Seven or eight special function hardware registers
Two-level deep hardware stack
Direct, indirect and relative addressing modes for
data and instructions
Peripheral Features:
• 8-bit real time clock/counter (TMR0) with 8-bit
programmable prescaler
• Power-on Reset (POR)
• Device Reset Timer (DRT)
• Watchdog Timer (WDT) with its own on-chip
RC oscillator for reliable operation
• Programmable Code Protection
• Power saving SLEEP mode
• Selectable oscillator options:
- RC:
Low cost RC oscillator
- XT:
Standard crystal/resonator
- HS:
High speed crystal/resonator
- LP:
Power saving, low frequency crystal
High-Performance RISC CPU:
• Only 33 single word instructions to learn
• All instructions are single cycle except for pro-
gram branches which are two-cycle
• Operating speed: DC - 40 MHz clock input
DC - 100 ns instruction cycle
Device
PIC16C54
PIC16C54A
PIC16C54C
PIC16CR54A
PIC16CR54C
PIC16C55
PIC16C55A
PIC16C56
PIC16C56A
PIC16CR56A
PIC16C57
PIC16C57C
PIC16CR57C
PIC16C58B
PIC16CR58B
Pins
18
18
18
18
18
28
28
18
18
18
28
28
28
18
18
I/O
12
12
12
12
12
20
20
12
12
12
20
20
20
12
12
EPROM/
RAM
ROM
512
512
512
512
512
512
512
1K
1K
1K
2K
2K
2K
2K
2K
25
25
25
25
25
24
24
25
25
25
72
72
72
73
73
CMOS Technology:
• Low power, high speed CMOS EPROM/ROM tech-
nology
• Fully static design
• Wide operating voltage and temperature range:
- EPROM Commercial/Industrial 2.0V to 6.25V
- ROM Commercial/Industrial 2.0V to 6.25V
- EPROM Extended 2.5V to 6.0V
- ROM Extended 2.5V to 6.0V
• Low power consumption
- < 2 mA typical @ 5V, 4 MHz
- 15
A
typical @ 3V, 32 kHz
- < 0.6
A
typical standby current
(with WDT disabled) @ 3V, 0C to 70C
Note:
In this document, figure and table titles
refer to all varieties of the part number indi-
cated, (i.e., The title “Figure 15-1: Load
Conditions For Device Timing Specifica-
tions - PIC16C54A”, also refers to
PIC16LC54A and PIC16LV54A parts),
unless specifically called out otherwise.
1997-2013 Microchip Technology Inc.
Preliminary
DS30453E-page 1
PIC16C5X
Pin Diagrams
PDIP, SOIC, Windowed CERDIP
RA2
RA3
T0CKI
MCLR/V
PP
V
SS
RB0
RB1
RB2
RB3
1
2
3
4
5
6
7
8
9
18
17
16
15
14
13
12
11
10
RA1
RA0
OSC1/CLKIN
OSC2/CLKOUT
V
DD
RB7
RB6
RB5
RB4
PDIP, SOIC, Windowed CERDIP
T0CKI
V
DD
N/C
V
SS
N/C
RA0
RA1
RA2
RA3
RB0
RB1
RB2
RB3
RB4
•1
2
3
4
5
6
7
8
9
10
11
12
13
14
28
27
26
25
24
23
22
21
20
19
18
17
16
15
MCLR/V
PP
OSC1/CLKIN
OSC2/CLKOUT
RC7
RC6
RC5
RC4
RC3
RC2
RC1
RC0
RB7
RB6
RB5
PIC16C54
PIC16CR54
PIC16C56
PIC16CR56
PIC16C58
PIC16CR58
PIC16C55
PIC16C57
PIC16CR57
SSOP
RA2
RA3
T0CKI
MCLR/V
PP
V
SS
V
SS
RB0
RB1
RB2
RB3
1
2
3
4
5
6
7
8
9
10
20
19
18
17
16
15
14
13
12
11
RA1
RA0
OSC1/CLKIN
OSC2/CLKOUT
V
DD
V
DD
RB7
RB6
RB5
RB4
SSOP
V
SS
T0CKI
V
DD
V
DD
RA0
RA1
RA2
RA3
RB0
RB1
RB2
RB3
RB4
V
SS
1
2
3
4
5
6
7
8
9
10
11
12
13
14
28
27
26
25
24
23
22
21
20
19
18
17
16
15
MCLR/V
PP
OSC1/CLKIN
OSC2/CLKOUT
RC7
RC6
RC5
RC4
RC3
RC2
RC1
RC0
RB7
RB6
RB5
Device Differences
Device
PIC16C54
PIC16C54A
PIC16C54C
PIC16C55
PIC16C55A
PIC16C56
PIC16C56A
PIC16C57
PIC16C57C
PIC16C58B
PIC16CR54A
PIC16CR54C
PIC16CR56A
PIC16CR57C
PIC16CR58B
Voltage
Range
2.5-6.25
2.0-6.25
2.5-5.5
2.5-6.25
2.5-5.5
2.5-6.25
2.5-5.5
2.5-6.25
2.5-5.5
2.5-5.5
2.5-6.25
2.5-5.5
2.5-5.5
2.5-5.5
2.5-5.5
Oscillator
Selection
(Program)
Factory
User
User
Factory
User
Factory
User
Factory
User
User
Factory
Factory
Factory
Factory
Factory
Oscillator
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
See
Note 1
Process
Technology
(Microns)
1.2
0.9
0.7
1.7
0.7
1.7
0.7
1.2
0.7
0.7
1.2
0.7
0.7
0.7
0.7
ROM
Equivalent
PIC16CR54A
—
PIC16CR54C
—
—
—
PIC16CR56A
—
PIC16CR57C
PIC16CR58B
N/A
N/A
N/A
N/A
N/A
MCLR
Filter
No
No
Yes
No
Yes
No
Yes
No
Yes
Yes
Yes
Yes
Yes
Yes
Yes
Note 1:
If you change from this device to another device, please verify oscillator characteristics in your application.
Note:
The table shown above shows the generic names of the PIC16C5X devices. For device varieties, please
refer to Section 2.0.
PIC16C54
PIC16CR54
PIC16C56
PIC16CR56
PIC16C58
PIC16CR58
PIC16C55
PIC16C57
PIC16CR57
DS30453E-page 2
Preliminary
1997-2013 Microchip Technology Inc.
PIC16C5X
Table of Contents
1.0 General Description...................................................................................................................................................................... 5
8.0 Timer0 Module and TMR0 Register ........................................................................................................................................... 37
9.0 Special Features of the CPU...................................................................................................................................................... 43
10.0 Instruction Set Summary ............................................................................................................................................................ 49
11.0 Development Support................................................................................................................................................................. 61
Product Identification System ............................................................................................................................................................ 189
TO OUR VALUED CUSTOMERS
It is our intention to provide our valued customers with the best documentation possible to ensure successful use of your Microchip
products. To this end, we will continue to improve our publications to better suit your needs. Our publications will be refined and
enhanced as new volumes and updates are introduced.
If you have any questions or comments regarding this publication, please contact the Marketing Communications Department via
E-mail at
docerrors@mail.microchip.com
or fax the
Reader Response Form
in the back of this data sheet to (480) 792-4150.
We welcome your feedback.
Most Current Data Sheet
To obtain the most up-to-date version of this data sheet, please register at our Worldwide Web site at:
http://www.microchip.com
You can determine the version of a data sheet by examining its literature number found on the bottom outside corner of any page.
The last character of the literature number is the version number, (e.g., DS30000A is version A of document DS30000).
Errata
An errata sheet, describing minor operational differences from the data sheet and recommended workarounds, may exist for current
devices. As device/documentation issues become known to us, we will publish an errata sheet. The errata will specify the revision
of silicon and revision of document to which it applies.
To determine if an errata sheet exists for a particular device, please check with one of the following:
• Microchip’s Worldwide Web site; http://www.microchip.com
• Your local Microchip sales office (see last page)
• The Microchip Corporate Literature Center; U.S. FAX: (480) 792-7277
When contacting a sales office or the literature center, please specify which device, revision of silicon and data sheet (include liter-
ature number) you are using.
Customer Notification System
Register on our web site at
www.microchip.com/cn
to receive the most current information on all of our products.
1997-2013 Microchip Technology Inc.
Preliminary
DS30453E-page 3
PIC16C5X
NOTES:
DS30453E-page 4
Preliminary
1997-2013 Microchip Technology Inc.
PIC16C5X
8-Bit EPROM/ROM-Based CMOS Microcontrollers
1.0
GENERAL DESCRIPTION
1.1
Applications
The PIC16C5X from Microchip Technology is a family
of low cost, high performance, 8-bit fully static,
EPROM/ROM-based CMOS microcontrollers. It
employs a RISC architecture with only 33 single word/
single cycle instructions. All instructions are single
cycle except for program branches which take two
cycles. The PIC16C5X delivers performance in an
order of magnitude higher than its competitors in the
same price category. The 12-bit wide instructions are
highly symmetrical resulting in 2:1 code compression
over other 8-bit microcontrollers in its class. The easy
to use and easy to remember instruction set reduces
development time significantly.
The PIC16C5X products are equipped with special fea-
tures that reduce system cost and power requirements.
The Power-on Reset (POR) and Device Reset Timer
(DRT) eliminate the need for external RESET circuitry.
There are four oscillator configurations to choose from,
including the power saving LP (Low Power) oscillator
and cost saving RC oscillator. Power saving SLEEP
mode, Watchdog Timer and Code Protection features
improve system cost, power and reliability.
The UV erasable CERDIP packaged versions are ideal
for code development, while the cost effective One
Time Programmable (OTP) versions are suitable for
production in any volume. The customer can take full
advantage of Microchip’s price leadership in OTP
microcontrollers, while benefiting from the OTP’s
flexibility.
The PIC16C5X products are supported by a full fea-
tured macro assembler, a software simulator, an in-cir-
cuit emulator, a low cost development programmer and
a full featured programmer. All the tools are supported
on IBM
PC and compatible machines.
The
PIC16C5X
series fits perfectly in applications rang-
ing from high speed automotive and appliance motor
control to low power remote transmitters/receivers,
pointing devices and telecom processors. The EPROM
technology makes customizing application programs
(transmitter codes, motor speeds, receiver frequen-
cies, etc.) extremely fast and convenient. The small
footprint packages, for through hole or surface mount-
ing, make this microcontroller series perfect for applica-
tions with space limitations. Low cost, low power, high
performance ease of use and I/O flexibility make the
PIC16C5X
series very versatile even in areas where no
microcontroller use has been considered before (e.g.,
timer functions, replacement of “glue” logic in larger
The touch screen is summarized as an input subsystem, which is mainly for resistive screens. Its usage process is as follows: When the touch pen is pressed, an interrupt is generated. In the interrupt...
I applied for the above two samples. Only these two are useful to me. If I don't have more, it will be wasted. Among them, TPS25940A is a load switch. And it has a back-to-back MOS tube structure insi...
[table][tr][td]1. Talk to other software developers as much as possible; cultivate personal relationships; talk to people who disagree with you; talk to people who have more experience; talk to people...
Can I use two compilers at the same time in a Makefile? For example: udptalk1:udptalk.c gcc -o udptalk1 udptalk.c udptalk2:udptalk.c arm-linux-gcc -o udptalk2 udptalk.c Can I write it like this? Why c...
A single-chip microcomputer is also called a single-chip microcontroller. It is not a chip that completes a certain logical function, but a computer system integrated into one chip. In general, a c...[Details]
Microchip's PIC18F46J50 is a low-power, high-performance 8-bit USB microcontroller (MCU) using nanoWatt XLP technology. The current in deep sleep mode can be as low as 13nA, the operating voltage i...[Details]
Do you often have to add brake fluid to your car's brakes? The fact that you need to pump out the brake fluid to make sure there is no gas in the brake fluid line may not be done by the car owner h...[Details]
1 Introduction
With the acceleration of the pace of urban modernization, society has higher requirements for urban road lighting and urban lighting projects. The state has clearly required tha...[Details]
For a long time, due to the limitation of hardware conditions, the display devices of traditional small handheld devices such as PDA are usually monochrome LCD, and the user interface is very simpl...[Details]
Two simple circuits are implemented to drive two LEDs from a battery powered microprocessor.
This design is based on a circuit that uses three resistors and a microprocessor I/O pin as an input h...[Details]
Microcalorimetry
is used to determine energy relationships. Microcalorimetry techniques are often required when performing calorimetric experiments with small sample sizes or slow heating rat...[Details]
1 Introduction
PROFIBUS is an international, open, and manufacturer-independent fieldbus standard. It is widely used in manufacturing automation, process industry automation, and automatio...[Details]
This week, Microsoft held its 2012 Microsoft Worldwide Partner Conference (WPC) in Toronto, Canada. At the conference, Microsoft showed its new products and services to partners around the world. A...[Details]
In today's body control module (BCM) designs, savvy engineers are moving away from electromechanical relays whenever possible. Their next step is to eliminate fuses. But is eliminating fuses a nece...[Details]
0 Introduction
Under normal circumstances, the three-phase power in the power system is symmetrical, and they meet certain amplitude and phase conditions; but when the load changes, the syst...[Details]
Abstract: In order to realize wireless automatic alarm and monitoring of major safety places, based on the basic principle of pyroelectric infrared sensing, a detector for receiving infrared radia...[Details]
The automotive power electronics market has grown rapidly as comfort and active safety features become more common. As traditional mechanical functions shift to electronic applications, the demand ...[Details]
Infrared remote control is widely used in home appliances, but the remote controls produced are not compatible with each other. The universal remote controls commonly seen on the market can only co...[Details]
introduction
Belt drive is a common transmission device used in industrial production. Its commonly used speed detection device is a photoelectric encoder installed at the rotating end of th...[Details]