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STM32F051C8T6 Datasheet - ST Microelectronics
Manufacturer: | ST Microelectronics |
Category: | Microcontrollers |
Case Package: | LQFP-48 |
Description: | MCU 32Bit ARM Cortex M0 RISC 64KB Flash 2.5V/3.3V 48Pin LQFP Tray |
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STM32F051C8T6Datasheet PDF
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Package information STM32F051x4 STM32F051x6 STM32F051x8
112/121 DocID022265 Rev 6
7.8 Thermal characteristics
The maximum chip junction temperature (T
J
max) must never exceed the values given in
Table 20: General operating conditions.
The maximum chip-junction temperature, T
J
max, in degrees Celsius, may be calculated
using the following equation:
T
J
max = T
A
max + (P
D
max x Θ
JA
)
Where:
• T
A
max is the maximum ambient temperature in °C,
•Θ
JA
is the package junction-to-ambient thermal resistance, in ° C/W,
• P
D
max is the sum of P
INT
max and P
I/O
max (P
D
max = P
INT
max + P
I/O
max),
• P
INT
max is the product of I
DD
and
V
DD
, expressed in Watts. This is the maximum chip
internal power.
P
I/O
max represents the maximum power dissipation on output pins where:
P
I/O
max = Σ (V
OL
× I
OL
) + Σ ((V
DDIOx
– V
OH
) × I
OH
),
taking into account the actual V
OL
/ I
OL
and V
OH
/ I
OH
of the I/Os at low and high level in the
application.
7.8.1 Reference document
JESD51-2 Integrated Circuits Thermal Test Method Environment Conditions - Natural
Convection (Still Air). Available from www.jedec.org
7.8.2 Selecting the product temperature range
When ordering the microcontroller, the temperature range is specified in the ordering
information scheme shown in Section 8: Part numbering.
Table 74. Package thermal characteristics
Symbol Parameter Value Unit
Θ
JA
Thermal resistance junction-ambient
LQFP64 - 10 × 10 mm / 0.5 mm pitch
45
°C/W
Thermal resistance junction-ambient
LQFP48 - 7 × 7 mm
55
Thermal resistance junction-ambient
LQFP32 - 7 × 7 mm
56
Thermal resistance junction-ambient
UFBGA64 - 5 × 5 mm
65
Thermal resistance junction-ambient
UFQFPN48 - 7 × 7 mm
32
Thermal resistance junction-ambient
UFQFPN32 - 5 × 5 mm
38
Thermal resistance junction-ambient
WLCSP36 - 2.6 × 2.7 mm
60
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