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PDF TN80C196MD Data sheet ( Hoja de datos )

Número de pieza TN80C196MD
Descripción Industrial Motor Control CHMOS Microcontroller
Fabricantes Intel 
Logotipo Intel Logotipo



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8XC196MD
INDUSTRIAL MOTOR CONTROL
MICROCONTROLLER
87C196MD 16 Kbytes of On-Chip OTPROM*
87C196MD, ROM 16 Kbytes of On-Chip Factory-Programmed OTPROM
80C196MD ROMless
High-Performance CHMOS 16-Bit CPU
16 Kbytes of On-Chip OTPROM/
Factory-Programmed OTPROM
488 bytes of On-Chip Register RAM
Register to Register Architecture
Up to 64 I/O Lines
Peripheral Transaction Server (PTS)
with 17 Prioritized Sources
Event Processor Array (EPA)
— 6 High Speed Capture/Compare
Modules
— 6 High Speed Compare Modules
Extended Temperature Standard
Programmable Frequency Generator
Two 16-Bit Timers with Quadrature
Counting Input
3-Phase Complementary Waveform
Generator
14 Channel 8/10-Bit A/D with Sample/
Hold with Zero Offset Adjustment H/W
18 Prioritized Interrupt Sources
Flexible 8-/16-Bit External Bus
1.75 μs 16 x 16 Multiply
3 μs 32/16 Divide
Idle and Power Down Modes
The 8XC196MD is a 16-bit microcontroller designed primarily to control 3 phase AC induction and DC brush-
less motors. The 8XC196MD is based on Intel’s MCS® 96 16-bit microcontroller architecture and is manufac-
tured with Intel’s CHMOS process.
The 8XC196MD has a three phase waveform generator specifically designed for use in ‘‘Inverter’’ motor
control applications. This peripheral allows for pulse width modulation, three phase sine wave generation with
minimal CPU intervention. It generates 3 complementary non-overlapping PWM pulses with resolutions of
0.125 μs (edge trigger) or 0.250 μs (centered).
The 8XC196MD has 16 Kbytes on-chip OTPROM?ROM and 488 bytes of on-chip RAM. It is available in two
packages: PLCC (84-L) and EIAJ/QFP (80-L).
Operational characteristics are guaranteed over the temperature range of - 40°C to + 85°C.
The 87C196MD contains 16 Kbytes on-chip OTPROM. The 83C196MD contains 16 Kbytes on-chip ROM. All
references to the 80C196MD also refers to the 83C196MD and 87C196MD unless noted.
* OTPROM (One Time Programmable Read Only Memory) is the same as EPROM but it comes in an unwindowed package
and cannot be erased. It is user programmable.
* Other brands and names are the property of their respective owners.
Information in this document is provided in connection with Intel products. Intel assumes no liability whatsoever, including infringement of any patent or
copyright, for sale and use of Intel products except as provided in Intel’s Terms and Conditions of Sale for such products. Intel retains the right to make
changes to these specifications at any time, without notice. Microcomputer Products may have minor variations to this specification known as errata.
COPYRIGHT © INTEL CORPORATION, 2004
July 2004
Order Number: 272323-003

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TN80C196MD pdf
8XC196MD
Interrupt Source
Capture Compare5
Compare4
Capture Compare4
Table 3 Interrupt Sources Vectors and Priorities
Interrupt Service
PTS Service
Symbol
Name Vector Priority Name Vector Priority
CAPCOMP5 INT12 2038H 12 PTS12 2058H 27
COMP4
INT11 2036H
11
PTS11 2056H
26
CAPCOMP4 INT10 2034H 10 PTS10 2054H 25
Interrupt and PTS Vectors
The 8XC196MD has three new interrupt and PTS
vectors which are Capture Compare5 Compare 4
and Capture Compare4 Table 3 shows these inter-
rupt vectors and priorities These are shown as re-
served vectors in the 8XC196MC User’s Manual
Frequency Generator
The Frequency Generator (FG) Peripheral which
was not available on the 8XC196MC device is avail-
able on the 8XC196MD device The FG outputs a
programmable-frequency 50% duty cycle waveform
on the FREQOUT pin (P7 7) There are two 8-bit reg-
isters which control the FG peripheral
Frequency Generator Control Register
(FG CON) at 1FB8h
Frequency Generator Period Count Register
(FG COUNT) at 1FBAh
The FG CON can be read or written This register
is loaded with a value which determines the number
of counts necessary for toggling the output The fol-
lowing equation should be used to calculate the
FG CON value
FG CON value e
FXTAL
b1
16 (FG Frequency)
where FG Frequency is from 4 kHz to 1 MHz
The FG COUNT is loaded with the FG CON reg-
ister value The FG COUNT register is decrement-
ed every eighth state time When it reaches 00h the
FG COUNT register will send a signal to toggle the
output pin and reload the FG COUNT register with
the value in the FG CON register The
FG COUNT can only be read not written
The FREQOUT pin (P7 7) must be configured for a
special function to use it for the Frequency Genera-
tor feature
Port 7
Port 7 is an additional bidirectional port that was not
available on the 8XC196MC device Port 7 can be
used as I O or some of the pins have special func-
tions The pins are listed below followed by their
special functions
Table 4 Port 7 Special Function Pins
Pin Special Function
P7 0
CAPCOMP4
P7 1
CAPCOMP5
P7 2
CAPCOMP4
P7 3
CAPCOMP5
P7 4
P7 5
P7 6
P7 7
FREQOUT
The special functions of the pins are selected in the
Port 7 SFRs The Port 2 I O Port section of the
8XC196MC User’s Manual can be referenced when
setting up the Port 7 SFRs Port 7 SFRs are located
in the following locations
Table 5 Port 7 Special Function Registers
SFR
Address
P7 MODE
1FD1h
P7 DIR
1FD3h
P7 REG
1FD5h
P7 PIN
1FD7h
5

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TN80C196MD arduino
8XC196MD
PIN DESCRIPTIONS (Alphabetically Ordered) (Continued)
Symbol
Function
PALE
(P2 1)
A falling edge in Slave Programming Mode and Auto Configuration Byte
Programming Mode indicates that ports 3 and 4 contain valid programming
address command information (input to slave)
PROG
(P2 2)
A falling edge in Slave Programming Mode begins programming A rising edge
ends programming
PVER
(P2 0)
A high signal in Slave Programming Mode and Auto Configuration Byte
Programming Mode indicates the byte programmed correctly
CPVER
(P2 6)
Cumulative Program Verification Pin is high if all locations since entering a
programming mode have programmed correctly
AINC
(P2 4)
Auto Increment Active low input enables the auto increment mode Auto
increment will allow reading or writing of sequential EPROM locations without
address transactions across the PBUS for each read or write
11

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