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LM5111 Datasheet(PDF) 16 Page - Texas Instruments

Part # LM5111
Description  LM5111 Dual 5-A Compound Gate Driver
PDF  30 Pages
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Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

LM5111 Datasheet(HTML) 16 Page - Texas Instruments

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ISOURCE (MAX) :=
TJ(MAX) - TA
TJA · VDIODE
ISINK (MAX) :=
TJ(MAX) - TA
TJA · RDS (ON)
16
LM5111
SNVS300H – JULY 2004 – REVISED SEPTEMBER 2016
www.ti.com
Product Folder Links: LM5111
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Copyright © 2004–2016, Texas Instruments Incorporated
Thermal Considerations (continued)
Or the rise in temperature is given by
TRISE = TJ − TA = PD × θJA
(6)
For SOIC package, θJA is estimated as 170°C/W for the conditions of natural convection. For MSOP-PowerPAD,
θJA is typically 60°C/W.
Therefore for SOIC TRISE is equal to
TRISE = 0.236 × 170 = 40.1°C
(7)
11.3.2 Continuous Current Rating of LM5111
The LM5111 can deliver pulsed source/sink currents of 3 A and 5 A to capacitive loads. In applications requiring
continuous load current (resistive or inductive loads), package power dissipation, limits the LM5111 current
capability far below the 5-A sink and 3-A source capability. Rated continuous current can be estimated both
when sourcing current to or sinking current from the load. For example when sinking, the maximum sink current
can be calculated as:
where
•
RDS(on) is the on resistance of lower MOSFET in the output stage of LM5111
(8)
Consider TJ(max) of 125°C and θJA of 170°C/W for an SO-8 package under the condition of natural convection
and no air flow. If the ambient temperature (TA) is 60°C, and the RDS(on) of the LM5111 output at TJ(max) is 2.5
Ω, this equation yields ISINK(max) of 391 mA which is much smaller than 5-A peak pulsed currents.
Similarly, the maximum continuous source current can be calculated as
where
•
VDIODE is the voltage drop across hybrid output stage which varies over temperature and can be assumed to
be about 1.1 V at TJ(max) of 125°C
(9)
Assuming the same parameters as above, this equation yields ISOURCE(max) of 347 mA.



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