參數(shù)資料
型號: TPS2097DR
廠商: Texas Instruments, Inc.
英文描述: QUAD POWER-DISTRIBUTION SWITCHES
中文描述: 四配電開關
文件頁數(shù): 15/19頁
文件大?。?/td> 314K
代理商: TPS2097DR
TPS2090, TPS2091, TPS2092 DUAL,
TPS2095, TPS2096, TPS2097 QUAD
POWER-DISTRIBUTION SWITCHES
SLVS245A
SEPTEMBER 2000
REVISED MARCH 2001
15
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
APPLICATION INFORMATION
OC response (continued)
GND
IN1
IN2
EN1
OC
EN2
OUT1
OUT2
TPS2092
Rpullup
V+
Figure 25. Typical Circuit for OC Pin
power dissipation and junction temperature
The low on-resistance on the n-channel MOSFET allows small surface-mount packages, such as SOIC, to pass
large currents. The thermal resistances of these packages are high compared to that of power packages; it is
good design practice to check power dissipation and junction temperature. Begin by determining the r
DS(on)
of
the N-channel MOSFET relative to the input voltage and operating temperature. As an initial estimate, use the
highest operating ambient temperature of interest and read r
DS(on)
from Figure 18. Using this value, the power
dissipation per switch can be calculated by:
PD
rDS
(
on
)
I
2
Multiply this number by the total number of switches being used, to get the total power dissipation coming from
the N-channel MOSFETs.
Finally, calculate the junction temperature:
TJ
PD
RJA
TA
Where:
T
A
= Ambient Temperature
°
C
R
θ
JA
= Thermal resistance SOIC = 172
°
C/W (for 8 pin), 111
°
C/W (for 16 pin)
P
D
= Total power dissipation based on number of switches being used.
Compare the calculated junction temperature with the initial estimate. If they do not agree within a few degrees,
repeat the calculation, using the calculated value as the new estimate. Two or three iterations are generally
sufficient to get a reasonable answer.
thermal protection
Thermal protection prevents damage to the IC when heavy-overload or short-circuit faults are present for
extended periods of time. The faults force the TPS209x into constant current mode, which causes the voltage
across the high-side switch to increase; under short-circuit conditions, the voltage across the switch is equal
to the input voltage. The increased dissipation causes the junction temperature to rise to high levels. The
protection circuit senses the junction temperature of the switch and shuts it off. Hysteresis is built into the thermal
sense circuit, and after the device has cooled approximately 20 degrees, the switch turns back on. The switch
continues to cycle in this manner until the load fault or input power is removed.
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