参数资料
型号: P80C652IFP
厂商: NXP SEMICONDUCTORS
元件分类: 微控制器/微处理器
英文描述: CMOS single-chip 8-bit microcontrollers
中文描述: 8-BIT, 24 MHz, MICROCONTROLLER, PDIP40
封装: 0.600 INCH, PLASTIC, SOT-129-1, DIP-40
文件页数: 11/22页
文件大小: 185K
代理商: P80C652IFP
Phlips Semiconductors
Product specification
80C652/83C652
CMOS single-chip 8-bit microcontrollers
1997 Dec 05
11
NOTES FOR DC ELECTRICAL CHARACTERISTICS:
1. See Figures 9 through 11 for I
DD
test conditions.
2. The operating supply current is measured with all output pins disconnected; XTAL1 driven with t
r
= t
= 5ns;
V
= V
+ 0.5V; V
= V
–0.5V; XTAL2 not connected; EA = RST = Port 0 = P1.6 = P1.7 = V
DD
. See Figure 9.
3. The idle mode supply current is measured with all output pins disconnected; XTAL1 driven with t
= 5ns; V
IL
= V
SS
+ 0.5V;
V
= V
–0.5V; XTAL2 not connected; Port 0 = P1.6 = P1.7 = V
; EA = RST = V
. See Figure 10.
4. The power-down current is measured with all output pins disconnected; XTAL2 not connected; Port 0 = P1.6 = P1.7 = V
DD
;
EA = RST = V
SS
. See Figure 11.
5. 2V
V
PD
V
DD
max.
6. The input threshold voltage of P1.6 and P1.7 (SIO1) meets the I
2
C specification, so an input voltage below 0.3V
DD
will be recognized as a
logic 0 while an input voltage above 0.7V
DD
will be recognized as a logic 1.
7. Pins of ports 1 , 2, and 3 source a transition current when they are being externally driven from 1 to 0. The transition current reaches its
maximum value when V
IN
is approximately 2V.
8. Capacitive loading on ports 0 and 2 may cause spurious noise to be superimposed on the V
OL
s of ALE and ports 1 and 3. The noise is due
to external bus capacitance discharging into the port 0 and port 2 pins when these pins make 1-to-0 transitions during bus operations. In the
worst cases (capacitive loading > 100pF), the noise pulse on the ALE pin may exceed 0.8V. In such cases, it may be desirable to qualify
ALE with a Schmitt Trigger, or use an address latch with a Schmitt Trigger STROBE input.
9. Under steady state (non-transient) conditions, I
OL
must be externally limited as follows: Maximum I
OL
= 10mA per port pin; Maximum
I
OL
= 26mA total for Port 0; Maximum I
OL
= 15mA total for Ports 1, 2, and 3; Maximum I
OL
= 71mA total for all output pins. If I
OL
exceeds the
test conditions, V
may exceed the related specification. Pins are not guaranteed to sink current greater than the listed test conditions.
10.Capacitive loading on ports 0 and 2 may cause the V
OH
on ALE and PSEN to momentarily fall below the 0.9V
DD
specification when the
address bits are stabilizing.
11. I
DDMAX
for other frequencies can be derived from Figure 1, where FREQ is the external oscillator frequency in MHz. I
DDMAX
is given in mA.
40
30
20
10
0
0
4
8
12
16
(1) MAXIMUM OPERATING MODE: V
DD
= V
DDmax
(2) MAXIMUM IDLE MODE: V
DD
= V
DDmax
These values are valid within the specified
frequency range.
f
XTAL1
(MHz)
I
(mA)
Figure 1. I
DD
vs. Frequency
40
30
20
10
0
0
4
8
12
16
(2)
(1)
24
50
I
(mA)
f
XTAL1
(MHz)
(1) MAXIMUM OPERATING MODE: V
DD
= V
DDmax
(2) MAXIMUM IDLE MODE: V
DD
= V
DDmax
These values are valid within the specified
frequency range.
(1)
(2)
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