参数资料
型号: MAX825ZEXK+T
厂商: Maxim Integrated Products
文件页数: 7/10页
文件大小: 0K
描述: IC SUPERVISOR MPU SC70-5
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
类型: 简单复位/加电复位
监视电压数目: 1
输出: 推挽式,图腾柱
复位: 高有效/低有效
复位超时: 最小为 140 ms
电压 - 阀值: 2.32V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 6-TSSOP(5 引线),SC-88A,SOT-353
供应商设备封装: SC-70-5
包装: 带卷 (TR)
5-Pin Microprocessor Supervisory Circuits With
Watchdog Timer and Manual Reset
_______________Detailed Description
RESET Output
A microprocessor’s (μP’s) reset input starts the μP in a
known state. The MAX823/MAX824/MAX825 μP super-
visory circuits assert a reset to prevent code-execution
errors during power-up, power-down, and brownout
conditions. RESET is guaranteed to be a logic low for
V CC down to 1V. Once V CC exceeds the reset thresh-
old, an internal timer keeps RESET low for the specified
reset timeout period (t RP ); after this interval, RESET
returns high (Figure 2).
If a brownout condition occurs (V CC dips below the
reset threshold), RESET goes low. Each time RESET is
asserted it stays low for the reset timeout period. Any
time V CC goes below the reset threshold the internal
timer restarts. RESET both sources and sinks current.
RESET on the MAX824/MAX825 is the inverse of
RESET .
Manual Reset Input (MAX823/MAX825)
Many μP-based products require manual reset capabili-
ty, allowing the operator, a test technician, or external
logic circuitry to initiate a reset. On the MAX823/
MAX825, a logic low on MR asserts reset. Reset remains
asserted while MR is low, and for t RP (200ms nominal)
after it returns high. MR has an internal 52k ? pullup
resistor, so it can be left open if not used. This input can
be driven with CMOS logic levels or with open-drain/
collector outputs. Connect a normally open momentary
switch from MR to GND to create a manual-reset func-
tion; external debounce circuitry is not required. If MR is
driven from long cables or the device is used in a noisy
environment, connect a 0.1μF capacitor from MR to
GND to provide additional noise immunity.
Watchdog Input (MAX823/MAX824)
In the MAX823/MAX824, the watchdog circuit monitors
the μP’s activity. If the μP does not toggle the watchdog
input (WDI) within t WD (1.6s), reset asserts. The internal
1.6s timer is cleared by either a reset pulse or by tog-
gling WDI, which detects pulses as short as 50ns.
While reset is asserted, the timer remains cleared and
does not count. As soon as reset is released, the timer
starts counting (Figure 3).
Disable the watchdog function by leaving WDI uncon-
nected or by three-stating the driver connected to WDI.
The watchdog input is internally driven low during the
first 7/8 of the watchdog timeout period and high for the
last 1/8 of the watchdog timeout period. When WDI is
left unconnected, this internal driver clears the 1.6s
timer every 1.4s. When WDI is three-stated or uncon-
nected, the maximum allowable leakage current is
10μA and the maximum allowable load capacitance is
200pF.
Applications Information
Watchdog Input Current
The MAX823/MAX824 WDI inputs are internally driven
through a buffer and series resistor from the watchdog
counter (Figure 1). When WDI is left unconnected, the
watchdog timer is serviced within the watchdog timeout
period by a low-high-low pulse from the counter chain.
For minimum watchdog input current (minimum overall
power consumption), leave WDI low for the majority of
the watchdog timeout period, pulsing it low-high-low
once within the first 7/8 of the watchdog timeout period
to reset the watchdog timer. If WDI is externally driven
high for the majority of the timeout period, up to 160μA
can flow into WDI.
V CC
1V
V RST
V RST
1V
V CC
t RST
RESET*
RESET
RESET
t RP
t RP
t RD
t RD
WDI
t RP
t WD
t RP
GND
*RESET ON THE MAX824/MAX825 IS THE INVERSE OF RESET.
Figure 2. Reset Timing Diagram
Figure 3. MAX823/MAX824 Watchdog Timing Relationship
_______________________________________________________________________________________
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