Module diode - mod..p
  • Module diode - mod..p

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Fabricant: DACPOL

Module diode - mod..p

One element power diode block with radiator RY.
Properties:
• One element power diode block with both side cooling– RY
• Natural cooling

Typical applications:
• rectifiers,
• power supplies

Options:
• Standard – Diagram. 1
• With blacken radiator - Diagram. 2
• Special – Diagram. 3
• Thermal protection
• RC circuit
• fuse
• forced cooling

Power block selection:
• There are different semiconductors used, depending on the load. Used semiconductor size is given in the Table 1.
Drawing 1
Drawing 2
Drawing 3


Operation conditions:
One element power blocks are used in power electronic systems.
• Ambient air temperature -100 C - +400 C
• Atmospheric pressure  860hPa - 1060hPa
• Humidity less then 80% @ temperature 400 C
• Cooling air without aggressive factors.

Scheme

 

Table 1 Power blocks parameters
 

Module type Mean semiconductor current IF(AV) [A] Blocking voltage U RRM
    [V]
Over current
I FSM
[A]
Dimensions
[mm]
Block weight
[kg]
MOD7P 450…650 400…2400 7000… 10000 3,1
MOD8P 630…1000 400…8500 10000… 24000 3,3
MOD9P 1000…2000 400…7500 20000…42000 7,9
MOD11P 1000…3200 400…6000 27000…65000 12

 
Basic factor, which has influence on power blocks quality is their proper assembly and correct semiconductor selection.
Power block scheme MOD..P
 

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One element power diode block with radiator RY.
Properties:
• One element power diode block with both side cooling– RY
• Natural cooling

Typical applications:
• rectifiers,
• power supplies

Options:
• Standard – Diagram. 1
• With blacken radiator - Diagram. 2
• Special – Diagram. 3
• Thermal protection
• RC circuit
• fuse
• forced cooling

Power block selection:
• There are different semiconductors used, depending on the load. Used semiconductor size is given in the Table 1.
Drawing 1
Drawing 2
Drawing 3


Operation conditions:
One element power blocks are used in power electronic systems.
• Ambient air temperature -100 C - +400 C
• Atmospheric pressure  860hPa - 1060hPa
• Humidity less then 80% @ temperature 400 C
• Cooling air without aggressive factors.

Scheme

 

Table 1 Power blocks parameters
 

Module type Mean semiconductor current IF(AV) [A] Blocking voltage U RRM
    [V]
Over current
I FSM
[A]
Dimensions
[mm]
Block weight
[kg]
MOD7P 450…650 400…2400 7000… 10000 3,1
MOD8P 630…1000 400…8500 10000… 24000 3,3
MOD9P 1000…2000 400…7500 20000…42000 7,9
MOD11P 1000…3200 400…6000 27000…65000 12

 
Basic factor, which has influence on power blocks quality is their proper assembly and correct semiconductor selection.
Power block scheme MOD..P