# Thyristor, Single SCR, 1.8 kV, 2.84 kA

![Product image](https://novapart.co/image/farnell:3794563/)

**URL**: https://novapart.co/products/T1900N18TOFVTXPSA1/thyristor-single-scr-18-kv-284-ka
**SKU**: T1900N18TOFVTXPSA1
**Manufacturer**: INFINEON
**Category**: Semiconductors - Discretes || Thyristors || Thyristors - SCR Modules
**Price**: €383.6200
**Stock**: 10+
**Lead Time**: 358 days (indicative)

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (25-Jun-2025) |
| No. Of Pins | 4Pins |
| Product Range | - |
| Scr Module Type | Single SCR |
| Thyristor Mounting | Panel |
| On State Rms Current | 2.84kA |
| Thyristor Case Style | Module |
| Average Forward Current | 1.81kA |
| Gate Trigger Current Max | 250mA |
| Gate Trigger Voltage Max | 2V |
| Operating Temperature Max | 135°C |
| Repetitive Peak Reverse Voltage | 1.8kV |
| Peak Repetitive Off State Voltage | 1.8kV |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:3794563/)

Technische Information / technical information 

## **Netz-Thyristor Phase Control Thyristor** ~~i~~ 

## **T1900N** 

## **Key Parameters** 

VDRM / VRRM 1600V - 1800V ITAVM 1810A (TC=85 °C) ITSM 30700A VT0 0,83V rT 0,15mΩ RthJC 17K/kW Clamping Force 24...56kN Max. Diameter 75 mm Contact Diameter 50 mm Height 26,5 mm 

For type designation please refer to actual short form catalog http://www.ifbip.com/catalog 

## **Merkmale** 

- Volle Sperrfähigkeit 50/60Hz über einen weiten Temperaturbereich 

- Hohe DC Sperrstabilität 

- Hohe Stoßstrombelastbarkeit 

- Industrie-Standard-Gehäuse 

## **Features** 

- Full blocking 50/60Hz over a wide range temperature range 

- High DC blocking stability 

- High surge current capability 

- Industial standard package 

## **Typische Anwendungen** 

- Sanftanlasser 

- Mittelspannungsumrichter 

- Gleichrichter für Antriebsapplikationen 

## **Typical Applications** 

- Soft starter 

- Medium voltage converters 

- Rectifier for drives applications 

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Date of publication: 2021-03-10 

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Technische Information / technical information 

## **Netz-Thyristor Phase Control Thyristor** 

## **T1900N** 

## **Elektrische Eigenschaften / Electrical properties** 

|Pr|Technische Information /<br>technical information|Technische Information /<br>technical information|Technische Information /<br>technical information|ae<br>Cinfineon<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|
|---|---|---|---|---|
|**Netz-Thyristor**<br>**Phase Control Thyristor**|**T1900N**||||
|**Elektrische Eigenschaften / Electrical properties**<br>Höchstzulässige Werte / Maximum rated values<br>Periodische Vorwärts- und Rückwärts-Spitzensperrspannung<br>repetitive peak forward off-state and reverse voltages<br>Tvj= -40°C... Tvj max<br>VDRM,VRRM <br>1600<br>1800<br>V<br>V<br>Vorwärts-Stossspitzensperrspannung<br>non-repetitive peak forward off-state voltage<br>Tvj= -40°C... Tvj max<br>VDSM<br>1600<br>1800<br>V<br>V<br>Rückwärts-Stossspitzensperrspannung<br>non-repetitive peak reverse voltage<br>Tvj= +25°C... Tvj max<br>VRSM<br>1700<br>1900<br>V<br>V<br>Durchlassstrom-Effektivwert<br>RMS on-state current<br>TC= 85°C<br>ITRMS<br>2840 A<br>Dauergrenzstrom<br>average on-state current<br>TC= 85°C<br>ITAVM<br>1810<br>A<br>Dauergrenzstrom<br>average on-state current<br>TC= 55°C, θ = 180°sin, tP= 10ms<br>ITAVM<br>2490 A<br>Durchlaßstrom-Effektivwert<br>RMS on-state current<br>ITRMS<br>3900 A<br>Stossstrom-Grenzwert<br>surge current<br>Tvj= 25°C, tP= 10ms<br>Tvj= Tvj max, tP= 10ms<br>ITSM<br>39000<br>30700<br>A<br>A<br>Grenzlastintegral<br>I²t-value<br>Tvj= 25°C, tP= 10ms<br>Tvj= Tvj max, tP= 10ms<br>I²t<br>7605<br>4713<br>10³ A²s<br>10³ A²s<br>Kritische Stromsteilheit<br>critical rate of rise of on-state current<br>DIN IEC 60747-6<br>f = 50 Hz, iGM= 1A, diG/dt = 1A/µs<br>(diT/dt)cr<br>200 A/µs<br>Kritische Spannungssteilheit<br>critical rate of rise of off-state voltage<br>Tvj= Tvj max, vD= 0,67 VDRM<br>5.Kennbuchstabe / 5thletter F<br>(dvD/dt)cr<br>1000 V/µs<br>CharakteristischeWerte / Characteristicvalues<br>Durchlassspannung<br>on-state voltage<br>Tvj= Tvj max,  iT= 1,8kA<br>vT<br>max.<br>1,1<br>V<br>Schleusenspannung<br>threshold voltage<br>Tvj= Tvj max<br>V(TO)<br>max<br>0,83 V<br>Ersatzwiderstand<br>slope resistance<br>Tvj= Tvj max<br>rT<br>max<br>0,15 mΩ<br>Durchlasskennlinie       200A ≤ iT≤ 3600A<br>on-state characteristic<br>**T**<br>**T**<br>**T**<br>**T**<br>**i**<br>**D**<br>**1)**<br>**i(**<br>**ln**<br>**C**<br>**i**<br>**B**<br>**A**<br>**v**<br><br><br><br><br><br><br><br><br>Tvj= Tvj max<br>A=<br>B=<br>C=<br>D=<br>5,636E-01<br>8,645E-05<br>1,727E-02<br>5,882E-03<br>Zündstrom<br>gate trigger current<br>Tvj= 25°C, vD= 12V<br>IGT<br>max.<br>250 mA<br>Zündspannung<br>gate trigger voltage<br>Tvj= 25°C, vD= 12V<br>VGT<br>max.<br>2 V<br>Nicht zündender Steuerstrom<br>gate non-trigger current<br>Tvj= Tvj max, vD= 12V<br>Tvj= Tvj max, vD= 0,5 VDRM<br>IGD<br>max.<br>max.<br>10<br>5<br>mA<br>mA<br>Nicht zündende Steuerspannung<br>gate non-trigger voltage<br>Tvj= Tvj max, vD= 0,5 VDRM<br>VGD<br>max.<br>0,2 V<br>Haltestrom<br>holding current<br>Tvj= 25°C, vD= 12V<br>IH<br>max.<br>500 mA<br>Einraststrom<br>latching current<br>Tvj= 25°C, vD= 12V, RGK≥ 10Ω<br>iGM= 1A, diG/dt = 1A/µs, tg= 20µs<br>IL<br>max.<br>2500 mA<br>Vorwärts- und Rückwärts-Sperrstrom<br>forward off-state and reverse current<br>Tvj= Tvj max<br>vD= VDRM, vR= VRRM<br>iD, iR<br>max.<br>300 mA<br>Zündverzug<br>gate controlled delay time<br>DIN IEC 60747-6<br>Tvj= 25°C, iGM= 1A,<br>diG/dt = 1A/µs<br>tgd<br>max.<br>4 µs<br>prepared by: HR<br>date of publication:<br>2021-03-10<br>approved by: MS<br>revision:<br>3.1|||||
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Date of publication: 2021-03-10 

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Revision: 3.1 

Technische Information / technical information 

## **Netz-Thyristor Phase Control Thyristor** 

## **T1900N** 

|**Phase Control Thyristor**<br>**T1900N**|**T1900N**|Infineon|Infineon Technologies<br>GmbH|Technologies <br> & Co. KG|Bipolar|
|---|---|---|---|---|---|
|**Elektrische Eigenschaften / Electrical properties**||||||
|Charakteristische Werte / Characteristic values||||||
|Freiwerdezeit|Tvj= Tvj max, iTM= ITAVM|tq|typ.|270 µs|270 µs|
|circuit commutated turn-off time|vRM= 100V, vDM= 0,67 VDRM|||||
||dvD/dt = 20V/µs, -diT/dt = 10A/µs|||||
||4.Kennbuchstabe / 4thletter O|||||
|**Thermische Eigenschaften / Thermal properties**||||||
|Innerer Wärmewiderstand|Kühlfläche / cooling surface|RthJC||||
|thermal resistance, junction to case|beidseitig / two-sided, θ = 180°sin||max.|18,4|K /kW|
||beidseitig / two-sided, DC||max.|17,0|K/kW|
||Anode / anode, θ = 180°sin||max.|34,4|K/kW|
||Anode / anode, DC||max.|33,0|K/kW|
||Kathode / cathode, θ = 180°sin||max.|36,4|K/kW|
||Kathode / cathode, DC||max.|35,0|K/kW|
|Übergangs-Wärmewiderstand|Kühlfläche / cooling surface|RthCH||||
|thermal resistance, case to heatsink|beidseitig / two-sides||max.|2,5|K/kW|
||einseitig / single-sides||max.|5,0|K/kW|
|Höchstzulässige Sperrschichttemperatur||Tvj max||135 °C|135 °C|
|maximum junction temperature||||||
|Betriebstemperatur||Tc op|-40...+135 °C||-40...+135 °C|
|operating temperature||||||
|Lagertemperatur||Tstg|-40...+150 °C||-40...+150 °C|
|storage temperature||||||
|**Mechanische Eigenschaften / Mechanicalproperties**||||||
|Gehäuse, siehe Anlage||||Seite 4||
|case, see annex||||page 4||
|Si-Element mit Druckkontakt||||||
|Si-pellet with pressure contact||||||
|Anpresskraft||F||24...56 kN|24...56 kN|
|clamping force||||||
|Steueranschlüsse|Gate (flat)||A 2,8x0,5|A 2,8x0,5|mm|
|control terminals|Gate (round, based on AMP 60598)|||Ø 1,5|mm|
||Kathode / cathode||A 4|A 4,8x0,5|mm|
|Gewicht||G|typ.|600 g|600 g|
|weight||||||
|Kriechstrecke||||20 mm|20 mm|
|creepage distance||||||
|Schwingfestigkeit|f = 50Hz|||50 m/s²|50 m/s²|
|vibration resistance||||||



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Technische Information / technical information 

## **Netz-Thyristor Phase Control Thyristor** 

## **T1900N** 

**Analytische Elemente des transienten Wärmewiderstandes Z thJC für DC Analytical elements of transient thermal impedance Z thJC for DC** 

|**Netz-Thyristor**<br>**Phase Control Thyristor**<br>**T1900N**<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|**Netz-Thyristor**<br>**Phase Control Thyristor**<br>**T1900N**<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|**Netz-Thyristor**<br>**Phase Control Thyristor**<br>**T1900N**<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|**Netz-Thyristor**<br>**Phase Control Thyristor**<br>**T1900N**<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|**Netz-Thyristor**<br>**Phase Control Thyristor**<br>**T1900N**<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|**Netz-Thyristor**<br>**Phase Control Thyristor**<br>**T1900N**<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|**Netz-Thyristor**<br>**Phase Control Thyristor**<br>**T1900N**<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|**Netz-Thyristor**<br>**Phase Control Thyristor**<br>**T1900N**<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|**Netz-Thyristor**<br>**Phase Control Thyristor**<br>**T1900N**<br>Infineon Technologies Bipolar<br>GmbH & Co. KG|
|---|---|---|---|---|---|---|---|---|
|**Analytische Elemente des transienten Wärmewiderstandes Z thJC für DCthJC für DC für DC**<br>**Analytical elements of transient thermal impedance Z thJC for DCthJC for DC for DC**|||||||||
|Kühlung /<br>Cooling|Pos. n|1|2|3|4|5|6|7|
|beidseitig<br>two-sided|Rthn[K/kW]|4,89|5,99|3,08|1,53|1,30|0,21|0|
||n[s]|1,79|0,467|0,132|0,0247|0,0033|0,00137|1|
|anodenseitig<br>anode-sided|Rthn[K/kW]|20|4,25|3,81|2,39|1,90|0,65|0|
||n[s]|7,21|1,736|0,260|0,0791|0,0091|0,0091|1|
|kathodenseitig<br>cathode-sided|Rthn[K/kW]|20,84|5,51|6,04|2,06|0,55|0|0|
||n[s]|7,007|2,58|0,154|0,00857|0,0014|1|1|



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40 SS<br>a OGGO<br>SOGG OO<br>OG GO OG<br>35 S S OOS OSA c<br>a Oe a<br>a GG Oc<br>30 SSSSaOGOOAGGGGOOOSce ” oS ”_™—"cM  O<br>a OOOBGG OO 0” ,<br>OOGO7.<br>25 SS7”A 7” CO<br>aa OOeeGG eeOO ee ”eeee2A ee eeGO<br>OOGG OO<br>20 2a ”<br>a OO<br>a OO b<br>SS<br>15 SS——KVXKa OOVeGe————eeeO_OToo— aoeA oor<br>OO O_O<br>SO OOa<br>10 SSSSct OOCO<br>ee _—7rer<br>Oe OOGG<br>OO<br>5 SSaa CG OSGO<br>arsGO<br>esOCOS SG GO<br>0 aaae OOOSGOOO<br>0,001 0,01 0,1 1 10 100<br>t [s]<br>[K/kW]<br>thJC<br>Z<br>**----- End of picture text -----**<br>


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Transienter innerer Wärmewiderstand für DC / Transient thermal impedance for DC<br> Z thJC = f(t )<br>**----- End of picture text -----**<br>


a - Anodenseitige Kühlung / Anode-sided cooling b - Beidseitige Kühlung / Two-sided cooling c - Kathodenseitige Kühlung / Cathode-sided cooling 

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Revision: 3.1 

Technische Information / technical information 

## **Netz-Thyristor Phase Control Thyristor** 

## **T1900N** 

||Technische Information /<br>technical information|Technische Information /<br>technical information|Technische Information /<br>technical information|Infineon Technologies Bipolar<br>GmbH & Co. KG|
|---|---|---|---|---|
|**Netz-Thyristor**<br>**Phase Control Thyristor**|**T1900N**||||
|**Erhöhung des Zth DC bei Sinus und Rechteckströmen mit unterschiedlichen Stromflusswinkeln Θ**<br>**Rise of Zth DC for sinewave and rectangular current with different current conduction angles Θ**<br>**ΔZth Θ sin / ΔZth Θ rec**<br>Kühlung / Cooling<br>ΔZth Θ sin180°<br>[K/kW]<br>ΔZth Θ rec 180°<br>[K/kW]<br>ΔZth Θ rec 120°<br>[K/kW]<br>ΔZth Θ rec 90°<br>[K/kW]<br>ΔZth Θ rec 60°<br>[K/kW]<br>ΔZth Θ rec 30°<br>[K/kW]<br>beidseitig<br>two-sided<br>1,368<br>1,890<br>3,192<br>4,160<br>5,526<br>7,458<br>anodenseitig<br>anode-sided<br>1,444<br>1,526<br>2,254<br>2,681<br>3,163<br>3,688<br>kathodenseitig<br>cathode-sided<br>1,316<br>1,853<br>3,021<br>3,897<br>5,193<br>7,241<br>Zth Θ sin= Zth DC+Zth Θ sin<br>Zth Θ rec= Zth DC+Zth Θ rec<br>**Tvj = Tvj max**<br>0<br>500<br>1.000<br>1.500<br>2.000<br>2.500<br>3.000<br>3.500<br>4.000<br>0,7<br>0,8<br>0,9<br>1<br>1,1<br>1,2<br>1,3<br>1,4<br>**iT [A]**<br>**VT[V]**<br>**Grenzdurchlasskennlinie / Limiting on-state characteristic iT = f(vT) **<br>Tvj= Tvj max<br>aSS<br>ESSSSSASSS<br>a<br>SSSSLS(S(O<br>**a**SSSSLS(SO<br>SS(SS(SS<br>a<br>SSSS<br>TZ<br>SS SSES<br>At<br>a<br>Z|<br>a<br>(ce<br>a(CSCS(SESSce<br>SS SSSS<br>ESSo<br>SS<br>aSS(SS<br>><br>a<br>SScA(<br>a<br>(SS(Sc(<br>SSSSSSSScee<br>SS<br>SS<br>ESES“oA<br>ES<br>SS SS**S**S<br>EScolLS(SS<br>a<br>SS<br>ScA(S(O<br>(<br>a<br>(SSeS<br>(SS<br>SSSSSS<br>ES<br>el<br>ES<br>SS<br>ca<br>a<br>Se<br>a(CS<br>cd<br>(SE<br>((<br>a<br>(ce(SO(S(O<br>SS<br>ESSS<br>cee<br>SSLSSS<br>ced<br>ESES(ES(SE<br>a<br>ce(SL<br>a(cee<br>ES(SE<br>((<br>a(celESLS(SO(S(O<br>SS SSceESEE<br>a<br>a<br>ceSS(S(O<br>aceSS(SE(SE(SS<br>acsSS E**S**<br>**S**(O L**S(S**U<br>SS SS ce SS<br>ES<br>E S<br>(SO<br>O<br>S<br>a<br>aceLSLS(SE(SS<br>a<br>SSLS(SO(SE<br>a<br>SSSS(SS(SO<br>SS(SE<br>~~aSS~~<br>~~SS~~<br>~~NSSSSSi~~|||||
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## **Grenzdurchlasskennlinie / Limiting on-state characteristic iT = f(vT)** 

Tvj = Tvj max 

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Netz-Thyristor<br>Phase Control Thyristor<br>**----- End of picture text -----**<br>


## **T1900N** 

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100<br>———aPCSRs |SS|  ASS | COTeCO SCS| =.QD I SC (COOS(OS OO<br>JoopEEE Ea E/“$/$=&>=_E™_<br>PT EL<br>c<br>10 ee eee eee<br>b<br>Pp [rtC“*:‘“‘(‘mYSSC“‘(;SN;?)’W] CT eT Te> TT TT a PS PAS<br>PrSS<br>enee ee eee eee<br>1 eea e e eePE aeeee TT<br>See ee<br>Se ee ee ee ee —t—‘C;SC~rSCi‘(CMWCrdee eee eee<br>a<br>0,1<br>10 100 1000 10000<br>iG [mA]<br> [V]<br>G<br>v  =<br> =  Tv j<br> =  v j<br>T +25 C<br>v j max<br>T<br>-40  C<br>+135 C<br>**----- End of picture text -----**<br>


**Steuercharakteristik vG = f (iG) mit Zündbereichen für VD = 12 V Gate characteristic vG = f (iG) with triggering area for VD = 12 V** 

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Höchstzulässige Spitzensteuerverlustleistung / Maximum rated peak gate power dissipation PGM  = f (tg) :<br>**----- End of picture text -----**<br>


a - 20W / 10ms    b - 40W / 1ms    c - 60W / 0,5ms 

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10000 a(| i TM  =2000 A<br>1000 A<br>500A<br>200A<br>egSe<br>Eee<br>eeeee 100 A<br>1000<br>aoeaeae<br>eei e e eCees ee ee esee ee ee eeeeee ee<br>eee<br>A<br>100<br>1 10 -di/dt [A/µs] 100<br>Sperrverzögerungsladung / Recovered charge Qr = f(di/dt)<br>Tvj= Tvjmax, vR ≤ 0,5 VRRM, VRM = 0,8 VRRM<br>Parameter: Durchlassstrom / On-state current iTM<br>Q [µAs]r<br>**----- End of picture text -----**<br>


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Technische Information / technical information 

## **Netz-Thyristor T1900N Phase Control Thyristor** 

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6000<br>pt | | tT ft tT ty pt yt<br>p | | [ tf ft tT tT ft tt tt ee tttt<br>ppt| || ft[| tff ftft tttT tT teft tttf ft tt te pt t e t ; |fT<br>5000 e e ee e e ee eee eee eee DC YT {| [|]<br>pt | ft tf ft tT ty te te pt et ee pT eeeee [ty<br>Pt rec ee 2<br>4000 PoteefttT fttT tT fttttT ee te  etep eppe eee eee rec 1} 180°sin LL_ 180° PteeeettteetT Pe eeeeeeee<br>eeeptPt tTtT tTft fttT tftT ettt θ =  eee rec 60° ||[|TIA rec 90° TAsa 120° a LI]aTtvi ee|Peete| | Preeeet eee<br>3000 ee eee rec 30° Ty lA ee lee<br>"2aeeeeeee<br>ee. ee. ee.ee eeeeeeeee<br>ee2 ee ae ea eeeeeeeeee<br>2000 aeteeeeeeeee<br>|pP||| ||| ||| [|| tT|| ||| ty|YlryeVY)|eTA [viper] vee [teed] tl|leer| tTte t tTT ttTtt [tt] | |] th|  ht| hhthTl | | | TP TT<br>1000 eeeee eee eee<br>| | |Legos | Tt cE ct hc Tt tt<br>0 |ee|lemtT tT tT tT tT eeeeeee<br>0 500 1000 1500 2000 2500 3000 3500 4000<br>ITAV [A]<br>Durchlassverlustleistung / On-state power loss PTAV = f(ITAV)<br>Parameter: Stromflusswinkel Θ / Current conduction angle Θ<br>140<br>i | | | tt tT<br>eeeeeeeeeeeeeeee<br>Pp |NSS<br>120 PTT UNAS<br>| | | | INEXSemeeeetttPt<br>NNNSeSeeeeeeeeeeeee<br>| {| [[ot]<br>100 pt |tt| | NEXT NUNESPENIS ISSttee<br>eeNsONSSE eeeeeeeee<br>pfPt [tt] | tttT hteT|PNTtT TNTNOOINBSATP PASTT<br>80 Pt tT tT ttENAERNITINE TN I N PNEEETS E NERtt<br>60 PtPtPttetTtT tTtTte tTte| eePttTtTedtT PYPATPTIN,EEAREPTNSETEREINND OTN BRINPSNONTaeENTE<br>ptPttTtttT te| Ettt [tT] tt tTtrTeTEettTPTaTTgttSPeAT TT<br>PiatT tT | eeeete tt teaeeeeeeeeeatteee eeeeee<br>40<br>θ = rec rec rec sin rec<br>DC<br>PtPt fttT tT| tt| ThE tT rec 30° ||= 60° |||| 90° 120° !j 180° Z_ 180° PF]| | {|> f----ftT ft ft te --| | 4<br>20<br>0 500 1000 1500 2000 2500 3000 3500 4000<br>I TAV [A]<br>[W]<br>TAV<br>P<br> [°C]<br>C<br>T<br>**----- End of picture text -----**<br>


## **Höchstzulässige Gehäusetemperatur / Maximum allowable case temperature TC = f(ITAV)** 

Beidseitige Kühlung / Two-sided cooling 

Parameter: Stromflusswinkel Θ  / Current conduction angle Θ 

Date of publication: 2021-03-10 

Seite/page 8/10 

Revision: 3.1 

## Technische Information / technical information 

## **Netz-Thyristor Phase Control Thyristor** 

## **T1900N** 

**==> picture [490 x 239] intentionally omitted <==**

**----- Start of picture text -----**<br>
40<br>a ss es OC OO<br>a a ss ee i es ee ss<br>a a ee ee es ee ee es ee es ee ee es<br>a a as ae es es re i rs ee es<br>30 Ca a a ee ee ee ee ee ee ee ee ee ee ee ee eee<br>ssAN a a ee ee eeesee ee ee ee ee ee ee<br>Ne es a es ee es es Gs es QO QO<br>IN TN<br>20 NN a i a a i ee i a ee es ee ee ee ee ee ee ee<br>Ne a i ee a ee ee ee ee ee ee ee eee ee<br>0-50V<br>Pp ot Oytp<br>a a i a ee ee ee ee ee ee 0,33 VRRM<br>10<br>aasese ee ee 0,67 VRRM<br>a a a se ee ee ee ee ee ee ee ee ee<br>a a es ee se i se ee ee se es<br>a ss es es ee Ge Qe Qe Gn GG OO<br>0 a es as a es es es es es es es Gs<br>1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20<br>Anzahl Pulse bei 50Hz Sinus Halbwellen<br>Number of pulses for 50Hz sinusoidal half waves<br>[kA]<br>IT(OV)M<br>**----- End of picture text -----**<br>


**Typische Abhängigkeit des Grenzstromes IT(OV)M von der Anzahl für eine Folge von Sinus Halbwellen bei 50Hz. Parameter: Rückwärtsspannung VRM Typical dependency of maximum overload on-state current IT(OV)M as a number of a sequence of sinusoidal half waves at 50Hz. Parameter: peak reverse voltage VRM IT(OV)M = f (pulses, VRM) ; Tvj = Tvjmax** 

Date of publication: 2021-03-10 

Seite/page 

9/10 

Revision: 3.1 

Technische Information / technical information 

## **Netz-Thyristor Phase Control Thyristor** 

## **T1900N** 

## Nutzungsbedingungen 

Die in diesem Produktdatenblatt enthaltenen Daten sind ausschließlich für technisch geschultes Fachpersonal bestimmt. Die Beurteilung der Eignung dieses Produktes für Ihre Anwendung sowie die Beurteilung der Vollständigkeit der bereitgestellten Produktdaten für diese Anwendung obliegt Ihnen bzw. Ihren technischen Abteilungen. 

In diesem Produktdatenblatt werden diejenigen Merkmale beschrieben, für die wir eine liefervertragliche Gewährleistung übernehmen. Eine solche Gewährleistung richtet sich ausschließlich nach Maßgabe der im jeweiligen Liefervertrag enthaltenen Bestimmungen. Garantien jeglicher Art werden für das Produkt und dessen Eigenschaften keinesfalls übernommen. 

Sollten Sie von uns Produktinformationen benötigen, die über den Inhalt dieses Produktdatenblatts hinausgehen und insbesondere eine spezifische Verwendung und den Einsatz dieses Produktes betreffen, setzen Sie sich bitte mit dem für Sie zuständigen Vertriebsbüro in Verbindung. Für Interessenten halten wir Application Notes bereit. 

Aufgrund der technischen Anforderungen könnte unser Produkt gesundheitsgefährdende Substanzen enthalten. Bei Rückfragen zu den in diesem Produkt jeweils enthaltenen Substanzen setzen Sie sich bitte ebenfalls mit dem für Sie zuständigen Vertriebsbüro in Verbindung. 

Sollten Sie beabsichtigen, das Produkt in gesundheits- oder lebensgefährdenden oder lebenserhaltenden Anwendungsbereichen einzusetzen, bitten wir um Mitteilung. Wir weisen darauf hin, dass wir für diese Fälle 

- die gemeinsame Durchführung eines Risiko- und Qualitätsassessments; 

- den Abschluss von  speziellen Qualitätssicherungsvereinbarungen; 

- die gemeinsame Einführung von Maßnahmen einer laufenden Produktbeobachtung dringend empfehlen und gegebenenfalls die Belieferung von der Umsetzung solcher  Maßnahmen abhängig machen. 

Soweit erforderlich, bitten wir Sie, entsprechende Hinweise an Ihre Kunden zu geben. 

Inhaltliche Änderungen dieses Produktdatenblatts bleiben vorbehalten. 

## Terms & Conditions of usage 

The product data contained in this product data sheet is exclusively intended for technically trained staff. You and your technical departments will have to evaluate the suitability of the product for the intended application and the completeness of the product data with respect to such application. 

This product data sheet is describing the specifications of this product for which a warranty is granted. Any such warranty is granted exclusively pursuant the terms and conditions of the supply agreement. There will be no guarantee of any kind for the product and its specifications. 

Should you require product information in excess of the data given in this product data sheet or which concerns the specific application of our product, please contact the sales office, which is responsible for you. For those that are specifically interested we may provide application notes. 

Due to technical requirements our product may contain dangerous substances. For information on the types in question please contact the sales office, which is responsible for you. 

Should you intend to use the Product in health or live endangering or life support applications, please notify.  Please note, that for any such applications we urgently recommend 

- to perform joint Risk and Quality Assessments; 

- the conclusion of Quality Agreements; 

- to establish joint measures of an ongoing product survey, and that we may make delivery depended on the realization of any such measures. 

If and to the extent necessary, please forward equivalent notices to your customers. 

Changes of this product data sheet are reserved. 

Date of publication: 2021-03-10 

Seite/page 10/10 

Revision: 3.1 



## Links

- [View this product on Novapart](https://novapart.co/products/T1900N18TOFVTXPSA1/thyristor-single-scr-18-kv-284-ka)
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- [Supplier page](https://es.farnell.com/infineon/t1900n18tofvtxpsa1/thyristor-single-scr-1-8kv-2-84ka/dp/3794563)
---

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