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G696L400TOU 데이터시트(PDF) 8 Page - Global Mixed-mode Technology Inc

부품명 G696L400TOU
상세설명  Microprocessor Reset IC
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제조업체  GMT [Global Mixed-mode Technology Inc]
홈페이지  http://www.gmt.com.tw
Logo GMT - Global Mixed-mode Technology Inc

G696L400TOU 데이터시트(HTML) 8 Page - Global Mixed-mode Technology Inc

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Ver: 1.8
May 10, 2006
TEL: 886-3-5788833
http://www.gmt.com.tw
8
G696/G697
Global Mixed-mode Technology Inc.
Pin Description
PIN
NAME
FUNCTION
RESET
(G696L/G697L)
RESET
Output remains low while VCC is below the reset threshold, and for delay time set by CD
after VCC rises above the reset threshold.
1
RESET (G696H)
RESET Output remains high while VCC is below the reset threshold, and for delay time set by CD
after VCC rises above the reset threshold.
2
VCC
Supply Voltage (+5V, +3.3V, +3.0V)
3
GND
Ground
4
NC
No Connection.
5
CD
External Programmable time delay is set by the capacitor connect to CD pin.
Detailed Description
A microprocessor’s (µP’s) reset input starts the µP in a
known state. The G697L/G696L/G696H assert reset to
prevent
code-execution
errors
during
power-up,
power-down, or brownout conditions. They assert a
reset signal whenever the VCC supply voltage declines
below a preset threshold (VTH-), keeping it asserted for
time delay set by capacitor connected to CD pin, after
VCC has risen above the high reset threshold VTH+
(VTH-+VHYS). The G697L uses an open-drain output,
and the G696L/G696H have a push-pull output stage.
Connect a pull-up resistor on the G697L’s RESET out-
put to any supply between 0 and 5.5V.
The time delay is set by external capacitor CD, and
internal pull up current ICD. When the voltage at CD
pin exceeds the buffer threshold, typically 1.25V, the
RESET output high (RESET output low). The volt-
age detector and buffer have built-in hysterisis to
prevent erratic reset operation. The formula of time
delay is T (ms)
≅ 1685 C
D (µF). Fig1 and Fig2 show a
timing deagram and a Functional Block.
Figure3. RESET Valid to VCC = Ground Circuit
Ensuring a Valid Reset Output Down to VCC = 0
When VCC falls below 0.8V, the G696 RESET output
no longer sinks current-it becomes an open circuit.
Therefore, high-impedance CMOS logic inputs con-
nected to RESET can drift to undetermined voltages.
This presents no problem in most applications since
most µP and other circuitry is inoperative with VCC
below 0.8V. However, in applications where RESET
must be valid down to 0V, adding a pull-down resistor
to RESET causes any stray leakage currents to flow
to ground, holding RESET low (Figure 4). R1’s value
is not critical; 100k
Ω is large enough not to load
RESET and small enough to pull RESET to ground.
A 100k
Ω pull-up resistor to V
CC is also recommended
for the G697L if RESET is required to remain valid
for VCC < 0.8V.
Figure 4. Interfacing to µPs with Bidirectional Re-
set I/O
Figure 5. G697L Open-Drain RESET Output Allows
Use with Multiple Supplies
VCC
RESET
GND
G696
R1
100k
VCC
RESET
GND
G696
R1
100k
RESET
INPUT
GND
5V SYSTEM
RESET
GND
G697
RPULL-UP
+3.3V
+5.0
RESET
INPUT
GND
5V SYSTEM
VCC
RPULL-UP
+3.3V
+5.0V
VCC
RESET
INPUT
GND
5V SYSTEM
RESET
GND
G697
RPULL-UP
+3.3V
+5.0
RESET
INPUT
GND
5V SYSTEM
VCC
RPULL-UP
+3.3V
+5.0V
VCC
RESET
INPUT
GND
5V SYSTEM
RESET
GND
G697
RPULL-UP
+3.3V
+5.0
RESET
INPUT
GND
5V SYSTEM
VCC
RPULL-UP
+3.3V
+5.0V
VCC
RESET
INPUT
GND
µP
RESET
GND
G697
V
CC
MOTOROLA
68HCXX
RPULL-UP
VCC
VCC
RESET
INPUT
GND
µP
RESET
GND
G697
V
CC
MOTOROLA
68HCXX
RPULL-UP
VCC
VCC


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