3BHB013088R0001 5SHY3545L0010 Product datasheet
Model number: |
3BHB013088R0001 5SHY3545L0010 |
|
Module Type: |
IGCT Module |
Manufacture: |
ABB |
|
Condition: |
Brand New |
Range of Product: |
Advant OCS/800xA |
|
Lead time: |
In Stock |
Weight: |
2.66 kg |
|
HS CODE: |
8537101190 |
Dimension: |
35x29x6cm |
|
MOQ: |
1 |
Product Origin: |
SWEDEN |
|
System: |
DCS |
Discontinued on: |
Active |
|
Communication Service: |
Ethernet router |
3BHB013088R0001 5SHY3545L0010 Functional Description
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ABB |
YPP109A YT204001-HS |
ABB |
YPC104B YT204001-BT |
ABB |
GDC806B01 3BHE036290R0001 |
ABB |
YPN107A YT204001-DM |
ABB |
FENA-21 3AUA0000089108 |
ABB |
HAC807B102 3BHE039221R0102 |
ABB |
IDS-DTU51 |
ABB |
XZC827A102 3BHE038368R0102 |
ABB |
GDC806C4002 3BHE044249R4002 |
ABB |
YPP109A YT204001-DL/YPN106A YT204001-BD |
ABB |
XVC772A102 3BHE032285R0102 |
ABB |
3BHB003386R0101 5SXE05-0153 |
ABB |
3BHE044481R0101 |
ABB |
GCC960C103 3BHE033067R0103 |
ABB |
IMASI02 |
ABB |
FENA-21 |
ABB |
GCC960C102 3BHE033067R0102 |
ABB |
IIMSM01 |
ABB |
216NG62A HESG441634R1 |
ABB |
XZC825A102 3BHE036346R0102 |
ABB |
IIMCL01 |
ABB |
YPQ101E YT204001-FS |
ABB |
GDC806C0003 3BHE044249R0003 |
ABB |
IEPAF02 |
ABB |
YPK107E 3ASD489301A410 |
ABB |
XZC826A102 3BHE036348R0102 |
ABB |
IEMMU11 |
ABB |
YPK107E YT204001-FY |
ABB |
GDC806A2002 3BHE028761R2002 |
ABB |
086351-004 |
Thermal Characteristics of IGCT During Turn-Off
The IGCT efficiently dissipates heat during turn-off by distributing thermal energy uniformly across the entire device, eliminating localized hotspots and preventing thermal memory effects. This means its performance is solely constrained by the virtual junction temperature and overall thermal budget, rather than residual heat accumulation. Due to the lower effective thermal capacitance under short-duration pulses, the IGCT can handle high-frequency switching bursts without significant temperature spikes. For instance, it can reliably manage a 10-pulse sequence at 25 kHz with a 25% duty cycle (10 µs on, 30 µs off), demonstrating its capability for transient high-frequency operation while maintaining thermal stability. This characteristic makes the IGCT particularly suitable for applications requiring intermittent high-power switching without the risk of overheating.