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ML7900 Fiches technique(PDF) 8 Page - Micro Electronics

No de pièce ML7900
Description  3-TERMINAL NEGATIVE VOLTAGE REGULATOR
PDF  10 Pages
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Fabricant  MICRO-ELECTRONICS [Micro Electronics]
Site Internet  http://www.microelectr.com.hk
Logo MICRO-ELECTRONICS - Micro Electronics

ML7900 Fiches technique(HTML) 8 Page - Micro Electronics

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3. Thermal Design
( 1 )
Heat Producting
(1-1)
PLOSS-1 : heat producting by own operation
PLOSS-1 = Vin X IQ
(1-2)
PLOSS-2 : heat producing by output current and the input-output differential voltage.
Internal power transistor produces the hest mentioned following equation.
PLOSS-2
= (Vin-Vout) x Iout
(W)
Therefore, the total heat producing PLOSS is :
PLOSS
= PLOSS-1 + PLOSS-2
= Vin X IQ + (Vin-Vout) X Iout
(W)
( 2 )
Thermal Resistance
(2-1)
Definition of Thermal Resistance : θ
Thermal resistance (θ ) is a degree of heat radiation mentioned following equation.
= (T1 - T2)/P (℃ /W)
Heat Producing Quantity
: P (W)
Ambient Temperature or case temperature
:T2 (℃ )
Heat Source Temperature
:T1 (℃ )
(2-2)
Thermal resistance of TO-220
θjc :
θja :
thermal resistance between IC chip (junction point) and ambience.
Input voltage (Vin) and quiescent current (IQ) produce the heat mentioned below equation.
There are two kinds of heat producting (PLOSS-1, PLOSS-2) in three terminal regulator and the sum of
them is total heat producting of IC (PLOSS).
There are two kinds of thermal resistance of TO-220. One is "θjc" for the application with the heat
sink, the other is "θja" for the application without the heat sink.
thermal resistance between IC chip (junction point) and the package back side
contacting with the heat sink.
Input
GND
IN
OUT
Output
Vin
Vout
IQ
Iout
T1
T2
P(W)
Rp
T1 > T2
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