Technical Document
Specifications
Brand
STMicroelectronicsMaximum Continuous Collector Current Ic
15A
Product Type
Smart Power Module
Maximum Collector Emitter Voltage Vceo
600V
Maximum Power Dissipation Pd
66W
Number of Transistors
6
Package Type
SDIP2B
Configuration
Array
Mount Type
Through Hole
Channel Type
Type N
Pin Count
26
Maximum Collector Emitter Saturation Voltage VceSAT
1.95V
Minimum Operating Temperature
125°C
Maximum Operating Temperature
-40°C
Length
38mm
Height
3.5mm
Standards/Approvals
No
Automotive Standard
No
Country of Origin
China
Product details
SLLIMM™ Intelligent Power Modules, STMicroelectronics
STMicroelectronics has extended its offering of IGBT intelligent power modules with the introduction of the second series of SLLIMM intelligent power modules. Thanks to the optimal trade-off between conduction and switching energy, combined with outstanding robustness and EMI behaviour, they increase the efficiency of motor drive applications working up to 20 kHz. They are available in a full moulded or DBC-based package delivering high collector currents.
The Small Low-Loss Intelligent Molded Modules (SLLIMM™) enhance the efficiency of home appliance motor drives. Intelligent Power Modules (IPMs) provide a direct connection between a low-voltage microcontroller and a mains-powered electric motor.
3-phase IGBT inverter bridge including control ICs for gate driving and freewheeling diodes
175°C of maximum operating junction temperature
600V, from 8A to 35A DC rating at 25°C
Low VCE(sat)
Lowest Rth value on the market for the DBC package versions
Isolation rating of 1500 Vrms/min
Optimized driviers and silicon for low EMI
Separate open emitter outputs
3.3V, 5V, 15V CMOS/TTL inputs
Undervoltage lockout
Internal bootstrap diode
Interlocking function
Smart shutdown function
Comparator for fault protection against over temperature and over current
Motor Controllers & Drivers, STMicroelectronics
Stock information temporarily unavailable.
BD 95.052
BD 7.312 Each (In a Tube of 13) (Exc. Vat)
BD 104.557
BD 8.043 Each (In a Tube of 13) (inc. VAT)
13
BD 95.052
BD 7.312 Each (In a Tube of 13) (Exc. Vat)
BD 104.557
BD 8.043 Each (In a Tube of 13) (inc. VAT)
Stock information temporarily unavailable.
13
Technical Document
Specifications
Brand
STMicroelectronicsMaximum Continuous Collector Current Ic
15A
Product Type
Smart Power Module
Maximum Collector Emitter Voltage Vceo
600V
Maximum Power Dissipation Pd
66W
Number of Transistors
6
Package Type
SDIP2B
Configuration
Array
Mount Type
Through Hole
Channel Type
Type N
Pin Count
26
Maximum Collector Emitter Saturation Voltage VceSAT
1.95V
Minimum Operating Temperature
125°C
Maximum Operating Temperature
-40°C
Length
38mm
Height
3.5mm
Standards/Approvals
No
Automotive Standard
No
Country of Origin
China
Product details
SLLIMM™ Intelligent Power Modules, STMicroelectronics
STMicroelectronics has extended its offering of IGBT intelligent power modules with the introduction of the second series of SLLIMM intelligent power modules. Thanks to the optimal trade-off between conduction and switching energy, combined with outstanding robustness and EMI behaviour, they increase the efficiency of motor drive applications working up to 20 kHz. They are available in a full moulded or DBC-based package delivering high collector currents.
The Small Low-Loss Intelligent Molded Modules (SLLIMM™) enhance the efficiency of home appliance motor drives. Intelligent Power Modules (IPMs) provide a direct connection between a low-voltage microcontroller and a mains-powered electric motor.
3-phase IGBT inverter bridge including control ICs for gate driving and freewheeling diodes
175°C of maximum operating junction temperature
600V, from 8A to 35A DC rating at 25°C
Low VCE(sat)
Lowest Rth value on the market for the DBC package versions
Isolation rating of 1500 Vrms/min
Optimized driviers and silicon for low EMI
Separate open emitter outputs
3.3V, 5V, 15V CMOS/TTL inputs
Undervoltage lockout
Internal bootstrap diode
Interlocking function
Smart shutdown function
Comparator for fault protection against over temperature and over current


