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MCP101 bảng dữ liệu(PDF) 3 Page - Microchip Technology

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MCP101 bảng dữ liệu(HTML) 3 Page - Microchip Technology

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© 1999 Microchip Technology Inc.
Preliminary
DS11187D-page 3
MCP100/101
FIGURE 1-1: MCP100/101 Timing Diagram
2.0
APPLICATIONS INFORMATION
2.1
The Need for Supervisory Circuits
For many of today’s microcontroller applications, care
must be taken to prevent low power conditions that can
cause many different system problems. The most com-
mon causes are brown-out conditions where the sys-
tem
supply
drops
below
the
operating
level
momentarily, and the second, is when a slowly decay-
ing power supply causes the microcontroller to begin
executing instructions without enough voltage to sus-
tain SRAM and producing indeterminate results.
FIGURE 2-1: Typical Application
2.2
Negative Going VDD Transients
Many system designers implementing POR circuits are
concerned about the minimum pulse width required to
cause a reset. Figure 2-2 shows typical transient dura-
tion vs. reset comparator overdrive for which the
MCP100/101 will not generate a reset pulse. It shows
that the farther below the trip point the transient pulse
goes, the duration of the pulse required to cause a
reset gets shorter. A 0.1 µF bypass cap mounted as
close as possible to the VDD pin provides additional
transient immunity.
FIGURE 2-2: Typical Transient Response
VDD
RESET
VOH
tRPU
VTRIP
tRPD
VOL
RESET
(MCP100)
(MCP101)
VOL
MICROCONTROLLER
MCLR
VDD
VSS
RST
MCP100
OR
RESET
VSS
VDD
VDD
bypass
capacitor
TIME
0
0
5V
VTRIPMAX
VTRIPMIN
TRANSIENT
DURATION
(VTRIPMIN - VDD)
012
3
VTRIP - VDD (V)
10
8
6
4
2
0
45
Transients above the
curve will cause a reset
Transients below
the curve will NOT
cause a reset
TA = +25°C
11187d.book Page 3 Friday, September 10, 1999 8:52 AM



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