u03bcm Is a Practical Start<\/h3><p>Published PVD TiN studies on different substrates commonly use micrometre-scale films, while a 2023 neodymium-magnet wear study used a 5 \u03bcm TiN film. OSENC therefore starts thickness selection from the actual wear, fit and coverage requirement rather than assuming \u201cthicker is better.\u201d<\/p><\/div>\r\n        <div class=\"osenc-card\"><h3>Why Thickness Needs a Tolerance<\/h3><p>When TiN build affects a bore, slot, air gap or mating interface, nominal thickness alone is incomplete. The drawing should identify measurement locations and the accepted min\/average\/max or tolerance rule.<\/p><\/div>\r\n      <\/div>\r\n      <div class=\"osenc-warning\"><strong>Do not copy a literature thickness directly into a PO.<\/strong> Published tests use different substrates, deposition systems, geometries and loads. The 1\u20135 \u03bcm OSENC design window is a project-planning range; the released value belongs on the approved drawing.<\/div>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>Applications for TiN Coated NdFeB Magnets<\/h2>\r\n      <div class=\"osenc-grid-3\">\r\n        <div class=\"osenc-card\"><h3>Wear-Sensitive Mechanisms<\/h3><p>Sliding, repeated insertion, fixture contact and handling can justify a hard surface system when coating damage is a real failure mode.<\/p><\/div>\r\n        <div class=\"osenc-card\"><h3>Sensors & Precision Instruments<\/h3><p>TiN is useful to evaluate where small coating build, repeatable fit and a controlled magnetic gap matter at the same time.<\/p><\/div>\r\n        <div class=\"osenc-card\"><h3>Compact Mechanical Assemblies<\/h3><p>Rotors, couplings, compact actuators and precision mechanisms can benefit when final coated dimensions are more important than a generic plating specification.<\/p><\/div>\r\n        <div class=\"osenc-card\"><h3>Vacuum Development Projects<\/h3><p>TiN-coated NdFeB has published use in vacuum-oriented magnetic systems, but vacuum suitability must be qualified for the actual pressure, cleaning, bake-out, particle and outgassing requirements.<\/p><\/div>\r\n        <div class=\"osenc-card\"><h3>Medical & Dental Device Development<\/h3><p>TiN may be considered as one element of a medical or dental component design, but TiN alone does <strong>not<\/strong> make a magnet medical-grade, implantable, biocompatible or regulation-compliant. Customer-defined biocompatibility, sterilization and regulatory validation remain mandatory.<\/p><\/div>\r\n        <div class=\"osenc-card\"><h3>Custom Micro-Magnet Assemblies<\/h3><p>Disc, block and ring geometries can be manufactured at sub-millimetre scale, but TiN coverage, edge condition and measurement capability must be re-evaluated as feature size decreases.<\/p><\/div>\r\n      <\/div>\r\n      <figure class=\"osenc-figure\" style=\"margin-top:28px\">\r\n        <img loading=\"lazy\" src=\"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/ndfeb-bare-vs-tin-coated-magnets.webp\" alt=\"Bare NdFeB magnets compared with titanium nitride coated neodymium magnets\" width=\"1200\" height=\"900\" loading=\"lazy\" decoding=\"async\">\r\n      <\/figure>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section osenc-section--soft\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>TiN vs Nickel, Epoxy and Parylene Magnet Coatings<\/h2>\r\n      <div class=\"osenc-table-wrap\">\r\n        <table class=\"osenc-table\">\r\n          <thead><tr><th>Coating<\/th><th>Best Starting Reason<\/th><th>Critical Review Point<\/th><\/tr><\/thead>\r\n          <tbody>\r\n            <tr><td><strong>TiN<\/strong><\/td><td>Hard, thin functional surface for wear-sensitive, precision or specially qualified environments.<\/td><td>PVD thermal history, adhesion, line-of-sight coverage and coated dimensions.<\/td><\/tr>\r\n            <tr><td><a href=\"https:\/\/osenc.com\/nickel-coating-for-magnets\/\"><strong>Ni-Cu-Ni<\/strong><\/a><\/td><td>General industrial metallic protection and a practical default for many NdFeB designs.<\/td><td>Mechanical damage, edge exposure and the actual corrosion environment.<\/td><\/tr>\r\n            <tr><td><a href=\"https:\/\/osenc.com\/epoxy-coating-for-magnets\/\"><strong>Epoxy<\/strong><\/a><\/td><td>Polymer barrier when moisture protection is the main design requirement.<\/td><td>Abrasion, sharp edges and local damage can compromise the barrier.<\/td><\/tr>\r\n            <tr><td><a href=\"https:\/\/osenc.com\/parylene-coating-for-magnets\/\"><strong>Parylene<\/strong><\/a><\/td><td>Thin conformal polymer coating for sensitive and dimension-conscious assemblies.<\/td><td>Thickness, adhesion and application-specific environmental validation.<\/td><\/tr>\r\n          <\/tbody>\r\n        <\/table>\r\n      <\/div>\r\n      <p><strong>OSENC does not force TiN when it adds no value.<\/strong> If a simpler coating meets the real wear, corrosion, fit and cost requirement, the simpler route is usually the better procurement decision.<\/p>\r\n      <figure class=\"osenc-figure\">\r\n        <img loading=\"lazy\" src=\"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/magnet-coating-comparison-tin-nickel-epoxy-parylene.webp\" alt=\"TiN nickel epoxy and Parylene neodymium magnet coating comparison\" width=\"1200\" height=\"900\" loading=\"lazy\" decoding=\"async\">\r\n      <\/figure>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>Temperature and Magnetic Performance Control<\/h2>\r\n      <p><strong>TiN does not increase the intrinsic magnetic strength or temperature rating of the NdFeB core.<\/strong> The finished result still depends on grade, geometry, intrinsic coercivity, working point, air gap, surrounding steel, magnetization and the coating thermal cycle.<\/p>\r\n      <p>OSENC prefers to complete the TiN process before final magnetization where the product route allows it. For projects that require TiN processing on already magnetized parts, a low substrate-temperature route is preferred. Published NdFeB work found that 100\u00b0C deposition gave a useful balance of corrosion protection and lower magnetic-property loss compared with much higher substrate temperatures.<\/p>\r\n      <div class=\"osenc-callout\"><strong>Engineering control target:<\/strong> for already magnetized parts, use \u2264100\u00b0C as the initial deposition-temperature target and compare pre\/post coating Flux or Gauss. A \u22643% change can be proposed as a qualification target, but it is <strong>not<\/strong> a universal OSENC production guarantee until validated for the actual grade and geometry.<\/div>\r\n      <div class=\"osenc-check-grid\">\r\n        <div class=\"osenc-check\">Define normal and maximum short-term operating temperature.<\/div>\r\n        <div class=\"osenc-check\">Lock magnetization direction on the approved drawing.<\/div>\r\n        <div class=\"osenc-check\">Use Gauss\/flux, total flux, BH curve or pull force as separate tests when required.<\/div>\r\n        <div class=\"osenc-check\">Do not substitute Gauss for pull force or pull force for intrinsic magnetic properties.<\/div>\r\n      <\/div>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section osenc-section--soft\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>TiN Coating Failure Modes and OSENC Control Points<\/h2>\r\n      <div class=\"osenc-table-wrap\">\r\n        <table class=\"osenc-table\">\r\n          <thead><tr><th>Failure Mode<\/th><th>Why It Matters<\/th><th>Control Direction<\/th><\/tr><\/thead>\r\n          <tbody>\r\n            <tr><td>Pinholes \/ exposed substrate<\/td><td>Local defects can defeat corrosion protection even when most of the surface looks good.<\/td><td>Define critical faces, visual limits and thickness\/coverage inspection.<\/td><\/tr>\r\n            <tr><td>Edge defects or chipping<\/td><td>NdFeB is brittle and edges are vulnerable during machining, coating, handling and assembly.<\/td><td>Control chamfer\/edge condition, packaging and coated-finish inspection.<\/td><\/tr>\r\n            <tr><td>Poor adhesion \/ peeling<\/td><td>A hard coating is useless if it separates from the substrate or interlayer.<\/td><td>Use qualified pretreatment and Ti adhesion architecture; add scratch testing when adhesion is critical.<\/td><\/tr>\r\n            <tr><td>Shadowed PVD areas<\/td><td>Deep holes, slots and recesses may not receive the same line-of-sight deposition as open faces.<\/td><td>Review geometry, masking and functional surface requirements before quoting.<\/td><\/tr>\r\n            <tr><td>Dimension interference<\/td><td>Micrometre-scale coating build can still change fit in precision bores, slots or magnetic gaps.<\/td><td>Dimension the finished coated part and identify inspection locations.<\/td><\/tr>\r\n            <tr><td>Thermal magnetic loss<\/td><td>Unsuitable deposition temperature can reduce magnetic performance even when the coating looks acceptable.<\/td><td>Use low-temperature processing and pre\/post magnetic verification when required.<\/td><\/tr>\r\n          <\/tbody>\r\n        <\/table>\r\n      <\/div>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section\" id=\"qc\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>Quality Control for TiN Coated Neodymium Magnets<\/h2>\r\n      <p>A gold surface is not an inspection result. OSENC builds the quality plan around measurable finished-part requirements and separates routine production checks from development or first-article qualification.<\/p>\r\n      <div class=\"osenc-table-wrap\">\r\n        <table class=\"osenc-table\">\r\n          <thead><tr><th>Item<\/th><th>Recommended Method<\/th><th>Acceptance Rule<\/th><\/tr><\/thead>\r\n          <tbody>\r\n            <tr><td><strong>TiN thickness<\/strong><\/td><td>Production: XRF calibrated to the TiN\/substrate system. FAI or validation: cross-section SEM or optical profilometry.<\/td><td>Report measurement locations plus Min \/ Average \/ Max against the drawing.<\/td><\/tr>\r\n            <tr><td><strong>Adhesion<\/strong><\/td><td>Progressive-load scratch test, recording Lc1\/Lc2 when adhesion is functionally critical.<\/td><td><span class=\"osenc-tag osenc-tag--conditional\">Suggested start<\/span> Lc2 \u226515 N may be proposed for development; final limit requires sample validation.<\/td><\/tr>\r\n            <tr><td><strong>Corrosion<\/strong><\/td><td>ASTM B117 salt fog when salt-spray performance is relevant.<\/td><td>24 \/ 48 \/ 96 h checkpoints can be defined. No universal salt-spray-hour claim applies without a project requirement.<\/td><\/tr>\r\n            <tr><td><strong>Wear<\/strong><\/td><td>Project-specific sliding test. One development protocol can use 6 mm Al\u2082O\u2083 ball \/ 5 N \/ 10,000 cycles \/ dry room-temperature sliding.<\/td><td><span class=\"osenc-tag osenc-tag--conditional\">Qualification protocol<\/span> Record friction, wear track and coating breakthrough; not a default production test.<\/td><\/tr>\r\n            <tr><td><strong>Magnetics<\/strong><\/td><td>Gaussmeter for flux density; Helmholtz coil for total flux; BH tracer\/permeameter for material curve; pull force on a separate force setup.<\/td><td>Method, fixture, gap, orientation and pass\/fail limit must be defined.<\/td><\/tr>\r\n            <tr><td><strong>Appearance<\/strong><\/td><td>Visual inspection under agreed lighting\/magnification.<\/td><td>No exposed substrate, peeling, blistering or through-coating scratches on controlled faces. Numerical pinhole, edge-chip or \u0394E limits are drawing options, not universal standards.<\/td><\/tr>\r\n          <\/tbody>\r\n        <\/table>\r\n      <\/div>\r\n      <div class=\"osenc-warning\"><strong>About suggested limits:<\/strong> values such as Lc2 \u226515 N, 96 h salt fog, \u22643% magnetic change, pinhole size or \u0394E are useful engineering starting points only. They become order requirements only when validated and written into the approved drawing, FAI plan or PO.<\/div>\r\n      <figure class=\"osenc-figure\" style=\"margin-bottom:26px\">\r\n        <img loading=\"lazy\" src=\"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/precision-inspection-tools-factory.webp\" alt=\"OSENC precision dimensional and magnetic inspection tools for custom neodymium magnets\" width=\"1200\" height=\"900\" loading=\"lazy\" decoding=\"async\">\r\n      <\/figure>\r\n      <figure class=\"osenc-figure\">\r\n        <img loading=\"lazy\" src=\"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/tin-coating-quality-inspection-neodymium-magnets.webp\" alt=\"Quality inspection setup for titanium nitride coated neodymium magnets\" width=\"1200\" height=\"900\" loading=\"lazy\" decoding=\"async\">\r\n      <\/figure>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section osenc-section--soft\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>From Drawing Review to First Article<\/h2>\r\n      <div class=\"osenc-steps\">\r\n        <div class=\"osenc-step\"><span class=\"osenc-step-no\">1<\/span><h3>Review the Finished Part<\/h3><p>Confirm grade, finished dimensions, magnetization, coating faces, masked areas, temperature, assembly fit and the reason TiN is specified.<\/p><\/div>\r\n        <div class=\"osenc-step\"><span class=\"osenc-step-no\">2<\/span><h3>Lock the TiN Route<\/h3><p>Confirm PVD route, Ti\/TiN structure, target thickness, coverage risks and whether special adhesion, wear or corrosion qualification is needed.<\/p><\/div>\r\n        <div class=\"osenc-step\"><span class=\"osenc-step-no\">3<\/span><h3>Build the FAI Plan<\/h3><p>A useful FAI can include Drawing No.\/Revision, Lot No., five-piece dimensional results, TiN Min\/Avg\/Max, magnetic result, appearance and PASS\/FAIL.<\/p><\/div>\r\n        <div class=\"osenc-step\"><span class=\"osenc-step-no\">4<\/span><h3>Release Repeat Production<\/h3><p>The approved drawing, sample condition, inspection method, lot identification and packaging become the repeat-order reference.<\/p><\/div>\r\n      <\/div>\r\n      <div class=\"osenc-callout\"><strong>Traceability direction:<\/strong> production labels can include Part No., Drawing Rev., NdFeB Grade, Coating, Magnetization, Lot No., Quantity, Inspection Status and Date. Packaging should prevent uncontrolled attraction, corner impact and TiN surface scratching.<\/div>\r\n      <figure class=\"osenc-figure\">\r\n        <img loading=\"lazy\" src=\"https:\/\/osenc.com\/wp-content\/uploads\/2026\/05\/Packaging-Protection.webp\" alt=\"Protective packaging reference for custom neodymium magnet shipment\" width=\"800\" height=\"600\" loading=\"lazy\" decoding=\"async\">\r\n      <\/figure>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>Why Source Custom TiN Coated Magnets from OSENC?<\/h2>\r\n      <div class=\"osenc-value-grid\">\r\n        <div class=\"osenc-value\"><strong>Coating and Magnetics Are One Specification<\/strong><span>We review the NdFeB grade, thermal sequence, magnetization and TiN route together instead of treating coating as a cosmetic last step.<\/span><\/div>\r\n        <div class=\"osenc-value\"><strong>Finished Dimensions Are Explicit<\/strong><span>Critical tolerances are defined in the coated state, reducing the risk of discovering fit problems after a nominally \u201cgood\u201d coating lot arrives.<\/span><\/div>\r\n        <div class=\"osenc-value\"><strong>Testing Is Method-Specific<\/strong><span>Gauss, total flux, BH curve, pull force, XRF, scratch and salt fog are kept separate so one test is not used to imply another property.<\/span><\/div>\r\n        <div class=\"osenc-value\"><strong>Qualification Limits Stay Honest<\/strong><span>Suggested targets are identified as targets until a sample, FAI or customer specification turns them into binding acceptance criteria.<\/span><\/div>\r\n        <div class=\"osenc-value\"><strong>Special Applications Get Boundary Control<\/strong><span>Vacuum, medical and dental projects are not declared \u201cqualified\u201d by coating name alone; the actual regulatory and environmental requirements must be validated.<\/span><\/div>\r\n        <div class=\"osenc-value\"><strong>TiN Is Not Forced<\/strong><span>If nickel, epoxy, Parylene or another route solves the real failure mode more simply, OSENC can recommend that route instead.<\/span><\/div>\r\n      <\/div>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section osenc-section--soft\" id=\"rfq\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>Request a Quote for Custom TiN Coated Neodymium Magnets<\/h2>\r\n      <p>Send the finished-part requirement, not only \u201cNdFeB + TiN.\u201d A complete RFQ lets OSENC review feasibility before the coating, magnetic and dimensional requirements start contradicting one another.<\/p>\r\n      <div class=\"osenc-check-grid\">\r\n        <div class=\"osenc-check\">2D drawing and 3D model if available<\/div>\r\n        <div class=\"osenc-check\">Finished dimensions and critical tolerances<\/div>\r\n        <div class=\"osenc-check\">NdFeB grade or magnetic performance target<\/div>\r\n        <div class=\"osenc-check\">Magnetization direction and pole arrangement<\/div>\r\n        <div class=\"osenc-check\">TiN functional reason and target thickness<\/div>\r\n        <div class=\"osenc-check\">Normal \/ maximum operating temperature<\/div>\r\n        <div class=\"osenc-check\">Wear, corrosion, vacuum or chemical exposure<\/div>\r\n        <div class=\"osenc-check\">Required inspection, FAI and test records<\/div>\r\n        <div class=\"osenc-check\">Prototype quantity and production volume<\/div>\r\n        <div class=\"osenc-check\">Assembly gap, mating surface and packaging constraints<\/div>\r\n      <\/div>\r\n      <figure class=\"osenc-figure\" style=\"margin-top:26px\">\r\n        <img loading=\"lazy\" src=\"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/tin-coated-magnet-rfq-drawing-inspection.webp\" alt=\"Custom TiN coated neodymium magnet RFQ with drawing and inspection tools\" width=\"1200\" height=\"900\" loading=\"lazy\" decoding=\"async\">\r\n      <\/figure>\r\n      <div class=\"osenc-actions\">\r\n        <a class=\"osenc-btn\" href=\"https:\/\/osenc.com\/contact-us\/\">Send Drawing & Get an Engineering Quotation<\/a>\r\n        <a class=\"osenc-btn osenc-btn--secondary\" href=\"https:\/\/osenc.com\/custom-neodymium-magnets\/\">View Custom Neodymium Magnets<\/a>\r\n      <\/div>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section\" id=\"faq\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>TiN Coated Neodymium Magnet FAQs<\/h2>\r\n      <div class=\"osenc-faq-item\"><h3>How is TiN applied to neodymium magnets?<\/h3><p>OSENC uses a low-temperature PVD project route, with DC\/RF magnetron sputtering preferred and Ti\/TiN structures available. The exact process depends on geometry, thermal sensitivity, coating thickness and the required surface function.<\/p><\/div>\r\n      <div class=\"osenc-faq-item\"><h3>What TiN coating thickness can be specified?<\/h3><p>OSENC currently uses 1\u20135 \u03bcm as the TiN design window, 2\u20134 \u03bcm as the typical starting range and 3 \u03bcm as a practical nominal starting point. The released thickness and tolerance must still be approved for the actual geometry and service condition.<\/p><\/div>\r\n      <div class=\"osenc-faq-item\"><h3>Does TiN coating change magnet dimensions?<\/h3><p>Yes. Even a micrometre-scale film adds coating build. Critical dimensions should therefore be defined and inspected in the finished coated state, especially for bores, slots, precision fits and magnetic gaps.<\/p><\/div>\r\n      <div class=\"osenc-faq-item\"><h3>Does TiN make an NdFeB magnet stronger or more temperature-resistant?<\/h3><p>No. TiN changes surface behavior; it does not increase the intrinsic magnetic properties or automatically raise the operating-temperature capability of the NdFeB grade.<\/p><\/div>\r\n      <div class=\"osenc-faq-item\"><h3>Can TiN-coated neodymium magnets be used in vacuum systems?<\/h3><p>They can be evaluated for vacuum projects, but coating name alone is not a vacuum qualification. The actual pressure, outgassing, cleaning, bake-out, particle and assembly requirements must be reviewed.<\/p><\/div>\r\n      <div class=\"osenc-faq-item\"><h3>Can TiN-coated magnets be used in medical or dental devices?<\/h3><p>They can be evaluated as components in a medical or dental development project, but TiN alone does not make the finished magnet medical-grade, implantable, biocompatible or compliant. Regulatory, sterilization and biocompatibility requirements must be defined and validated by the customer project.<\/p><\/div>\r\n      <div class=\"osenc-faq-item\"><h3>How should TiN thickness be inspected?<\/h3><p>For production, XRF can be used when calibrated to the actual TiN\/substrate system. For first-article or validation work, cross-section SEM or optical profilometry can provide stronger thickness verification. The report should state the measurement points and Min\/Avg\/Max.<\/p><\/div>\r\n      <div class=\"osenc-faq-item\"><h3>How should TiN coating adhesion be specified?<\/h3><p>If adhesion is critical, use a defined method such as a progressive-load scratch test and agree the Lc1\/Lc2 acceptance before production. A suggested engineering target is not the same as a universal product guarantee.<\/p><\/div>\r\n      <div class=\"osenc-faq-item\"><h3>Is \u201ctitanium nitrate coating for magnets\u201d the same material?<\/h3><p>No. The hard ceramic coating discussed on this page is <strong>titanium nitride (TiN)<\/strong>. \u201cTitanium nitrate\u201d is commonly a terminology error in magnet coating searches.<\/p><\/div>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section osenc-section--soft\">\r\n    <div class=\"osenc-wrap\">\r\n      <h2>Technical References and Evidence Boundary<\/h2>\r\n      <p>Published sources below support general engineering statements about TiN on NdFeB, PVD TiN thickness, temperature effects and Ti\/TiN multilayers. They do not replace an OSENC drawing, first-article record, batch inspection report or customer-specific qualification.<\/p>\r\n      <ol class=\"osenc-ref-list\">\r\n        <li><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0040609013017495\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">Cheng et al., Thin Solid Films, 2014 \u2014 Corrosion resistance and friction of sintered NdFeB coated with Ti\/TiN multilayers.<\/a><\/li>\r\n        <li><a href=\"https:\/\/xuebao.neu.edu.cn\/natural\/EN\/10.12068\/j.issn.1005-3026.2021.11.007\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">Xie et al., Journal of Northeastern University, 2021 \u2014 Effect of substrate temperature on corrosion resistance of NdFeB-based TiN protective film.<\/a><\/li>\r\n        <li><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0043164823001400\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">Cho et al., Wear, 2023 \u2014 Friction and wear of TiN- and TiCN-coated neodymium magnets; 5 \u03bcm PVD coatings were used in the reported tests.<\/a><\/li>\r\n        <li><a href=\"https:\/\/cris.vtt.fi\/en\/publications\/influence-of-coating-thickness-on-the-life-of-tin-coated-high-spe\/\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">Posti & Nieminen, Wear, 1989 \u2014 TiN coating thickness influenced wear performance on HSS tools; useful as general thickness context, not an NdFeB specification.<\/a><\/li>\r\n        <li><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0924013604006879\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">Tuffy et al., Journal of Materials Processing Technology, 2004 \u2014 SEM and optical profilometry used to measure PVD TiN thickness on WC inserts.<\/a><\/li>\r\n        <li><a href=\"https:\/\/www.duramag.com\/neodymium-magnets-ndfeb\/corrosion-resistance-of-neodymium-magnets\/\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">Industry reference \u2014 ASTM B117 salt fog is commonly used to evaluate protective coatings on NdFeB magnets.<\/a><\/li>\r\n      <\/ol>\r\n      <p><strong>Technical review:<\/strong> OSENC Magnet Engineering Team \u00b7 Updated August 30, 2026.<\/p>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <section class=\"osenc-section osenc-final-cta\">\r\n    <div class=\"osenc-wrap\">\r\n      <div class=\"osenc-final-inner\">\r\n        <h2>Source Titanium Nitride Coated Neodymium Magnets from OSENC<\/h2>\r\n        <p>Send your drawing, finished tolerances, grade or magnetic target, pole direction, TiN thickness requirement, operating temperature, service environment, inspection needs and quantity. OSENC will review the complete magnetic component and return a quotation against a controlled finished-part specification.<\/p>\r\n        <a class=\"osenc-btn\" href=\"https:\/\/osenc.com\/contact-us\/\">Get an Engineering Quotation<\/a>\r\n      <\/div>\r\n    <\/div>\r\n  <\/section>\r\n\r\n  <div class=\"osenc-mobile-sticky\" aria-label=\"Quick quotation action\">\r\n    <a class=\"osenc-btn\" href=\"https:\/\/osenc.com\/contact-us\/\">Send Drawing for TiN Quote<\/a>\r\n  <\/div>\r\n<\/div>\r\n\r\n<script type=\"application\/ld+json\">\r\n{\r\n  \"@context\":\"https:\/\/schema.org\",\r\n  \"@type\":\"Product\",\r\n  \"@id\":\"https:\/\/osenc.com\/titanium-nitride-coating-for-magnets\/#product\",\r\n  \"name\":\"Titanium Nitride (TiN) Coated Neodymium Magnets\",\r\n  \"description\":\"Custom titanium nitride coated neodymium magnets with low-temperature PVD, Ti\/TiN coating options, project-defined coating thickness, finished dimensions, magnetization and QC requirements.\",\r\n  \"url\":\"https:\/\/osenc.com\/titanium-nitride-coating-for-magnets\/\",\r\n  \"image\":[\r\n    \"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/titanium-nitride-coated-neodymium-magnets-finished.webp\",\r\n    \"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/tin-coated-neodymium-magnets-gold-surface.webp\",\r\n    \"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/ndfeb-bare-vs-tin-coated-magnets.webp\",\r\n    \"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/magnet-coating-comparison-tin-nickel-epoxy-parylene.webp\",\r\n    \"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/tin-coating-quality-inspection-neodymium-magnets.webp\",\r\n    \"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/precision-inspection-tools-factory.webp\",\r\n    \"https:\/\/osenc.com\/wp-content\/uploads\/2026\/05\/Packaging-Protection.webp\",\r\n    \"https:\/\/osenc.com\/wp-content\/uploads\/2026\/08\/tin-coated-magnet-rfq-drawing-inspection.webp\"\r\n  ],\r\n  \"brand\":{\"@type\":\"Brand\",\"name\":\"OSENC\"},\r\n  \"category\":\"Titanium nitride coated neodymium magnets\",\r\n  \"material\":\"Sintered NdFeB with titanium nitride (TiN) PVD coating\",\r\n  \"additionalProperty\":[\r\n    {\"@type\":\"PropertyValue\",\"name\":\"TiN Process\",\"value\":\"Low-temperature PVD; magnetron sputtering preferred\"},\r\n    {\"@type\":\"PropertyValue\",\"name\":\"TiN Design Thickness\",\"value\":\"1\u20135 \u03bcm project design window; 2\u20134 \u03bcm typical starting range\"},\r\n    {\"@type\":\"PropertyValue\",\"name\":\"Finished Tolerance\",\"value\":\"\u00b10.05 mm standard target; \u00b10.02 mm precision target, subject to geometry review\"},\r\n    {\"@type\":\"PropertyValue\",\"name\":\"NdFeB Grade Range\",\"value\":\"N35\u2013N52 standard; temperature grades by project; N55\/N55M by review\"},\r\n    {\"@type\":\"PropertyValue\",\"name\":\"Inspection\",\"value\":\"Project-defined dimensional, coating, appearance and magnetic inspection\"}\r\n  ]\r\n}\r\n<\/script>\r\n\r\n<script type=\"application\/ld+json\">\r\n{\r\n  \"@context\":\"https:\/\/schema.org\",\r\n  \"@type\":\"BreadcrumbList\",\r\n  \"itemListElement\":[\r\n    {\"@type\":\"ListItem\",\"position\":1,\"name\":\"Home\",\"item\":\"https:\/\/osenc.com\/\"},\r\n    {\"@type\":\"ListItem\",\"position\":2,\"name\":\"Neodymium Magnet Coating\",\"item\":\"https:\/\/osenc.com\/neodymium-magnet-coating\/\"},\r\n    {\"@type\":\"ListItem\",\"position\":3,\"name\":\"Titanium Nitride (TiN) Coated Neodymium Magnets\",\"item\":\"https:\/\/osenc.com\/titanium-nitride-coating-for-magnets\/\"}\r\n  ]\r\n}\r\n<\/script>\t\t\t\t<\/div>\n\t\t\n<\/div>\n\t\t<\/div>\n\t\t","protected":false},"excerpt":{"rendered":"<p>Custom TiN Coated NdFeB Magnets Titanium Nitride (TiN) Coated Neodymium Magnets OSENC supplies custom titanium nitride coated neodymium magnets engineered as finished magnetic components, not simply gold-colored parts. Our current TiN project framework uses low-temperature PVD, with DC\/RF magnetron sputtering and Ti\/TiN architectures preferred when the application needs a hard, thin functional surface while controlling [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":18,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-626","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/osenc.com\/de\/wp-json\/wp\/v2\/pages\/626","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/osenc.com\/de\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/osenc.com\/de\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/osenc.com\/de\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/osenc.com\/de\/wp-json\/wp\/v2\/comments?post=626"}],"version-history":[{"count":18,"href":"https:\/\/osenc.com\/de\/wp-json\/wp\/v2\/pages\/626\/revisions"}],"predecessor-version":[{"id":9268,"href":"https:\/\/osenc.com\/de\/wp-json\/wp\/v2\/pages\/626\/revisions\/9268"}],"wp:attachment":[{"href":"https:\/\/osenc.com\/de\/wp-json\/wp\/v2\/media?parent=626"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}