{"id":24452,"date":"2025-01-17T00:00:03","date_gmt":"2025-01-17T00:00:03","guid":{"rendered":"https:\/\/democontent.codex-themes.com\/sites-elementor\/business-consulting\/?page_id=24452"},"modified":"2026-09-26T08:04:17","modified_gmt":"2026-09-26T08:04:17","slug":"materiali-di-interfaccia-termica","status":"publish","type":"page","link":"https:\/\/www.trumonytechs.com\/it\/thermal-interface-materials\/","title":{"rendered":"Materiali per l'interfaccia termica"},"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\">6 series<\/span> <span class=\"trumo-hcat trumo-hcat--ghost\">21 datasheet models<\/span> <span class=\"trumo-hcat trumo-hcat--ghost\">Test methods listed for measured values<\/span> <\/div> <h1>Thermal Interface Materials: Five Families, 21 Datasheet Models<\/h1> <p class=\"trumo-hero-lead\">Trumonytechs supplies thermal interface materials in five families: pads, two-component gels, potting compounds, structural adhesives and silicone grease, across 21 datasheet models. EV and energy storage (ESS) battery packs are the main applications, and the same materials are supplied for other applications as well. Which family fits depends on the gap across the joint, whether the joint carries load, and whether it must insulate.<\/p> <p class=\"trumo-hero-note\">Send the gap thickness between the heat source and the cold plate or heat sink with your expected volume, and we will propose a model to discuss.<\/p> <div class=\"trumo-hero-btns\"> <button type=\"button\" class=\"trumo-btn trumo-btn--primary trumo-quote-open\" popovertarget=\"trumo-quote\" aria-haspopup=\"dialog\">Start a TIM inquiry<\/button> <a class=\"trumo-btn trumo-btn--ghost\" href=\"mailto:oversea@trumonytechs.com?subject=Thermal%20interface%20material%20inquiry\">Invia un&#039;e-mail a oversea@trumonytechs.com<\/a> <\/div> <\/div> <figure class=\"trumo-hero-fig trumo-hero-fig--photo trumo-hero-fig--full\"> <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\/thermal-interface-materials-family.webp\" alt=\"Tampone termoconduttivo, gel, grasso, cartuccia di adesivo strutturale e composto di incapsulamento disposti accanto a una piastra fredda in alluminio\" width=\"800\" height=\"533\" 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>What a Thermal Interface Material Does, and When a Simpler Joint Is Enough<\/h2> <p class=\"trumo-lede\">A TIM sits between a heat source and the cold plate, heat sink or housing, where it carries heat across the joint; in a battery pack, that is between the cells or modules and the cold plate. Depending on the family, the same layer also insulates, fills open space or bonds the parts in place.<\/p> <div class=\"trumo-stat\"> <div class=\"trumo-stat-n\">21<\/div> <p class=\"trumo-stat-t\">datasheet models across six series, with test methods listed for measured properties<\/p> <\/div> <figure class=\"trumo-fig trumo-fig--scroll\"> <svg viewbox=\"0 0 720 150\" role=\"img\" aria-label=\"Heat path from battery cell through the TIM layer to the cold plate\"> <defs><marker id=\"ttAr\" viewbox=\"0 0 10 10\" refx=\"8\" refy=\"5\" markerwidth=\"7\" markerheight=\"7\" orient=\"auto\"><path d=\"M0 0 L10 5 L0 10 z\" fill=\"#767676\"\/><\/marker><\/defs> <g fill=\"none\" stroke=\"#5F6B7A\" stroke-width=\"1.6\" stroke-linecap=\"round\" stroke-linejoin=\"round\"> <rect x=\"55\" y=\"20\" width=\"11\" height=\"30\" rx=\"2\"\/><rect x=\"70\" y=\"20\" width=\"11\" height=\"30\" rx=\"2\"\/><rect x=\"85\" y=\"20\" width=\"11\" height=\"30\" rx=\"2\"\/> <path d=\"M58 16 h5 M73 16 h5 M88 16 h5\"\/> <rect x=\"237\" y=\"14\" width=\"56\" height=\"14\" rx=\"2\"\/><rect x=\"237\" y=\"38\" width=\"56\" height=\"12\" rx=\"2\"\/> <rect x=\"427\" y=\"18\" width=\"56\" height=\"30\" rx=\"2\"\/> <path d=\"M437 24 v18 M447 24 v18 M457 24 v18 M467 24 v18 M477 24 v18\" stroke-width=\"2\"\/> <path d=\"M617 24 q7 -7 14 0 t14 0 t14 0 t14 0\"\/><path d=\"M617 34 q7 -7 14 0 t14 0 t14 0 t14 0\"\/><path d=\"M617 44 q7 -7 14 0 t14 0 t14 0 t14 0\"\/> <\/g> <rect x=\"237\" y=\"29\" width=\"56\" height=\"8\" fill=\"#FD7000\"\/> <g font-size=\"11\" font-weight=\"700\" fill=\"#1E1E1E\" text-anchor=\"middle\"> <rect x=\"4\" y=\"64\" width=\"142\" height=\"52\" rx=\"3\" fill=\"#F7F8FA\" stroke=\"#E5E7EB\"\/> <text x=\"75\" y=\"94\">Cella o modulo<\/text> <rect x=\"194\" y=\"58\" width=\"142\" height=\"64\" rx=\"3\" fill=\"#C05400\"\/> <text x=\"265\" y=\"94\" fill=\"#FFFFFF\">TIM layer<\/text> <rect x=\"384\" y=\"64\" width=\"142\" height=\"52\" rx=\"3\" fill=\"#F7F8FA\" stroke=\"#E5E7EB\"\/> <text x=\"455\" y=\"94\">Cold plate or housing<\/text> <rect x=\"574\" y=\"64\" width=\"142\" height=\"52\" rx=\"3\" fill=\"#F7F8FA\" stroke=\"#E5E7EB\"\/> <text x=\"645\" y=\"94\">Liquido di raffreddamento<\/text> <\/g> <g stroke=\"#767676\" stroke-width=\"1.4\" marker-end=\"url(#ttAr)\"> <line x1=\"150\" y1=\"90\" x2=\"186\" y2=\"90\"\/><line x1=\"340\" y1=\"90\" x2=\"376\" y2=\"90\"\/><line x1=\"530\" y1=\"90\" x2=\"566\" y2=\"90\"\/> <\/g> <g stroke=\"#E5E7EB\" stroke-width=\"1\"><line x1=\"4\" y1=\"140\" x2=\"716\" y2=\"140\"\/><\/g> <g stroke=\"#C3CCD6\" stroke-width=\"1\"><line x1=\"4\" y1=\"134\" x2=\"4\" y2=\"140\"\/><line x1=\"265\" y1=\"134\" x2=\"265\" y2=\"140\"\/><line x1=\"716\" y1=\"134\" x2=\"716\" y2=\"140\"\/><\/g> <\/svg> <figcaption class=\"trumo-cap\">Where the TIM sits in the heat path of a liquid-cooled battery pack.<\/figcaption> <\/figure> <ul class=\"trumo-checks\"> <li><span class=\"n\">01<\/span><div><b>The photovoltaic laminating pad is not a heat path.<\/b><p>The high-strength silicone pad in the 30101 range made for photovoltaic panel lamination has poor thermal conductivity and cannot be used as a thermal interface material.<\/p><\/div><\/li> <li><span class=\"n\">02<\/span><div><b>Some grease models do not insulate.<\/b><p>Only 30108-0350 is listed as insulating; 30108-0380 and 30108-0500 are not, so those two are ruled out wherever the joint must isolate.<\/p><\/div><\/li> <li><span class=\"n\">03<\/span><div><b>Heat-only joints can skip the seven-day cure.<\/b><p>Both structural adhesive series, 30104 and 30107, list a seven-day cure, so where a joint only moves heat and needs no bond or seal, a pad or gel avoids that wait.<\/p><\/div><\/li> <\/ul> <p>We also make the <a href=\"https:\/\/www.trumonytechs.com\/it\/pf\/piastra-di-raffreddamento-ad-acqua\/\">piastre di raffreddamento a liquido<\/a> on the other side of this joint. Because the TIM fills whatever gap the plate leaves, the gap figure sent with an inquiry should reflect the current plate design. Pack-level cooling choices sit on the <a href=\"https:\/\/www.trumonytechs.com\/it\/gestione-termica-del-pacco-batterie\/\">gestione termica del pacco batterie<\/a> pagina.<\/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>Compare Thermal Interface Materials by Family<\/h2> <p class=\"trumo-lede\">Thermal interface materials split into five families by form and cure: pre-formed pads, dispensed gels, poured potting compounds, structural adhesives and non-curing grease. Because each family is applied differently, the assembly method on your line can rule some families out regardless of their conductivity.<\/p> <ul class=\"trumo-postgrid trumo-postgrid--cols-3\" role=\"list\"><li class=\"trumo-postgrid-item\"><div class=\"trumo-postgrid-fig\"><img width=\"768\" height=\"576\" src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/10006-768x576.jpg\" class=\"attachment-medium_large size-medium_large\" alt=\"Tampone isolante elettrico-trumonytechs\" loading=\"lazy\" decoding=\"async\" sizes=\"auto, (max-width: 900px) 50vw, 340px\" srcset=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/10006-768x576.jpg 768w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/10006-300x225.jpg 300w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/10006.jpg 800w\" \/><\/div><div class=\"trumo-postgrid-body\"><h3 class=\"trumo-postgrid-title\"><a href=\"https:\/\/www.trumonytechs.com\/it\/pf\/thermal-conductive-pad\/\">Pad conduttivo termico<\/a><\/h3><\/div><\/li><li class=\"trumo-postgrid-item\"><div class=\"trumo-postgrid-fig\"><img width=\"768\" height=\"768\" src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel-768x768.jpg\" class=\"attachment-medium_large size-medium_large\" alt=\"Gel termoconduttivo - materiale termoconduttivo\" loading=\"lazy\" decoding=\"async\" sizes=\"auto, (max-width: 900px) 50vw, 340px\" srcset=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel-768x768.jpg 768w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel-300x300.jpg 300w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel-150x150.jpg 150w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel-256x256.jpg 256w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel.jpg 800w\" \/><\/div><div class=\"trumo-postgrid-body\"><h3 class=\"trumo-postgrid-title\"><a href=\"https:\/\/www.trumonytechs.com\/it\/pf\/thermal-conductive-gel\/\">Gel termoconduttivo<\/a><\/h3><\/div><\/li><li class=\"trumo-postgrid-item\"><div class=\"trumo-postgrid-fig\"><img width=\"750\" height=\"519\" src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/HTB1X8Nwerus3KVjSZKbq6xqkFXaQ.jpg\" class=\"attachment-medium_large size-medium_large\" alt=\"COLLA DI POTTING-Materiali per l&#039;interfaccia termica\" loading=\"lazy\" decoding=\"async\" sizes=\"auto, (max-width: 900px) 50vw, 340px\" srcset=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/HTB1X8Nwerus3KVjSZKbq6xqkFXaQ.jpg 750w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/HTB1X8Nwerus3KVjSZKbq6xqkFXaQ-300x208.jpg 300w\" \/><\/div><div class=\"trumo-postgrid-body\"><h3 class=\"trumo-postgrid-title\"><a href=\"https:\/\/www.trumonytechs.com\/it\/pf\/potting-glue\/\">Composto per incapsulamento<\/a><\/h3><\/div><\/li><li class=\"trumo-postgrid-item\"><div class=\"trumo-postgrid-fig\"><img width=\"768\" height=\"768\" src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/THERMAL-CONDUCTIVE-STRUCTURAL-ADHESIVE-768x768.webp\" class=\"attachment-medium_large size-medium_large\" alt=\"Grasso siliconico termoconduttivo - Trumonytechs\" loading=\"lazy\" decoding=\"async\" sizes=\"auto, (max-width: 900px) 50vw, 340px\" srcset=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/THERMAL-CONDUCTIVE-STRUCTURAL-ADHESIVE-768x768.webp 768w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/THERMAL-CONDUCTIVE-STRUCTURAL-ADHESIVE-300x300.webp 300w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/THERMAL-CONDUCTIVE-STRUCTURAL-ADHESIVE-150x150.webp 150w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/THERMAL-CONDUCTIVE-STRUCTURAL-ADHESIVE-256x256.webp 256w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/THERMAL-CONDUCTIVE-STRUCTURAL-ADHESIVE.webp 960w\" \/><\/div><div class=\"trumo-postgrid-body\"><h3 class=\"trumo-postgrid-title\"><a href=\"https:\/\/www.trumonytechs.com\/it\/pf\/thermal-conductive-structural-adhesive\/\">Adesivo strutturale termoconduttivo<\/a><\/h3><\/div><\/li><li class=\"trumo-postgrid-item\"><div class=\"trumo-postgrid-fig\"><img width=\"600\" height=\"600\" src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermally-Conductive-Silicone-Grease4.jpg\" class=\"attachment-medium_large size-medium_large\" alt=\"Grasso siliconico termoconduttivo - materiale termoconduttivo\" loading=\"lazy\" decoding=\"async\" sizes=\"auto, (max-width: 900px) 50vw, 340px\" srcset=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermally-Conductive-Silicone-Grease4.jpg 600w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermally-Conductive-Silicone-Grease4-300x300.jpg 300w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermally-Conductive-Silicone-Grease4-150x150.jpg 150w, https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermally-Conductive-Silicone-Grease4-256x256.jpg 256w\" \/><\/div><div class=\"trumo-postgrid-body\"><h3 class=\"trumo-postgrid-title\"><a href=\"https:\/\/www.trumonytechs.com\/it\/pf\/thermal-conductive-silicone-grease\/\">Grasso siliconico termoconduttivo<\/a><\/h3><\/div><\/li><\/ul> <p>The two structural adhesives are measured by different methods, so their conductivity figures should be compared with that difference in mind. Hardness also runs on different scales: pads span Shore 00 5\u201380 by model, cured gels read Shore 00 60, potting compounds read Shore A 20\u201350, and the adhesives read on Shore D.<\/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>Match the TIM Family to Your Cell-to-Cold-Plate Joint<\/h2> <p class=\"trumo-lede\">In EV and ESS battery packs, the main applications, four joint types map onto four TIM families, depending on whether the gap is set by a sheet, dispensed, load-bearing or filled around parts. Each card follows an application scenario listed in the datasheets.<\/p> <div class=\"trumo-cards trumo-cards--2 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\/tim-joint-pad-cells-cold-plate.webp\" alt=\"Prismatic battery cells on an aluminum cold plate with a gray thermal conductive pad in the gap\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3>Cells on a cold plate with a set gap <span class=\"trumo-card-to\">\u2192 pad<\/span><\/h3> <p>Pads are listed for prismatic cells, cylindrical cells and serpentine cold plates, with PI-reinforced structures for larger sheets.<\/p> <div class=\"trumo-card-spec trumo-card-spec--line\">Four structures: unreinforced, PI film, PI tape, glass fiber<\/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\/tim-joint-gel-automated-dispensing.webp\" alt=\"Automated nozzle dispensing beads of thermal conductive gel onto a cold plate\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3>Dispensed on an automated line <span class=\"trumo-card-to\">\u2192 gel<\/span><\/h3> <p>The two-component gel is dispensed automatically under low assembly stress and conforms closely to the interface.<\/p> <div class=\"trumo-card-spec trumo-card-spec--line\">Part A viscosity 10\u00d710\u2074\u201390\u00d710\u2074 cps at 25 \u00b0C, #14 rotor<\/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\/tim-joint-structural-adhesive-bonding.webp\" alt=\"Cella della batteria abbassata su una piastra fredda contenente perline di adesivo strutturale\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3>Cellule legate alla piastra fredda <span class=\"trumo-card-to\">\u2192 polyurethane adhesive<\/span><\/h3> <p>The polyurethane adhesive fixes cells to the cold plate once cured and is aimed at high-load, bonding and sealing joints.<\/p> <div class=\"trumo-card-spec trumo-card-spec--line\">Surface dry in 35 min at 25 \u00b0C \u00b7 Shore D 65\u201370<\/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\/tim-joint-potting-module.webp\" alt=\"Battery module with cylindrical cells embedded in black potting compound, a mixing cup beside it\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3>Module filled, insulated or potted <span class=\"trumo-card-to\">\u2192 potting compound<\/span><\/h3> <p>Mixed by hand and poured, the potting compound fills, insulates and pots the module, then damps vibration once cured.<\/p> <div class=\"trumo-card-spec trumo-card-spec--line\">Density 1.7\u20133.2 g\/cc (ASTM D792)<\/div> <\/div> <\/article> <\/div> <p>A thin interface points to grease instead, with a category-level bond line below 50 \u03bcm. Grease is non-curing, so the parts must be clamped to keep the layer in place. Where the choice is still between a pad and a dispensed material, the <a href=\"https:\/\/www.trumonytechs.com\/it\/materiali-di-interfaccia-termica-batteria\/\">battery pack TIM selection guide<\/a> works through gap, assembly stress and cure in that order.<\/p> <\/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>Silicone, Polyurethane or Epoxy TIM: Chemistry and Insulation<\/h2> <p class=\"trumo-lede\">TIM chemistry follows the family: pads, gels, potting compounds and grease are silicone formulations, while the structural adhesives are epoxy (30104-0120) or polyurethane (30107). Insulation and siloxane data differ by model, and the table below shows the listed range for each family.<\/p> <div class=\"trumo-tablewrap trumo-tablewrap--compare\"> <table> <thead><tr><th scope=\"col\">Family<\/th><th scope=\"col\">Chimica<\/th><th scope=\"col\">Dielectric strength, kV\/mm<\/th><th scope=\"col\">Resistivit\u00e0 volumetrica, \u03a9\u00b7cm<\/th><th scope=\"col\">D4\u2013D10 siloxane content (GC)<\/th><\/tr><\/thead> <tbody> <tr><td>Pad \u00b7 30101<\/td><td>Silicone<\/td><td>&gt;6 to &gt;12 by model<\/td><td>&gt;10\u00b9\u00b9 to &gt;10\u00b9\u00b2<\/td><td>&lt;100 ppm, all 5 models<\/td><\/tr> <tr><td>Gel \u00b7 30102<\/td><td>Silicone<\/td><td>8<\/td><td>&gt;10\u00b9\u00b2<\/td><td>&lt;100 ppm for 0150, 0200, 0350; not listed for others<\/td><\/tr> <tr><td>Potting \u00b7 30103-0080<\/td><td>Silicone<\/td><td>10<\/td><td>&gt;10\u00b9\u00b2<\/td><td>&lt;100 ppm<\/td><\/tr> <tr><td>Structural adhesive \u00b7 30104-0120<\/td><td>Epoxy<\/td><td>12<\/td><td>&gt;10\u00b9\u00b2<\/td><td>Non elencato<\/td><\/tr> <tr><td>Structural adhesive \u00b7 30107-0120, 30107-0200<\/td><td>Poliuretano<\/td><td>16 (30107-0120); 14 (30107-0200)<\/td><td>1.5 \u00d7 10\u00b9\u00b3 (both models)<\/td><td>Non elencato<\/td><\/tr> <tr><td>Grease \u00b7 30108<\/td><td>Silicone<\/td><td>Not listed; insulating: 0350 only<\/td><td>Non elencato<\/td><td>Non elencato<\/td><\/tr> <\/tbody> <\/table> <\/div> <div class=\"trumo-callout\"><p>No silicone-free pad, gel, potting compound or grease is listed in the current data. The two structural adhesives are epoxy- and polyurethane-based, and their datasheets do not state silicone or siloxane content.<\/p><\/div> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">05<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>Three TIM Model Choices to Settle Before Quoting<\/h2> <p class=\"trumo-lede\">Three model choices in the TIM data are worth settling before a quote: insulation against conductivity in grease, strength within the polyurethane adhesive, and reinforcement in pads. In grease and pads a gain in one property costs another, while the two polyurethane models share one conductivity value and differ in strength.<\/p> <div class=\"trumo-pair\"> <div><b>Grease: insulation or conductivity<\/b><p>30108-0500 lists 5.0 W\/m\u00b7K, the top of the grease range, but is non-insulating, while 30108-0350 is the insulating model at 3.5 W\/m\u00b7K. Where the grease layer must isolate, 0350 is the only grease model marked insulating, at 1.5 W\/m\u00b7K less; its datasheet gives no breakdown value, so ask for one against your working voltage.<\/p><\/div> <div><b>Polyurethane adhesive: same conductivity, different strength<\/b><p>30107-0120 and 30107-0200 both list 2.05 W\/m\u00b7K, yet 0120 lists 11 MPa Al\/Al shear and 14% elongation against 8 MPa and 8% for 0200. Where the bond carries the load, the shear figures are what separate the two models.<\/p><\/div> <\/div> <p>Pads carry the third trade-off. The unreinforced pad leads the four pad structures on conductivity and compression rebound at lower cost, yet it is weak, tacks poorly and is harder to place without trapping bubbles. PI film, PI tape and glass-fiber reinforcement add body strength at higher cost, and glass fiber also gives up some conductivity. The recommended sheet size grows from 300 \u00d7 200 mm to 500 \u00d7 420 mm with PI reinforcement.<\/p> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">06<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>What Sets TIM Pricing and What to Send for a Quote<\/h2> <p class=\"trumo-lede\">TIM pricing is not published on this page; quotes are set by model, volume and packaging form. Within the pad family, reinforced structures cost more than the unreinforced pad, so the structure is worth settling before a pad price is requested.<\/p> <p>What to send with an inquiry:<\/p> <ul class=\"trumo-chips\"> <li>Heat load of the cells, module or component<\/li> <li>Gap thickness, contact area and clamping pressure<\/li> <li>Target temperature<\/li> <li>Whether the joint must bond, seal or insulate<\/li> <li>Operating environment<\/li> <li>Family or model of interest and expected annual volume<\/li> <\/ul> <p>What a quote includes, payment terms, pre-shipment inspection, packaging and shipping documents are not listed here, so they are worth raising as questions in the RFQ. Freight time and import requirements depend on the destination port and are confirmed at quote stage.<\/p> <div class=\"trumo-split\"> <figure class=\"trumo-fig trumo-fig--scroll\"> <svg viewbox=\"0 0 520 240\" role=\"img\" aria-label=\"Model, volume and packaging form feeding a TIM quote\"> <defs><marker id=\"ttQ\" viewbox=\"0 0 10 10\" refx=\"8\" refy=\"5\" markerwidth=\"7\" markerheight=\"7\" orient=\"auto\"><path d=\"M0 0 L10 5 L0 10 z\" fill=\"#767676\"\/><\/marker><\/defs> <g stroke=\"#F0F0F0\" stroke-width=\"1\"><line x1=\"0\" y1=\"120\" x2=\"520\" y2=\"120\"\/><line x1=\"292\" y1=\"8\" x2=\"292\" y2=\"232\"\/><\/g> <g fill=\"#F7F8FA\" stroke=\"#E5E7EB\"><rect x=\"12\" y=\"20\" width=\"180\" height=\"48\" rx=\"3\"\/><rect x=\"12\" y=\"96\" width=\"180\" height=\"48\" rx=\"3\"\/><rect x=\"12\" y=\"172\" width=\"180\" height=\"48\" rx=\"3\"\/><\/g> <g fill=\"none\" stroke=\"#5F6B7A\" stroke-width=\"1.5\" stroke-linecap=\"round\" stroke-linejoin=\"round\"> <path d=\"M28 30 h14 l6 6 v22 h-20 z\"\/><path d=\"M42 30 v6 h6\"\/><path d=\"M32 44 h12 M32 50 h12\"\/> <rect x=\"26\" y=\"126\" width=\"12\" height=\"10\" rx=\"1\"\/><rect x=\"40\" y=\"126\" width=\"12\" height=\"10\" rx=\"1\"\/><rect x=\"33\" y=\"114\" width=\"12\" height=\"10\" rx=\"1\"\/> <ellipse cx=\"39\" cy=\"182\" rx=\"10\" ry=\"3\"\/><path d=\"M29 182 v24 a10 3 0 0 0 20 0 v-24\"\/><path d=\"M29 194 a10 3 0 0 0 20 0\"\/> <\/g> <g font-size=\"13\" font-weight=\"700\" fill=\"#1E1E1E\"><text x=\"64\" y=\"49\">Model<\/text><text x=\"64\" y=\"125\">Volume<\/text><text x=\"64\" y=\"201\">Packaging form<\/text><\/g> <g fill=\"none\" stroke=\"#767676\" stroke-width=\"1.4\"><path d=\"M192 44 C244 44 246 120 292 120\"\/><path d=\"M192 120 H292\"\/><path d=\"M192 196 C244 196 246 120 292 120\"\/><\/g> <line x1=\"292\" y1=\"120\" x2=\"324\" y2=\"120\" stroke=\"#767676\" stroke-width=\"1.4\" marker-end=\"url(#ttQ)\"\/> <circle cx=\"292\" cy=\"120\" r=\"5\" fill=\"#FFFFFF\" stroke=\"#FCAE00\" stroke-width=\"2.4\"\/> <path d=\"M330 62 H464 L480 78 V178 H330 Z\" fill=\"#FFF4EB\" stroke=\"#FD7000\" stroke-width=\"1.6\"\/> <path d=\"M464 62 V78 H480\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.6\"\/> <rect x=\"330\" y=\"62\" width=\"6\" height=\"116\" fill=\"#FD7000\"\/> <text x=\"350\" y=\"98\" font-size=\"14\" font-weight=\"700\" fill=\"#1E1E1E\">Quote<\/text> <g stroke=\"#767676\" stroke-width=\"1.4\" opacity=\".45\"><line x1=\"350\" y1=\"118\" x2=\"460\" y2=\"118\"\/><line x1=\"350\" y1=\"134\" x2=\"446\" y2=\"134\"\/><line x1=\"350\" y1=\"150\" x2=\"454\" y2=\"150\"\/><line x1=\"350\" y1=\"166\" x2=\"420\" y2=\"166\"\/><\/g> <g stroke=\"#FD7000\" stroke-width=\"1.2\" opacity=\".8\"><line x1=\"494\" y1=\"20\" x2=\"510\" y2=\"20\"\/><line x1=\"502\" y1=\"12\" x2=\"502\" y2=\"28\"\/><\/g> <\/svg> <\/figure> <div class=\"trumo-cta\" data-cta=\"mid\"> <p>Settled on a family? Send the gap thickness and heat load with it for a model-level quote.<\/p> <div class=\"trumo-cta-btns\"> <button type=\"button\" class=\"trumo-btn trumo-btn--primary trumo-quote-open\" popovertarget=\"trumo-quote\" aria-haspopup=\"dialog\">Richiedi un preventivo<\/button> <a class=\"trumo-btn trumo-btn--ghost\" href=\"mailto:oversea@trumonytechs.com?subject=Thermal%20interface%20material%20inquiry\">Send an email<\/a> <\/div> <\/div> <\/div> <\/section> <\/div> <section class=\"trumo-band trumo-blueprint\"> <div class=\"trumo-wrap\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">07<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>How TIM Datasheet Values Are Measured and Which Documents to Request<\/h2> <p class=\"trumo-lede\">The conductivity, dielectric and flame figures on this page come from model datasheets that name their test method, so incoming material can be checked against the same standard. Acceptance limits for incoming inspection are not part of the datasheets and still have to be agreed for each model.<\/p> <div class=\"trumo-tiles\"> <div class=\"trumo-tile\"> <svg viewbox=\"0 0 40 40\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\" role=\"img\" aria-label=\"Conducibilit\u00e0 termica\"><rect x=\"5\" y=\"5\" width=\"30\" height=\"6\" rx=\"1\"\/><rect x=\"5\" y=\"29\" width=\"30\" height=\"6\" rx=\"1\"\/><path d=\"M13 14 v11 M10 22 l3 3 3 -3 M20 14 v11 M17 22 l3 3 3 -3 M27 14 v11 M24 22 l3 3 3 -3\"\/><\/svg> <b>Conducibilit\u00e0 termica<\/b><p>ISO 22007-2 for pads, gels, potting compounds, grease and 30104-0120; ASTM D5470 for 30107.<\/p> <\/div> <div class=\"trumo-tile\"> <svg viewbox=\"0 0 40 40\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\" role=\"img\" aria-label=\"Dielettrico\"><path d=\"M23 3 L15 14 H22 L17 22\"\/><path d=\"M5 24 h30 M5 29 h30\"\/><path d=\"M20 29 v4 M13 33 h14 M16 36 h8\"\/><\/svg> <b>Dielettrico<\/b><p>Dielectric strength to ASTM D149 and volume resistivity to ASTM D257; GB\/T 1408.1 and GB\/T 31838.2 for 30107.<\/p> <\/div> <div class=\"trumo-tile\"> <svg viewbox=\"0 0 40 40\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\" role=\"img\" aria-label=\"Fiamma\"><rect x=\"16\" y=\"3\" width=\"8\" height=\"17\" rx=\"1\"\/><path d=\"M20 37 c-5 0 -8 -3 -8 -7 c0 -4 3 -5 4 -9 c2 2 3 4 3 6 c1.5 -1.5 2 -3 2 -5 c3.5 2.5 7 5.5 7 8.5 c0 4 -3 6.5 -8 6.5 z\"\/><\/svg> <b>Fiamma<\/b><p>UL 94 vertical burn test, listed as V-0 on the datasheets that report flammability.<\/p> <\/div> <div class=\"trumo-tile\"> <svg viewbox=\"0 0 40 40\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\" role=\"img\" aria-label=\"Meccanico\"><path d=\"M9 13 h7 l2 3 h4 l2 -3 h7 v14 h-7 l-2 -3 h-4 l-2 3 h-7 z\"\/><path d=\"M7 20 h-5 M4 17 l-3 3 3 3 M33 20 h5 M36 17 l3 3 -3 3\"\/><\/svg> <b>Meccanico<\/b><p>Hardness to ASTM D2240 and density to ASTM D792, with GB\/T methods for 30107; tensile strength to ASTM D412, or GB\/T 528 for both structural adhesives.<\/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=\"Sensore a sorgente piana transitoria fissato tra due campioni di pad termico per un test di conducibilit\u00e0 termica\" 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=\"Campione di tampone termico tra due elettrodi di ottone in un tester di rigidit\u00e0 dielettrica\" 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=\"Striscia di prova del materiale fissata verticalmente in una camera di combustione durante una prova di combustione verticale\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"><img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/10004-768x432.jpg\" alt=\"Trumonytechs laboratory with test benches and a technician in a lab coat\" width=\"768\" height=\"432\" loading=\"lazy\" decoding=\"async\"><\/div> <p>No project references appear on this page, so the checkable evidence is the datasheet values and methods above. The gel, potting, grease and 30104-0120 data describe RoHS-compliant formulations; test reports, certificates and batch records are not part of this page. Warranty terms are not published on this page. Ask for them, and for any documents your market requires, with your RFQ.<\/p> <\/div> <\/section> <div class=\"trumo-wrap\"> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\"><span class=\"trumo-secno\">08<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>Thermal Interface Materials FAQ<\/h2> <div class=\"trumo-faq\"> <details><summary><span class=\"q\">What do thermal interface materials do in a battery pack?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>Heat transfer is common to every family here, so the second job the joint needs decides the choice. Pads and gels also insulate and damp vibration, potting compounds fill and insulate, the structural adhesives add a structural bond, and grease forms a thin non-curing layer.<\/p><\/details> <details><summary><span class=\"q\">Should a battery line use pads or dispensed gel?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>Pads arrive as pre-formed sheets and are placed by hand, so the line needs no mixing equipment for them. The two-component gel is mixed and dispensed automatically, is surface-dry after 90 min and fully cured after 24 h at 25 \u00b0C, and its data describe cured performance as equivalent to a pad.<\/p><\/details> <details><summary><span class=\"q\">Which substrates can the structural adhesives bond?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>The epoxy 30104-0120 is described as bonding a range of metals, PET, PC, ABS and PET film, and its datasheet lists 9 MPa aluminum-to-aluminum lap shear. The polyurethane 30107 is described for bonding cells to the cold plate; other substrates are not listed for it, so other pairings need their own bond test.<\/p><\/details> <details><summary><span class=\"q\">Are these materials UL certified?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>No UL certification or yellow card is claimed for them. The pad, gel, 30103-0080 and structural adhesive datasheets list a UL 94 V-0 flame rating, which is a material flammability rating from the UL 94 test. The specimen thickness behind that rating is not stated and is worth requesting if your design depends on it.<\/p><\/details> <details><summary><span class=\"q\">What temperature range is recommended for each material?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>Pads, gels and potting model 30103-0080 list a recommended range of \u221240 to +150 \u00b0C, and the epoxy 30104-0120 lists \u221210 to +120 \u00b0C. No range is listed for the polyurethane 30107 models, the grease, or potting models 30103-0200, 0300 and 0400, so those ranges have to be confirmed before specifying them.<\/p><\/details> <details><summary><span class=\"q\">Is thermal resistance published for these models?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>No model on this page has a published thermal resistance value; conductivity is the listed thermal figure. In any assembly, resistance also depends on bond-line thickness and clamping pressure, which vary with each design, so those two values belong in the RFQ alongside your gap and heat load.<\/p><\/details> <details><summary><span class=\"q\">What are the MOQ, sample terms and lead time?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>MOQ, sample terms, production lead time, supply capacity and after-sales support terms are outside what this page publishes. Ask for all of them in your RFQ, together with your expected annual volume, delivery schedule and destination port and the family or model you are considering.<\/p><\/details> <\/div> <\/section> <\/div> <\/main>","protected":false},"excerpt":{"rendered":"<p>6 series 21 datasheet models Test methods listed for measured values Thermal Interface Materials: Five Families, 21 Datasheet Models Trumonytechs supplies thermal interface materials in five families: pads, two-component gels, potting compounds, structural adhesives and silicone grease, across 21 datasheet models. EV and energy storage (ESS) battery packs are the main applications, and the same &#8230; <a title=\"Materiali per l&#039;interfaccia termica\" class=\"read-more\" href=\"https:\/\/www.trumonytechs.com\/it\/thermal-interface-materials\/\" aria-label=\"Per saperne di pi\u00f9 su Thermal Interface Materials\">Leggi tutto<\/a><\/p>","protected":false},"author":2,"featured_media":25846,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-24452","page","type-page","status-publish","has-post-thumbnail"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.6 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Thermal Interface Materials in Five Families | Trumonytechs<\/title>\n<meta name=\"description\" content=\"Thermal interface materials in five families: pads, gels, potting, structural adhesives and grease. 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