A5975ADTR STMicroelectronics, A5975ADTR Datasheet - Page 29

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A5975ADTR

Manufacturer Part Number
A5975ADTR
Description
IC REG SW STEP-DOWN 2.5A 8SOIC
Manufacturer
STMicroelectronics
Series
-r
Type
Step-Down (Buck), PWMr
Datasheet

Specifications of A5975ADTR

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
1.235 V ~ 35 V
Current - Output
2.5A
Frequency - Switching
500kHz
Voltage - Input
4 V ~ 36 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (0.154", 3.90mm Width) Exposed Pad
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
497-11425-2

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
A5975ADTR
Manufacturer:
ST
Quantity:
20 000
A5975AD
8.3.2
The overall losses are:
Equation 26
The junction temperature of the device is:
Equation 27
Equation 28
Thermal impedance Z
The thermal impedance of the system, considered as the device in HSO8 package soldered
on the application board, takes on an important rule when the maximum output power is
limited by the static thermal performance and not by the electrical performance of the
device. Therefore, the embedded power elements could manage an higher current but the
system is already taking away the maximum power generated by the internal losses.
In case the output power increases, the thermal shutdown is triggered because the junction
temperature triggers the designed thermal shutdown threshold.
The R
generated from the system given the operation conditions.
If we suppose, as an example, T
before triggering the thermal shutdown and R
loss achievable with the thermal performance of the system is:
Figure 15
and T
element equal to 0.4 A.
AMB
TH
is a static parameter of the package; it sets the maximum power loss which can be
=40 °C. The calculations are performed considering the R
represents the estimation of power losses for different output voltages at V
P
=
TOT
0.4 2
=
P
2
R
MAX DC
DS on
0.3
(
thJ-A
+
Doc ID 018761 Rev 1
)
12 2 70 10
=
(
A
T
I
(t)
T
---------- -
R
OUT
= 40 °C, 140 °C is the maximum operating temperature
J
ΔT
J
TH
=
=
)
60
2
=
T
A
D
T
------------------------------------- -
+
+
J MAX
+
1.38 42
R
V
9
thJA
R
TH
IN
500 10
TH
= 40 °C/W, therefore, the maximum power
T
I
OUT
P
AMB
TOT
128°C
3
T
=
+
SW
12 5 10
100
--------- -
40
F
SW
=
2.5W
+
Application information
V
3
DS(on)
IN
1.38W
I
Q
=
of the power
IN
=5 V
29/50

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