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MIC5271 bảng dữ liệu(PDF) 11 Page - Microchip Technology

tên linh kiện MIC5271
Giải thích chi tiết về linh kiện  關Cap Negative Low Dropout Regulator
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nhà sản xuất  MICROCHIP [Microchip Technology]
Trang chủ  http://www.microchip.com
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MIC5271 bảng dữ liệu(HTML) 11 Page - Microchip Technology

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2017 - 2022 Microchip Technology Inc. and its subsidiaries
DS20005881B-page 11
MIC5271
EQUATION 4-1:
EQUATION 4-2:
The actual power dissipation of the regulator circuit can
be determined using Equation 4-3:
EQUATION 4-3:
Substituting PD(MAX), determined above, for PD and
solving for the operating conditions that are critical to
the application will give the maximum operating
conditions for the regulator circuit. The maximum
power dissipation number cannot be exceeded for
proper operation of the device. The maximum input
voltage can be determined using the output voltage of
5.0V and an output current of 100 mA. Ground current,
of 2 mA for 100 mA of output current, can be taken from
Table .
• 425 mW = (VIN – 5.0V) x 100 mA + VIN x 2 mA
• 425 mW = (100 mA x VIN + 2 mA x VIN) – 500mW
• 925 mW = 102 mA x VIN
• VIN = 9.07V (maximum)
Therefore, a –5.0V application at –100 mA of output
current can accept a maximum input voltage of –9.07V
in a SOT-23 package. For a full discussion of heat
sinking and thermal effects on voltage regulators, refer
to “Regulator Thermals” section of Microchip’s
Designing with Low Dropout Voltage Regulators
handbook and AN792, A Method to Determine How
Much Power an SOT23 Can Dissipate in an
Application.
4.6
Adjustable Regulator Application
The MIC5271YM5 can be adjusted from –1.20V to
–14V by using two external resistors (Figure 4-2). The
resistors set the output voltage based on Equation 4-4.
FIGURE 4-2:
Adjustable Voltage
Application.
EQUATION 4-4:
PD MAX
TJ MAX
TA
–
JA
--------------------------------
=
PD MAX
125C 25C
–
235C/W
-----------------------------------
425mW
=
=
PD
VIN VOUT
–
IOUT
VIN IGND
+
=
–V
IN
MIC5271YM5
1
2
3
4
5
R1
R2
–V
OUT
GND
EN
–IN
ADJ
–OUT
VOUT
VREF 1 R2
R1
-------
+
=
Where:
VREF = 1.20V



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