参数资料
型号: MAX6846KARD7-T
厂商: MAXIM INTEGRATED PRODUCTS INC
元件分类: 电源管理
英文描述: Low-Power, Adjustable Battery Monitors with Hysteresis and Integrated µP Reset
中文描述: 1-CHANNEL POWER SUPPLY SUPPORT CKT, PDSO8
封装: MO-178, SOT-23, 8 PIN
文件页数: 12/12页
文件大小: 257K
代理商: MAX6846KARD7-T
Manual Reset
Many microprocessor-based products require manual
reset capability, allowing the operator, a test technician,
or external logic circuitry to initiate a reset while the
monitored supplies remain above their reset thresholds.
These devices have a dedicated active-low MR pin.
When MR is pulled low, RESET asserts a one-shot low
pulse for the MR reset timeout period. The MR input has
an internal 1.5k
pullup resistor to VCC and can be left
unconnected if not used. MR can be driven with CMOS-
logic levels, open-drain/open-collector outputs, or a
momentary pushbutton switch to GND (the MR function
is internally debounced for the tDEB timeout period) to
create a manual reset function. If MR is driven from long
cables, or if the device is used in a noisy environment,
connect a 0.1F capacitor from MR to GND to provide
additional noise immunity (see Figure 4).
Hysteresis
Hysteresis increases the comparator’s noise margin by
increasing the upper threshold or decreasing the lower
threshold. The hysteresis prevents the output from
oscillating (chattering) when monitor input is near the
low-battery threshold. This is especially important for
applications where the load on the battery creates sig-
nificant fluctuations in battery voltages (see Figures 2
and 3).
For the MAX6846/MAX6847, hysteresis is set using three
external resistors (see Figure 5). The MAX6848/MAX6849
have dual, low-battery input levels. Each input level has a
5% (typ) hysteresis.
Applications Information
Resistor-Value Selection (Programming
the Adjustable Thresholds)
MAX6846/MAX6847
Use the following steps to determine values for R1, R2,
and R3 of Figure 5.
1) Choose a value for RTOTAL, the sum of R1, R2, and
R3. Because the MAX6846/MAX6847 have very high
input impedance, RTOTAL can be up to 500k
.
2) Calculate R3 based on RTOTAL and the desired
upper trip point:
3) Calculate R2 based on RTOTAL, R3, and the desired
lower trip point:
4) Calculate R1 based on RTOTAL, R3, and R2:
MAX6848/MAX6849
VLTH- = VHTH- = 582mV
LBOL low-trip level:
LBOH low-trip level:
Use the following steps to determine values for R1, R2,
and R3 of Figure 5.
VV
RR
R
RR
R
TRIPHIGH
HTH
TOTAL
++
=+
+
-
12
3
12
3
VV
RR
R
RR
TRIPLOW
LTH
++
+
-
12
3
23
RR
R
TOTAL
12
3
=
--
R
mV
R
V
R
TOTAL
TRIPLOW
2
615
3
=
×
-
R
mV
R
V
TOTAL
TRIPHIGH
3
615
=
×
VV
mV
VV
RR
R
RR
VV
RR
R
RR
R
LTH
HTH
TRIPLOW
LTH
TRIPHIGH
HTH
TOTAL
==
++
+
++
=+
+
615
12
3
23
123
3
12
3
MAX6846–MAX6849
Low-Power, Adjustable Battery Monitors with
Hysteresis and Integrated P Reset
_______________________________________________________________________________________
9
MAX6846
MAX6847
MAX6848
MAX6849
VDD
LTHIN
HTHIN
GND
* FOR THE MAX6846/MAX6847.
( ) FOR THE MAX6848/MAX6849.
(LBOH)
(LBOL)
R1
R2
R3
LBO*
Figure 5. Adjustable Threshold Selection
相关PDF资料
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MAX6846KASD7-T Low-Power, Adjustable Battery Monitors with Hysteresis and Integrated µP Reset
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