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PIC16F684-E/ST Datasheet(PDF) 83 Page - Microchip Technology

Part # PIC16F684-E/ST
Description  14-Pin Flash-Based, 8-Bit CMOS Microcontrollers with nanoWatt Technology
PDF  164 Pages
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Manufacturer  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

PIC16F684-E/ST Datasheet(HTML) 83 Page - Microchip Technology

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 2004 Microchip Technology Inc.
Preliminary
DS41202C-page 81
PIC16F684
11.3.4
HALF-BRIDGE MODE
In the Half-bridge Output mode, two pins are used as
outputs to drive push-pull loads. The PWM output sig-
nal is output on the RC5/CCP1/P1A pin, while the com-
plementary PWM output signal is output on the
RC4/C2OUT/P1B pin (Figure 11-6). This mode can be
used
for
half-bridge
applications,
as
shown
in
Figure 11-7, or for full-bridge applications, where four
power switches are being modulated with two PWM
signals.
In Half-bridge Output mode, the programmable dead
band delay can be used to prevent shoot-through
current in half-bridge power devices. The value of bits
PDC<6:0> (PWM1CON<6:0>) sets the number of
instruction cycles before the output is driven active. If
the value is greater than the duty cycle, the corre-
sponding output remains inactive during the entire
cycle. See Section 11.3.6 “Programmable Dead
Band Delay” for more details of the dead band delay
operations.
Since the P1A and P1B outputs are multiplexed with
the PORTC<5:4> data latches, the TRISC<5:4> bits
must be cleared to configure P1A and P1B as outputs.
FIGURE 11-6:
HALF-BRIDGE PWM
OUTPUT
FIGURE 11-7:
EXAMPLES OF HALF-BRIDGE APPLICATIONS
Period
Duty Cycle
td
td
(1)
P1A(2)
P1B(2)
td = Dead Band Delay
Period
(1)
(1)
Note 1:
At this time, the TMR2 register is equal to the
PR2 register.
2:
Output signals are shown as active-high.
PIC16F684
P1A
P1B
FET
Driver
FET
Driver
V+
V-
Load
+
V
-
+
V
-
FET
Driver
FET
Driver
V+
V-
Load
FET
Driver
FET
Driver
PIC16F684
P1A
P1B
Standard Half-bridge Circuit (“Push-Pull”)
Half-bridge Output Driving a Full-bridge Circuit



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