Silicon Carbide (SiC)

 
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Silicon Carbide (SiC)

Silicon Carbide (SiC) devices belong to the so-called wide band gap semiconductor group, which offers a number of attractive characteristics for high voltage power semiconductors when compared to commonly used silicon (Si). In particular, the much higher breakdown field strength and thermal conductivity of SiC allow creating devices which outperform by far the corresponding Si ones, and enable reaching otherwise unattainable efficiency levels.



CoolSiC™ MOSFET

Based on volume experience and compatibility know-how, Infineon introduces the revolutionary SiC technology which enables radical new product designs. The CoolSiC™ 1200V MOSFET represents Infineon’s leading edge solution to bring actual designs towards new unattainable efficiency- and power density levels. CoolSiC™ MOSFET represents the best solution for Solar, UPS and Industrial Drives applications by combining best performance, reliability, safety and ease of use.

 

CoolSiC™

 

Discover more about CoolSiC™ MOSFET

 

 

CoolSiC™ - The Future of Power Semiconductors

The use of SiC based power semiconductor solutions has shown a huge increase over the last years, it is a revolution to rely on. Driving forces behind this market development are the following trends: energy saving, size reduction, system integration and improved reliability. The combination of a fast silicon based switch with a SiC Diode – is often termed a “hybrid” solution. In recent years Infineon has manufactured several million hybrid modules and has seen them installed in various customer products.

 

The increase of switching frequency for a converter using unipolar SiC transistors can result in dramatically reduced volume and weight of the magnetic components. From an analysis carried out by Infineon, a converter built on SiC devices is a third of the size and 25 percent of the weight compared to a current Si based reference solution. Thanks to the significant reduction in volume and weight, the system costs can also be reduced by more than 20 percent.

 

CoolSiC-Grafic-Systembenefit

Power Management Selection Guide 2016


Product OPN Product Status Order Online Green Budgetary Price €€/1k Technology VDC IF VF
Matching Results: 86                  
descending ascending         descending ascending descending ascending descending ascending descending ascending descending ascending
D2PAK (TO-263)
IDB06S60C  

IDB06S60CATMA2

not for new design

 

 
2.06
CoolSiC™ 2G
600.0 V
6.0 A
1.5 V
IDB10S60C  

IDB10S60CATMA2

not for new design

 

 
3.35
CoolSiC™ 2G
600.0 V
10.0 A
1.5 V
D2PAK real 2pin
IDK02G65C5  

IDK02G65C5XTMA1

active and preferred

Buy online

0.58
CoolSiC™ 5G
650.0 V
2.0 A
1.5 V
IDK03G65C5  

IDK03G65C5XTMA1

active and preferred

 

 
0.83
CoolSiC™ 5G
650.0 V
3.0 A
1.5 V
IDK04G65C5  

IDK04G65C5XTMA1

active and preferred

 

 
1.1
CoolSiC™ 5G
650.0 V
4.0 A
1.5 V
IDK05G65C5  

IDK05G65C5XTMA1

active and preferred

 

 
1.38
CoolSiC™ 5G
650.0 V
5.0 A
1.5 V
IDK06G65C5  

IDK06G65C5XTMA1

active and preferred

 

 
1.65
CoolSiC™ 5G
650.0 V
6.0 A
1.5 V
IDK08G65C5  

IDK08G65C5XTMA1

active and preferred

 

 
2.2
CoolSiC™ 5G
650.0 V
8.0 A
1.5 V
IDK09G65C5  

IDK09G65C5XTMA1

active and preferred

 

 
2.48
CoolSiC™ 5G
650.0 V
9.0 A
1.5 V
IDK10G65C5  

IDK10G65C5XTMA1

active and preferred

 

 
2.75
CoolSiC™ 5G
650.0 V
10.0 A
1.5 V
IDK12G65C5  

IDK12G65C5XTMA1

active and preferred

 

 
3.3
CoolSiC™ 5G
650.0 V
12.0 A
1.5 V
DPAK (TO-252)
IDD03SG60C  

IDD03SG60CXTMA1

active

Buy online

0.8
CoolSiC™ 3G
600.0 V
3.0 A
2.1 V
IDD04S60C  

IDD04S60CBUMA1

not for new design

 

 
1.26
CoolSiC™ 2G
600.0 V
4.0 A
1.7 V
IDD04SG60C  

IDD04SG60CXTMA1

active

Buy online

1.07
CoolSiC™ 3G
600.0 V
4.0 A
2.1 V
IDD05SG60C  

IDD05SG60CXTMA1

active

 

 
1.34
CoolSiC™ 3G
600.0 V
5.0 A
2.1 V
IDD06SG60C  

IDD06SG60CXTMA1

active

Buy online

1.61
CoolSiC™ 3G
600.0 V
6.0 A
2.1 V
IDD08SG60C  

IDD08SG60CXTMA1

active

 

 
2.14
CoolSiC™ 3G
600.0 V
8.0 A
1.8 V
IDD09SG60C  

IDD09SG60CXTMA1

active

 

 
2.41
CoolSiC™ 3G
600.0 V
9.0 A
1.8 V
IDD10SG60C  

IDD10SG60CXTMA1

active

Buy online

2.68
CoolSiC™ 3G
600.0 V
10.0 A
1.8 V
IDD12SG60C  

IDD12SG60CXTMA1

active

Buy online

3.21
CoolSiC™ 3G
600.0 V
12.0 A
1.8 V
DPAK real 2pin
IDM02G120C5  

IDM02G120C5XTMA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
2.0 A
1.4 V
IDM05G120C5  

IDM05G120C5XTMA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
5.0 A
1.5 V
IDM08G120C5  

IDM08G120C5XTMA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
8.0 A
1.65 V
IDM10G120C5  

IDM10G120C5XTMA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
10.0 A
1.5 V
ThinPAK
IDL02G65C5  

IDL02G65C5XUMA1

active and preferred

Buy online

0.55
CoolSiC™ 5G
650.0 V
2.0 A
1.5 V
IDL04G65C5  

IDL04G65C5XUMA1

active and preferred

 

 
1.1
CoolSiC™ 5G
650.0 V
4.0 A
1.5 V
IDL06G65C5  

IDL06G65C5XUMA1

active and preferred

 

 
1.65
CoolSiC™ 5G
650.0 V
6.0 A
1.5 V
IDL08G65C5  

IDL08G65C5XUMA1

active and preferred

 

 
2.2
CoolSiC™ 5G
650.0 V
8.0 A
1.5 V
IDL10G65C5  

IDL10G65C5XUMA1

active and preferred

 

 
2.75
CoolSiC™ 5G
650.0 V
10.0 A
1.5 V
IDL12G65C5  

IDL12G65C5XUMA1

active and preferred

 

 
3.13
CoolSiC™ 5G
650.0 V
12.0 A
1.5 V
TO-220 real 2pin
IDH02SG120  

IDH02SG120XKSA1

discontinued

Buy online

1.56
thinQ!™ 2G
1200.0 V
2.0 A
1.65 V
IDH02G65C5  

IDH02G65C5XKSA1

active and preferred

Buy online

0.58
CoolSiC™ 5G
650.0 V
2.0 A
1.5 V
IDH02G120C5  

IDH02G120C5XKSA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
2.0 A
1.4 V
IDH03SG60C  

IDH03SG60CXKSA1

active

Buy online

0.83
CoolSiC™ 3G
600.0 V
3.0 A
2.1 V
IDH03G65C5  

IDH03G65C5XKSA1

active and preferred

Buy online

0.83
CoolSiC™ 5G
650.0 V
3.0 A
1.5 V
IDH04SG60C  

IDH04SG60CXKSA1

active

Buy online

1.1
CoolSiC™ 3G
600.0 V
4.0 A
2.1 V
IDH04S60C  

IDH04S60CAKSA1

not for new design

 

 
1.29
CoolSiC™ 2G
600.0 V
4.0 A
1.7 V
IDH04G65C5  

IDH04G65C5XKSA1

active and preferred

Buy online

1.1
CoolSiC™ 5G
650.0 V
4.0 A
1.5 V
IDH05S120  

IDH05S120AKSA1

discontinued

Buy online

3.83
CoolSiC™ 2G
1200.0 V
5.0 A
1.65 V
IDH05SG60C  

IDH05SG60CXKSA1

active

Buy online

1.38
CoolSiC™ 3G
600.0 V
5.0 A
2.1 V
IDH05S60C  

IDH05S60CAKSA1

not for new design

Buy online

1.6
CoolSiC™ 2G
600.0 V
5.0 A
1.5 V
IDH05G65C5  

IDH05G65C5XKSA1

active and preferred

Buy online

1.38
CoolSiC™ 5G
650.0 V
5.0 A
1.5 V
IDH05G120C5  

IDH05G120C5XKSA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
5.0 A
1.5 V
IDH06SG60C  

IDH06SG60CXKSA1

active

Buy online

1.65
CoolSiC™ 3G
600.0 V
6.0 A
2.1 V
IDH06S60C  

IDH06S60CAKSA1

not for new design

 

 
1.93
CoolSiC™ 2G
600.0 V
6.0 A
1.5 V
IDH06G65C5  

IDH06G65C5XKSA1

active and preferred

Buy online

1.65
CoolSiC™ 5G
650.0 V
6.0 A
1.5 V
IDH08S120  

IDH08S120AKSA1

discontinued

Buy online

6.12
CoolSiC™ 2G
1200.0 V
7.5 A
1.65 V
IDH08SG60C  

IDH08SG60CXKSA1

active

Buy online

2.2
CoolSiC™ 3G
600.0 V
8.0 A
1.8 V
IDH08S60C  

IDH08S60CAKSA1

not for new design

 

 
2.57
CoolSiC™ 2G
600.0 V
8.0 A
1.5 V
IDH08G65C5  

IDH08G65C5XKSA1

active and preferred

Buy online

2.2
CoolSiC™ 5G
650.0 V
8.0 A
1.5 V
IDH08G120C5  

IDH08G120C5XKSA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
8.0 A
1.65 V
IDH09SG60C  

IDH09SG60CXKSA1

active

Buy online

2.48
CoolSiC™ 3G
600.0 V
9.0 A
1.8 V
IDH09G65C5  

IDH09G65C5XKSA1

active and preferred

Buy online

2.48
CoolSiC™ 5G
650.0 V
9.0 A
1.5 V
IDH10S120  

IDH10S120AKSA1

discontinued

Buy online

7.65
CoolSiC™ 2G
1200.0 V
10.0 A
1.65 V
IDH10SG60C  

IDH10SG60CXKSA1

active

Buy online

2.75
CoolSiC™ 3G
600.0 V
10.0 A
1.8 V
IDH10S60C  

IDH10S60CAKSA1

not for new design

 

 
3.14
CoolSiC™ 2G
600.0 V
10.0 A
1.5 V
IDH10G65C5  

IDH10G65C5XKSA1

active and preferred

Buy online

2.75
CoolSiC™ 5G
650.0 V
10.0 A
1.5 V
IDH10G120C5  

IDH10G120C5XKSA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
10.0 A
1.5 V
IDH12SG60C  

IDH12SG60CXKSA1

active

Buy online

3.3
CoolSiC™ 3G
600.0 V
12.0 A
1.8 V
IDH12S60C  

IDH12S60CAKSA1

not for new design

 

 
3.75
CoolSiC™ 2G
600.0 V
12.0 A
1.5 V
IDH12G65C5  

IDH12G65C5XKSA1

active and preferred

Buy online

3.3
CoolSiC™ 5G
650.0 V
12.0 A
1.5 V
IDH15S120  

IDH15S120AKSA1

discontinued

Buy online

11.48
CoolSiC™ 2G
1200.0 V
15.0 A
1.65 V
IDH16S60C  

IDH16S60CAKSA1

not for new design

Buy online

4.99
CoolSiC™ 2G
600.0 V
16.0 A
1.5 V
IDH16G65C5  

IDH16G65C5XKSA1

active and preferred

Buy online

4.4
CoolSiC™ 5G
650.0 V
16.0 A
1.5 V
IDH16G120C5  

IDH16G120C5XKSA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
16.0 A
1.65 V
IDH20G65C5  

IDH20G65C5XKSA1

active and preferred

Buy online

5.5
CoolSiC™ 5G
650.0 V
20.0 A
1.5 V
IDH20G120C5  

IDH20G120C5XKSA1

active and preferred

 

 
- CoolSiC™ 5G
1200.0 V
20.0 A
1.5 V
TO-247
IDW10S120  

IDW10S120FKSA1

discontinued

Buy online

6.7
CoolSiC™ 2G
1200.0 V
10.0 A
1.5 V
IDW10G65C5  

IDW10G65C5FKSA1

active and preferred

Buy online

2.96
CoolSiC™ 5G
650.0 V
10.0 A
1.5 V
IDW10G120C5B  

IDW10G120C5BFKSA1

active and preferred

Buy online

5.26
CoolSiC™ 5G
1200.0 V
10.0 A
1.4 V
IDW20G65C5B  

IDW20G65C5BXKSA1

active and preferred

 

 
- CoolSiC™ 5G
650.0 V
10.0 A
1.5 V
IDW12G65C5  

IDW12G65C5FKSA1

active and preferred

Buy online

3.51
CoolSiC™ 5G
650.0 V
12.0 A
1.5 V
IDW24G65C5B  

IDW24G65C5BXKSA1

active and preferred

 

 
- CoolSiC™ 5G
650.0 V
12.0 A
1.5 V
IDW15S120  

IDW15S120FKSA1

discontinued

 

 
9.9
CoolSiC™ 2G
1200.0 V
15.0 A
1.5 V
IDW15G120C5B  

IDW15G120C5BFKSA1

active and preferred

Buy online

7.72
CoolSiC™ 5G
1200.0 V
15.0 A
1.4 V
IDW16G65C5  

IDW16G65C5FKSA1

active and preferred

Buy online

4.61
CoolSiC™ 5G
650.0 V
16.0 A
1.5 V
IDW32G65C5B  

IDW32G65C5BXKSA1

active and preferred

 

 
- CoolSiC™ 5G
650.0 V
16.0 A
1.5 V
IDW20S120  

IDW20S120FKSA1

discontinued

 

 
12.85
CoolSiC™ 2G
1200.0 V
20.0 A
1.5 V
IDW20G65C5  

IDW20G65C5FKSA1

active and preferred

Buy online

5.71
CoolSiC™ 5G
650.0 V
20.0 A
1.5 V
IDW20G120C5B  

IDW20G120C5BFKSA1

active and preferred

Buy online

10.04
CoolSiC™ 5G
1200.0 V
20.0 A
1.4 V
IDW40G65C5B  

IDW40G65C5BXKSA1

active and preferred

 

 
- CoolSiC™ 5G
650.0 V
20.0 A
1.5 V
IDW30S120  

IDW30S120FKSA1

discontinued

 

 
19.44
CoolSiC™ 2G
1200.0 V
30.0 A
1.5 V
IDW30G65C5  

IDW30G65C5FKSA1

active and preferred

Buy online

8.46
CoolSiC™ 5G
650.0 V
30.0 A
1.5 V
IDW30G120C5B  

IDW30G120C5BFKSA1

active and preferred

Buy online

15.06
CoolSiC™ 5G
1200.0 V
30.0 A
1.4 V
IDW40G65C5  

IDW40G65C5FKSA1

active and preferred

Buy online

11.21
CoolSiC™ 5G
650.0 V
40.0 A
1.5 V
IDW40G120C5B  

IDW40G120C5BFKSA1

active and preferred

Buy online

21.63
CoolSiC™ 5G
1200.0 V
40.0 A
1.4 V

Silicon Carbide (SiC)


1200V CoolSiC  

 

 

1200V CoolSiC™ Schottky Diode Generation 5

1200V SiC diode combined with a Si HighSpeed 3 IGBT enables simpler 2-level topologies due to its zero reverse recovery losses. It also delivers 40% lower Si IGBT turn-on losses and reduced EMI. Moreover, an improved thermal performance reduces now the junction temperature by 15% compared to a silicon based solution - increasing system reliability as well the possibility to increase output power in a given form factor. Read more about our 1200V CoolSiC™ Schottky Diode Generation 5


 

650V CoolSiC  

 

 

650V CoolSiC™ Schottky Diode Generation 5

With CoolSiC™ Generation 5 Infineon presents a new leading edge technology for SiC Schottky Barrier diodes, delivering market leading efficiency at attractive cost point. Infineon’s proprietary diffusion soldering process, already introduced with Generation 3, is now combined with a new, more compact design as well as latest advancements in thin wafer technology. Discover more about 650V CoolSiC™ Schottky Diode Generation 5


Product image PrimePACKIGBT5.XT  

 

 

PrimePACK™ with IGBT5 and .XT

The innovative technologies IGBT5 and .XT will at first extend the well-known PrimePACK™ portfolio. With these new technologies the power density can be increased by 25% or the life time can be extended by a factor 10. More about our PrimePACK TM Modules with IGBT5 and .XT


Product image Easy 2B - Pressfit - blank  

 

 

 

Modules for Photo-voltaic String and Multi-String Inverters

Tailor-made modules for photo-voltaic string and multi-string inverters. Optimised inverter efficiency and performance can be achieved. Fast and solder-less assembly is possible using the proven PressFIT technology. Read more about our modules for Photo-voltaic String and Multi-String Inverters

 

 


PrimePACK™ with TIM  

 

Thermal Interface Material (TIM)

TIM is the abbreviation for Infineon`s new Thermal Interface Material. With the ongoing increase of power densities in power electronics the thermal interface between power module and heatsink becomes a larger challenge. Further information, such as articles, editorials and application notes are available.


Product image EconoPACK +_OEx  

 

 

EconoPACK™+ D-series

The innovative EconoPACK™+ D-series takes care of reliable and solderless press-in contacts with PressFIT auxiliary terminals. The PressFIT contacts provide also the flexibility for a solder process, if required. The D-series is focused on a rugged and robust module design by injected molded control and power terminals and ultrasonic welded power terminals. Make the next step with the EconoPACK™+ D-series


CoolSiC™ Schottky Diodes CoolSiC™ 1200V SiC JFET & Direct Drive Technology
  • Benchmark switching behavior
  • No reverse recovery charge
  • Temperature independent switching behavior
  • High operating temperature (T j max 175°C)

 

Find datasheets

Download material

New CoolSiC™ 1200V Schottky Diodes

  • Complete solution offer consisting of JFET, P-channel MOSFET and dedicated driver
  • No reverse recovery charge
  • Monolithically integrated ultrafast Body Diode
  • Utmost efficiency levels reachable


Find datasheets

Download material

 

Reliability-data-button


Silicon Carbide (SiC)

Product Selection Guide

Title Size Date Version
4.7 MB 22 Feb 2016 00_00
1.9 MB 03 May 2013 01_00

Product Overview

Title Size Date Version
2 MB 14 Mar 2014 01_00

Product Brief

Title Size Date Version
202 KB 01 Dec 2012 01_00
248 KB 09 May 2016 01_00
785 KB 24 Mar 2013 01_00
347 KB 04 Mar 2009 01_00
466 KB 18 Apr 2016 01_00
776 KB 14 May 2012

Application Brochure

Title Size Date Version
340 KB 23 Oct 2015 01_00

Application Notes

Title Size Date Version
791 KB 16 Jun 2014 01_00
570 KB 31 Jul 2015 01_00
1.4 MB 16 Nov 2015 01_00
4.9 MB 16 Dec 2013
2.2 MB 19 Dec 2014 02_00

Article

Title Size Date Version
117 KB 21 Jul 2016 01_00
460 KB 21 Jul 2016 01_00
1.2 MB 21 Jul 2016 01_00
530 KB 03 Dec 2015 01_00
1.6 MB 23 Jul 2015 01_00
339 KB 26 Sep 2012
516 KB 21 May 2012
145 KB 12 Mar 2015 01_00
432 KB 01 Oct 2014
1.6 MB 01 Sep 2012 01_00
376 KB 05 Sep 2014
1.4 MB 10 Sep 2014 01_00

Whitepaper

Title Size Date Version
595 KB 20 Nov 2007
105 KB 07 May 2013 01_00
601 KB 01 Mar 2013 01_00

Presentations

Title Size Date Version
1,020 KB 11 May 2016 01_00

Additional Product Information

Title Size Date Version
142 KB 01 Sep 2012 01_00
229 KB 20 Aug 2015 01_00
119 KB 01 Sep 2012 01_00
812 KB 01 Sep 2012 01_00

Product Brochure

Title Size Date Version
2.1 MB 09 May 2016 01_00

Editorials

Title Size Date Version
521 KB 04 Nov 2015 01_00

Product Catalogue

Title Size Date Version
4.8 MB 21 Jun 2016 02_00

Silicon Carbide (SiC)

Evaluation Boards

Board Family Description Status
EVAL 300W CCM PFC P6 Diode (Si, SiC), MOSFET, Power Controller (PWM, PFC) 300W CCM Power factor correction (PFC), 110/230 AC to 400 DC, 98.5% peak efficiency
  • ICE3PCS01G
  • IDH02G65C5
  • IPP60R190P6
coming soon
EVAL_800W_130PFC_C7 Diode (Si, SiC), Gate Driver, MOSFET, Power Controller (PWM, PFC) 800W CCM Power factor correction (PFC), 110/230 AC to 400 DC, 97.8%peak efficiency, 130 kHz-high power density IPP60R180C7, IDH06G65C5, 2EDN7524F, XMC1302-T038X200 AB or ICE3PCS01G,ICE2QR4780Z
    active and preferred
    EVAL_2.5KW_CCM_4PIN 2500W CCM Power factor correction (PFC), 110/230 AC to 400 DC, >98% peak efficiency, 65/100 kHz, shows efficiency benefits due to usage of TO247-4
    • 1EDI60N12AF
    • ICE3PCS01G
    • ICE3RBR4765JZ
    • IDH16G65C5
    • IFX91041
    • IPZ60R040C7
    active and preferred
    EVAL 1200V COOLSIC MOSFET, Gate Driver This evaluation board features the CoolSiC 1200V JFETs in conjunction with the EiceDRIVER 1EDI30J12CL. Each driver additionally controls a low-voltage p-channel MOSFET. These three devices are building up the Direct Drive JFET Topology.
    • 1EDI30J12CL
    • 1EDI30J12CP
    • BSC030P03NS3G
    • IJW120R070T1
    • IJW120R100T1
    active and preferred

    PCB Design Data

    Title Size Date Version
    752 KB 05 Nov 2013 02_00
    470 KB 05 Nov 2013 02_00
    98 KB 05 Nov 2013 02_00
    624 KB 05 Nov 2013 02_00

    Silicon Carbide (SiC)

    650V SiC thinQ™ Generation 5 Diodes - Advantages of Silicon Carbide and Market Positioning

    650V CoolSiC™ Generation 5 Diodes - Advantages of Silicon Carbide and Market Positioning

     Introduction to the latest generation of Infineon Silicon Carbide Schottky diodes covering product positioning, application benefits and planned portfolio

     
    Length 5:56
    650V SiC thinQ™ Generation 5 Diodes - Thin-Wafer, Efficiency and Portfolio

    650V CoolSiC™ Generation 5 Diodes - Thin-Wafer, Efficiency and Portfolio

     Introduction to the latest generation of Infineon Silicon Carbide Schottky diodes covering product positioning, application benefits and planned portfolio

     
    Length 3:39
    1200V SiC thinQ!™ Generation 5 Schottky Diodes

    1200V CoolSiC™ Generation 5 Schottky Diodes

    Infineon’s new 5th Generation 1200V CoolSiC™ Schottky diode portfolio offers designers of high power 3-phase applications new levels of efficiency and reliability.

     
    Length 4:43
    1200V SiC thinQ!™ Generation 5 Schottky Diode - Product Portfolio and Target Application

    1200V CoolSiC™ Generation 5 Schottky Diode - Product Portfolio and Target Application

    Comparison of SiC Schottky diodes forward voltage between Infineon Gen5 against Infineon Gen2 and two compare products. Datasheet and measurement forward voltage values are used to plot how much Gen5 has improved compared to previous gen and compare products.

     
    Length 4:43

    Silicon Carbide (SiC)

    Self Service

    Infineon welcomes your comments and questions.

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