STM6710LWB6F STMicroelectronics, STM6710LWB6F Datasheet - Page 11

MPU SUPERVISOR TRI/QUAD SOT23-6

STM6710LWB6F

Manufacturer Part Number
STM6710LWB6F
Description
MPU SUPERVISOR TRI/QUAD SOT23-6
Manufacturer
STMicroelectronics
Type
Multi-Voltage Supervisorr
Datasheet

Specifications of STM6710LWB6F

Number Of Voltages Monitored
4
Output
Open Drain or Open Collector
Reset
Active Low
Reset Timeout
140 ms Minimum
Voltage - Threshold
1.67V, 3.08V, Adj, Adj
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
SOT-23-6
Threshold Voltage
3.3V
No. Of Supervisors / Monitors
4
Supply Voltage Range
1V To 5.5V
Reset Type
Active-Low
Supply Current
35µA
Delay Time
200ms
Digital Ic Case Style
SOT-23
No. Of Pins
6
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-10437-2

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
STM6710LWB6F
Manufacturer:
ST
Quantity:
20 000
STM6700, STM6710
2.2
Adjustable thresholds (input configurations)
The STM6700/STM6710 may be configured to monitor several options with adjustable
reset thresholds. The threshold voltages at each adjustable input VxIN is typically 0.62 V.
Thus to monitor a voltage > 0.62 V, a resistor divider network as shown in
can be used.
The STM6710 allows users to customize the minimum voltage sense level with adjustable
reset thresholds. The threshold voltage at each adjustable input VxIN is typically 0.62 V. For
example, the user can adjust the voltage input threshold (VTHx)for V1IN, V3IN and V4IN
inputs. To do this, connect an external resistor divider network to the VxIN pin in order to set
the trip point to some other voltage above 620 mV according to the following formula which
is also shown in
or solved in terms of R1:
The STM6700/STM6710 have an input current of less than ±0.2 µA (±0.4 µA for VIN1) on
their adjustable inputs, therefore resistor values of up to 100 kΩ can be used for R2 with
<1% error.
Figure 7.
Adjustable thresholds monitoring
Figure
R1 = R2 [(VxINTH/0.62V)–1]
7.
Doc ID 16887 Rev 1
V
V
xINTH
THx
R1
R2
R1
=
=
0.62
R2
0.62V
V
V
THx
×
V
REF
(R1
= 0.62V
R2
1
+
R2)
Figure 7
Operation
below
AM04623v1
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