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PIC16F753 Datasheet(PDF) 88 Page - Microchip Technology

No. de pieza PIC16F753
Descripción Electrónicos  14/16-Pin, Flash-Based 8-Bit CMOS Microcontrollers
PDF  230 Pages
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Fabricante Electrónico  MICROCHIP [Microchip Technology]
Página de inicio  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

PIC16F753 Datasheet(HTML) 88 Page - Microchip Technology

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PIC16F753/HV753
DS40001709C-page 88
 2013-2015 Microchip Technology Inc.
When the phase delay count value is zero, phase
delay is disabled and the phase delay counter output
is true, thereby allowing the event signal to pass
straight through to complementary output driver flop.
11.7.1
CUMULATIVE UNCERTAINTY
It is not possible to create more than one COG_clock of
uncertainty by successive stages. Consider that the
phase delay stage comes after the blanking stage, the
dead-band stage comes after either the blanking or
phase delay stages, and the blanking stage comes
after the dead-band stage. When the preceding stage
is enabled, the output of that stage is necessarily
synchronous with the COG_clock, which removes any
possibility of uncertainty in the succeeding stage.
EQUATION 11-1:
PHASE, DEAD-BAND AND
BLANKING TIME
CALCULATION
EQUATION 11-2:
TIMER UNCERTAINTY
T
min
Count
=
T
max
Count
1
+
F
COG_clock
--------------------------
=
T
uncertainty
T
max
T
min
=
T
uncertainty
1
F
COG_clock
--------------------------
=
Also:
Where:
T
Count
Rising Phase Delay
COGxPHR
Falling Phase Delay
COGxPHF
Rising Dead Band
COGxDBR
Falling Dead Band
COGxDBF
Rising Event Blanking
COGxBKR
Falling Event Blanking
COGxBKF
COG_clock
F
Given:
Therefore:
Count
Ah
10d
==
F
COG_Clock
8MHz
=
T
uncertainty
1
F
COG_clock
--------------------------
=
1
8MHz
---------------
=
125ns
=
Proof:
T
min
Count
F
COG_clock
--------------------------
=
125ns
10d
=
1.25
s
=
T
max
Count
1
+
F
COG_clock
--------------------------
=
125ns
10d
1
+

=
1.375
s
=
Therefore:
T
uncertainty
T
max
T
min
=
1.375
s 1.25s
=
125ns
=



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