参数资料
型号: ST72324K6B3/XXX
厂商: STMICROELECTRONICS
元件分类: 微控制器/微处理器
英文描述: 8-BIT, MROM, 8 MHz, MICROCONTROLLER, PDIP32
封装: 0.400 INCH, SHRINK, PLASTIC, DIP-32
文件页数: 40/157页
文件大小: 1037K
代理商: ST72324K6B3/XXX
ST72324J/K
134/157
12.8 I/O PORT PIN CHARACTERISTICS
12.8.1 General Characteristics
Subject to general operating conditions for VDD,fOSC, and TA unless otherwise specified.
Figure 80. Connecting Unused I/O Pins
Figure 81. Typical IPU vs. VDD with VIN=VSS
Notes:
1. Unless otherwise specified, typical data are based on TA=25°C and VDD=5V.
2. Data based on characterization results, not tested in production.
3. Hysteresis voltage between Schmitt trigger switching levels. Based on characterization results, not tested.
4. When the current limitation is not possible, the VIN maximum must be respected, otherwise refer to IINJ(PIN) specifica-
tion. A positive injection is induced by VIN>VDD while a negative injection is induced by VIN<VSS. Refer to Section 12.2.2
on page 113 for more details.
5. Configuration not recommended, all unused pins must be kept at a fixed voltage: using the output mode of the I/O for
example or an external pull-up or pull-down resistor (see Figure 80). Data based on design simulation and/or technology
characteristics, not tested in production.
6. The RPU pull-up equivalent resistor is based on a resistive transistor (corresponding IPU current characteristics de-
scribed in Figure 81). This data is based on characterization results, tested in production at VDD = 5V.
7. Data based on characterization results, not tested in production.
8. To generate an external interrupt, a minimum pulse width has to be applied on an I/O port pin configured as an external
interrupt source.
Symbol
Parameter
Conditions
Min
Typ 1)
Max
Unit
VIL
Input low level voltage 2)
CMOS ports
0.3xV
DD
V
VIH
Input high level voltage 2)
0.7xV
DD
Vhys
Schmitt trigger voltage hysteresis 3)
0.7
VIL
Input low level voltage 2)
TTL ports
0.8
VIH
Input high level voltage 2)
2
Vhys
Schmitt trigger voltage hysteresis 3)
1
IINJ(PIN)
4)
Injected Current on an I/O pin
VDD=5V
± 4
mA
ΣI
INJ(PIN)
4) Total injected current (sum of all I/O
and control pins) 6)
± 25
IL
Input leakage current
VSSVINVDD
±1
A
IS
Static current consumption 5)
Floating input mode
200
RPU
Weak pull-up equivalent resistor 6)
VIN=VSS
VDD=5V
50
120
250
k
CIO
I/O pin capacitance
5
pF
tf(IO)out
Output high to low level fall time 7)
CL=50pF
Between 10% and 90%
25
ns
tr(IO)out
Output low to high level rise time 7)
25
tw(IT)in
External interrupt pulse time 8)
1tCPU
10k
UNUSED I/O PORT
ST72XXX
10k
UNUSED I/O PORT
ST72XXX
VDD
0
10
20
30
40
50
60
70
80
90
2
2.5
3
3.5
4
4.5
5
5.5
6
Vdd(V)
Ipu(uA)
Ta=1 40
°C
Ta=9 5
°C
Ta=2 5
°C
Ta=-45
°C
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