{"id":1909,"date":"2026-10-01T00:18:51","date_gmt":"2026-10-01T00:18:51","guid":{"rendered":"https:\/\/ritoks.com\/?p=1909"},"modified":"2026-10-06T01:09:08","modified_gmt":"2026-10-06T01:09:08","slug":"scr-module-heatsink-selection-thermal-evidence","status":"publish","type":"post","link":"https:\/\/ritoks.com\/ro\/scr-module-heatsink-selection-thermal-evidence\/","title":{"rendered":"Alegerea modulului SCR \u0219i a radiatorului: sunt necesare dovezi termice"},"content":{"rendered":"<p class=\"wp-block-paragraph\">Intensitatea nominal\u0103 a curentului unui modul SCR nu determin\u0103 dimensiunea radiatorului acestuia. Alegerea solu\u021biei termice depinde de pierderile din ciclul real de func\u021bionare, de temperatura admis\u0103 la jonc\u021biune, de c\u0103ile termice dintre jonc\u021biune \u0219i carcas\u0103 \u0219i de cele de la interfa\u021b\u0103, de condi\u021biile de r\u0103cire \u0219i de modul \u00een care este montat modulul. O ofert\u0103 pentru un modul \u0219i o profil\u0103 extrudat\u0103 din aluminiu aparent de dimensiuni mari nu constituie un proiect termic complet.<\/p>\n<p class=\"wp-block-paragraph\">Acest ghid prezint\u0103 datele necesare care trebuie solicitate \u00eenainte de alegerea unui radiator pentru un modul cu tiristor. Ghidul se concentreaz\u0103 pe datele de intrare, limitele de calcul \u0219i verificarea acestora, nu pe stabilirea unei valori a rezisten\u021bei termice pentru un circuit necunoscut. Codul exact de comand\u0103 al SCR-ului \u0219i formele de und\u0103 ale aplica\u021biei r\u0103m\u00e2n esen\u021biale.<\/p>\n<h2 class=\"wp-block-heading\">\u00cencepe\u021bi cu forma de und\u0103 a aplica\u021biei<\/h2>\n<p class=\"wp-block-paragraph\">Nota\u021bi topologia circuitului \u0219i rolul fiec\u0103rui tiristor: redresare controlat\u0103, controlul puterii de curent alternativ, pornire u\u0219oar\u0103 sau alt\u0103 func\u021bie. Men\u021biona\u021bi dac\u0103 modulul con\u021bine un singur dispozitiv, o configura\u021bie dubl\u0103 sau o alt\u0103 conexiune intern\u0103. Acela\u0219i curent indicat pe pl\u0103cu\u021ba de identificare poate corespunde unor durate de conduc\u021bie, forme de impuls \u0219i gener\u0103ri de c\u0103ldur\u0103 foarte diferite \u00een circuite diferite.<\/p>\n<p class=\"wp-block-paragraph\">Provide the RMS and average current information relevant to the manufacturer&#8217;s loss model, together with conduction angle, repetition, duty cycle and overload events. Include the current waveform or a validated simulation when possible. Do not take a sine-wave datasheet test point and treat it as a universal loss figure for a chopped or highly pulsed application.<\/p>\n<p class=\"wp-block-paragraph\">Identifica\u021bi separat cea mai solicitant\u0103 sarcin\u0103 continu\u0103 \u0219i tranzien\u021bele semnificative. Pornirea, curentul de pornire \u0219i suprasolicit\u0103rile de scurt\u0103 durat\u0103 pot necesita o analiz\u0103 a impedan\u021bei termice \u00een regim tranzitoriu, \u00een timp ce func\u021bionarea continu\u0103 necesit\u0103 o analiz\u0103 \u00een regim sta\u021bionar. Masa termic\u0103 a unui radiator nu justific\u0103 ignorarea impulsurilor repetate; repetarea acestora poate \u00eempiedica sistemul s\u0103 revin\u0103 la temperatura ini\u021bial\u0103.<\/p>\n<h2 class=\"wp-block-heading\">Calcularea pierderii pe baza informa\u021biilor din modelul exact<\/h2>\n<p class=\"wp-block-paragraph\">Request the exact model&#8217;s on-state voltage or loss parameters and the manufacturer&#8217;s recommended calculation method. Where the module has multiple devices, track loss per conducting element and the total heat injected into the shared baseplate. Power loss is an input to thermal analysis; it is not the same as the output power or load rating of the equipment.<\/p>\n<p class=\"wp-block-paragraph\">Verifica\u021bi dac\u0103 fi\u0219a tehnic\u0103 prezint\u0103 curbe pentru anumite temperaturi ale jonc\u021biunii \u0219i condi\u021bii de curent. Dac\u0103 un furnizor ofer\u0103 o singur\u0103 valoare \u201ctipic\u0103\u201d, \u00eentreba\u021bi care sunt condi\u021biile \u0219i dac\u0103 este disponibil\u0103 o valoare maxim\u0103 sau de proiectare. Preciza\u021bi incertitudinea, \u00een loc s\u0103 prezenta\u021bi o temperatur\u0103 precis\u0103 a radiatorului pe baza unor date tipice neverificate.<\/p>\n<p class=\"wp-block-paragraph\">\u00cen cazul unui sistem de redresare sau de control al fazelor, trebuie clarificate at\u00e2t calea de conduc\u021bie, c\u00e2t \u0219i ponderea curentului care trece prin fiecare dispozitiv \u00een func\u021bie de timp. Este posibil ca un modul SCR dublu s\u0103 nu \u00eempart\u0103 pierderile \u00een mod egal dac\u0103 schema de control sau func\u021bionarea circuitului este asimetric\u0103. Modelul termic trebuie s\u0103 reflecte dispozitivele de conduc\u021bie reale \u0219i, dac\u0103 este necesar, proximitatea mai multor surse de c\u0103ldur\u0103 fa\u021b\u0103 de un singur radiator.<\/p>\n<figure data-spectra-id=\"spectra-5ad64063-7a3d-4a7d-adec-9297a52e17e6\" class=\"wp-block-image size-large\"><img loading=\"lazy\" decoding=\"async\" height=\"1050\" width=\"1400\" src=\"https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-01.webp\" alt=\"Calea rezisten\u021bei termice a SCR-ului de la jonc\u021biune la carcas\u0103, interfa\u021b\u0103, radiator \u0219i mediul \u00eenconjur\u0103tor\" class=\"wp-image-1907\" srcset=\"https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-01.webp 1400w, https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-01-300x225.webp 300w, https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-01-1024x768.webp 1024w, https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-01-768x576.webp 768w, https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-01-600x450.webp 600w\" sizes=\"auto, (max-width: 1400px) 100vw, 1400px\" \/><figcaption class=\"wp-element-caption\">Urm\u0103ri\u021bi disiparea c\u0103ldurii din SCR de la jonc\u021biune, prin interfa\u021b\u0103, c\u0103tre aerul din jur.<\/figcaption><\/figure>\n<h2 class=\"wp-block-heading\">Citi\u021bi descrierea complet\u0103 a traseului termic<\/h2>\n<p class=\"wp-block-paragraph\">A simplified steady-state path runs from junction to case, case through thermal interface material to heatsink, and heatsink to ambient. Each stage contributes temperature rise under the relevant heat flow. Infineon&#8217;s module mounting guidance emphasizes that thermal interface material, application and geometry affect conduction between module and sink. No catalogue heatsink number can compensate for a poorly controlled contact interface.<\/p>\n<p class=\"wp-block-paragraph\">Obtain the exact module&#8217;s thermal-resistance or transient-impedance data and understand the measurement reference points. \u201cJunction-to-case\u201d is not automatically comparable across different internal configurations or test conventions. The sink supplier&#8217;s thermal-resistance figure also has conditions: airflow, orientation, base area and a particular heat-source arrangement may be assumed.<\/p>\n<p class=\"wp-block-paragraph\">Check where the equipment&#8217;s ambient reference is measured. Air near an SCR bank, inside a crowded cabinet, may be hotter than room air. A fan&#8217;s free-air rating is not the airflow through the sink fins once filters, guards and nearby components are installed. In a design review, use the relevant local inlet-air condition rather than the most favorable laboratory ambient.<\/p>\n<h2 class=\"wp-block-heading\">Include\u021bi interfa\u021ba \u0219i procedura de montare<\/h2>\n<p class=\"wp-block-paragraph\">Thermal compound, pad or factory-applied interface material is part of the designed path. Record which interface is allowed for the exact module, the required surface flatness and cleanliness, and the manufacturer&#8217;s placement and fastening sequence. A change of compound or mounting pressure can change contact resistance even if the electrical module and sink are unchanged.<\/p>\n<p class=\"wp-block-paragraph\">Ask for specified mounting torque, fastener pattern, electrical clearances and any re-tightening or burn-in instruction. These details should come from the current module installation manual, not from a generic torque chart. Infineon&#8217;s power-module documentation explicitly treats mounting as a thermal-performance and reliability issue; RITOKS products require their own exact-model instructions before assembly release.<\/p>\n<p class=\"wp-block-paragraph\">Lua\u021bi \u00een considerare posibilitatea ca mai multe module s\u0103 \u00eempart\u0103 acela\u0219i radiator. Interferen\u021bele mecanice, disiparea c\u0103ldurii, izola\u021bia electric\u0103 \u0219i blocarea fluxului de aer pot afecta performan\u021ba. Dac\u0103 radiatorul este conectat electric la o parte a circuitului prin intermediul bazei unui modul, proiectarea trebuie s\u0103 \u021bin\u0103 seama de izola\u021bia necesar\u0103 \u0219i de distan\u021bele de siguran\u021b\u0103, \u00een loc s\u0103 trateze radiatorul ca pe o simpl\u0103 pies\u0103 metalic\u0103 inofensiv\u0103.<\/p>\n<h2 class=\"wp-block-heading\">Compara\u021bi convec\u021bia natural\u0103 \u0219i cea for\u021bat\u0103 \u00een func\u021bie de geometria instala\u021biei<\/h2>\n<p class=\"wp-block-paragraph\">Convec\u021bia natural\u0103 depinde \u00een mare m\u0103sur\u0103 de orientarea aripioarelor, de distan\u021ba dintre acestea \u0219i de libertatea de circula\u021bie a aerului ascendent. Convec\u021bia for\u021bat\u0103 depinde de debitul de aer furnizat prin schimb\u0103torul de c\u0103ldur\u0103, nu doar de fluxul de aer liber generat de ventilator. Alegerea influen\u021beaz\u0103, de asemenea, cerin\u021bele privind zgomotul, praful, filtrarea \u0219i \u00eentre\u021binerea. Stabili\u021bi dac\u0103 carcasa poate sus\u021bine debitul de aer prev\u0103zut pe toat\u0103 durata sa de via\u021b\u0103.<\/p>\n<p class=\"wp-block-paragraph\">Request a sink performance curve or tested thermal resistance under conditions close to the installed arrangement. If the data uses another heat-source footprint, ask the sink supplier how to correct or test it. Infineon&#8217;s heatsink-selection guidance stresses that optimization is iterative and that published thermal resistance is conditional on how it was measured.<\/p>\n<p class=\"wp-block-paragraph\">O marj\u0103 de r\u0103cire trebuie justificat\u0103 pe baza incertitudinii calculate, a valorilor extreme ale temperaturii mediului \u00eenconjur\u0103tor \u0219i a ipotezelor privind \u00eentre\u021binerea. Suzdimensionarea unui radiator f\u0103r\u0103 a verifica interfa\u021ba \u0219i fluxul de aer poate duce la omisiunea punctului de blocaj real. \u00cen schimb, un radiator de dimensiuni reduse poate fi considerat adecvat pentru o func\u021bionare intermitent\u0103 numai dac\u0103 modelul termic tranzitoriu \u0219i frecven\u021ba de repeti\u021bie sunt documentate.<\/p>\n<h2 class=\"wp-block-heading\">Folosi\u021bi un tabel cu date termice, nu o compara\u021bie bazat\u0103 exclusiv pe curent<\/h2>\n<figure class=\"wp-block-table\"><table><thead><tr><th>Prob\u0103<\/th><th>Materiale necesare pentru proiect<\/th><th>Furnizorul confirm\u0103<\/th><\/tr><\/thead><tbody><tr><td>Sarcina electric\u0103<\/td><td>Forma de und\u0103, modelul de conduc\u021bie, suprasarcin\u0103<\/td><td>Metoda exact\u0103 de determinare a pierderii dispozitivului<\/td><\/tr><tr><td>Limita de jonc\u021biune<\/td><td>Defini\u021bia domeniului de func\u021bionare<\/td><td>Limita de temperatur\u0103 pentru modelul exact<\/td><\/tr><tr><td>Cale termic\u0103 intern\u0103<\/td><td>Amplasarea dispozitivului pe chiuvet\u0103<\/td><td>Date privind jonc\u021biunile fa\u021b\u0103 de carcas\u0103<\/td><\/tr><tr><td>Interfa\u021b\u0103<\/td><td>Procesul de asamblare<\/td><td>TIM-uri permise \u0219i instruc\u021biuni de montare<\/td><\/tr><tr><td>Traiectoria de la chiuvet\u0103 la aer<\/td><td>Configura\u021bia mediului ambiant \u0219i a fluxului de aer<\/td><td>Performan\u021ba chiuvetei \u00een condi\u021bii relevante<\/td><\/tr><\/tbody><\/table><\/figure>\n<p class=\"wp-block-paragraph\">Asigura\u021bi-v\u0103 c\u0103 toate datele de intrare sunt corelate cu o revizie a desenului tehnic \u0219i cu un cod de comand\u0103. O modificare a topologiei SCR, a carcasei modulului, a traseului de circula\u021bie a aerului sau a formei de und\u0103 de control poate invalida calculul termic ini\u021bial. Departamentul de achizi\u021bii nu trebuie s\u0103 \u00eenlocuiasc\u0103 modulele cu altele \u201cechivalente\u201d doar pe baza valorilor de curent \u0219i tensiune indicate pe etichete, dac\u0103 traseul termic este diferit.<\/p>\n<figure data-spectra-id=\"spectra-3d1da773-4d7f-4851-abae-4dbc1d7fcfa3\" class=\"wp-block-image size-large\"><img loading=\"lazy\" decoding=\"async\" height=\"1050\" width=\"1400\" src=\"https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-02.webp\" alt=\"Lista de verificare a radiatorului SCR pentru corelarea sarcinilor electrice cu documenta\u021bia modulului, a interfe\u021bei \u0219i a radiatorului\" class=\"wp-image-1908\" srcset=\"https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-02.webp 1400w, https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-02-300x225.webp 300w, https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-02-1024x768.webp 1024w, https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-02-768x576.webp 768w, https:\/\/ritoks.com\/wp-content\/uploads\/2026\/10\/scr-module-heatsink-selection-thermal-evidence-body-02-600x450.webp 600w\" sizes=\"auto, (max-width: 1400px) 100vw, 1400px\" \/><figcaption class=\"wp-element-caption\">\u00cenregistra\u021bi documentele necesare pentru a confirma fiecare ipotez\u0103 de proiectare termic\u0103.<\/figcaption><\/figure>\n<h2 class=\"wp-block-heading\">Validare prin m\u0103surare la o sarcin\u0103 reprezentativ\u0103<\/h2>\n<p class=\"wp-block-paragraph\">Calculation screens candidates; installed testing verifies the model. Define the operating cycle, enclosure condition and measurement points before the test. A case or sink temperature reading is meaningful only when its location matches the calculation reference. If direct junction measurement is unavailable, use the manufacturer&#8217;s approved method to infer junction temperature from measured values and losses.<\/p>\n<p class=\"wp-block-paragraph\">Verifica\u021bi starea de \u00eenc\u0103rcare ridicat\u0103 prelungit\u0103, precum \u0219i orice stare tranzitorie important\u0103 sau de ciclu repetat. Documenta\u021bi viteza ventilatorului, starea filtrului, temperatura mediului ambiant \u0219i sursele de c\u0103ldur\u0103 din apropiere. Dac\u0103 temperatura m\u0103surat\u0103 difer\u0103 de cea prev\u0103zut\u0103, analiza\u021bi ipotezele privind pierderile, aplica\u021bia interfe\u021bei, fluxul de aer \u0219i pozi\u021bia senzorului. Evita\u021bi s\u0103 masca\u021bi o discrepan\u021b\u0103 prin ajustarea unei singure rezisten\u021be presupuse, f\u0103r\u0103 dovezi.<\/p>\n<p class=\"wp-block-paragraph\">Include\u021bi controale privind asamblarea \u00een produc\u021bie. Un prototip asamblat cu aten\u021bie de un inginer poate avea performan\u021be diferite fa\u021b\u0103 de o versiune de serie, dac\u0103 acoperirea compusului sau ordinea de fixare variaz\u0103. Specifica\u021bi punctele de inspec\u021bie care sunt aplicabile \u00een hala de produc\u021bie, apoi \u00eenregistra\u021bi procesul de asamblare verificat \u00een dosarul produsului.<\/p>\n<h2 class=\"wp-block-heading\">Ce trebuie s\u0103 include\u021bi \u00eentr-o solicitare de informa\u021bii privind un modul SCR<\/h2>\n<p class=\"wp-block-paragraph\">Trimite\u021bi topologia circuitului, forma de und\u0103 \u0219i ciclul de lucru, tensiunea de blocare necesar\u0103, evenimentele poten\u021biale de suprasarcin\u0103, dimensiunile disponibile ale radiatorului, condi\u021biile ambientale \u0219i ale fluxului de aer, schema de montare \u0219i documenta\u021bia necesar\u0103. Solicita\u021bi datele exacte privind pierderile \u0219i caracteristicile termice ale modulului, desenul tehnic, \u00eendrum\u0103rile privind interfa\u021ba \u0219i instruc\u021biunile de instalare. Acestea <a href=\"https:\/\/ritoks.com\/ro\/product-category\/power-semiconductor-modules\/scr-thyristor-modules\/\">Categoria modulelor SCR\/tiristoare<\/a> ajut\u0103 la identificarea familiilor de produse; selec\u021bia r\u0103m\u00e2ne specific\u0103 fiec\u0103rui model.<\/p>\n<p class=\"wp-block-paragraph\">Pentru a \u00een\u021belege contextul aprovizion\u0103rii, consulta\u021bi <a href=\"https:\/\/ritoks.com\/ro\/products\/mta-dual-scr-thyristor-module-25a-1000a\/\">Familia MTA cu sistem dual SCR<\/a>, <a href=\"https:\/\/ritoks.com\/ro\/products\/mtc-scr-thyristor-module-55a-200a\/\">Familia MTC SCR<\/a> sau <a href=\"https:\/\/ritoks.com\/ro\/products\/mtc-high-current-scr-module-250a-1500a\/\">Familia de produse MTC pentru curent ridicat<\/a> dup\u0103 caz. Paginile respective nu \u00eenlocuiesc curbele de pierdere actuale sau manualele de montare. \u00centreba\u021bi <a href=\"https:\/\/ritoks.com\/ro\/contact-us\/\">RITOKS<\/a> pentru setul specific de documente \u00eenainte de blocarea unui cod de comand\u0103.<\/p>\n<h2 class=\"wp-block-heading\">\u00centreb\u0103ri frecvente<\/h2>\n<h3 class=\"wp-block-heading\">Se poate alege un radiator pe baza curentului nominal al SCR-ului?<\/h3>\n<p class=\"wp-block-paragraph\">Nu. Curentul nominal este doar unul dintre parametrii caracteristici ai dispozitivului. Forma de und\u0103 real\u0103, pierderile, condi\u021biile ambientale, interfa\u021ba \u0219i sistemul de r\u0103cire sunt factorii care determin\u0103 cerin\u021bele termice.<\/p>\n<h3 class=\"wp-block-heading\">Ad\u0103ugarea unui ventilator garanteaz\u0103 o marj\u0103 mai mare?<\/h3>\n<p class=\"wp-block-paragraph\">Numai dac\u0103, \u00een condi\u021biile de instalare, un flux de aer adecvat ajunge la suprafe\u021bele relevante ale aripioarelor. Verifica\u021bi filtrele, eventualele obstruc\u021bii, starea de func\u021bionare a ventilatorului \u0219i datele privind performan\u021ba radiatorului.<\/p>\n<h3 class=\"wp-block-heading\">Care este dovada accept\u0103rii definitive?<\/h3>\n<p class=\"wp-block-paragraph\">Un calcul specific modelului, o metod\u0103 de montare controlat\u0103 \u0219i un test de temperatur\u0103 reprezentativ constituie \u00eempreun\u0103 o baz\u0103 solid\u0103 pentru luarea unei decizii. Niciun document nu demonstreaz\u0103 toate cele trei aspecte.<\/p>\n<h2 class=\"wp-block-heading\">Concluzie<\/h2>\n<p class=\"wp-block-paragraph\">Defini\u021bi mai \u00eent\u00e2i pierderile electrice, apoi urm\u0103ri\u021bi traseul termic complet \u0219i verifica\u021bi ansamblul instalat. O pereche format\u0103 dintr-un modul SCR \u0219i un radiator reprezint\u0103 o alegere la nivel de sistem. Men\u021bine\u021bi vizibile \u00een cererea de ofert\u0103 datele termice specifice modelului care nu au fost \u00eenc\u0103 rezolvate, \u00een loc s\u0103 o completa\u021bi cu ipoteze din catalog. Desenul final trebuie s\u0103 identifice modulul ales, radiatorul, materialul de interfa\u021b\u0103, direc\u021bia fluxului de aer \u0219i condi\u021biile de testare validate ca un ansamblu controlat.<\/p>\n<h2 class=\"wp-block-heading\">Referin\u021be<\/h2>\n<ul class=\"wp-block-list\"><li><a href=\"https:\/\/www.infineon.com\/dgdl\/Infineon-Use_and_Installation_Manual_34mm_and_50mm_Solder_Bond_Modules-ApplicationNotes-v01_03-EN.pdf?fileId=5546d462576f3475015775517f2622cd\" target=\"_blank\" rel=\"noopener\">Infineon, 34 mm and 50 mm Solder Bond Modules \u2014 Use and Installation Manual (AN2018-07)<\/a>.<\/li><li><a href=\"https:\/\/www.infineon.com\/dgdl\/Infineon-CIPOS_Maxi_IPM_IM12BxxxC1_series-ApplicationNotes-v01_00-EN.pdf?fileId=8ac78c8c90530b3a01908868b8ec22fb\" target=\"_blank\" rel=\"noopener\">Infineon, \u00eendrum\u0103ri privind proiectarea sistemelor termice \u0219i alegerea radiatoarelor<\/a> (principii generale privind radiatoarele; nu este o specifica\u021bie RITOKS SCR).<\/li><li><a href=\"https:\/\/www.semikron-danfoss.com\/service-support\/application-support\/application-manual\" target=\"_blank\" rel=\"noopener\">Semikron Danfoss, Manual de aplica\u021bii pentru semiconductori de putere<\/a>.<\/li><\/ul>","protected":false},"excerpt":{"rendered":"<p>Select an SCR heatsink from application losses, complete thermal path, installed airflow and model-specific mounting evidence, not current rating 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