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ADCMP393 数据表(PDF) 13 Page - Analog Devices

部件名 ADCMP393
功能描述  Comparators
PDF  17 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADCMP393 数据表(HTML) 13 Page - Analog Devices

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Data Sheet
ADCMP391/ADCMP392/ADCMP393
Rev. D | Page 13 of 17
SEQ
VC
L
OUTA
OUTB
OUTC
OUTD
V1
V2
V3
V4
t4
t3
t2
t1
Figure 33. Programmable Sequencing Control Circuit Timing Diagram
When the SEQ signal changes from low to high impedance, the
load capacitor, CL, starts to charge. The time it takes to charge the
load capacitor to the pull-up voltage (in this case, VREF or VCC) is the
maximum delay programmable in the circuit. It is recommended
to have the threshold within 10% to 90% of the pull-up voltage.
Calculate the maximum allowable delay by
tMAX = tR = 2.2 RPULLUP CL
(17)
The delay of each output is changed by changing the threshold
voltage, V1 to V4, when the comparator changes its output state.
To calculate the voltage thresholds for the comparator, use the
following formulas:
=
L
PULLUP
1
C
R
t
REF
e
V
V1
1
(18)
=
L
PULLUPC
R
t
REF
e
V
V2
2
1
(19)
=
L
PULLUPC
R
t
REF
e
V
V3
3
1
(20)
=
L
PULLUP
4
C
R
t
REF
e
V
V4
1
(21)
The threshold voltages can come from a voltage reference or a
voltage divider circuit, as shown in Figure 31.
First, determine the allowable current, IDIV, flowing through the
resistor divider. After the value for IDIV is determined, calculate
R1, R2, R3, R4, and R5 using the following formulas:
R5
R4
R3
R2
R1
I
V
R
DIV
REF
DIV
+
+
+
+
=
=
(22)
REF
DIV
V
V1R
R1 =
(23)
R1
V
V2R
R2
REF
DIV
=
(24)
R2
R1
V
V3R
R3
REF
DIV
=
(25)
R3
R2
R1
V
V4R
R
REF
DIV
=
4
(26)
R5 = RDIV − R1 − R2 − R3 − R4
(27)
To create a mirrored voltage sequence, add a resistor, RMIRROR,
between the pull-up resistor (RPULLUP) and the load capacitor
(CL) as shown in Figure 34.
OUTD
INA+
U1
INB+
INC+
IND+
INA–
INB–
INC–
IND–
OUTC
OUTB
OUTA
R2
V2
R3
V3
R4
V4
R5
R1
V1
RPULLUP
RMIRROR
VREF/VCC
CL
SEQ
Figure 34. Circuit Configuration for a Mirrored Voltage Sequencer
Figure 34 shows the circuit configuration for a mirrored voltage
sequencer. When SEQ changes from low to high impedance, the
response is similar to Figure 33. When SEQ changes from high
impedance to low, the load capacitor (CL) starts to discharge at a
rate set by RMIRROR. The delay of each comparator is dependent
on the threshold voltage previously set for t1 to t4. The result is a
mirrored power-down sequence.



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