参数资料
型号: MAX691AEUE+T
厂商: Maxim Integrated Products
文件页数: 14/17页
文件大小: 0K
描述: IC SUPERVISOR MPU 16-TSSOP
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
类型: 备用电池电路
监视电压数目: 1
输出: 推挽式,推挽式
复位: 高有效/低有效
复位超时: 最小为 140 ms
电压 - 阀值: 4.65V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 16-TSSOP(0.173",4.40mm 宽)
供应商设备封装: 16-TSSOP
包装: 带卷 (TR)
Microprocessor Supervisory Circuits
Backup-Battery Replacement
100
80
60
40
20
V CC = 5V
T A = +25 ° C
0.1 μ F CAPACITOR
FROM V OUT TO GND
The backup battery may be disconnected while V CC is
above the reset threshold. No precautions are neces-
sary to avoid spurious reset pulses.
Negative-Going V CC Transients
While issuing resets to the μP during power-up, power-
down, and brownout conditions, these supervisors are
relatively immune to short-duration, negative-going V CC
transients (glitches). It is usually undesirable to reset
the μP when V CC experiences only small glitches.
Figure 13 shows maximum transient duration vs. reset-
comparator overdrive, for which reset pulses are not
0
10
100 1000
RESET COMPARATOR OVERDRIVE,
10000
generated. The graph was produced using negative-
going V CC pulses, starting at 5V and ending below the
reset threshold by the magnitude indicated (reset com-
(Reset Threshold Voltage - V CC ) (mV)
Figure 13. Maximum Transient Duration without Causing a
Reset Pulse vs. Reset Comparator Overdrive
parator. Select the ratio of R1 and R2 such that PFI sees
1.25V when V IN falls to the desired trip point (V TRIP ).
Resistor R3 adds hysteresis. It will typically be an order
of magnitude greater than R1 or R2. The current
through R1 and R2 should be at least 1μA to ensure that
the 25nA (max) PFI input current does not shift the trip
point. R3 should be larger than 10k Ω to prevent it from
loading down the PFO pin. Capacitor C1 adds noise
rejection.
Monitoring a Negative Voltage
The power-fail comparator can be used to monitor a
negative supply voltage using Figure 12’s circuit. When
the negative supply is valid, PFO is low. When the neg-
ative supply voltage drops, PFO goes high. This cir-
cuit ’s accuracy is affected by the PFI threshold
tolerance, the V CC voltage, and resistors R1 and R2.
parator overdrive). The graph shows the maximum
pulse width a negative-going V CC transient may typical-
ly have without causing a reset pulse to be issued. As
the amplitude of the transient increases (i.e., goes far-
ther below the reset threshold), the maximum allowable
pulse width decreases. Typically, a V CC transient that
goes 100mV below the reset threshold and lasts for
40μs or less will not cause a reset pulse to be issued.
A 100nF bypass capacitor mounted close to the V CC
pin provides additional transient immunity.
Connecting a Timing Capacitor at OSC IN
When OSC SEL is connected to ground, OSC IN dis-
connects from its internal 10μA (typ) pullup and is inter-
nally connected to a ±100nA current source. When a
capacitor is connected from OSC IN to ground (to
select alternative reset and watchdog timeout periods),
the current source charges and discharges the timing
capacitor to create the oscillator that controls the reset
and watchdog timeout period. To prevent timing errors
or oscillator startup problems, minimize external current
leakage sources at this pin, and locate the capacitor as
close to OSC IN as possible. The sum of PC-board
leakage plus OSC capacitor leakage must be small
compared to ±100nA.
14
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