{"id":36948,"date":"2026-03-20T13:16:28","date_gmt":"2026-03-20T13:16:28","guid":{"rendered":"https:\/\/trumonytechs.com\/?page_id=36948"},"modified":"2026-09-27T02:17:05","modified_gmt":"2026-09-27T02:17:05","slug":"ess-cooling-solutions","status":"publish","type":"page","link":"https:\/\/www.trumonytechs.com\/nl\/ess-cooling-solutions\/","title":{"rendered":"ESS Koeloplossingen"},"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\">Grid-scale \u00b7 C&amp;I \u00b7 Solar &amp; wind storage<\/span><span class=\"trumo-hcat trumo-hcat--ghost\">Cold plates \u00b7 Tubes \u00b7 Manifolds \u00b7 TIM<\/span><\/div> <h1>Custom ESS Cooling Solutions: Liquid Cold Plates, Tubes and Manifolds<\/h1> <p class=\"trumo-hero-lead\">ESS cooling solutions from Trumonytechs are the heat-path and coolant-routing parts in an energy storage battery system: cold plates, aluminum cooling tubes, distribution manifolds and thermal interface materials. Cold plate configuration is aligned to cell format at design review, and channel geometry follows maximum heat load and allowable pressure drop. We supply cold plates designed to your pack geometry, with CFD reviewed before tooling and volume production released after sample sign-off, while thermal interface materials come from listed model ranges.<\/p> <p class=\"trumo-hero-note\">Send the cell format and the maximum heat load per cell and per pack: the cold plate configuration is aligned to the first, and the second is the primary input to flow path sizing.<\/p> <div class=\"trumo-hero-btns\"> <a class=\"trumo-btn trumo-btn--primary\" href=\"mailto:oversea@trumonytechs.com?subject=ESS%20cooling%20solutions%20inquiry\">Email Cell Format and Heat Load<\/a> <button type=\"button\" class=\"trumo-btn trumo-btn--ghost trumo-quote-open\" popovertarget=\"trumo-quote\" aria-haspopup=\"dialog\">Send the Project<\/button> <\/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\/2026\/03\/ess-energy-storage-cooling.webp\" alt=\"Gecontaineriseerd batterij-energieopslagsysteem met een open batterijrek en vloeistofkoelingsverdeelstuk.\" width=\"768\" height=\"573\" fetchpriority=\"high\" decoding=\"async\"> <\/figure> <\/div> <\/section> <div class=\"trumo-wrap\"> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\" aria-hidden=\"true\"><span class=\"trumo-secno\">01<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>Liquid or Air: Which Energy Storage Installations Need Liquid Cooling<\/h2> <p class=\"trumo-lede\">Energy storage installations almost always need active liquid cooling when they run high C-rate cycles, sit outdoors or in containers, or operate at utility scale. At pack level, liquid cooling is chosen over air when the cell-to-cell \u0394T target falls below 3\u20135 \u00b0C or heat load per unit area passes a threshold.<\/p> <div class=\"trumo-stat\"><div class=\"trumo-stat-n\">3\u20135 \u00b0C<\/div><p class=\"trumo-stat-t\">One of two triggers for choosing liquid cooling over air: a cell-to-cell \u0394T target tighter than this band.<\/p><\/div> <figure class=\"trumo-fig trumo-fig--scroll trumo-fig--wide\"> <svg viewbox=\"0 0 960 202\" role=\"img\" aria-label=\"Closed ESS cooling loop: cold plates and manifolds from Trumonytechs; pump and heat exchanger typically from the system supplier\"><rect x=\"8\" y=\"10\" width=\"176\" height=\"160\" rx=\"3\" fill=\"#FFFFFF\" stroke=\"#E5E7EB\"\/><path d=\"M8 13 a3 3 0 0 1 3 -3 h170 a3 3 0 0 1 3 3 z\" fill=\"#1E1E1E\"\/><g transform=\"translate(22 24) scale(.9)\"><g fill=\"none\" stroke=\"#5F6B7A\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\"><rect x=\"6\" y=\"11\" width=\"8\" height=\"23\" rx=\"1.5\"\/><rect x=\"16\" y=\"11\" width=\"8\" height=\"23\" rx=\"1.5\"\/><rect x=\"26\" y=\"11\" width=\"8\" height=\"23\" rx=\"1.5\"\/><path d=\"M10 11 V8 M20 11 V8 M30 11 V8\"\/><\/g><path d=\"M8 4 q2 -2 4 0 t4 0 M24 4 q2 -2 4 0 t4 0\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.4\" stroke-linecap=\"round\"\/><\/g><text x=\"22\" y=\"80\" font-size=\"14\" font-weight=\"700\" fill=\"#1E1E1E\">Batterijmodules<\/text><text x=\"22\" y=\"100\" font-size=\"13\" fill=\"#5F6B7A\">warmtebron<\/text><path d=\"M189.5 85 L194.5 90 L189.5 95\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"2\" stroke-linecap=\"round\" stroke-linejoin=\"round\"\/><rect x=\"200\" y=\"10\" width=\"176\" height=\"160\" rx=\"3\" fill=\"#FFF5ED\" stroke=\"#FEDEBF\"\/><path d=\"M200 13 a3 3 0 0 1 3 -3 h170 a3 3 0 0 1 3 3 z\" fill=\"#FD7000\"\/><g transform=\"translate(214 24) scale(.9)\"><rect x=\"5\" y=\"10\" width=\"30\" height=\"20\" rx=\"2\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.8\"\/><g stroke=\"#FD7000\" stroke-width=\"2.2\" stroke-linecap=\"round\"><path d=\"M10 15.5 H30 M10 20 H30 M10 24.5 H30\"\/><\/g><\/g><text x=\"214\" y=\"80\" font-size=\"14\" font-weight=\"700\" fill=\"#1E1E1E\">Koude platen<\/text><text x=\"214\" y=\"100\" font-size=\"13\" fill=\"#5F6B7A\">absorb cell heat<\/text><rect x=\"214\" y=\"112\" width=\"98\" height=\"22\" rx=\"2\" fill=\"#FFFFFF\" stroke=\"#FEDEBF\"\/><text x=\"222\" y=\"126\" font-size=\"11\" font-weight=\"700\" fill=\"#A64800\">Trumonytechs<\/text><path d=\"M381.5 85 L386.5 90 L381.5 95\" fill=\"none\" stroke=\"#767676\" stroke-width=\"2\" stroke-linecap=\"round\" stroke-linejoin=\"round\"\/><rect x=\"392\" y=\"10\" width=\"176\" height=\"160\" rx=\"3\" fill=\"#FFF5ED\" stroke=\"#FEDEBF\"\/><path d=\"M392 13 a3 3 0 0 1 3 -3 h170 a3 3 0 0 1 3 3 z\" fill=\"#FD7000\"\/><g transform=\"translate(406 24) scale(.9)\"><g fill=\"none\" stroke=\"#FD7000\" stroke-linecap=\"round\" stroke-linejoin=\"round\"><path d=\"M5 11 H35\" stroke-width=\"3.6\"\/><path d=\"M11 12 V33 M20 12 V33 M29 12 V33\" stroke-width=\"1.8\"\/><\/g><g fill=\"#FCAE00\"><circle cx=\"11\" cy=\"11\" r=\"1.8\"\/><circle cx=\"20\" cy=\"11\" r=\"1.8\"\/><circle cx=\"29\" cy=\"11\" r=\"1.8\"\/><\/g><\/g><text x=\"406\" y=\"80\" font-size=\"14\" font-weight=\"700\" fill=\"#1E1E1E\">Verdeelstukken en buizen<\/text><text x=\"406\" y=\"100\" font-size=\"13\" fill=\"#5F6B7A\">verdeel de koelvloeistof<\/text><rect x=\"406\" y=\"112\" width=\"98\" height=\"22\" rx=\"2\" fill=\"#FFFFFF\" stroke=\"#FEDEBF\"\/><text x=\"414\" y=\"126\" font-size=\"11\" font-weight=\"700\" fill=\"#A64800\">Trumonytechs<\/text><path d=\"M573.5 85 L578.5 90 L573.5 95\" fill=\"none\" stroke=\"#767676\" stroke-width=\"2\" stroke-linecap=\"round\" stroke-linejoin=\"round\"\/><rect x=\"584\" y=\"10\" width=\"176\" height=\"160\" rx=\"3\" fill=\"#FFFFFF\" stroke=\"#C2C7CC\" stroke-dasharray=\"4 3\"\/><g transform=\"translate(598 24) scale(.9)\"><g fill=\"none\" stroke=\"#5F6B7A\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\"><circle cx=\"18\" cy=\"22\" r=\"11\"\/><path d=\"M18 22 L18 14 M18 22 L25 26 M18 22 L11 26\"\/><path d=\"M4 22 H7 M29 12 H36 M29 12 V16\"\/><\/g><circle cx=\"18\" cy=\"22\" r=\"2\" fill=\"#5F6B7A\"\/><\/g><text x=\"598\" y=\"80\" font-size=\"14\" font-weight=\"700\" fill=\"#1E1E1E\">Circulation pump<\/text><text x=\"598\" y=\"100\" font-size=\"13\" fill=\"#5F6B7A\">moves coolant<\/text><rect x=\"598\" y=\"112\" width=\"104\" height=\"36\" rx=\"2\" fill=\"#F7F8FA\" stroke=\"#C2C7CC\" stroke-dasharray=\"3 2\"\/><text x=\"606\" y=\"126\" font-size=\"11\" font-weight=\"700\" fill=\"#5F6B7A\">typically your<\/text><text x=\"606\" y=\"140\" font-size=\"11\" font-weight=\"700\" fill=\"#5F6B7A\">system supplier<\/text><path d=\"M765.5 85 L770.5 90 L765.5 95\" fill=\"none\" stroke=\"#767676\" stroke-width=\"2\" stroke-linecap=\"round\" stroke-linejoin=\"round\"\/><rect x=\"776\" y=\"10\" width=\"176\" height=\"160\" rx=\"3\" fill=\"#FFFFFF\" stroke=\"#C2C7CC\" stroke-dasharray=\"4 3\"\/><g transform=\"translate(790 24) scale(.9)\"><g fill=\"none\" stroke=\"#5F6B7A\" stroke-width=\"1.8\" stroke-linecap=\"round\" stroke-linejoin=\"round\"><rect x=\"5\" y=\"9\" width=\"22\" height=\"24\" rx=\"1.5\"\/><path d=\"M10 9 V33 M16 9 V33 M22 9 V33 M5 21 H27\"\/><\/g><path d=\"M31 13 q2 -2 4 0 M31 21 q2 -2 4 0 M31 29 q2 -2 4 0\" fill=\"none\" stroke=\"#FD7000\" stroke-width=\"1.6\" stroke-linecap=\"round\"\/><\/g><text x=\"790\" y=\"80\" font-size=\"14\" font-weight=\"700\" fill=\"#1E1E1E\">Heat exchanger<\/text><text x=\"790\" y=\"100\" font-size=\"13\" fill=\"#5F6B7A\">rejects heat externally<\/text><rect x=\"790\" y=\"112\" width=\"104\" height=\"36\" rx=\"2\" fill=\"#F7F8FA\" stroke=\"#C2C7CC\" stroke-dasharray=\"3 2\"\/><text x=\"798\" y=\"126\" font-size=\"11\" font-weight=\"700\" fill=\"#5F6B7A\">typically your<\/text><text x=\"798\" y=\"140\" font-size=\"11\" font-weight=\"700\" fill=\"#5F6B7A\">system supplier<\/text><path d=\"M864 170 V194 H288 V173\" fill=\"none\" stroke=\"#767676\" stroke-width=\"2\" stroke-dasharray=\"5 4\"\/><path d=\"M283 179 L288 173 L293 179\" fill=\"none\" stroke=\"#767676\" stroke-width=\"2\" stroke-linecap=\"round\" stroke-linejoin=\"round\"\/><\/svg> <figcaption class=\"trumo-cap\">A closed loop: cold plates pull heat from the cells, and coolant carries it through manifolds, pump and heat exchanger for external rejection.<\/figcaption> <\/figure> <ul class=\"trumo-checks\"> <li><span class=\"n\" aria-hidden=\"true\">01<\/span><div><b>Passive limits hold<\/b><p>Natural convection or a heat sink already manages the heat load.<\/p><\/div><\/li> <li><span class=\"n\" aria-hidden=\"true\">02<\/span><div><b>No place for loop hardware<\/b><p>The layout has no room for a pump, reservoir and heat exchanger.<\/p><\/div><\/li> <li><span class=\"n\" aria-hidden=\"true\">03<\/span><div><b>Fluid and metal clash<\/b><p>The working fluid is incompatible with aluminum or copper.<\/p><\/div><\/li> <\/ul> <p>Lower-density backup systems at moderate ambient temperatures may be adequately served by air cooling, and we check that at the initial technical review rather than defaulting to a liquid loop. Grid-scale storage calls for high-reliability cooling, C&amp;I systems for tight temperature control, and solar and wind storage for tolerance of variable charge rates and wide ambient ranges. Air, liquid and immersion options are compared in our guide to <a href=\"https:\/\/www.trumonytechs.com\/nl\/optimalisering-van-het-thermisch-beheer-van-industriele-energieopslag\/\">industrial energy storage thermal management<\/a>.<\/p> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\" aria-hidden=\"true\"><span class=\"trumo-secno\">02<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>ESS Cooling Solutions by Cell Format: Cold Plate Types and Coolant Loop Parts<\/h2> <p class=\"trumo-lede\">ESS cold plates are configured to cell format at the design review, and the coolant-routing parts and <a href=\"https:\/\/www.trumonytechs.com\/nl\/thermische-interfacematerialen\/\">interfacematerialen<\/a> around them are covered on the four cards below.<\/p> <div class=\"trumo-cards trumo-cards--2\"> <article class=\"trumo-card\"> <div class=\"trumo-card-fig trumo-card-fig--photo\"><span class=\"trumo-card-no\" aria-hidden=\"true\">A<\/span> <img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/09\/Water-Cooling-Plates.jpg\" alt=\"Slangvormige koelplaten die tussen rijen cilindrische cellen lopen\" width=\"600\" height=\"600\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3>Snake tube cold plates \u2014 cylindrical cells<\/h3> <p>A serpentine path runs in direct axial contact with the cell casings, with flow rate, tube diameter and contact geometry sized to the confirmed heat load and uniformity target.<\/p> <div class=\"trumo-card-spec trumo-card-spec--line\">18650 \/ 21700 \/ 4680 cells \u00b7 brazed construction<\/div> <\/div> <\/article> <article class=\"trumo-card\"> <div class=\"trumo-card-fig trumo-card-fig--photo\"><span class=\"trumo-card-no\" aria-hidden=\"true\">B<\/span> <img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/09\/Micro-Channel-Cold-Plate-768x768.webp\" alt=\"Microchannel aluminum liquid cold plate\" width=\"768\" height=\"768\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3>Microchannel cold plates \u2014 pouch cells<\/h3> <p>More heat transfer area per unit of plate thickness suits strict Z-height budgets and uniform temperature across the cell face; loop cleanliness is confirmed during scoping.<\/p> <div class=\"trumo-card-spec trumo-card-spec--line\">Pouch cells \u00b7 tight Z-height \u00b7 brazed construction<\/div> <\/div> <\/article> <article class=\"trumo-card\"> <div class=\"trumo-card-fig\"><span class=\"trumo-card-no\" aria-hidden=\"true\">C<\/span><svg viewbox=\"0 0 320 200\" role=\"img\" aria-label=\"Aluminum cooling tubes and liquid distribution manifold, schematic\"><defs><marker id=\"ess-c3-arr\" viewbox=\"0 0 10 10\" refx=\"9\" refy=\"5\" markerwidth=\"6\" markerheight=\"6\" orient=\"auto\"><path d=\"M0 0 L10 5 L0 10 z\" fill=\"#FCAE00\"\/><\/marker><\/defs><line x1=\"46\" y1=\"54.0\" x2=\"88\" y2=\"54.0\" stroke=\"#3A4250\" stroke-width=\"7\" stroke-linecap=\"round\"\/><line x1=\"46\" y1=\"54.0\" x2=\"88\" y2=\"54.0\" stroke=\"#8A95A3\" stroke-width=\"1.6\" stroke-linecap=\"round\"\/><line x1=\"232\" y1=\"54.0\" x2=\"274\" y2=\"54.0\" stroke=\"#3A4250\" stroke-width=\"7\" stroke-linecap=\"round\"\/><line x1=\"232\" y1=\"54.0\" x2=\"274\" y2=\"54.0\" stroke=\"#8A95A3\" stroke-width=\"1.6\" stroke-linecap=\"round\"\/><line x1=\"46\" y1=\"102.0\" x2=\"88\" y2=\"102.0\" stroke=\"#3A4250\" stroke-width=\"7\" stroke-linecap=\"round\"\/><line x1=\"46\" y1=\"102.0\" x2=\"88\" y2=\"102.0\" stroke=\"#8A95A3\" stroke-width=\"1.6\" stroke-linecap=\"round\"\/><line x1=\"232\" y1=\"102.0\" x2=\"274\" y2=\"102.0\" stroke=\"#3A4250\" stroke-width=\"7\" stroke-linecap=\"round\"\/><line x1=\"232\" y1=\"102.0\" x2=\"274\" y2=\"102.0\" stroke=\"#8A95A3\" stroke-width=\"1.6\" stroke-linecap=\"round\"\/><line x1=\"46\" y1=\"150.0\" x2=\"88\" y2=\"150.0\" stroke=\"#3A4250\" stroke-width=\"7\" stroke-linecap=\"round\"\/><line x1=\"46\" y1=\"150.0\" x2=\"88\" y2=\"150.0\" stroke=\"#8A95A3\" stroke-width=\"1.6\" stroke-linecap=\"round\"\/><line x1=\"232\" y1=\"150.0\" x2=\"274\" y2=\"150.0\" stroke=\"#3A4250\" stroke-width=\"7\" stroke-linecap=\"round\"\/><line x1=\"232\" y1=\"150.0\" x2=\"274\" y2=\"150.0\" stroke=\"#8A95A3\" stroke-width=\"1.6\" stroke-linecap=\"round\"\/><rect x=\"88\" y=\"34\" width=\"144\" height=\"40\" rx=\"2\" fill=\"#2A313C\" stroke=\"#8A95A3\" stroke-width=\"1.2\"\/><g stroke=\"#5F6B7A\" stroke-width=\"1\"><line x1=\"100\" y1=\"39\" x2=\"100\" y2=\"69\"\/><line x1=\"112\" y1=\"39\" x2=\"112\" y2=\"69\"\/><line x1=\"124\" y1=\"39\" x2=\"124\" y2=\"69\"\/><line x1=\"136\" y1=\"39\" x2=\"136\" y2=\"69\"\/><line x1=\"148\" y1=\"39\" x2=\"148\" y2=\"69\"\/><line x1=\"160\" y1=\"39\" x2=\"160\" y2=\"69\"\/><line x1=\"172\" y1=\"39\" x2=\"172\" y2=\"69\"\/><line x1=\"184\" y1=\"39\" x2=\"184\" y2=\"69\"\/><line x1=\"196\" y1=\"39\" x2=\"196\" y2=\"69\"\/><line x1=\"208\" y1=\"39\" x2=\"208\" y2=\"69\"\/><line x1=\"220\" y1=\"39\" x2=\"220\" y2=\"69\"\/><\/g><g stroke=\"#FD7000\" stroke-width=\"2\" stroke-linecap=\"round\" opacity=\".9\"><line x1=\"96\" y1=\"48\" x2=\"224\" y2=\"48\"\/><line x1=\"96\" y1=\"60\" x2=\"224\" y2=\"60\"\/><\/g><rect x=\"88\" y=\"82\" width=\"144\" height=\"40\" rx=\"2\" fill=\"#2A313C\" stroke=\"#8A95A3\" stroke-width=\"1.2\"\/><g stroke=\"#5F6B7A\" stroke-width=\"1\"><line x1=\"100\" y1=\"87\" x2=\"100\" y2=\"117\"\/><line x1=\"112\" y1=\"87\" x2=\"112\" y2=\"117\"\/><line x1=\"124\" y1=\"87\" x2=\"124\" y2=\"117\"\/><line x1=\"136\" y1=\"87\" x2=\"136\" y2=\"117\"\/><line x1=\"148\" y1=\"87\" x2=\"148\" y2=\"117\"\/><line x1=\"160\" y1=\"87\" x2=\"160\" y2=\"117\"\/><line x1=\"172\" y1=\"87\" x2=\"172\" y2=\"117\"\/><line x1=\"184\" y1=\"87\" x2=\"184\" y2=\"117\"\/><line x1=\"196\" y1=\"87\" x2=\"196\" y2=\"117\"\/><line x1=\"208\" y1=\"87\" x2=\"208\" y2=\"117\"\/><line x1=\"220\" y1=\"87\" x2=\"220\" y2=\"117\"\/><\/g><g stroke=\"#FD7000\" stroke-width=\"2\" stroke-linecap=\"round\" opacity=\".9\"><line x1=\"96\" y1=\"96\" x2=\"224\" y2=\"96\"\/><line x1=\"96\" y1=\"108\" x2=\"224\" y2=\"108\"\/><\/g><rect x=\"88\" y=\"130\" width=\"144\" height=\"40\" rx=\"2\" fill=\"#2A313C\" stroke=\"#8A95A3\" stroke-width=\"1.2\"\/><g stroke=\"#5F6B7A\" stroke-width=\"1\"><line x1=\"100\" y1=\"135\" x2=\"100\" y2=\"165\"\/><line x1=\"112\" y1=\"135\" x2=\"112\" y2=\"165\"\/><line x1=\"124\" y1=\"135\" x2=\"124\" y2=\"165\"\/><line x1=\"136\" y1=\"135\" x2=\"136\" y2=\"165\"\/><line x1=\"148\" y1=\"135\" x2=\"148\" y2=\"165\"\/><line x1=\"160\" y1=\"135\" x2=\"160\" y2=\"165\"\/><line x1=\"172\" y1=\"135\" x2=\"172\" y2=\"165\"\/><line x1=\"184\" y1=\"135\" x2=\"184\" y2=\"165\"\/><line x1=\"196\" y1=\"135\" x2=\"196\" y2=\"165\"\/><line x1=\"208\" y1=\"135\" x2=\"208\" y2=\"165\"\/><line x1=\"220\" y1=\"135\" x2=\"220\" y2=\"165\"\/><\/g><g stroke=\"#FD7000\" stroke-width=\"2\" stroke-linecap=\"round\" opacity=\".9\"><line x1=\"96\" y1=\"144\" x2=\"224\" y2=\"144\"\/><line x1=\"96\" y1=\"156\" x2=\"224\" y2=\"156\"\/><\/g><line x1=\"46\" y1=\"30\" x2=\"46\" y2=\"174\" stroke=\"#0D1117\" stroke-width=\"13\" stroke-linecap=\"round\"\/><line x1=\"46\" y1=\"30\" x2=\"46\" y2=\"174\" stroke=\"#FD7000\" stroke-width=\"9\" stroke-linecap=\"round\"\/><line x1=\"44\" y1=\"32\" x2=\"44\" y2=\"172\" stroke=\"#FFB066\" stroke-width=\"1.4\" opacity=\".55\"\/><line x1=\"274\" y1=\"30\" x2=\"274\" y2=\"174\" stroke=\"#0D1117\" stroke-width=\"13\" stroke-linecap=\"round\"\/><line x1=\"274\" y1=\"30\" x2=\"274\" y2=\"174\" stroke=\"#FD7000\" stroke-width=\"9\" stroke-linecap=\"round\"\/><line x1=\"272\" y1=\"32\" x2=\"272\" y2=\"172\" stroke=\"#FFB066\" stroke-width=\"1.4\" opacity=\".55\"\/><circle cx=\"52\" cy=\"54.0\" r=\"3.6\" fill=\"#0D1117\" stroke=\"#FCAE00\" stroke-width=\"1.4\"\/><circle cx=\"268\" cy=\"54.0\" r=\"3.6\" fill=\"#0D1117\" stroke=\"#FCAE00\" stroke-width=\"1.4\"\/><circle cx=\"52\" cy=\"102.0\" r=\"3.6\" fill=\"#0D1117\" stroke=\"#FCAE00\" stroke-width=\"1.4\"\/><circle cx=\"268\" cy=\"102.0\" r=\"3.6\" fill=\"#0D1117\" stroke=\"#FCAE00\" stroke-width=\"1.4\"\/><circle cx=\"52\" cy=\"150.0\" r=\"3.6\" fill=\"#0D1117\" stroke=\"#FCAE00\" stroke-width=\"1.4\"\/><circle cx=\"268\" cy=\"150.0\" r=\"3.6\" fill=\"#0D1117\" stroke=\"#FCAE00\" stroke-width=\"1.4\"\/><g fill=\"none\" stroke=\"#FCAE00\" stroke-width=\"2.4\" stroke-linecap=\"round\" marker-end=\"url(#ess-c3-arr)\"><path d=\"M46 8 V22\"\/><path d=\"M274 180 V192\"\/><\/g><g stroke=\"#FCAE00\" stroke-width=\"1.4\" opacity=\".8\"><line x1=\"296\" y1=\"20\" x2=\"310\" y2=\"20\"\/><line x1=\"303\" y1=\"13\" x2=\"303\" y2=\"27\"\/><\/g><\/svg><\/div> <div class=\"trumo-card-body\"> <h3>Cooling tubes, manifolds and brazed assemblies<\/h3> <p>Aluminum cooling tubes, liquid distribution manifolds, brazed cooling assemblies and thermal interface integration structures carry coolant between battery modules and the heat exchange system. Their dimensions, joint types and pressure ratings are not published on this page, so state your envelope and connection type in the RFQ.<\/p> <div class=\"trumo-card-spec trumo-card-spec--line\">Aluminum \u00b7 designed to your pack geometry<\/div> <\/div> <\/article> <article class=\"trumo-card\"> <div class=\"trumo-card-fig trumo-card-fig--photo\"><span class=\"trumo-card-no\" aria-hidden=\"true\">D<\/span> <img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2026\/09\/thermal-interface-materials-family.webp\" alt=\"Thermisch geleidende pad, gel, vet, patroon met structurele lijm en gietmassa naast een aluminium koelplaat.\" width=\"800\" height=\"533\" loading=\"lazy\" decoding=\"async\"> <\/div> <div class=\"trumo-card-body\"> <h3>Thermische interfacematerialen<\/h3> <p>Gap pads, dispensable gels, silicone grease, structural adhesive and potting compound, each with its own listed position in the table below.<\/p> <div class=\"trumo-card-spec trumo-card-spec--line\">Listed models \u2014 pads and gels 1.5\u20138.0 W\/m\u00b7K, grease 3.5\u20135.0 W\/m\u00b7K \u00b7 UL 94 V-0 flame rating<\/div> <\/div> <\/article> <\/div> <p class=\"trumo-note\">For prismatic cells, the cold plate construction is confirmed at the first design review. Figures are schematic; built sizes on the water cooling plate page are examples, not limits.<\/p> <p>For cylindrical and pouch cells the format already points to a construction: snake tube plates for cylindrical cells, microchannel plates for a pouch pack with a tight Z-height budget. A wrong type chosen before tooling adds thermal resistance, pressure-drop penalties and interface compatibility problems, so we align the configuration to cell format at the first design review.<\/p> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\" aria-hidden=\"true\"><span class=\"trumo-secno\">03<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>Coolant Mix, Alloy and Interface Material for ESS Cold Plates<\/h2> <p class=\"trumo-lede\">Coolant chemistry needs checking early for an ESS cold plate, because the water-glycol ratio or alternative fluid changes thermal conductivity, viscosity and pressure drop targets. The ESS cold plate specification lists 3003 aluminum and vacuum brazing, while 1060 aluminum and copper appear only in the wider range on the <a href=\"https:\/\/www.trumonytechs.com\/nl\/pf\/waterkoelplaat\/\">waterkoelplaat<\/a> pagina.<\/p> <div class=\"trumo-tablewrap\"> <table> <thead><tr><th scope=\"col\">TIM-familie<\/th><th scope=\"col\">Formulier<\/th><th scope=\"col\">Listed conductivity<\/th><th scope=\"col\">Position in an ESS pack<\/th><th scope=\"col\">Toepassing<\/th><th scope=\"col\">Elektrische isolatie<\/th><\/tr><\/thead> <tbody> <tr><td><a href=\"https:\/\/www.trumonytechs.com\/nl\/pf\/warmtegeleidende-pad\/\">Thermal conductive pad 30101<\/a><\/td><td>Silicone pad, 0.4\u201310 mm<\/td><td>1.5\u20138.0 W\/m\u00b7K, 5 models<\/td><td>Prismatic or cylindrical cells; snake tube plates<\/td><td>Manual placement; unreinforced or reinforced<\/td><td>Yes; &gt;6 to &gt;12 kV\/mm by model<\/td><\/tr> <tr><td><a href=\"https:\/\/www.trumonytechs.com\/nl\/pf\/warmtegeleidende-gel\/\">Thermal conductive gel 30102<\/a><\/td><td>Two-part silicone gel<\/td><td>1.5\u20138.0 W\/m\u00b7K, 6 models<\/td><td>Gaps that need low assembly stress<\/td><td>Automated dispensing; room-temperature or heat cure<\/td><td>Yes; 8 kV\/mm<\/td><\/tr> <tr><td><a href=\"https:\/\/www.trumonytechs.com\/nl\/pf\/thermisch-geleidend-siliconenvet\/\">Silicone grease 30108<\/a><\/td><td>Non-curing paste<\/td><td>3.5\u20135.0 W\/m\u00b7K, 3 models<\/td><td>Not specified in model data<\/td><td>Dispensing or printing<\/td><td>Model 0350 only<\/td><\/tr> <tr><td><a href=\"https:\/\/www.trumonytechs.com\/nl\/pf\/warmtegeleidende-structurele-lijm\/\">Structural adhesive 30107<\/a><\/td><td>Two-part polyurethane, 1:1<\/td><td>2.05 W\/m\u00b7K (ASTM D5470)<\/td><td>Bonds cells to the cold plate<\/td><td>Volledige uitharding: 7 dagen bij 23 \u00b1 2 \u00b0C<\/td><td>Yes; 14\u201316 kV\/mm<\/td><\/tr> <tr><td><a href=\"https:\/\/www.trumonytechs.com\/nl\/pf\/oppotlijm\/\">Potting compound 30103<\/a><\/td><td>Tweecomponenten siliconen, handmatig gemengd.<\/td><td>0.8\u20134.0 W\/m\u00b7K, listed models<\/td><td>Modulevulling, isolatie en inkapseling<\/td><td>Mix, degas, pot; room or elevated cure<\/td><td>Yes; 10 kV\/mm listed for 0080<\/td><\/tr> <\/tbody> <\/table> <\/div> <p class=\"trumo-note\">Conductivity is measured to ISO 22007-2 except for 30107, which is measured to ASTM D5470; ranges cover listed models only. All five families list a UL 94 V-0 flame rating, and the gel, grease and potting series also list a RoHS-compliant formulation.<\/p> <p>Pads suit joints placed by hand and can take a reinforcement layer when a large piece needs body strength. Gels suit automated dispensing lines where the cells should see low assembly stress. Choosing among the five families is part of the thermal design review and is not charged separately.<\/p> <div class=\"trumo-callout\"><p>Two compatibility checks come early: aluminum and copper parts stay in separate coolant loops, and the glycol concentration is matched to the plate alloy, since some concentrations accelerate corrosion in some grades.<\/p><\/div> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\" aria-hidden=\"true\"><span class=\"trumo-secno\">04<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>Tooling, Volume and Late Changes: The Cost Levers in ESS Liquid Cooling<\/h2> <p>Tooling for ESS cold plates depends on process: a CNC-machined prototype needs no tooling, while a stamped production plate needs a dedicated die. Cold plate type selection also weighs heat load, plate size, available space, production volume and cost. When an input changes after a prototype has been built, the change can cost more time and material than settling it at the design review. Prices and tooling charges are not published on this page; quotes are based on your drawing or boundary dimensions, heat load and expected annual volume.<\/p> <div class=\"trumo-split\"> <figure class=\"trumo-fig\"> <svg viewbox=\"0 0 480 290\" role=\"img\" aria-label=\"Changing an input after a prototype build costs more time and material than settling it at design review\"><defs><pattern id=\"ess-bars-hatch\" width=\"12\" height=\"12\" patternunits=\"userSpaceOnUse\" patterntransform=\"rotate(-45)\"><rect width=\"6\" height=\"12\" fill=\"#0D1117\" fill-opacity=\".14\"\/><\/pattern><\/defs><text transform=\"translate(26 116) rotate(-90)\" text-anchor=\"middle\" font-size=\"11\" font-weight=\"700\" letter-spacing=\"1.3\" fill=\"#767676\">TIME AND MATERIAL<\/text><rect x=\"108\" y=\"164\" width=\"112\" height=\"52\" rx=\"2\" fill=\"#5F6B7A\"\/><rect x=\"308\" y=\"40\" width=\"112\" height=\"176\" rx=\"2\" fill=\"#FD7000\"\/><rect x=\"308\" y=\"40\" width=\"112\" height=\"176\" rx=\"2\" fill=\"url(#ess-bars-hatch)\"\/><line x1=\"66\" y1=\"164\" x2=\"464\" y2=\"164\" stroke=\"#FCAE00\" stroke-width=\"2\" stroke-dasharray=\"6 4\"\/><path d=\"M64 16 V216 H464\" fill=\"none\" stroke=\"#767676\" stroke-width=\"2\"\/><g font-size=\"14\" font-weight=\"600\" fill=\"#1E1E1E\" text-anchor=\"middle\"><text x=\"164\" y=\"246\">Input settled at<\/text><text x=\"164\" y=\"265\">design review<\/text><text x=\"364\" y=\"246\">Input changed after<\/text><text x=\"364\" y=\"265\">prototype build<\/text><\/g><\/svg> <\/figure> <div class=\"trumo-cta\" data-cta=\"mid\"> <p>Cold plate quotes come with DFM feedback at no extra charge: attach the drawing with maximum heat load, coolant mix and expected annual volume.<\/p> <div class=\"trumo-cta-btns\"> <a class=\"trumo-btn trumo-btn--primary\" href=\"mailto:oversea@trumonytechs.com?subject=ESS%20cooling%20solutions%20inquiry\">Email the Drawing<\/a> <button type=\"button\" class=\"trumo-btn trumo-btn--ghost trumo-quote-open\" popovertarget=\"trumo-quote\" aria-haspopup=\"dialog\">Send the Drawing<\/button> <\/div> <\/div> <\/div> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\" aria-hidden=\"true\"><span class=\"trumo-secno\">05<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>Supply Scope and the Pump Interface in an ESS Cooling Loop<\/h2> <p class=\"trumo-lede\">Trumonytechs parts cover the ESS loop from cold plate to manifold, and the design review ties them to your pump through the pressure-drop budget.<\/p> <div class=\"trumo-pair\"> <div><b>In the Trumonytechs scope<\/b><p>The parts on the cards above, plus the thermal design review and CFD simulation. Container and rack structural parts for liquid-cooled systems also appear in the listed scope; their specifications are not published on this page.<\/p><\/div> <div><b>Set by your system side<\/b><p>Maximum allowable pressure drop drives channel geometry and flow distribution, so it is confirmed against your pump and system head budget before the first simulation iteration. Inlet temperature and flow rate range define the thermal boundary conditions for that simulation.<\/p><\/div> <\/div> <p>EV packs and cross-product selection are covered on the <a href=\"https:\/\/www.trumonytechs.com\/nl\/thermisch-beheer-batterijpakket\/\">thermisch beheer batterijpakket<\/a> pagina.<\/p> <\/section> <\/div> <section class=\"trumo-band trumo-blueprint\"> <div class=\"trumo-wrap\"> <div class=\"trumo-sechead\" aria-hidden=\"true\"><span class=\"trumo-secno\">06<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>Sign-off Gates and Validation Tests Before ESS Volume Production<\/h2> <p class=\"trumo-lede\">Cold plate and cooling component projects for ESS pass through five stages, and each stage closes with a client confirmation point. We do not start tooling or fabrication until your engineering team has formally approved the simulation outputs.<\/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\" aria-hidden=\"true\" focusable=\"false\"><path d=\"M8 3 h17 l7 7 v17 h-24 z\"\/><path d=\"M25 3 v7 h7\"\/><path d=\"M13 12 h9 M13 17 h13\"\/><circle cx=\"25\" cy=\"28\" r=\"5\"\/><path d=\"M22 32 l-2 6 4 -2 4 2 -2 -6\"\/><\/svg><b>Quality system certificates<\/b><p>Certificaten voor ons kwaliteitssysteem (ISO 9001, IATF 16949) zijn op aanvraag beschikbaar; geef in uw aanvraag aan welke u nodig heeft.<\/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\" aria-hidden=\"true\" focusable=\"false\"><path d=\"M6 26 a14 14 0 0 1 28 0\"\/><path d=\"M20 26 l7 -9\"\/><circle cx=\"20\" cy=\"26\" r=\"2\"\/><path d=\"M4 32 h32\"\/><\/svg><b>Helium leak test on every cold plate<\/b><p>Each cold plate is leak tested with helium, not sampled from the batch.<\/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\" aria-hidden=\"true\" focusable=\"false\"><path d=\"M6 30 h28\"\/><path d=\"M8 30 v-4 M14 30 v-7 M20 30 v-4 M26 30 v-7 M32 30 v-4\"\/><path d=\"M20 8 v10\"\/><circle cx=\"20\" cy=\"20\" r=\"2.5\"\/><path d=\"M14 8 h12\"\/><\/svg><b>Five cold plate development tests<\/b><p>Mechanical load, thermal performance, flow resistance, internal corrosion and salt spray corrosion.<\/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\" aria-hidden=\"true\" focusable=\"false\"><path d=\"M10 4 h14 l8 8 v24 h-22 z\"\/><path d=\"M24 4 v8 h8\"\/><path d=\"M14 20 h12 M14 26 h12\"\/><path d=\"M14 14 l2 2 4 -4\"\/><\/svg><b>Voorbeeldvalidatie<\/b><p>Leak, pressure and thermal resistance tests plus client-specific documentation before volume release.<\/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\/2022\/09\/Sealability-test.jpg\" alt=\"Afdichtbaarheidstest\" width=\"700\" height=\"525\" loading=\"lazy\" decoding=\"async\"><img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/09\/Welding-line.jpg\" alt=\"Laslijn\" width=\"700\" height=\"525\" loading=\"lazy\" decoding=\"async\"><img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/09\/Brazing-line.jpg\" alt=\"Soldeerlijn\" width=\"700\" height=\"525\" loading=\"lazy\" decoding=\"async\"><img src=\"https:\/\/www.trumonytechs.com\/wp-content\/uploads\/2022\/09\/Stampling-line.jpg\" alt=\"Stempellijn\" width=\"700\" height=\"525\" loading=\"lazy\" decoding=\"async\"><\/div> <p>Outgoing cold plate inspection adds a CMM check that includes thermal-interface flatness and a hydrostatic burst test above rated working pressure. First article inspection reports and visual and metallographic checks on welds and brazed joints complete the set. Documentation from cold plate development testing is provided for supplier qualification programs. Cold plate development also yields a 2D drawing with key interface dimensions, the flow channel and connector concept, and a CFD thermal and flow evaluation summary, with CNC prototypes tested and iterated before validation.<\/p> <ol class=\"trumo-timeline\"> <li class=\"trumo-step\"><div class=\"n\">Beoordeling van het thermisch ontwerp<\/div><b>De klant bevestigt de ingevoerde gegevens.<\/b><p>Feasibility check on cell format, heat load, temperature targets and pack geometry, ahead of any design work.<\/p><\/li> <li class=\"trumo-step\"><div class=\"n\">CFD-simulatie<\/div><b>Resultaten van klantbeoordelingen<\/b><p>Flow distribution, temperature uniformity predictions and pressure drop estimates under the defined inlet conditions, reviewed before tooling.<\/p><\/li> <li class=\"trumo-step\"><div class=\"n\">Prototype fabrication<\/div><b>Tijdschema bevestigd<\/b><p>Begins only after simulation sign-off, with lead time confirmed by cold plate type and geometry.<\/p><\/li> <li class=\"trumo-step\"><div class=\"n\">Voorbeeldvalidatie<\/div><b>Goedkeuring door de klant<\/b><p>Formal sign-off on the validated sample is required before the next stage.<\/p><\/li> <li class=\"trumo-step\"><div class=\"n\">Massaproductie<\/div><b>De productie begint<\/b><p>Starts once the validated sample carries your sign-off.<\/p><\/li> <\/ol> <p>Friction stir welding, vacuum brazing, stamping, extrusion and CNC machining make up the cold plate process range.<\/p> <div class=\"trumo-callout\"><p>The inspection and test lists above cover cold plates. Inspection items and shipping documents for cooling tubes and manifolds are not published on this page, so request them with your RFQ.<\/p><\/div> <\/div> <\/section> <div class=\"trumo-wrap\"> <section class=\"trumo-sec\" id=\"rfq-inputs\"> <div class=\"trumo-sechead\" aria-hidden=\"true\"><span class=\"trumo-secno\">07<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>What to Send, Prototype Timing and Shipment Documents for ESS Cold Plates<\/h2> <p>A thermal design review for ESS cold plates starts from five inputs, with maximum heat load as the primary input to flow path sizing and temperature uniformity calculations. Cell format and count, pack dimensions and layout, and the target maximum cell temperature and \u0394T complete the brief.<\/p> <ul class=\"trumo-chips\"> <li>Maximum heat load, per cell and per pack<\/li> <li>Coolant type and concentration<\/li> <li>Inlet temperature and flow rate range<\/li> <li>Maximum allowable pressure drop<\/li> <li>Interface material constraints from your cell or BMS supplier<\/li> <\/ul> <ol class=\"trumo-timeline trumo-timeline--3 trumo-timeline--light\"> <li class=\"trumo-step\"><div class=\"n\">CNC prototype<\/div><b>Usually 2\u20133 weeks<\/b><p>Lead time for CNC-machined prototype cold plates after design confirmation.<\/p><\/li> <li class=\"trumo-step\"><div class=\"n\">Tooled prototype<\/div><b>Set at design review<\/b><p>Stamped and other tooled constructions take longer, with the timeline confirmed at the design review.<\/p><\/li> <li class=\"trumo-step\"><div class=\"n\">Massaproductie<\/div><b>After sample sign-off<\/b><p>Lead time depends on plate geometry, tooling requirements and production scheduling, confirmed once cell format and pack dimensions are defined.<\/p><\/li> <\/ol> <div class=\"trumo-side\"> <p>Cold plates are packed moisture-sealed with desiccant, ports are closed with sealing plugs against particle contamination, and large orders ship in wooden crates.<\/p> <figure class=\"trumo-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\/2026\/09\/liquid-cold-plate-packaging-moisture-barrier.webp\" alt=\"Aluminium vloeistofkoelplaat, geseald in een vochtwerende zak met een droogmiddelzakje en afsluitdoppen, verpakt in een met schuim beklede houten kist.\" width=\"800\" height=\"600\" loading=\"lazy\" decoding=\"async\"><\/figure> <\/div> <p>Cold plate shipments come with a certificate of conformance, technical data sheet, mill certificate and packing list. RoHS and REACH declarations and SVHC communication are available on request, and the material composition supports IMDS submission.<\/p> <\/section> <div class=\"trumo-rule\"><i><\/i><\/div> <section class=\"trumo-sec\"> <div class=\"trumo-sechead\" aria-hidden=\"true\"><span class=\"trumo-secno\">08<\/span><span class=\"trumo-secline\"><\/span><\/div> <h2>ESS Integrator Questions on Cooling Loop Components<\/h2> <div class=\"trumo-faq\"> <details><summary><span class=\"q\">Can the ESS cooling review start before our cell supplier locks final parameters?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>Yes. Describing your cell type and system-level temperature target is enough to begin a useful technical exchange. Confirmed values can be shared first, and the open variables are identified before scoping proceeds. CFD outputs built on estimated or placeholder values should be expected to change when the final cell parameters are fixed.<\/p><\/details> <details><summary><span class=\"q\">Which inputs usually shift late, and what happens when they do?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>Coolant type and concentration, and inlet temperature, are the two most likely to move late. Inlet temperature sets the thermal boundary for simulation, and the coolant mix shifts pressure drop targets. A flow path sized on assumed values can miss its uniformity target on the first run, which is why both get flagged for early confirmation.<\/p><\/details> <details><summary><span class=\"q\">Do your ESS cooling solutions include the pump and heat exchanger?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>Your system integrator or BOS supplier typically provides the pump and the external heat exchanger. Advice on integrating the cold plates, tubes and manifolds with that balance-of-system hardware is given during the thermal design review, at the same stage where the cold plate configuration is aligned to your cell format.<\/p><\/details> <details><summary><span class=\"q\">How is consistency held from batch to batch on volume orders?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>Key cold plate dimensions run under statistical process control against CPK targets, and each batch ships with a full traceability label. Volume production also starts only from a sample your engineering team has signed off. Equivalent batch controls for tubes and manifolds are not published on this page.<\/p><\/details> <details><summary><span class=\"q\">What is the minimum order for ESS cold plates and loop parts?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>The minimum depends on stage and process. Cold plate samples and prototypes take flexible quantities; in production, a stamped plate with its own die has a higher threshold than a CNC-machined or FSW plate. Production MOQ is confirmed after the drawing and annual volume forecast are reviewed. Minimums for tubes and manifolds are not published on this page.<\/p><\/details> <details><summary><span class=\"q\">Will our UL 9540 or IEC 62933 program accept your quality documents?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>Acceptance depends on your program's supplier qualification criteria and should be confirmed early in commercial discussion. Quality system certificates (ISO 9001, IATF 16949) are available on request. UL 9540 covers energy storage systems and equipment, and IEC 62933 covers electrical energy storage systems, so the documents expected from a component supplier should be checked before engagement begins.<\/p><\/details> <details><summary><span class=\"q\">Are warranty, payment, shipping and NDA terms published?<\/span><span class=\"i\" aria-hidden=\"true\">+<\/span><\/summary><p>Warranty terms, payment terms, third-party inspection, transit times, import duties, after-sales support and NDA terms are not published on this page. Ask for the ones you need with your RFQ. Transit time and duties depend on the destination port and country, and are confirmed in the quote.<\/p><\/details> <\/div> <\/section> <\/div> <\/main>","protected":false},"excerpt":{"rendered":"<p>Grid-scale \u00b7 C&amp;I \u00b7 Solar &amp; wind storageCold plates \u00b7 Tubes \u00b7 Manifolds \u00b7 TIM Custom ESS Cooling Solutions: Liquid Cold Plates, Tubes and Manifolds ESS cooling solutions from Trumonytechs are the heat-path and coolant-routing parts in an energy storage battery system: cold plates, aluminum cooling tubes, distribution manifolds and thermal interface materials. Cold plate &#8230; <a title=\"ESS Koeloplossingen\" class=\"read-more\" href=\"https:\/\/www.trumonytechs.com\/nl\/ess-cooling-solutions\/\" aria-label=\"Lees meer over ESS Cooling Solutions\">Lees verder<\/a><\/p>","protected":false},"author":2,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-36948","page","type-page","status-publish"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.6 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>ESS Cooling Solutions: Cold Plates &amp; Manifolds | Trumonytechs<\/title>\n<meta name=\"description\" content=\"Cold plates, cooling tubes, distribution manifolds and thermal interface materials for energy storage battery systems, with CFD reviewed before tooling.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" 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