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MAX8212MTV Datasheet(PDF) 5 Page - Maxim Integrated Products

Part # MAX8212MTV
Description  Microprocessor Voltage Monitors with Programmable Voltage Detection
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Manufacturer  MAXIM [Maxim Integrated Products]
Direct Link  https://www.maximintegrated.com/en.html
Logo MAXIM - Maxim Integrated Products

MAX8212MTV Datasheet(HTML) 5 Page - Maxim Integrated Products

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Calculate resistor values for Figure 3 as follows:
1) Choose a value for R1. Typical values are in
the 10k
Ωto 10MΩrange.
2) Calculate R2 for the desired upper trip point
VU using the formula:
3) Calculate R3 for the desired amount of
hysteresis, where VL is the lower trip point:
or, if V+ = VIN:
Figure 5 shows an alternate circuit, suitable only when the
voltage being detected is also the power-supply voltage
for the MAX8211 or MAX8212.
Calculate resistor values for Figure 5 as follows:
1) Choose a value for R1. Typical values are in
the 10k
Ωto 10MΩrange.
2) Calculate R2:
3) Calculate R3:
Low-Voltage Detector for Logic Supply
The circuit of Figure 5 will detect when a 5.0V (nominal)
supply goes below 4.5V, which is the VMIN normally
specified in logic systems. The selected resistor values
ensure that false undervoltage alarms will not be gener-
ated, even with worst-case threshold trip values and
resistor tolerances. R3 provides approximately 75mV of
hysteresis.
R3
R1
(VU VL)
1.15V
R2
R1
(VL VTH)
VTH
R1
(VL 1.15V)
1.15V
R3
R2
(VL VTH)
(VU VL)
R2
(VL 1.15V)
(VU VL)
R3
R2
(V
VTH)
(VU VL)
R2
(V +
1.15V)
(VU VL)
+−
R2 = R1
(VU VTH)
VTH
R1
(VU 1.15V)
1.15V
×
Microprocessor Voltage Monitors
with Programmable Voltage Detection
________________________________________________________________________________________
5
-55
TA (
°C)
1.250
1.230
1.210
1.190
1.170
1.150
1.130
1.110
1.090
1.070
1.050
-25
25
75
125
V+ = 16.5V
V+ = 2V
Figure 4. MAX8211/MAX8212 Threshold Trip Voltage vs.
Ambient Temperature
VIN
HYST
MAX8211
OUT
GND
V+
R3
48.7k
1%
R2
2.2M
1%
R1
750k
1%
VOUT
(LOW FOR
VIN < 4.5V)
THRESH
Figure 5. MAX8211 Logic-Supply Low-Voltage Detector


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