{"id":26030,"date":"2025-02-21T00:56:56","date_gmt":"2025-02-21T00:56:56","guid":{"rendered":"https:\/\/trumonytechs.com\/?post_type=thegem_pf_item&#038;p=26030"},"modified":"2026-09-26T08:54:50","modified_gmt":"2026-09-26T08:54:50","slug":"varmeledande-platta","status":"publish","type":"thegem_pf_item","link":"https:\/\/www.trumonytechs.com\/sv\/pf\/thermal-conductive-pad\/","title":{"rendered":"Termiskt ledande platta"},"content":{"rendered":"<main class=\"trumo-scope\"> <section class=\"trumo-hero trumo-blueprint\" data-cta=\"hero\"> <div class=\"trumo-wrap trumo-hero-inner\"> <div class=\"trumo-hero-left\"> <div class=\"trumo-hcats\"> <span class=\"trumo-hcat trumo-hcat--solid\"> Five silicone models, 1.5\u20138.0 <span class=\"trumo-unit\">W\/m\u00b7K<\/span> <\/span> <span class=\"trumo-hcat trumo-hcat--ghost\"> Bare or PI \/ glass-fiber reinforced <\/span> <\/div> <h1>Thermal Conductive Pad Supplier: Five Silicone Models<\/h1> <p class=\"trumo-hero-lead\">Trumonytechs' 30101 silicone thermal conductive pads come in five models from 1.5 to 8.0 W\/m\u00b7K, each 0.4\u201310 mm thick. Cell-to-cold-plate joints in EV and energy storage (ESS) battery packs are the main applications, and the same pads are supplied for other applications as well. Cell format or component layout, sheet size, thickness and the joint's insulation requirement are the inputs that narrow the model and construction. We list a named test method beside the measured properties, and the series is offered bare or with PI film, PI tape or glass-fiber cloth reinforcement.<\/p> <p class=\"trumo-hero-note\"> Share the cell format or component layout, pad sheet size and yearly volume, the first details a 30101 quote needs. <\/p> <div class=\"trumo-hero-btns\"> <button type=\"button\" class=\"trumo-btn trumo-btn--primary trumo-quote-open\" popovertarget=\"trumo-quote\" aria-haspopup=\"dialog\"> Send the pad details <\/button> <a class=\"trumo-btn trumo-btn--ghost\" href=\"mailto:oversea@trumonytechs.com?subject=Thermal%20conductive%20pad%20inquiry\"> Email the pad RFQ <\/a> <\/div> <\/div> <figure class=\"trumo-hero-fig trumo-hero-fig--photo\"> <span class=\"trumo-corner trumo-corner--tl\"><\/span><span class=\"trumo-corner trumo-corner--tr\"><\/span> <span class=\"trumo-corner trumo-corner--bl\"><\/span><span class=\"trumo-corner trumo-corner--br\"><\/span> <img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/10006.jpg\" alt=\"Ark av vit silikonv\u00e4rmeledande kudde med ett h\u00f6rn lyft\" width=\"800\" height=\"600\" fetchpriority=\"high\" decoding=\"async\"> <\/figure> <\/div> <\/section> <div class=\"trumo-wrap\"> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">01<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2> Is a Thermal Conductive Pad Right for Your Joint? <\/h2> <p class=\"trumo-lede\"> A thermal conductive pad suits joints where a pre-formed silicone sheet can sit between a heat source and a cold plate or heat sink under low assembly stress, conforming to both surfaces and damping vibration; in a battery pack, that is between the cells and the cold plate. The 30101 series is listed for prismatic cells, cylindrical cells and serpentine cold plates, with the construction deciding which of those a pad is listed for. <\/p> <div class=\"trumo-stat\"> <div class=\"trumo-stat-n\"> 0.4\u201310 mm <\/div> <p class=\"trumo-stat-t\"> Every 30101 model lists the same thickness range, measured to ASTM D374, so thickness is specified separately from conductivity. <\/p> <\/div> <figure class=\"trumo-fig trumo-fig--scroll\"> <svg aria-label=\"Heat path from cell base through a thermal conductive pad and cold plate to coolant\" role=\"img\" viewbox=\"0 0 720 150\"> <defs><marker id=\"tpAr\" markerheight=\"7\" markerwidth=\"7\" orient=\"auto\" refx=\"8\" refy=\"5\" viewbox=\"0 0 10 10\"><path d=\"M0 0 L10 5 L0 10 z\" fill=\"#767676\"\/><\/marker><\/defs> <g fill=\"none\" stroke=\"#5F6B7A\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"1.6\"> <rect height=\"30\" rx=\"2\" width=\"44\" x=\"52\" y=\"16\"\/><rect height=\"5\" rx=\"1\" width=\"8\" x=\"58\" y=\"11\"\/><rect height=\"5\" rx=\"1\" width=\"8\" x=\"82\" y=\"11\"\/> <path d=\"M50 48 H98\" stroke-width=\"3\"\/> <rect height=\"26\" rx=\"2\" width=\"52\" x=\"444\" y=\"22\"\/><path d=\"M452 28 v14 M462 28 v14 M472 28 v14 M482 28 v14 M492 28 v14\" stroke-width=\"2\"\/> <path d=\"M622 24 q8 -8 16 0 t16 0 t16 0\"\/><path d=\"M622 36 q8 -8 16 0 t16 0 t16 0\"\/><path d=\"M622 48 q8 -8 16 0 t16 0 t16 0\"\/> <\/g> <rect fill=\"#FD7000\" fill-opacity=\".12\" height=\"14\" rx=\"2\" stroke=\"#FD7000\" stroke-width=\"1.6\" width=\"64\" x=\"240\" y=\"28\"\/> <g fill=\"#FD7000\"><circle cx=\"248\" cy=\"33\" r=\"1.6\"\/><circle cx=\"256\" cy=\"38\" r=\"1.6\"\/><circle cx=\"263\" cy=\"32\" r=\"1.6\"\/><circle cx=\"271\" cy=\"37\" r=\"1.6\"\/><circle cx=\"279\" cy=\"33\" r=\"1.6\"\/><circle cx=\"287\" cy=\"38\" r=\"1.6\"\/><circle cx=\"295\" cy=\"33\" r=\"1.6\"\/><circle cx=\"252\" cy=\"37.5\" r=\"1.6\"\/><circle cx=\"267\" cy=\"35\" r=\"1.6\"\/><circle cx=\"283\" cy=\"35.5\" r=\"1.6\"\/><circle cx=\"298\" cy=\"38\" r=\"1.6\"\/><\/g> <g fill=\"#1E1E1E\" font-size=\"12\" font-weight=\"700\" text-anchor=\"middle\"> <rect fill=\"#F7F8FA\" height=\"52\" rx=\"3\" stroke=\"#E5E7EB\" width=\"140\" x=\"4\" y=\"64\"><\/rect> <text x=\"74\" y=\"94\"> Cell base <\/text> <rect fill=\"#C05400\" height=\"64\" rx=\"3\" width=\"184\" x=\"180\" y=\"58\"><\/rect> <text fill=\"#fff\" x=\"272\" y=\"94\"> V\u00e4rmeledande platta <\/text> <rect fill=\"#F7F8FA\" height=\"52\" rx=\"3\" stroke=\"#E5E7EB\" width=\"140\" x=\"400\" y=\"64\"><\/rect> <text x=\"470\" y=\"94\"> Kall platta <\/text> <rect fill=\"#F7F8FA\" height=\"52\" rx=\"3\" stroke=\"#E5E7EB\" width=\"140\" x=\"576\" y=\"64\"><\/rect> <text x=\"646\" y=\"94\"> Kylv\u00e4tska <\/text> <\/g> <g marker-end=\"url(#tpAr)\" stroke=\"#767676\" stroke-width=\"1.4\"> <line x1=\"148\" x2=\"174\" y1=\"90\" y2=\"90\"><\/line> <line x1=\"368\" x2=\"394\" y1=\"90\" y2=\"90\"><\/line> <line x1=\"544\" x2=\"570\" y1=\"90\" y2=\"90\"><\/line> <\/g> <g stroke=\"#E5E7EB\" stroke-width=\"1\"><line x1=\"8\" x2=\"712\" y1=\"140\" y2=\"140\"><\/line><\/g> <g stroke=\"#C3CCD6\" stroke-width=\"1\"><line x1=\"8\" x2=\"8\" y1=\"134\" y2=\"140\"><\/line><line x1=\"360\" x2=\"360\" y1=\"134\" y2=\"140\"><\/line><line x1=\"712\" x2=\"712\" y1=\"134\" y2=\"140\"><\/line><\/g> <\/svg> <figcaption class=\"trumo-cap\"> The pad conforms to the cell and the plate, so heat crosses the joint through the pad. <\/figcaption> <\/figure> <ul class=\"trumo-checks\"> <li><span class=\"n\">01<\/span><div><b> Cells must be bonded to the plate. <\/b><p> The pads are self-adhesive, while bonding cells to the cold plate is what the 30107 polyurethane <a href=\"https:\/\/www.trumonytechs.com\/sv\/pf\/varmeledande-strukturellt-lim\/\">structural adhesive<\/a> is described for, with 11 MPa Al\/Al shear strength listed for 30107-0120. <\/p><\/div><\/li> <li><span class=\"n\">02<\/span><div><b> The TIM has to go on by dispenser. <\/b><p> The two-part 30102 <a href=\"https:\/\/www.trumonytechs.com\/sv\/pf\/varmeledande-gel\/\">v\u00e4rmeledande gel<\/a> supports automated dispensing, and its cured properties are described as equivalent to a thermal pad. <\/p><\/div><\/li> <li><span class=\"n\">03<\/span><div><b> The joint is small and sits on prismatic cells. <\/b><p> On prismatic cells the bare pad is the listed construction, its suggested size runs to 300 \u00d7 200 mm, and it costs less than any reinforced version. It also conducts heat and rebounds better than the reinforced pads, so where the joint needs no extra handling strength, insulation layer or adhesive backing, the bare pad avoids paying for them. <\/p><\/div><\/li> <\/ul> <p> Pads are one of several TIM product families in the Trumonytechs range, compared side by side on the <a href=\"https:\/\/www.trumonytechs.com\/sv\/material-for-termiska-granssnitt\/\">material f\u00f6r termiska gr\u00e4nssnitt<\/a> page. The <a href=\"https:\/\/www.trumonytechs.com\/sv\/pf\/platta-for-vattenkylning\/\">Plattor f\u00f6r v\u00e4tskekylning<\/a> a pad presses against are specified on their own page, and pack-level cooling design is covered under <a href=\"https:\/\/www.trumonytechs.com\/sv\/termisk-hantering-av-batteripaket\/\">termisk hantering av batteripaket<\/a>. <\/p> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">02<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2> Four Pad Constructions: Listed Uses, Size Limits and Cost <\/h2> <p class=\"trumo-lede\"> 30101 pads come in four constructions, bare or reinforced with PI film, PI tape or glass-fiber cloth, and sheet size, handling needs and, for three of them, a listed cell format separate them. Suggested attachment sizes are 300 \u00d7 200 mm for the bare and glass-fiber versions and 500 \u00d7 420 mm for both PI versions. <\/p> <div class=\"trumo-cards trumo-cards--4 trumo-cards--static\"> <article class=\"trumo-card\"> <div class=\"trumo-card-fig trumo-card-fig--photo\"> <span class=\"trumo-card-no\">A<\/span> <img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/thermal-pad-bare-construction.webp\" alt=\"Bare silicone thermal pad with a corner turned up, showing a uniform cut edge with no reinforcement layer\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3> Bare pad (A) <\/h3> <p> No reinforcing layer, and it costs less than any reinforced version. Conductivity and compression rebound are better than in the reinforced pads; body strength and self-adhesion are weak, large pieces deform, and air bubbles are harder to press out during attachment. <\/p> <div class=\"trumo-card-spec\"> Listed for prismatic cells and serpentine cold plates<b>up to 300 \u00d7 200 mm<\/b> <\/div> <\/div> <\/article> <article class=\"trumo-card\"> <div class=\"trumo-card-fig trumo-card-fig--photo\"> <span class=\"trumo-card-no\">B<\/span> <img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/thermal-pad-pi-film-construction.webp\" alt=\"Silicone thermal pad with an amber polyimide film on its underside, shown at a turned-up corner\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3> PI film reinforced (B) <\/h3> <p> A plain PI film with no adhesive backing. Apart from the missing backing, its properties are described as matching the PI-tape version, at a higher cost than a bare pad. <\/p> <div class=\"trumo-card-spec\"> Listed for cylindrical cells and serpentine cold plates<b>up to 500 \u00d7 420 mm<\/b> <\/div> <\/div> <\/article> <article class=\"trumo-card\"> <div class=\"trumo-card-fig trumo-card-fig--photo\"> <span class=\"trumo-card-no\">C<\/span> <img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/thermal-pad-pi-tape-construction.webp\" alt=\"Silicone thermal pad with polyimide tape and an adhesive backing, the release liner partly peeled back\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3> PI tape reinforced (C) <\/h3> <p> PI tape greatly raises body strength, the PI film adds insulation, and the adhesive backing bonds more firmly to the cold plate. That backing may reduce manual attachment cost, though the pad itself costs more than a bare one. <\/p> <div class=\"trumo-card-spec\"> Adhesive backing to the cold plate<b>up to 500 \u00d7 420 mm<\/b> <\/div> <\/div> <\/article> <article class=\"trumo-card\"> <div class=\"trumo-card-fig trumo-card-fig--photo\"> <span class=\"trumo-card-no\">D<\/span> <img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/thermal-pad-glass-fiber-construction.webp\" alt=\"Silicone thermal pad with a glass-fiber cloth layer visible at its cut edge\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3> Glass-fiber cloth reinforced (D) <\/h3> <p> Glass-fiber cloth adds flexibility and body strength. The trade is a relatively high cost and lower overall conductivity than a bare pad. <\/p> <div class=\"trumo-card-spec\"> Listed for cylindrical cells and serpentine cold plates<b>up to 300 \u00d7 200 mm<\/b> <\/div> <\/div> <\/article> <\/div> <p class=\"trumo-note\"> Sizes are the suggested attachment limits listed for each construction. The range also includes a high-strength silicone mat for photovoltaic panel lamination; it conducts heat poorly and is not a thermal interface material. <\/p> <p> For prismatic cells the listed construction is the bare pad, for cylindrical cells it is PI film or glass-fiber cloth, and serpentine cold plates appear against all three. No cell format is listed for the PI-tape version, which is described by its strength, insulation and adhesive backing. The datasheet does not list which models are made in which construction, so the pair you want needs its availability confirmed in the RFQ. <\/p> <p> If the sheet must exceed 300 \u00d7 200 mm, only the two PI versions list a larger suggested size, up to 500 \u00d7 420 mm, and both add body strength for handling. Within 300 \u00d7 200 mm, the bare pad is the lower-cost option with better conductivity and rebound, while glass-fiber cloth adds strength and flexibility at higher cost and lower conductivity. <\/p> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">03<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2> Silicone Pad Model Data: Conductivity, Hardness and Dielectric Values <\/h2> <p class=\"trumo-lede\"> All five 30101 models are silicone formulations measured to the same methods, so values compare directly across models wherever a property lists a test method. Thickness range, flame rating, D4\u2013D10 content and recommended temperature range are the same for every model. <\/p> <div class=\"trumo-tablewrap\"> <table> <thead><tr><th> Fastighet <\/th><th> 30101-0150 <\/th><th> 30101-0200 <\/th><th> 30101-0350 <\/th><th> 30101-0400 <\/th><th> 30101-0800 <\/th><th> Test method <\/th><\/tr><\/thead> <tbody> <tr><td> Thermal conductivity, W\/m\u00b7K <\/td><td> 1.5 <\/td><td> 2.0 <\/td><td> 3.5 <\/td><td> 4.0 <\/td><td> 8.0 <\/td><td> ISO 22007-2 <\/td><\/tr> <tr><td> H\u00e5rdhet, Shore 00 <\/td><td> 55 <\/td><td> 5\u201380 <\/td><td> 5\u201380 <\/td><td> 10\u201380 <\/td><td> 20\u201380 <\/td><td> ASTM D2240 <\/td><\/tr> <tr><td> Density, g\/cc <\/td><td> 2.4 <\/td><td> 2.1 <\/td><td> 2.9 <\/td><td> 3.2 <\/td><td> 3.4 <\/td><td> ASTM D792 <\/td><\/tr> <tr><td> Tensile strength, MPa <\/td><td> 0.1 <\/td><td> 0.1 <\/td><td> 0.2 <\/td><td> 0.01 <\/td><td> 0.01 <\/td><td> ASTM D412 <\/td><\/tr> <tr><td> Elongation at break <\/td><td> 50% <\/td><td> 20% <\/td><td> 30% <\/td><td> 30% <\/td><td> 30% <\/td><td> ASTM D412 <\/td><\/tr> <tr><td> Genombrottssp\u00e4nning, kV\/mm <\/td><td> &gt;12 <\/td><td> &gt;10 <\/td><td> &gt;8 <\/td><td> &gt;8 <\/td><td> &gt;6 <\/td><td> ASTM D149 <\/td><\/tr> <tr><td> Volymresistivitet, \u03a9\u00b7cm <\/td><td> &gt;10\u00b9\u00b2 <\/td><td> &gt;10\u00b9\u00b2 <\/td><td> &gt;10\u00b9\u00b2 <\/td><td> &gt;10\u00b9\u00b2 <\/td><td> &gt;10\u00b9\u00b9 <\/td><td> ASTM D257 <\/td><\/tr> <tr><td> Thickness, mm <\/td><td> 0.4\u201310 <\/td><td> 0.4\u201310 <\/td><td> 0.4\u201310 <\/td><td> 0.4\u201310 <\/td><td> 0.4\u201310 <\/td><td> ASTM D374 <\/td><\/tr> <tr><td> Flamklassificering <\/td><td> V-0 <\/td><td> V-0 <\/td><td> V-0 <\/td><td> V-0 <\/td><td> V-0 <\/td><td> UL 94 <\/td><\/tr> <tr><td> D4\u2013D10 content <\/td><td> &lt;100 ppm <\/td><td> &lt;100 ppm <\/td><td> &lt;100 ppm <\/td><td> &lt;100 ppm <\/td><td> &lt;100 ppm <\/td><td> GC <\/td><\/tr> <tr><td> Recommended temperature, \u00b0C <\/td><td> \u221240 till +150 <\/td><td> \u221240 till +150 <\/td><td> \u221240 till +150 <\/td><td> \u221240 till +150 <\/td><td> \u221240 till +150 <\/td><td> \u2014 <\/td><\/tr> <tr><td> F\u00e4rg <\/td><td> Grey \/ optional <\/td><td> Grey \/ optional <\/td><td> Blue \/ optional <\/td><td> Grey \/ optional <\/td><td> Grey \/ optional <\/td><td> Visual <\/td><\/tr> <\/tbody> <\/table> <\/div> <p> ISO 22007-2 is a transient plane source method, so the conductivity figures describe the pad material itself. Contact at the surfaces on either side of the pad adds its own resistance, which is why thickness and clamping pressure belong in the RFQ alongside the model. <\/p> <p> Breakdown values are listed as greater-than figures in kV\/mm, so they show the level each model is stated to exceed rather than a ranking of actual breakdown. Hardness is listed as one value for 0150 and as a span for the other four, and what those spans represent is not stated. <\/p> <div class=\"trumo-callout\"><p> These are datasheet results for the material under the listed methods, not measurements taken in a finished assembly. <\/p><\/div> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">04<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2> Thermal Pad Cost by Construction, and What a Quote Confirms <\/h2> <p> The one cost direction in the 30101 data is by construction: a bare pad costs less than the PI-film, PI-tape or glass-fiber versions, and glass-fiber cloth is described as relatively high in cost. Any price is confirmed in the quote against model, volume and packaging form. No price range, online estimator or list of quote inclusions is published, so construction, sheet size and quantity belong in one request. <\/p> <div class=\"trumo-split\"> <figure class=\"trumo-fig trumo-fig--scroll\"> <svg aria-label=\"Relative cost of a bare thermal pad versus reinforced pad constructions\" role=\"img\" viewbox=\"0 0 520 230\"> <defs><marker id=\"tpCAr\" markerheight=\"6\" markerwidth=\"6\" orient=\"auto\" refx=\"8\" refy=\"5\" viewbox=\"0 0 10 10\"><path d=\"M0 0 L10 5 L0 10 z\" fill=\"#767676\"\/><\/marker><\/defs> <g stroke=\"#E5E7EB\" stroke-dasharray=\"4 4\" stroke-width=\"1\"><line x1=\"60\" x2=\"480\" y1=\"150\" y2=\"150\"\/><line x1=\"60\" x2=\"480\" y1=\"78\" y2=\"78\"\/><\/g> <line marker-end=\"url(#tpCAr)\" stroke=\"#767676\" stroke-width=\"1.4\" x1=\"60\" x2=\"60\" y1=\"190\" y2=\"14\"\/> <line stroke=\"#767676\" stroke-width=\"1.4\" x1=\"60\" x2=\"490\" y1=\"190\" y2=\"190\"\/> <rect fill=\"#5F6B7A\" height=\"40\" width=\"60\" x=\"85\" y=\"150\"\/> <g fill=\"#FD7000\" opacity=\".9\"><rect height=\"112\" width=\"60\" x=\"192\" y=\"78\"\/><rect height=\"112\" width=\"60\" x=\"299\" y=\"78\"\/><rect height=\"112\" width=\"60\" x=\"406\" y=\"78\"\/><\/g> <g fill=\"none\" stroke=\"#FCAE00\" stroke-width=\"1.6\"><path d=\"M192 70 V62 H466 V70\"\/><\/g> <g fill=\"#1E1E1E\" font-size=\"11\" font-weight=\"700\" text-anchor=\"middle\"><text x=\"115\" y=\"205\">A<\/text><text x=\"222\" y=\"205\">B<\/text><text x=\"329\" y=\"205\">C<\/text><text x=\"436\" y=\"205\">D<\/text><\/g> <g fill=\"#767676\" font-size=\"9.5\" text-anchor=\"middle\"><text x=\"115\" y=\"219\">Bare pad<\/text><text x=\"222\" y=\"219\">PI-film<\/text><text x=\"329\" y=\"219\">PI tape<\/text><text x=\"436\" y=\"219\">Glass-fiber cloth<\/text><\/g> <text fill=\"#767676\" font-size=\"9.5\" font-weight=\"700\" letter-spacing=\"1\" text-anchor=\"middle\" transform=\"translate(40 104) rotate(-90)\">RELATIVE COST<\/text> <\/svg> <\/figure> <div class=\"trumo-cta\" data-cta=\"mid\"> <p> Where a bare pad and a PI version could both fit your sheet size, name both; we confirm which of them your chosen model is supplied in before quoting. <\/p> <div class=\"trumo-cta-btns\"> <button type=\"button\" class=\"trumo-btn trumo-btn--primary trumo-quote-open\" popovertarget=\"trumo-quote\" aria-haspopup=\"dialog\"> Send both options <\/button> <a class=\"trumo-btn trumo-btn--ghost\" href=\"mailto:oversea@trumonytechs.com?subject=Thermal%20conductive%20pad%20inquiry\"> Email a two-option RFQ <\/a> <\/div> <\/div> <\/div> <\/section> <\/div> <section class=\"trumo-band trumo-blueprint\"> <div class=\"trumo-wrap\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">05<\/span><span class=\"trumo-secline\"><\/span><\/div> <p class=\"trumo-eyebrow\"> Datasheet evidence <\/p> <h2> Test Methods Behind the Measured Pad Values <\/h2> <p class=\"trumo-lede\"> Measured properties in the 30101 datasheet are reported against named methods, which gives an incoming inspection a basis to re-test samples of the same model. No project references are published for 30101, so we point to those methods as the evidence to check against. <\/p> <div class=\"trumo-tiles\"> <div class=\"trumo-tile\"> <svg aria-label=\"Heat\" fill=\"none\" role=\"img\" stroke=\"#FD7000\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"1.8\" viewbox=\"0 0 40 40\"> <path d=\"M17 24 V9 a3 3 0 0 1 6 0 V24\"\/><circle cx=\"20\" cy=\"29\" r=\"5.5\"\/><path d=\"M20 25 V14\"\/><path d=\"M28 11 h5 M28 16 h4 M28 21 h5\"\/><path d=\"M8 12 q-2 3 0 6 t0 6\"\/> <\/svg> <b> Heat <\/b><p> ISO 22007-2 conductivity for all five models <\/p> <\/div> <div class=\"trumo-tile\"> <svg aria-label=\"Dielektrisk\" fill=\"none\" role=\"img\" stroke=\"#FD7000\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"1.8\" viewbox=\"0 0 40 40\"> <path d=\"M23 4 L13 19 h8 l-4 9\"\/><path d=\"M13 25 l4 3 3 -4\"\/><rect height=\"6\" rx=\"1\" width=\"28\" x=\"6\" y=\"30\"\/><path d=\"M11 33 h18\" stroke-dasharray=\"2 3\"\/> <\/svg> <b> Dielektrisk <\/b><p> ASTM D149 breakdown voltage and ASTM D257 volume resistivity <\/p> <\/div> <div class=\"trumo-tile\"> <svg aria-label=\"Mechanical and dimensional\" fill=\"none\" role=\"img\" stroke=\"#FD7000\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"1.8\" viewbox=\"0 0 40 40\"> <rect height=\"9\" rx=\"1\" width=\"24\" x=\"8\" y=\"19\"\/><path d=\"M14 4 v11 M11 12 l3 3 3 -3 M26 4 v11 M23 12 l3 3 3 -3\"\/><path d=\"M8 34 h24 M8 31 v6 M32 31 v6\"\/> <\/svg> <b> Mechanical and dimensional <\/b><p> ASTM D2240 hardness, D412 tensile and elongation, D792 density, D374 thickness <\/p> <\/div> <div class=\"trumo-tile\"> <svg aria-label=\"Fire and siloxane\" fill=\"none\" role=\"img\" stroke=\"#FD7000\" stroke-linecap=\"round\" stroke-linejoin=\"round\" stroke-width=\"1.8\" viewbox=\"0 0 40 40\"> <path d=\"M14 35 c-6 -2 -8 -9 -4 -14 c1 3 2 4 4 4 c-1 -6 1 -11 6 -15 c0 6 4 8 5 13 c1 6 -3 11 -8 12\"\/><path d=\"M31 18 l5 3 v6 l-5 3 -5 -3 v-6 z\"\/> <\/svg> <b> Fire and siloxane <\/b><p> UL 94 flame rating, V-0 on every model; D4\u2013D10 content by gas chromatography <\/p> <\/div> <\/div> <div class=\"trumo-photos trumo-photos--row4\"><span class=\"trumo-corner trumo-corner--tl\"><\/span><span class=\"trumo-corner trumo-corner--tr\"><\/span><span class=\"trumo-corner trumo-corner--bl\"><\/span><span class=\"trumo-corner trumo-corner--br\"><\/span><img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/tim-thermal-conductivity-test.webp\" alt=\"Transient plank\u00e4llarsensor fastkl\u00e4md mellan tv\u00e5 termiska dynprover f\u00f6r ett v\u00e4rmeledningsf\u00f6rm\u00e5gastest\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"><img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/tim-dielectric-strength-test.webp\" alt=\"Prov av termisk dyna mellan tv\u00e5 m\u00e4ssingselektroder i en dielektrisk h\u00e5llfasthetsm\u00e4tare\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"><img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/thermal-pad-hardness-test.webp\" alt=\"Shore durometer on a test stand pressing onto a stack of thermal pad samples, with a thickness gauge beside it\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"><img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/tim-ul94-vertical-burn-test.webp\" alt=\"Materialtestremsa fastkl\u00e4md vertikalt i en flamkammare under ett vertikalt br\u00e4nntest\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"><\/div> <p> Dielectric breakdown is the failure an insulating pad must not allow, and each model lists breakdown voltage and volume resistivity against it. Outgoing inspection items and lot records are not published; whether lot data can be reported for the properties your incoming check covers is a question for the RFQ. <\/p> <p> On paper, the compliance evidence is a RoHS-compliant formulation in the series description and a V-0 result in the UL 94 flame test. A RoHS test report, UL file details and supply capacity are not published for the pads. Warranty terms are not published on this page. Ask for them with your RFQ, together with after-sales and claim terms. <\/p> <div class=\"trumo-callout\"><p> UL 94 results apply to the thickness tested, and the 30101 data does not state that thickness; with pads listed from 0.4 to 10 mm, the tested thickness is worth confirming against yours. <\/p><\/div> <\/div> <\/section> <div class=\"trumo-wrap\"> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">06<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2> What to Send for a Thermal Conductive Pad Quote <\/h2> <p> A pad quote needs the joint's size, thickness and insulation requirement, plus the volume and packaging form it is priced on. Whether your model and construction pair can be supplied is the first point to settle. <\/p> <ul class=\"trumo-chips\"> <li> Cell format or component layout, and cold plate or heat sink type <\/li> <li> Sheet length \u00d7 width and preferred construction <\/li> <li> Pad thickness within 0.4\u201310 mm <\/li> <li> Target conductivity or model number <\/li> <li> Working voltage and the insulation margin required <\/li> <li> Annual volume and packaging form <\/li> <\/ul> <p> For 30101, this page carries no MOQ, sample or production lead time, packaging, shipping-document, payment or inspection terms, so name the ones your purchase depends on in your <a href=\"https:\/\/www.trumonytechs.com\/sv\/kontakta-oss\/\">RFQ<\/a>. Transit time, duties and import paperwork follow the destination, so the RFQ should state the destination port. <\/p> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">07<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2> Thermal Conductive Pad FAQ <\/h2> <div class=\"trumo-faq\"> <details><summary><span class=\"q\"> Does a thermal conductive pad stick to the cold plate by itself? <\/span><span class=\"i\">+<\/span><\/summary><p> All 30101 pads are self-adhesive, but the bare construction's self-adhesion is listed as weak. PI-tape reinforced pads add an adhesive backing that bonds more firmly to the cold plate. Where cells must be held to the plate, the 30107 polyurethane structural adhesive is the material described for that job. <\/p><\/details> <details><summary><span class=\"q\"> Is a pad electrically insulating without a PI layer? <\/span><span class=\"i\">+<\/span><\/summary><p> Each 30101 model states a breakdown strength from above 6 to above 12 kV\/mm and volume resistivity above 10\u00b9\u00b9 or 10\u00b9\u00b2 \u03a9\u00b7cm, and the series lists insulation as a feature. PI-tape reinforcement is described as adding insulation. Breakdown figures are per millimeter of material, so whether a given pad thickness meets your working voltage and margin needs an engineering check. <\/p><\/details> <details><summary><span class=\"q\"> What do the D4\u2013D10 figures mean for a silicone-sensitive design? <\/span><span class=\"i\">+<\/span><\/summary><p> D4 to D10 are low-molecular-weight cyclic siloxanes, the volatile species usually tracked in silicone materials. Every 30101 model lists them below 100 ppm, measured by gas chromatography. Where a specification limits silicone near contacts or optics, that is the figure to check, and whether a GC report for the chosen model can be supplied is worth asking. <\/p><\/details> <details><summary><span class=\"q\"> Is the UL 94 V-0 rating a UL certification? <\/span><span class=\"i\">+<\/span><\/summary><p> No. V-0 is the flame rating the material achieved under the UL 94 test method, and it is listed for all five models. No UL listing, yellow card or file number is published for 30101, so an approval that needs one should confirm it exists before relying on the rating. <\/p><\/details> <details><summary><span class=\"q\"> Is thermal resistance or compression data published for 30101 pads? <\/span><span class=\"i\">+<\/span><\/summary><p> Not on this page. The datasheet gives conductivity to ISO 22007-2 but no thermal resistance, deflection-versus-pressure curve or thickness tolerance for any model. Whether data can be supplied at your target thickness and clamping pressure is a question to raise in the RFQ before qualification. <\/p><\/details> <details><summary><span class=\"q\"> Which 30101 model adds the least mass per square meter? <\/span><span class=\"i\">+<\/span><\/summary><p> 30101-0200, with a listed density of 2.1 g\/cc, which works out to about 2.1 kg per square meter at 1 mm thick. The 8.0 W\/m\u00b7K model, 0800, is the densest at 3.4 g\/cc, or about 3.4 kg\/m\u00b2 at 1 mm, and mass rises in proportion to thickness for every model. <\/p><\/details> <details><summary><span class=\"q\"> What are the MOQ, lead time and price for 30101 pads? <\/span><span class=\"i\">+<\/span><\/summary><p> None of the three is published for 30101, and neither are sample terms or supply capacity. Put the model, construction, sheet size and annual volume in your RFQ, and ask for MOQ, sample and production lead times and a price against your packaging form in the same request. <\/p><\/details> <\/div> <\/section> <\/div> <\/main>","protected":false},"excerpt":{"rendered":"<p>Five silicone models, 1.5\u20138.0 W\/m\u00b7K Bare or PI \/ glass-fiber reinforced Thermal Conductive Pad Supplier: Five Silicone Models Trumonytechs&#8217; 30101 silicone thermal conductive pads come in five models from 1.5 to 8.0 W\/m\u00b7K, each 0.4\u201310 mm thick. Cell-to-cold-plate joints in EV and energy storage (ESS) battery packs are the main applications, and the same pads &#8230; <a title=\"Termiskt ledande platta\" class=\"read-more\" href=\"https:\/\/www.trumonytechs.com\/sv\/pf\/thermal-conductive-pad\/\" aria-label=\"L\u00e4s mer om Thermal Conductive Pad\">L\u00e4s mer<\/a><\/p>","protected":false},"featured_media":25508,"menu_order":0,"template":"","meta":[],"thegem_portfolios":[64],"class_list":["post-26030","thegem_pf_item","type-thegem_pf_item","status-publish","has-post-thumbnail","hentry","thegem_portfolios-thermal-interface-materials"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.6 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Thermal Conductive Pad, 1.5\u20138.0 W\/m\u00b7K, 5 Models | Trumonytechs<\/title>\n<meta name=\"description\" content=\"30101 silicone thermal conductive pads, mainly for battery cell-to-cold-plate joints: five models, 1.5\u20138.0 W\/m\u00b7K, 0.4\u201310 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