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DTC646 bảng dữ liệu(PDF) 14 Page - Microchip Technology

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DTC646 bảng dữ liệu(HTML) 14 Page - Microchip Technology

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TC646
DS21446D-page 14
 2002-2012 Microchip Technology Inc.
A base-current limiting resistor is required with bipolar
transistors. This is shown in Figure 5-6.
FIGURE 5-6:
Circuit For Determining
RBASE.
The correct value for this resistor can be determined as
follows:
VOH
= VR
SENSE
+ VBE
(SAT)
+ VR
BASE
VR
SENSE
= IFAN x RSENSE
VR
BASE
= RBASE x IBASE
IBASE
= IFAN / hFE
VOH is specified as 80% of VDD in Section 1.0,
“Electrical Characteristics”; VBE
(SAT)
is given in the
chosen transistor data sheet. It is now possible to solve
for RBASE.
EQUATION
Some applications benefit from the fan being powered
from a negative supply to keep motor noise out of the
positive supply rails. This can be accomplished as
shown in Figure 5-8. Zener diode D1 offsets the -12V
power supply voltage, holding transistor Q1 off when
VOUT is low. When VOUT is high, the voltage at the
anode of D1 increases by VOUT, causing Q1 to turn on.
Operation is otherwise the same as in the case of fan
operation from +12V.
FIGURE 5-7:
Output Drive Transistor Circuit Topologies.
Q1
GND
VDD
RSENSE
RBASE
VOH = 80% VDD
+ V
RBASE
–
VBE
(SAT)
–
+
VR
SENSE
–
Fan
+
RBASE =
VOH - VBE
(SAT)
- VR
SENSE
IBASE
Q1
Q1
Q2
GND
VDD
RSENSE
RBASE
VOUT
VOUT
Fan
a) Single Bipolar Transistor
Q1
GND
VDD
RSENSE
VOUT
c) N-Channel MOSFET
GND
VDD
RSENSE
RBASE
Fan
b) Darlington Transistor Pair
Fan



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