# Thyristor Module, Series Connected, 119 A, 1.6 kV

![Product image](https://novapart.co/image/farnell:2423661/)

**URL**: https://novapart.co/products/SKKT%20107/16%20E/thyristor-module-series-connected-119-a-16-kv
**SKU**: SKKT 107/16 E
**Manufacturer**: SEMIKRON
**Category**: Semiconductors - Discretes || Thyristors || Thyristors - SCR Modules
**Price**: €28.2800
**Stock**: 25+
**Lead Time**: 168 days (indicative)

## Description

Peak Repetitive Off-State Voltage, Vdrm:1.6kV; Gate Trigger Current Max, Igt:-; Current It av:119A; On State RMS Current IT(rms):-; Thyristor Case Style:Module; No. of Pins:7Pins; Peak Non

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (15-Jun-2015) |
| No. Of Pins | 7Pins |
| Product Range | - |
| Scr Module Type | Series Connected - SCRs |
| Thyristor Mounting | Panel |
| On State Rms Current | - |
| Thyristor Case Style | Module |
| Average Forward Current | 119A |
| Gate Trigger Current Max | - |
| Gate Trigger Voltage Max | - |
| Operating Temperature Max | 130°C |
| Repetitive Peak Reverse Voltage | 1.6kV |
| Peak Repetitive Off State Voltage | 1.6kV |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2423661/)

**SKKT 107/16 E** 

## **SEMIPACK[®] 1** 

## Thyristor Modules 

## **SKKT 107/16 E** 

## **Features** 

- Heat transfer through aluminium oxide ceramic isolated metal baseplate 

- UL recognized, file no. E63532 

## **Typical Applications*** 

- DC motor control (e. g. for machine tools) 

- AC motor soft starters 

- Temperature control (e. g. for ovens, chemical processes) 

- Professional light dimming (studios, theaters) 

|**Absolute Maximum Ratings**<br>**Symbol**<br>**Conditions**<br>**Values**<br>**Unit**<br>**Chip**<br>IT(AV)<br>sinus 180°<br>Tc= 85 °C<br>119<br>A<br>Tc= 100 °C<br>91<br>A<br>~~—~~<br>~~ee~~<br>~~ee~~|
|---|
|ITRMS<br>continuous operation<br>190<br>A|
|ITSM<br>10 ms<br>Tj= 25 °C<br>2250<br>A<br>Tj= 130 °C<br>1900<br>A<br>i2t<br>10 ms<br>Tj= 25 °C<br>25313<br>A²s<br>Tj= 130 °C<br>18050<br>A²s<br>VRSM<br>1700<br>V<br>~~ee~~<br>~~ee ee ee~~<br>~~es~~<br>~~ee~~<br>~~ee~~<br>~~ee~~|
|VRRM<br>1600<br>V<br>VDRM<br>1600<br>V|
|(di/dt)cr<br>Tj= 130 °C<br>140<br>A/µs<br>~~a~~|
|(dv/dt)cr<br>Tj= 130 °C<br>1000<br>V/µs<br>Tj<br>-40 ... 130<br>°C<br>~~a~~<br>~~a~~|
|**Module**<br>~~|~~|
|Tstg<br>-40 ... 125<br>°C<br>~~a~~|
|Visol<br>a.c.; 50 Hz; r.m.s.<br>1 min<br>3000<br>V<br>1 s<br>3600<br>V<br>~~a~~<br>~~|~~<br>~~ee~~|
|**Characteristics**<br>**Symbol**<br>**Conditions**<br>**min.**<br>**typ.**<br>**max.**<br>**Unit**<br>**Chip**<br>VT<br>Tj= 25 °C, IT= 300 A<br>1.6<br>1.75<br>V<br>~~po~~|
|VT(TO)<br>Tj= 130 °C<br>0.8<br>0.9<br>V<br>rT<br>Tj= 130 °C<br>2.80<br>3.35<br>mΩ<br>IDD;IRD<br>Tj= 130 °C, VDD= VDRM; VRD= VRRM<br>20<br>mA<br>~~a~~<br>~~a~~<br>~~—~~|
|tgd<br>Tj= 25 °C, IG= 1 A, diG/dt = 1 A/µs<br>1<br>µs|
|tgr<br>VD= 0.67 * VDRM<br>2<br>µs<br>tq<br>Tj= 130 °C<br>200<br>µs<br>IH<br>Tj= 25 °C<br>150<br>250<br>mA<br>~~aa~~|
|IL<br>Tj= 25 °C, RG= 33Ω<br>300<br>600<br>mA<br>~~a~~|
|VGT<br>Tj= 25 °C, d.c.<br>2.5<br>V|
|IGT<br>Tj= 25 °C, d.c.<br>100<br>mA<br>~~a~~|
|VGD<br>Tj= 130 °C, d.c.<br>0.25<br>V<br>IGD<br>Tj= 130 °C, d.c.<br>4<br>mA<br>Rth(j-c)<br>continuous DC<br>per chip<br>0.19<br>K/W<br>per module<br>0.095<br>K/W<br>Rth(j-c)<br>sin. 180°<br>per chip<br>0.2<br>K/W<br>per module<br>0.1<br>K/W<br>Rth(j-c)<br>rec. 120°<br>per chip<br>0.21<br>K/W<br>per module<br>0.105<br>K/W<br>**Module**<br>~~aee~~<br>~~oe~~<br>~~ee ee~~<br>~~| |~~<br>~~es Ge~~<br>~~ee~~<br>~~ee~~<br>~~—~~<br>~~pe~~<br>~~a~~|
|Rth(c-s)<br>chip<br>0.22<br>K/W<br>module<br>0.11<br>K/W<br>~~a~~<br>~~| |~~<br>~~a~~|
|Ms<br>to heatsink M5<br>4.25<br>5.75<br>Nm|
|Mt<br>to terminals M5<br>2.55<br>3.45<br>Nm|
|a<br>5 * 9,81<br>m/s²<br>~~a~~|
|w<br>75<br>g<br>~~a~~<br>~~||~~|



**SKKT** 

~~LT~~ **© by SEMIKRON Rev. 2.0 – 09.03.2016 1** 

## **SKKT 107/16 E** 

Fig. 1L: Power dissipation per thyristor/diode vs. on-state current 

Fig. 2L: Max. power dissipation of one module vs. rms current 

Fig. 3L: Max. power dissipation of two modules vs. direct current 

Fig. 1R: Max. power dissipation per chip vs. ambient temperature 

Fig. 2R: Max. power dissipation of one module vs. case temperature 

Fig. 3R: Max. power dissipation of two modules vs. case temperature 

~~|~~ **2 Rev. 2.0 – 09.03.2016 © by SEMIKRON** 

**SKKT 107/16 E** 

Fig. 4L: Max. power dissipation of three modules vs. direct current 

Fig. 4R: Max. power dissipation of three modules vs. case temperature 

Fig. 5: Recovered charge vs. current decrease 

Fig. 6: Transient thermal impedance vs. time 

**==> picture [523 x 74] intentionally omitted <==**

**----- Start of picture text -----**<br>
0 Vr 0.5 1 0<br>Fig. 7: On-state characteristics Fig. 8: Surge overload current vs. time<br>ce © by SEMIKRON Rev. 2.0 – 09.03.2016 3<br>**----- End of picture text -----**<br>


## **SKKT 107/16 E** 

Fig. 9: Gate trigger characteristics 

**==> picture [382 x 305] intentionally omitted <==**

**----- Start of picture text -----**<br>
SKKT<br>T 7]0.5<br>70.5 [ee ach connector || A) » 80.8<br>M5 20 20 |. 15 |<br>| 2 3 A 2<br>gS<br>at i= ia) 8) 7<br>10 24,5<br>et oe _ Ti.cS<br>“ SSE ar Coie<br>PE ll EES wt<br>Joe.<br>80<br>General tolerance + 0,5mm land Z, M1:1<br>SEMIPACK 1<br>**----- End of picture text -----**<br>


This is an electrostatic discharge sensitive device (ESDS), international standard IEC 60747-1, chapter IX. 

## ***IMPORTANT INFORMATION AND WARNINGS** 

The specifications of SEMIKRON products may not be considered as guarantee or assurance of product characteristics 

- ("Beschaffenheitsgarantie"). The specifications of SEMIKRON products describe only the usual characteristics of products to be expected in 

**© by SEMIKRON** 

**Rev. 2.0 – 09.03.2016** 

**4** 

## **SKKT 107/16 E** 

typical applications, which may still vary depending on the specific application. Therefore, products must be tested for the respective application in advance. Application adjustments may be necessary. The user of SEMIKRON products is responsible for the safety of their applications embedding SEMIKRON products and must take adequate safety measures to prevent the applications from causing a physical injury, fire or other problem if any of SEMIKRON products become faulty. The user is responsible to make sure that the application design is compliant with all applicable laws, regulations, norms and standards. Except as otherwise explicitly approved by SEMIKRON in a written document signed by authorized representatives of SEMIKRON, SEMIKRON products may not be used in any applications where a failure of the product or any consequences of the use thereof can reasonably be expected to result in personal injury. No representation or warranty is given and no liability is assumed with respect to the accuracy, completeness and/or use of any information herein, including without limitation, warranties of non-infringement of intellectual property rights of any third party. SEMIKRON does not assume any liability arising out of the applications or use of any product; neither does it convey any license under its patent rights, copyrights, trade secrets or other intellectual property rights, nor the rights of others. SEMIKRON makes no representation or warranty of non-infringement or alleged non-infringement of intellectual property rights of any third party which may arise from applications. Due to technical requirements our products may contain dangerous substances. For information on the types in question please contact the nearest SEMIKRON sales office. This document supersedes and replaces all information previously supplied and may be superseded by updates. SEMIKRON reserves the right to make changes. 

**© by SEMIKRON** 

**Rev. 2.0 – 09.03.2016** 

**5** 



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