{"id":26160,"date":"2025-07-07T00:53:08","date_gmt":"2025-07-07T00:53:08","guid":{"rendered":"https:\/\/trumonytechs.com\/?post_type=thegem_pf_item&#038;p=26160"},"modified":"2026-09-26T09:09:59","modified_gmt":"2026-09-26T09:09:59","slug":"hovezeto-gel","status":"publish","type":"thegem_pf_item","link":"https:\/\/www.trumonytechs.com\/hu\/pf\/thermal-conductive-gel\/","title":{"rendered":"H\u0151vezet\u0151 g\u00e9l"},"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\">Thermal Interface Materials \u00b7 30102 series<\/span> <\/div> <h1>Two-Component Thermal Conductive Gel in Six Silicone Grades<\/h1> <p class=\"trumo-hero-lead\">Trumonytechs supplies thermal conductive gel as a two-part A\/B silicone in six grades, 1.5 to 8.0 W\/m\u00b7K cured, mixed through a helical tube. EV and energy storage (ESS) battery packs are the main applications, and the same gel is supplied for other applications as well. Which grade you need depends on the interface heat load, and we publish each value against its test method.<\/p> <p class=\"trumo-hero-note\">Send the grade you are considering, the quantity and the packaging format \u2014 we will confirm the grade against the published data sheet before quoting.<\/p> <div class=\"trumo-hero-btns\"> <button type=\"button\" class=\"trumo-btn trumo-btn--primary trumo-quote-open\" popovertarget=\"trumo-quote\" aria-haspopup=\"dialog\">Request the data sheet<\/button> <button type=\"button\" class=\"trumo-btn trumo-btn--ghost trumo-quote-open\" popovertarget=\"trumo-quote\" aria-haspopup=\"dialog\">Send your interface conditions<\/button> <\/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-conductive-gel-30102.webp\" alt=\"Two-part thermal conductive gel cartridge with a helical mixing nozzle beside a cold plate with dispensed gel beads\" width=\"1200\" height=\"800\" 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 dispensed gel does at a thermal interface \u2014 and when a pad is enough<\/h2> <p class=\"trumo-lede\">A dispensed gel is applied as a liquid and cures in place, which is why it belongs to assembly processes built around automated dispensing rather than manual placement. The material is a two-part silicone with extremely low surface tension that conforms to the interface it is dispensed onto, and its cured performance is specified as equivalent to a <a href=\"https:\/\/www.trumonytechs.com\/hu\/pf\/hovezeto-pad\/\">h\u0151vezet\u0151 pad<\/a>.<\/p> <div class=\"trumo-stat\"> <div class=\"trumo-stat-n\">8.0 W\/m\u00b7K<\/div> <p class=\"trumo-stat-t\">highest cured grade in the series, measured to ISO 22007-2<\/p> <\/div> <figure class=\"trumo-fig trumo-fig--scroll\"> <svg viewbox=\"0 0 820 170\" role=\"img\" aria-label=\"Heat path through a cured thermal conductive gel layer\"> <defs><marker id=\"dAr\" 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=\"62\" y=\"34\" width=\"32\" height=\"18\" rx=\"2\"\/><path d=\"M68 52 v5 M78 52 v5 M88 52 v5\"\/> <path d=\"M64 30 q5 -6 10 0 t10 0 t8 0\"\/><path d=\"M64 22 q5 -6 10 0 t10 0 t8 0\"\/> <path d=\"M390 34 l5 -5 l5 5 l5 -5 l5 5 l5 -5 l5 5 l5 -5\"\/> <rect x=\"390\" y=\"36\" width=\"40\" height=\"16\" rx=\"1\"\/> <path d=\"M394 52 l6 -16 M404 52 l6 -16 M414 52 l6 -16 M424 52 l6 -16\"\/> <path d=\"M556 52 h40\"\/><path d=\"M560 52 v-14 M568 52 v-18 M576 52 v-22 M584 52 v-18 M592 52 v-14\"\/> <path d=\"M726 52 a18 18 0 0 1 32 0\" stroke-dasharray=\"4 4\"\/><path d=\"M732 40 a12 12 0 0 1 20 0\" stroke-dasharray=\"4 4\"\/> <path d=\"M742 30 v-10\"\/><path d=\"M730 34 l-6 -8\"\/><path d=\"M754 34 l6 -8\"\/> <\/g> <g> <rect x=\"224\" y=\"30\" width=\"40\" height=\"6\" rx=\"1\" fill=\"none\" stroke=\"#5F6B7A\" stroke-width=\"1.6\"\/> <rect x=\"224\" y=\"38\" width=\"40\" height=\"8\" fill=\"#FD7000\"\/> <rect x=\"224\" y=\"48\" width=\"40\" height=\"6\" rx=\"1\" fill=\"none\" stroke=\"#5F6B7A\" stroke-width=\"1.6\"\/> <\/g> <g font-size=\"11\" font-weight=\"700\" text-anchor=\"middle\"> <rect x=\"12\" y=\"70\" width=\"132\" height=\"56\" rx=\"3\" fill=\"#F7F8FA\" stroke=\"#E5E7EB\"\/><text x=\"78\" y=\"95\" fill=\"#1E1E1E\"><tspan x=\"78\" y=\"95\">Heat-generating <\/tspan><tspan x=\"78\" y=\"111\">component<\/tspan><\/text> <rect x=\"178\" y=\"70\" width=\"132\" height=\"56\" rx=\"3\" fill=\"#C05400\"\/><text x=\"244\" y=\"103\" fill=\"#fff\">Cured gel layer<\/text> <rect x=\"344\" y=\"70\" width=\"132\" height=\"56\" rx=\"3\" fill=\"#F7F8FA\" stroke=\"#E5E7EB\"\/><text x=\"410\" y=\"95\" fill=\"#1E1E1E\"><tspan x=\"410\" y=\"95\">Mating metal <\/tspan><tspan x=\"410\" y=\"111\">surface<\/tspan><\/text> <rect x=\"510\" y=\"70\" width=\"132\" height=\"56\" rx=\"3\" fill=\"#F7F8FA\" stroke=\"#E5E7EB\"\/><text x=\"576\" y=\"103\" fill=\"#1E1E1E\">H\u0171t\u00e9si \u00fatvonal<\/text> <rect x=\"676\" y=\"70\" width=\"132\" height=\"56\" rx=\"3\" fill=\"#F7F8FA\" stroke=\"#E5E7EB\"\/><text x=\"742\" y=\"103\" fill=\"#1E1E1E\">Ambient<\/text> <\/g> <g stroke=\"#767676\" stroke-width=\"1.4\" marker-end=\"url(#dAr)\"> <line x1=\"150\" y1=\"98\" x2=\"172\" y2=\"98\"\/><line x1=\"316\" y1=\"98\" x2=\"338\" y2=\"98\"\/> <line x1=\"482\" y1=\"98\" x2=\"504\" y2=\"98\"\/><line x1=\"648\" y1=\"98\" x2=\"670\" y2=\"98\"\/> <\/g> <g stroke=\"#E5E7EB\" stroke-width=\"1\"><line x1=\"12\" y1=\"158\" x2=\"808\" y2=\"158\"\/><\/g> <g stroke=\"#C3CCD6\" stroke-width=\"1\"><line x1=\"12\" y1=\"152\" x2=\"12\" y2=\"158\"\/><line x1=\"410\" y1=\"152\" x2=\"410\" y2=\"158\"\/><line x1=\"808\" y1=\"152\" x2=\"808\" y2=\"158\"\/><\/g> <\/svg> <figcaption class=\"trumo-cap\">Where the gel sits in the heat path. Grade selection changes one link, not the chain.<\/figcaption> <\/figure> <ul class=\"trumo-checks\"> <li><span class=\"n\">01<\/span><div><b>A pad may already be enough<\/b><p>Where the interface is uniform and you are not running a dispensing line, a die-cut pad is the simpler process. Cured gel is specified as equivalent to a pad, and the interface data that would let you compare them properly \u2014 bond line thickness, thermal impedance \u2014 is not published for this series.<\/p><\/div><\/li> <li><span class=\"n\">02<\/span><div><b>You need it apart again<\/b><p>Whether cured gel can be separated and reapplied is not published for this series. If disassembly is part of your service plan, confirm it before you specify.<\/p><\/div><\/li> <li><span class=\"n\">03<\/span><div><b>Outside \u221240 to +150 \u00b0C<\/b><p>The published recommended temperature range is \u221240 to +150 \u00b0C. Operation outside it falls outside that published range, and continuous-service limits are not published for this series.<\/p><\/div><\/li> <\/ul> <p>The difference between the two forms is how the material reaches the interface. A pad is die-cut and placed; the gel is metered, mixed through a helical tube and cured in place. Which one suits you follows from your assembly process and your interface geometry \u2014 and the geometry side needs data this page does not publish. The full <a href=\"https:\/\/www.trumonytechs.com\/hu\/termikus-hatarfeluleti-anyagok\/\">termikus hat\u00e1rfel\u00fcleti anyagok<\/a> range covers the other forms.<\/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>Which thermal conductive gel grade fits your heat load<\/h2> <p class=\"trumo-lede\">Across the six grades, the data sheet lists the same values for hardness, tack-free time, cure time at 25 \u00b0C, breakdown voltage, volume resistivity and recommended temperature range. What changes by grade is cured thermal conductivity, cured density and A\/B viscosity \u2014 so grade selection is a thermal question with a dispensing consequence attached.<\/p> <div class=\"trumo-tablewrap\"> <table> <thead><tr><th>Ingatlan<\/th><th>30102-0150<\/th><th>30102-0200<\/th><th>30102-0350<\/th><th>30102-0400<\/th><th>30102-0600<\/th><th>30102-0800<\/th><th>M\u00f3dszer<\/th><\/tr><\/thead> <tbody> <tr><td>Cured thermal conductivity, W\/m\u00b7K<\/td><td>1.5<\/td><td>2.0<\/td><td>3.5<\/td><td>4.0<\/td><td>6.0<\/td><td>8.0<\/td><td>ISO 22007-2<\/td><\/tr> <tr><td>Cured density, g\/cc<\/td><td>1.9<\/td><td>2.0<\/td><td>2.94<\/td><td>3.2<\/td><td>3.4<\/td><td>3.5<\/td><td>ASTM D792<\/td><\/tr> <tr><td>Hardness, Shore 00<\/td><td>60<\/td><td>60<\/td><td>60<\/td><td>60<\/td><td>60<\/td><td>60<\/td><td>ASTM D2240<\/td><\/tr> <tr><td>L\u00e1ng\u00e1ll\u00f3s\u00e1g<\/td><td>V-0<\/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>Tack-free time at 25 \u00b0C<\/td><td>90 min<\/td><td>90 min<\/td><td>90 min<\/td><td>90 min<\/td><td>90 min<\/td><td>90 min<\/td><td>K\u00e9zik\u00f6nyv<\/td><\/tr> <tr><td>Cure time at 25 \u00b0C<\/td><td>24 h<\/td><td>24 h<\/td><td>24 h<\/td><td>24 h<\/td><td>24 h<\/td><td>24 h<\/td><td>Durometer<\/td><\/tr> <tr><td>Breakdown voltage, kV\/mm<\/td><td>8<\/td><td>8<\/td><td>8<\/td><td>8<\/td><td>8<\/td><td>8<\/td><td>ASTM D149<\/td><\/tr> <tr><td>T\u00e9rfogati ellen\u00e1ll\u00e1s, \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\u00b2<\/td><td>&gt;10\u00b9\u00b2<\/td><td>ASTM D257<\/td><\/tr> <tr><td>Recommended temperature range, \u00b0C<\/td><td>\u221240 to +150<\/td><td>\u221240 to +150<\/td><td>\u221240 to +150<\/td><td>\u221240 to +150<\/td><td>\u221240 to +150<\/td><td>\u221240 to +150<\/td><td>\u2014<\/td><\/tr> <tr><td>Part A viscosity at 25 \u00b0C, \u00d710\u2074 cps<\/td><td>10<\/td><td>20<\/td><td>15<\/td><td>28<\/td><td>50<\/td><td>90<\/td><td>#14 spindle<\/td><\/tr> <tr><td>Part B viscosity at 25 \u00b0C, \u00d710\u2074 cps<\/td><td>9<\/td><td>15<\/td><td>16<\/td><td>25<\/td><td>45<\/td><td>85<\/td><td>#14 spindle<\/td><\/tr> <\/tbody> <\/table> <\/div> <p class=\"trumo-note\">These are the six grades with published data sheets. Read the conductivity value from the table rather than inferring it from the part number.<\/p> <p>Tensile strength is 0.01 MPa and elongation 30% on every grade, both to ASTM D412. This series is not described for structural bonding. Where the joint has to carry load, the polyurethane <a href=\"https:\/\/www.trumonytechs.com\/hu\/pf\/hovezeto-szerkezeti-ragaszto\/\">h\u0151vezet\u0151 szerkezeti ragaszt\u00f3<\/a> is the product described for bonding cells to a cooling plate \u2014 this one is not.<\/p> <p>Viscosity is the number to check against your equipment, not just the conductivity. Part A runs from 10 to 90 \u00d710\u2074 cps at 25 \u00b0C on a #14 spindle and Part B from 9 to 85 \u00d710\u2074 cps, and the values do not track conductivity in a straight line \u2014 30102-0350 sits below 30102-0200 on Part A. Check the A and B viscosity of the specific grade you are considering against your pump and mixing setup. Where the interface is thin and flat rather than variable, <a href=\"https:\/\/www.trumonytechs.com\/hu\/pf\/hovezeto-szilikonzsir\/\">h\u0151vezet\u0151 szilikonzs\u00edr<\/a> is the other form worth pricing.<\/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>Insulation, flame rating, and what the RoHS statement actually covers<\/h2> <p class=\"trumo-lede\">The data sheet lists the same electrical values for all six grades: 8 kV\/mm breakdown voltage to ASTM D149 and volume resistivity above 10\u00b9\u00b2 \u03a9\u00b7cm to ASTM D257. Those are listed values across the range, which means the data sheet does not show insulation changing with the conductivity grade.<\/p> <p>The flame rating is UL 94 V-0 on all six grades. That is a material flammability classification tested to the UL 94 standard \u2014 not a UL certification of the product or of Trumonytechs. If your documentation package needs a UL file number, that is not published here and should be raised in the RFQ.<\/p> <p>The formulation is RoHS-compliant. That describes the formulation rather than a test report, and it does not extend to REACH, halogen-free or FDA status \u2014 none of which are claimed for this series. Low-molecular-weight siloxane content (D4 to D10) is below 100 ppm by GC on grades 0150, 0200 and 0350; the remaining three grades have no published figure.<\/p> <div class=\"trumo-callout\"><p><strong>What this page does not cover:<\/strong> recommended bond line thickness, thermal impedance, mix ratio, pot life and the heat-cure schedule are not published for this series. A design gated on any of them needs those figures confirmed before a grade is specified.<\/p><\/div> <div class=\"trumo-cta\" data-cta=\"mid\"> <p>If you have the grade, the quantity and the packaging format, that is the basis a quotation is built on \u2014 send it and the reply comes back against your figures rather than a published range.<\/p> <div class=\"trumo-cta-btns\"> <a class=\"trumo-btn trumo-btn--primary\" href=\"mailto:oversea@trumonytechs.com?subject=Thermal%20conductive%20gel%20inquiry\">Email the grade and quantity<\/a> <button type=\"button\" class=\"trumo-btn trumo-btn--ghost trumo-quote-open\" popovertarget=\"trumo-quote\" aria-haspopup=\"dialog\">\u00c1raj\u00e1nlat k\u00e9r\u00e9se<\/button> <\/div> <\/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>Dispensing and curing<\/h2> <p class=\"trumo-lede\">The gel is dispensed as an A\/B pair through a helical mixing tube and cures at room temperature or with heat. Tack-free time is 90 minutes at 25 \u00b0C and cure time is 24 hours at 25 \u00b0C. The heat-cure schedule is not published for this series.<\/p> <div class=\"trumo-pair\"> <div><b>What the process needs<\/b><p>Two-part metering and a helical mixing tube are what the material is built around, which is why it is described as suitable for automated dispensing. Pot life, open time and the working window after mixing are not published for this series \u2014 tack-free time is a surface-cure figure and does not define any of them. Equipment selection and line integration are worth raising in the RFQ so they can be addressed against your actual setup.<\/p><\/div> <div><b>What you have after cure<\/b><p>Cured, the material is specified as equivalent to a thermal conductive pad, at Shore 00 60 hardness on every grade. Low assembly stress is the stated design point for this series: the gel conforms as a liquid before it sets. For where this sits in a complete pack, see <a href=\"https:\/\/www.trumonytechs.com\/hu\/az-akkumulator-hokezelese\/\">az akkumul\u00e1tor h\u0151kezel\u00e9se<\/a>.<\/p><\/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> <h2>How the numbers on this page were measured<\/h2> <p class=\"trumo-lede\">Measured properties on this page carry the test method or condition they were taken under, printed next to the value in the table. On a material page that matters more than on a component page, because a conductivity figure without a method is not comparable to anyone else's conductivity figure. Two entries are exceptions and worth naming: the recommended temperature range has no method listed, and viscosity is given with a spindle condition rather than a test standard.<\/p> <div class=\"trumo-tiles\"> <div class=\"trumo-tile\"> <svg viewbox=\"0 0 40 40\" role=\"img\" aria-label=\"H\u0151vezet\u0151 k\u00e9pess\u00e9g teszt ikon\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\"><path d=\"M5 12 H35\"\/><path d=\"M5 30 H35\"\/><ellipse cx=\"18\" cy=\"21\" rx=\"7\" ry=\"3.4\"\/><path d=\"M25 21 H35\"\/><path d=\"M10 27 V15\"\/><path d=\"M7.2 17.8 L10 15 L12.8 17.8\"\/><\/svg> <b>Thermal conductivity \u2014 ISO 22007-2<\/b><p>Transient plane source. Every grade in the table was measured to this method.<\/p> <\/div> <div class=\"trumo-tile\"> <svg viewbox=\"0 0 40 40\" role=\"img\" aria-label=\"L\u00e1ngbesorol\u00e1s ikon\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\"><path d=\"M20 32 a8 8 0 0 1 -8 -8 c0 -5 3.5 -8 5.5 -12.5 c1 3.5 2.5 4.5 4 6 c1.5 -2 2 -4 1.5 -6.5 c3 3.5 5 7.5 5 13 a8 8 0 0 1 -8 8 z\"\/><path d=\"M20 32 a3.5 3.5 0 0 1 -3.5 -3.5 c0 -2.5 2 -3.5 3.5 -6 c1.5 2.5 3.5 3.5 3.5 6 a3.5 3.5 0 0 1 -3.5 3.5 z\"\/><path d=\"M8 36 H32\"\/><\/svg> <b>Flame rating \u2014 UL 94<\/b><p>V-0 classification on all six grades. A material rating, not a product certification.<\/p> <\/div> <div class=\"trumo-tile\"> <svg viewbox=\"0 0 40 40\" role=\"img\" aria-label=\"Electrical insulation test icon\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\"><path d=\"M11 5 H29\"\/><path d=\"M20 5 V10\"\/><path d=\"M20 10 l-4 6 h6 l-4 6\"\/><rect x=\"5\" y=\"24\" width=\"30\" height=\"7\" rx=\"1.5\"\/><path d=\"M13 24 l-3 7 M22 24 l-3 7 M31 24 l-3 7\"\/><path d=\"M11 35 H29\"\/><\/svg> <b>Electrical \u2014 ASTM D149 and D257<\/b><p>Breakdown voltage and volume resistivity, both on cured material.<\/p> <\/div> <div class=\"trumo-tile\"> <svg viewbox=\"0 0 40 40\" role=\"img\" aria-label=\"Gas chromatography icon\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\"><path d=\"M7 31 H35\"\/><path d=\"M7 31 V9\"\/><path d=\"M7 31 l4 0 l2.5 -10 l2.5 10 l3.5 0 l2.5 -16 l2.5 16 l3 0 l2 -6 l2 6 h3\"\/><\/svg> <b>Volatile siloxane \u2014 GC<\/b><p>D4 to D10 content, reported on the grades where it was run.<\/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 plane source sensor clamped between two gray silicone samples for a thermal conductivity test\" 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=\"Anyagtesztcs\u00edk f\u00fcgg\u0151legesen befogva l\u00e1ngkamr\u00e1ban f\u00fcgg\u0151leges \u00e9g\u00e9spr\u00f3ba sor\u00e1n\" 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=\"Gray silicone sample between two brass electrodes in a dielectric strength tester\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"><img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/thermal-gel-siloxane-gc-test.webp\" alt=\"Gas chromatograph autosampler with vials of cured silicone samples for siloxane analysis\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"><\/div> <p>What this page does not carry is a reference list. We do not publish customer names or project details for this series, and the data sheet with its test methods is the part you can verify independently.<\/p> <div class=\"trumo-callout\"><p><strong>Company-level quality system certificates are available on request<\/strong> \u2014 name the ones your documentation package needs in your inquiry. Whether any of them cover this product line is not confirmed on this page and needs separate confirmation.<\/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 a quotation needs, and what is not settled here<\/h2> <p>Quotation on this series is confirmed against grade, quantity and packaging format. Lead time, minimum order quantity, sample policy, payment terms, inspection arrangements, packing, shipping documents, batch traceability and after-sales handling are not published on this page. Warranty terms are not published on this page. Ask for them with your RFQ.<\/p> <p class=\"trumo-note\">The first three below are what a quotation is confirmed against. The rest are optional and narrow the answer.<\/p> <ul class=\"trumo-chips\"> <li>Grade, or the target thermal conductivity<\/li> <li>Quantity per assembly and annual quantity<\/li> <li>Csomagol\u00e1si form\u00e1tum<\/li> <li>Gap range at the interface<\/li> <li>Existing dispensing equipment and mixing setup<\/li> <li>Destination port<\/li> <\/ul> <\/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>Questions buyers ask about this gel<\/h2> <div class=\"trumo-faq\"> <details><summary><span class=\"q\">How is this different from a thermal conductive pad?<\/span><span class=\"i\">+<\/span><\/summary><p>A pad is die-cut to a fixed thickness and placed; the gel is metered, mixed and dispensed as a liquid, then cures in place. Cured performance is specified as equivalent to a pad. The comparison that would settle which suits your interface needs bond line thickness and thermal impedance data, and that is not published for this series.<\/p><\/details> <details><summary><span class=\"q\">Which thermal conductive gel grade should I specify?<\/span><span class=\"i\">+<\/span><\/summary><p>Cured thermal conductivity, cured density and A\/B viscosity are what change across the six grades. Hardness, breakdown voltage, cure time and recommended temperature range are listed at the same values throughout. Send the heat load you are designing to, and the grade can be checked against the data sheets.<\/p><\/details> <details><summary><span class=\"q\">What are the minimum order quantity, price and lead time?<\/span><span class=\"i\">+<\/span><\/summary><p>None of the three are published on this page. A quotation is confirmed against grade, quantity and packaging format \u2014 those are what the commercial side works from. Minimum order quantity, sample policy and lead time sit outside what has been released for this series and have to be asked for directly.<\/p><\/details> <details><summary><span class=\"q\">How long before the material is tack-free?<\/span><span class=\"i\">+<\/span><\/summary><p>Tack-free time is 90 minutes at 25 \u00b0C and cure time is 24 hours at 25 \u00b0C, both from the data sheet. Tack-free is a surface-cure figure \u2014 it is not pot life, not open time, and not a line-cadence window. Those process figures are not published for this series.<\/p><\/details> <details><summary><span class=\"q\">Is it electrically insulating?<\/span><span class=\"i\">+<\/span><\/summary><p>The data sheet lists 8 kV\/mm breakdown voltage to ASTM D149 and volume resistivity above 10\u00b9\u00b2 \u03a9\u00b7cm to ASTM D257, at the same values for all six grades. Insulation performance in your assembly also depends on bond line thickness and surface condition, neither of which is published for this series.<\/p><\/details> <details><summary><span class=\"q\">Does it carry UL certification or a RoHS certificate?<\/span><span class=\"i\">+<\/span><\/summary><p>UL 94 V-0 is a flammability classification for the material tested to the UL 94 standard, not a UL certification of the product or the company. On RoHS, what is supported is a RoHS-compliant formulation statement; whether a test report exists is not published here. Both belong in the RFQ if your documentation package needs them.<\/p><\/details> <details><summary><span class=\"q\">When is this the wrong choice?<\/span><span class=\"i\">+<\/span><\/summary><p>Where the interface is uniform and there is no dispensing line, a die-cut pad is the simpler process. Where the joint has to carry structural load, this series is not described for structural bonding \u2014 tensile strength is 0.01 MPa. Outside \u221240 to +150 \u00b0C, operation falls outside the published recommended range.<\/p><\/details> <details><summary><span class=\"q\">What is the recommended bond line thickness?<\/span><span class=\"i\">+<\/span><\/summary><p>Not published for this series. Bond line thickness, thermal impedance, mix ratio, pot life and the heat-cure schedule are outside what has been released. Any design gated on those figures needs them confirmed before a grade is fixed, rather than worked around with a generic number.<\/p><\/details> <details><summary><span class=\"q\">What about duties, inspection and batch traceability?<\/span><span class=\"i\">+<\/span><\/summary><p>Duties and import documentation vary by destination and are confirmed against the delivery port at quotation rather than stated on this page. Inspection arrangements, batch traceability and after-sales handling are not published for this series either. All of them belong in the RFQ if they gate your supplier approval.<\/p><\/details> <\/div> <\/section> <\/div> <\/main>","protected":false},"excerpt":{"rendered":"<p>Thermal Interface Materials \u00b7 30102 series Two-Component Thermal Conductive Gel in Six Silicone Grades Trumonytechs supplies thermal conductive gel as a two-part A\/B silicone in six grades, 1.5 to 8.0 W\/m\u00b7K cured, mixed through a helical tube. EV and energy storage (ESS) battery packs are the main applications, and the same gel is supplied for &#8230; <a title=\"H\u0151vezet\u0151 g\u00e9l\" class=\"read-more\" href=\"https:\/\/www.trumonytechs.com\/hu\/pf\/thermal-conductive-gel\/\" aria-label=\"Tov\u00e1bbi inform\u00e1ci\u00f3 err\u0151l: Thermal Conductive Gel\">Olvass tov\u00e1bb<\/a><\/p>","protected":false},"featured_media":26165,"menu_order":0,"template":"","meta":[],"thegem_portfolios":[64],"class_list":["post-26160","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 Gel | Two-Part Silicone 1.5\u20138.0 W\/m\u00b7K | Trumonytechs<\/title>\n<meta name=\"description\" content=\"Two-component thermal conductive gel, used mainly in battery packs: six A\/B silicone grades, 1.5 to 8.0 W\/m\u00b7K cured, mixed through a helical tube.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.trumonytechs.com\/hu\/pf\/hovezeto-gel\/\" \/>\n<meta property=\"og:locale\" content=\"hu_HU\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Thermal Conductive Gel | Two-Part Silicone 1.5\u20138.0 W\/m\u00b7K | Trumonytechs\" \/>\n<meta property=\"og:description\" content=\"Two-component thermal conductive gel, used mainly in battery packs: six A\/B silicone grades, 1.5 to 8.0 W\/m\u00b7K cured, mixed through a helical tube.\" \/>\n<meta property=\"og:url\" content=\"https:\/\/www.trumonytechs.com\/hu\/pf\/hovezeto-gel\/\" \/>\n<meta property=\"og:site_name\" content=\"Trumonytechs\" \/>\n<meta property=\"article:publisher\" content=\"https:\/\/www.facebook.com\/trumonytechs\/\" \/>\n<meta property=\"article:modified_time\" content=\"2026-09-26T09:09:59+00:00\" \/>\n<meta property=\"og:image\" content=\"https:\/\/trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel.jpg\" \/>\n\t<meta property=\"og:image:width\" content=\"800\" \/>\n\t<meta property=\"og:image:height\" content=\"800\" \/>\n\t<meta property=\"og:image:type\" content=\"image\/jpeg\" \/>\n<meta name=\"twitter:card\" content=\"summary_large_image\" \/>\n<meta name=\"twitter:site\" content=\"@Trumonytechs\" \/>\n<meta name=\"twitter:label1\" content=\"Becs\u00fclt olvas\u00e1si id\u0151\" \/>\n\t<meta name=\"twitter:data1\" content=\"4 perc\" \/>\n<script type=\"application\/ld+json\" class=\"yoast-schema-graph\">{\"@context\":\"https:\\\/\\\/schema.org\",\"@graph\":[{\"@type\":\"WebPage\",\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/pf\\\/thermal-conductive-gel\\\/\",\"url\":\"https:\\\/\\\/www.trumonytechs.com\\\/pf\\\/thermal-conductive-gel\\\/\",\"name\":\"Thermal Conductive Gel | Two-Part Silicone 1.5\u20138.0 W\\\/m\u00b7K | Trumonytechs\",\"isPartOf\":{\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/#website\"},\"primaryImageOfPage\":{\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/pf\\\/thermal-conductive-gel\\\/#primaryimage\"},\"image\":{\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/pf\\\/thermal-conductive-gel\\\/#primaryimage\"},\"thumbnailUrl\":\"https:\\\/\\\/www.trumonytechs.com\\\/wp-content\\\/uploads\\\/2022\\\/07\\\/Thermal-Conductive-Gel.jpg\",\"datePublished\":\"2025-07-07T00:53:08+00:00\",\"dateModified\":\"2026-09-26T09:09:59+00:00\",\"description\":\"Two-component thermal conductive gel, used mainly in battery packs: six A\\\/B silicone grades, 1.5 to 8.0 W\\\/m\u00b7K cured, mixed through a helical tube.\",\"breadcrumb\":{\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/pf\\\/thermal-conductive-gel\\\/#breadcrumb\"},\"inLanguage\":\"hu\",\"potentialAction\":[{\"@type\":\"ReadAction\",\"target\":[\"https:\\\/\\\/www.trumonytechs.com\\\/pf\\\/thermal-conductive-gel\\\/\"]}]},{\"@type\":\"ImageObject\",\"inLanguage\":\"hu\",\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/pf\\\/thermal-conductive-gel\\\/#primaryimage\",\"url\":\"https:\\\/\\\/www.trumonytechs.com\\\/wp-content\\\/uploads\\\/2022\\\/07\\\/Thermal-Conductive-Gel.jpg\",\"contentUrl\":\"https:\\\/\\\/www.trumonytechs.com\\\/wp-content\\\/uploads\\\/2022\\\/07\\\/Thermal-Conductive-Gel.jpg\",\"width\":800,\"height\":800,\"caption\":\"Thermal Conductive Gel-thermally conductive material\"},{\"@type\":\"BreadcrumbList\",\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/pf\\\/thermal-conductive-gel\\\/#breadcrumb\",\"itemListElement\":[{\"@type\":\"ListItem\",\"position\":1,\"name\":\"Home\",\"item\":\"https:\\\/\\\/www.trumonytechs.com\\\/\"},{\"@type\":\"ListItem\",\"position\":2,\"name\":\"Products\",\"item\":\"https:\\\/\\\/www.trumonytechs.com\\\/pf\\\/\"},{\"@type\":\"ListItem\",\"position\":3,\"name\":\"Thermal Conductive Gel\"}]},{\"@type\":\"WebSite\",\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/#website\",\"url\":\"https:\\\/\\\/www.trumonytechs.com\\\/\",\"name\":\"Trumonytechs\",\"description\":\"Thermal Management System Solutions\",\"publisher\":{\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/#organization\"},\"potentialAction\":[{\"@type\":\"SearchAction\",\"target\":{\"@type\":\"EntryPoint\",\"urlTemplate\":\"https:\\\/\\\/www.trumonytechs.com\\\/?s={search_term_string}\"},\"query-input\":{\"@type\":\"PropertyValueSpecification\",\"valueRequired\":true,\"valueName\":\"search_term_string\"}}],\"inLanguage\":\"hu\"},{\"@type\":\"Organization\",\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/#organization\",\"name\":\"Trumonytechs\",\"url\":\"https:\\\/\\\/www.trumonytechs.com\\\/\",\"logo\":{\"@type\":\"ImageObject\",\"inLanguage\":\"hu\",\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/#\\\/schema\\\/logo\\\/image\\\/\",\"url\":\"https:\\\/\\\/www.trumonytechs.com\\\/wp-content\\\/uploads\\\/2022\\\/06\\\/10001-1.png\",\"contentUrl\":\"https:\\\/\\\/www.trumonytechs.com\\\/wp-content\\\/uploads\\\/2022\\\/06\\\/10001-1.png\",\"width\":492,\"height\":250,\"caption\":\"Trumonytechs\"},\"image\":{\"@id\":\"https:\\\/\\\/www.trumonytechs.com\\\/#\\\/schema\\\/logo\\\/image\\\/\"},\"sameAs\":[\"https:\\\/\\\/www.facebook.com\\\/trumonytechs\\\/\",\"https:\\\/\\\/x.com\\\/Trumonytechs\",\"https:\\\/\\\/www.youtube.com\\\/channel\\\/UC2SyZohc9uTwFxzdTMLLlhw\",\"https:\\\/\\\/www.linkedin.com\\\/company\\\/81891179\\\/\"]}]}<\/script>\n<!-- \/ Yoast SEO plugin. -->","yoast_head_json":{"title":"Thermal Conductive Gel | Two-Part Silicone 1.5\u20138.0 W\/m\u00b7K | Trumonytechs","description":"Two-component thermal conductive gel, used mainly in battery packs: six A\/B silicone grades, 1.5 to 8.0 W\/m\u00b7K cured, mixed through a helical tube.","robots":{"index":"index","follow":"follow","max-snippet":"max-snippet:-1","max-image-preview":"max-image-preview:large","max-video-preview":"max-video-preview:-1"},"canonical":"https:\/\/www.trumonytechs.com\/hu\/pf\/hovezeto-gel\/","og_locale":"hu_HU","og_type":"article","og_title":"Thermal Conductive Gel | Two-Part Silicone 1.5\u20138.0 W\/m\u00b7K | Trumonytechs","og_description":"Two-component thermal conductive gel, used mainly in battery packs: six A\/B silicone grades, 1.5 to 8.0 W\/m\u00b7K cured, mixed through a helical tube.","og_url":"https:\/\/www.trumonytechs.com\/hu\/pf\/hovezeto-gel\/","og_site_name":"Trumonytechs","article_publisher":"https:\/\/www.facebook.com\/trumonytechs\/","article_modified_time":"2026-09-26T09:09:59+00:00","og_image":[{"width":800,"height":800,"url":"https:\/\/trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel.jpg","type":"image\/jpeg"}],"twitter_card":"summary_large_image","twitter_site":"@Trumonytechs","twitter_misc":{"Becs\u00fclt olvas\u00e1si id\u0151":"4 perc"},"schema":{"@context":"https:\/\/schema.org","@graph":[{"@type":"WebPage","@id":"https:\/\/www.trumonytechs.com\/pf\/thermal-conductive-gel\/","url":"https:\/\/www.trumonytechs.com\/pf\/thermal-conductive-gel\/","name":"Thermal Conductive Gel | Two-Part Silicone 1.5\u20138.0 W\/m\u00b7K | Trumonytechs","isPartOf":{"@id":"https:\/\/www.trumonytechs.com\/#website"},"primaryImageOfPage":{"@id":"https:\/\/www.trumonytechs.com\/pf\/thermal-conductive-gel\/#primaryimage"},"image":{"@id":"https:\/\/www.trumonytechs.com\/pf\/thermal-conductive-gel\/#primaryimage"},"thumbnailUrl":"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel.jpg","datePublished":"2025-07-07T00:53:08+00:00","dateModified":"2026-09-26T09:09:59+00:00","description":"Two-component thermal conductive gel, used mainly in battery packs: six A\/B silicone grades, 1.5 to 8.0 W\/m\u00b7K cured, mixed through a helical tube.","breadcrumb":{"@id":"https:\/\/www.trumonytechs.com\/pf\/thermal-conductive-gel\/#breadcrumb"},"inLanguage":"hu","potentialAction":[{"@type":"ReadAction","target":["https:\/\/www.trumonytechs.com\/pf\/thermal-conductive-gel\/"]}]},{"@type":"ImageObject","inLanguage":"hu","@id":"https:\/\/www.trumonytechs.com\/pf\/thermal-conductive-gel\/#primaryimage","url":"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel.jpg","contentUrl":"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/07\/Thermal-Conductive-Gel.jpg","width":800,"height":800,"caption":"Thermal Conductive Gel-thermally conductive material"},{"@type":"BreadcrumbList","@id":"https:\/\/www.trumonytechs.com\/pf\/thermal-conductive-gel\/#breadcrumb","itemListElement":[{"@type":"ListItem","position":1,"name":"Home","item":"https:\/\/www.trumonytechs.com\/"},{"@type":"ListItem","position":2,"name":"Products","item":"https:\/\/www.trumonytechs.com\/pf\/"},{"@type":"ListItem","position":3,"name":"Thermal Conductive Gel"}]},{"@type":"WebSite","@id":"https:\/\/www.trumonytechs.com\/#website","url":"https:\/\/www.trumonytechs.com\/","name":"Trumonytechs","description":"H\u0151menedzsment rendszer megold\u00e1sok","publisher":{"@id":"https:\/\/www.trumonytechs.com\/#organization"},"potentialAction":[{"@type":"SearchAction","target":{"@type":"EntryPoint","urlTemplate":"https:\/\/www.trumonytechs.com\/?s={search_term_string}"},"query-input":{"@type":"PropertyValueSpecification","valueRequired":true,"valueName":"search_term_string"}}],"inLanguage":"hu"},{"@type":"Organization","@id":"https:\/\/www.trumonytechs.com\/#organization","name":"Trumonytechs","url":"https:\/\/www.trumonytechs.com\/","logo":{"@type":"ImageObject","inLanguage":"hu","@id":"https:\/\/www.trumonytechs.com\/#\/schema\/logo\/image\/","url":"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/06\/10001-1.png","contentUrl":"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/06\/10001-1.png","width":492,"height":250,"caption":"Trumonytechs"},"image":{"@id":"https:\/\/www.trumonytechs.com\/#\/schema\/logo\/image\/"},"sameAs":["https:\/\/www.facebook.com\/trumonytechs\/","https:\/\/x.com\/Trumonytechs","https:\/\/www.youtube.com\/channel\/UC2SyZohc9uTwFxzdTMLLlhw","https:\/\/www.linkedin.com\/company\/81891179\/"]}]}},"_links":{"self":[{"href":"https:\/\/www.trumonytechs.com\/hu\/wp-json\/wp\/v2\/thegem_pf_item\/26160","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.trumonytechs.com\/hu\/wp-json\/wp\/v2\/thegem_pf_item"}],"about":[{"href":"https:\/\/www.trumonytechs.com\/hu\/wp-json\/wp\/v2\/types\/thegem_pf_item"}],"version-history":[{"count":0,"href":"https:\/\/www.trumonytechs.com\/hu\/wp-json\/wp\/v2\/thegem_pf_item\/26160\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.trumonytechs.com\/hu\/wp-json\/wp\/v2\/media\/26165"}],"wp:attachment":[{"href":"https:\/\/www.trumonytechs.com\/hu\/wp-json\/wp\/v2\/media?parent=26160"}],"wp:term":[{"taxonomy":"thegem_portfolios","embeddable":true,"href":"https:\/\/www.trumonytechs.com\/hu\/wp-json\/wp\/v2\/thegem_portfolios?post=26160"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}