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Número de pieza P83C654FHB
Descripción CMOS single-chip 8-bit microcontroller
Fabricantes NXP Semiconductors 
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No Preview Available ! P83C654FHB Hoja de datos, Descripción, Manual

INTEGRATED CIRCUITS
83C654
CMOS single-chip 8-bit microcontroller
Product specification
Supersedes data of 1996 Aug 15
IC20 Data Handbook
1998 Jan 06
Philips
Semiconductors

1 page




P83C654FHB pdf
Philips Semiconductors
CMOS single-chip 8-bit microcontroller
Product specification
83C654
ORDERING INFORMATION
PHILIPS PART ORDER NUMBER
PART MARKING
ROMless1
ROM
PHILIPS NORTH AMERICA
PART ORDER NUMBER
ROMless1
ROM
EPROM3
DRAWING
NUMBER
TEMPERATURE RANGE (°C)
AND PACKAGE
FREQ
MHz2,3
P80C652EBP P83C654EBP/xxx P80C652EBPN P83C654EBPN S87C654-4N40 SOT129-1
0 to +70,
Plastic Dual In-line Package
16
P80C652EBA P83C654EBA/xxx P80C652EBAA P83C654EBAA S87C654-4A44 SOT187-2
P80C652EBB P83C654EBB/xxx P80C652EBBB P83C654EBBB S87C654-4B44 SOT307-2
0 to +70,
Plastic Leaded Chip Carrier
0 to +70,
Plastic Quad Flat Pack
16
16
P83C654EBR/xxx
SOT270-1
0 to +70,
Plastic Shrink Dual In-Line Package
16
P80C652EFP P83C654EFP/xxx P80C652EFPN P83C654EFPN S87C654-5N40 SOT129-1
P80C652EFA P83C654EFA/xxx P80C652EFAA P83C654EFAA S87C654-5A44 SOT187-2
–40 to +85,
Plastic Dual In-line Package
–40 to +85,
Plastic Leaded Chip Carrier
16
16
P80C652EFB P83C654EFB/xxx P80C652EFBB P83C654EFBB S87C654-5B44 SOT307-2
–40 to +85,
Plastic Quad Flat Pack
16
P80C652EHP P83C654EHP/xxx P80C652EHPN P83C654EHPN
P80C652EHA P83C654EHA/xxx P80C652EHAA P83C654EHAA
SOT129-1
SOT187-2
–40 to +125,
Plastic Dual In-line Package
–40 to +125,
Plastic Leaded Chip Carrier
16
16
P80C652EHB P83C654EHB/xxx P80C652EHBB P83C654EHBB
SOT307-2
S87C654-7N40 SOT129-1
S87C654-7A44 SOT187-2
–40 to +125,
Plastic Quad Flat Pack
0 to +70,
Plastic Dual In-line Package
0 to +70,
Plastic Leaded Chip Carrier
16
20
20
S87C654-8N40 SOT129-1
S87C654-8A44 SOT187-2
P80C652IBP P83C654IBP/xxx P80C652IBPN P83C654IBPN
SOT129-1
–40 to +85,
Plastic Dual In-line Package
–40 to +85,
Plastic Leaded Chip Carrier
0 to +70,
Plastic Dual In-line Package
20
20
24
P80C652IBA P83C654IBA/xxx P80C652IBAA P83C654IBAA
P80C652IBB P83C654IBB/xxx P80C652IBBB P83C654IBBB
SOT187-2
SOT307-2
0 to +70,
Plastic Leaded Chip Carrier
0 to +70,
Plastic Quad Flat Pack
24
24
P80C652IFP P83C654IFP/xxx P80C652IFPN P83C654IFPN
SOT129-1
–40 to +85,
Plastic Dual In-line Package
24
P80C652IFA P83C654IFA/xxx P80C652IFAA P83C654IFAA
P80C652IFB P83C654IFB/xxx P80C652IFBB P83C654IFBB
NOTES:
1. For full specification, see the 80C652/83C652 data sheet.
2. 83C654 frequency range is 3.5MHz–16MHz or 3.5MHz–24MHz.
3. For specification of the EPROM version, see the 87C654 data sheet.
4. xxx denotes the ROM code number.
SOT187-2
SOT307-2
–40 to +85,
Plastic Leaded Chip Carrier
–40 to +85,
Plastic Quad Flat Pack
24
24
1998 Jan 06
5

5 Page





P83C654FHB arduino
Philips Semiconductors
CMOS single-chip 8-bit microcontroller
Product specification
83C654
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 VIN is approximately 2V.
8. Capacitive loading on ports 0 and 2 may cause spurious noise to be superimposed on the VOLs 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, IOL must be externally limited as follows: Maximum IOL = 10mA per port pin; Maximum
IOL = 26mA total for Port 0; Maximum IOL = 15mA total for Ports 1, 2, and 3; Maximum IOL = 71mA total for all output pins. If IOL exceeds the
test conditions, VOL 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 VOH on ALE and PSEN to momentarily fall below the 0.9VDD specification when the
address bits are stabilizing.
11. IDDMAX for other frequencies can be derived from Figure 1, where FREQ is the external oscillator frequency in MHz. IDDMAX is given in mA.
40
IDD
(mA)
30
50
IDD
(mA)
40
(1) 30
20 (1)
20
10
10
(2)
(2)
0
0 4 8 12 16
fXTAL1 (MHz)
(1) MAXIMUM OPERATING MODE: VDD = VDDmax
(2) MAXIMUM IDLE MODE: VDD = VDDmax
These values are valid within the specified
frequency range.
0
04
8 12
(1) MAXIMUM OPERATING MODE: VDD = VDDmax
(2) MAXIMUM IDLE MODE: VDD = VDDmax
These values are valid within the specified
frequency range.
16 24
fXTAL1 (MHz)
Figure 1. IDD vs. Frequency
1998 Jan 06
11

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