參數資料
型號: AS87196CA
廠商: Intel Corp.
英文描述: ADVANCED 16-BIT CHMOS MICROCONTROLLER WITH INTEGRATED CAN 2.0
中文描述: 先進的16位單片機CHMOS集成CAN 2.0
文件頁數: 31/33頁
文件大?。?/td> 453K
代理商: AS87196CA
87C196CA/87C196CB
87C196CA DESIGN CONSIDERATIONS
The 87C196CA device is a memory scalar of the
87C196KR device with integrated CAN 2.0. The CA
is designed for strict functional and electrical com-
patibility to the Kx family as well as integration of on-
chip networking capability. The 87C196CA has few-
er peripheral functions than the 196KR, due in part
to the integration of the CAN peripheral. Following
are the functionality differences between the 196KR
and 196CA devices.
196KR Features Unsupported on the 196CA:
Analog Channels 0 and 1
INST Pin Functionality
SLPINT and SLPCS Pin Support
HLD/HLDA Functionality
External Clocking/Direction of Timer 1
Quadrature Clocking Timer 1
Dynamic Buswidth
EPA Capture Channels 4–7
(1)
External Memory.
Removal of the Buswidth pin
means the bus cannot dynamically switch from
8- to 16-bit bus mode or vice versa. The pro-
grammer must define the bus mode by setting
the associated bits in the CCB.
(2)
Auto-Programming Mode.
The 87C196CA de-
vice will ONLY support the 16-bit zero wait state
bus during auto-programming.
(3)
EPA4 through EPA7.
Since the CA device is
based on the KR design, these functions are in
the device, however there are no associated
pins. A programmer can use these as compare-
only channels or for other functions like software
timer, start an A/D conversion, or reset timers.
(4)
Slave Port Support.
The Slave port can not be
used on the 196CA due to a function change for
P5.4/SLPINT and P5.1/SLPCS not being bond-
ed-out.
(5)
Port Functions.
Some port pins have been re-
moved. P5.1, P6.2, P6.3, P1.4 through P1.7,
P2.3, P2.5, P0.0 and P0.1. The PxREG, PxSSEL,
and PxIO registers can still be updated and read.
The programmer should not use the correspond-
ing bits associated with the removed port pins to
conditionally branch in software. Treat these bits
as RESERVED.
Additionally, these port pins should be setup in-
ternally by software as follows:
1. Written to PxREG as ‘‘1’’ or ‘‘0’’.
2. Configured as Push/Pull, PxIO as ‘‘0’’.
3. Configured as LSIO.
This configuration will effectively strap the pin
either high or low. DO NOT Configure as
Open Drain output ‘’1’’, or as an Input pin.
This device is CMOS.
(6)
EPA Timer RESET/Write Conflict.
If the user
writes to the EPA timer at the same time that the
timer is reset, it is indeterminate which will take
precedence. Users should not write to a timer if
using EPA signals to reset it.
(7)
Valid Time Matches.
The timer must incre-
ment/decrement to the compare value for a
match to occur. A match does not occur if the
timer is loaded with a value equal to an EPA
compare value. Matches also do not occur if a
timer is reset and 0 is the EPA compare value.
(8)
Write Cycle during Reset.
If RESET occurs dur-
ing a write cycle, the contents of the external
memory device may be corrupted.
(9)
Indirect Shift Instruction.
The upper 3 bits of
the byte register holding the shift count are not
masked completely. If the shift count register has
the value 32
c
n, where n
e
1, 3, 5, or 7, the
operand will be shifted 32 times. This should
have resulted in no shift taking place.
(10)
P2.7 (CLKOUT).
P2.7 (CLKOUT) does not op-
erate in open drain mode.
31
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