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ADCMP394 Scheda tecnica(PDF) 16 Page - Analog Devices

Il numero della parte ADCMP394
Spiegazioni elettronici  Comparators
PDF  18 Pages
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Produttore elettronici  AD [Analog Devices]
Homepage  http://www.analog.com
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ADCMP394 Scheda tecnica(HTML) 16 Page - Analog Devices

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ADCMP394/ADCMP395/ADCMP396
Data Sheet
Rev. B | Page 16 of 18
Resistor values from the calculation are nonindustry standard,
using industry standard resistor values resulted in a new RDIV
value of 99.8 kΩ. Due to the discrepancy of the calculated resistor
value to the industry standard value, the threshold of each
comparator also changed. Calculate the new threshold values
by using a simple voltage divider formula:
V1 = VREFR1/RDIV
(37)
where V1 =
99.8
26.7
V
1
= 267.54 mV.
Therefore, V2 = 463.93 mV, V3 = 607.21 mV, and V4 = 712.42 mV.
Because the threshold of each comparator has changed, the time
when each comparator changes its output has also changed.
Calculate the new delay values for each comparator by using the
following equation:



REF
MIRROR
PULLUP
L
1
V
V1
R
R
C
t
1
ln
(38)
where t1 = −1 μF(10 kΩ + 150 kΩ)ln
 
1
54
.
267
1
mV
= 49.81 ms.
Therefore, t2 = 99.78 ms, t3 = 149.52 ms, and t4 = 199.4 ms.
To calculate t5 through t8, use Equation 32 to Equation 35:


REF
L
MIRROR
5
V
V4
C
R
t
ln
where t5 = −150 kΩ × 1 μF × ln
1
mV
712.42
= 50.86 ms.
Therefore, t6 = 74.83 ms, t7 = 115.2 ms, and t8 = 197.78 ms.
THRESHOLD AND TIMEOUT PROGRAMMABLE
VOLTAGE SUPERVISOR
Figure 41 shows a circuit configuration for a programmable
threshold and timeout circuit. The timeout, tRESET, defines the
duration that the input voltage (VIN) must be kept above the
threshold voltage to toggle the RESET signal, preventing the
device from operating when VIN is not stable. If VIN falls below
the threshold voltage, the RESET signal toggles quickly.
Figure 41. Programmable Threshold and Timeout Circuit
Figure 42. Threshold and Timeout Programmable Voltage Supervisor
Timing Diagram
During startup, the ADCMP394/ADCMP395/ADCMP396
guarantee a low output state when VCC is still below the UVLO
threshold, preventing the voltage supervisor from toggling.
When VIN reaches the threshold set by the resistor divider (R1
and R2) and VREF, OUT1 changes from low to high and starts to
charge the timeout capacitor (CT). If VIN is kept above the threshold
voltage and the voltage in CT reaches VREF, OUT2 toggles. If VIN
falls below the threshold voltage while CT is charging, the timeout
capacitor quickly discharges, preventing OUT2 from toggling
while VIN is not stable.
In the condition that VIN is tied to VCC, the circuit operates
when VCC is more than the minimum operating voltage.
The threshold voltage (VTH) is configured by changing the
resistor divider or VREF. Calculate the threshold voltage by
 
R2
R1
V
V
REF
TH
1
(39)
Timeout is adjusted by changing the values of the pull-up
resistor or the timeout capacitor. To set the timeout value,
determine the allowable current flowing through RPULLUP, IPULLUP.
When IPULLUP is known, calculate RPULLUP and CT by the following
formulas:
RPULLUP = VCC/IPULLUP
(40)


CC
REF
PULLUP
RESET
T
V
V
ln
R
t
C
1
(41)
RESET
OUTB
OUTA
RPULL-UP
R1
R2
VCC
CT
VIN
VREF
RESET
VTH
VIN
tRESET
tRESET



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