The 87C196CA CB are new members of the MCS 96 microcontroller family These devices are based upon
the MCS 96 Kx Jx microcontroller product families with enhancements ideal for automotive and industrial
applications The CA CB are the first devices in the Kx family to support networking through the integration of
the CAN 2 0 (Controller Area Network) peripheral on-chip The 87C196CB offers the highests memory density
of the MCS 96 microcontroller family with 56K of on-chip EPROM 1 5K of on-chip register RAM and 512
bytes of additional RAM (Code RAM) In addition the 87C196CB provides up to 16 Mbyte of Linear Address
Space The 87C196CA is a sub-set of the CB offering 32K of on-chip EPROM up to 1 0K of on-chip register
RAM and 256 bytes of additional RAM (Code RAM)
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 1996
April 1996
Order Number 272405-004
87C196CA 87C196CB
The MCS 96 microcontroller family members are all high-performance microcontrollers with a 16-bit CPU The
87C196CB is composed of the high-speed (20 MHz) macrocore with up to 16 Mbyte linear address space 56
Kbytes of program EPROM up to 1 5 Kbytes of register RAM and up to 512 bytes of code RAM (16-bit
addressing modes) with the ability to execute from this RAM space It supports the high-speed serial commu-
nications protocol CAN 2 0 with 15 message objects of 8 bytes data length an 8-channel 10-bit 3 LSB
analog to digital converter with programmable S H times and conversion times
k
20
ms
at 20 MHz It has an
asynchronous synchronous serial I O port (SIO) with a dedicated 16-bit baud rate generator an additional
synchronous serial I O port (SSIO) with full duplex master slave transceivers a flexible timer counter struc-
ture with prescaler cascading and quadrature capabilities There are ten modularized multiplexed high-
speed I O for capture and compare (called Event Processor Array) with 200 ns resolution and double buffered
inputs and a sophisticated prioritized interrupt structure with programmable Peripheral Transaction Server
(PTS) implementing several channel modes including single burst block transfers from any memory location
to any memory location a PWM and PWM toggle mode to be used in conjunction with the EPA and an A D
scan mode
NOTICE
This is an advance information data sheet The A C and D C parameters contained within this data
sheet may change after full automotive temperature characterization of the device has been per-
formed Contact your local sales office before finalizing the timing and D C characteristics of a design
to verify you have the latest information
272405– 30
Figure 1 8XC196CB Block Diagram
2
87C196CA 87C196CB
All thermal impedance data is approximate for static
air conditions at 1 0W of power dissipation Values
will change depending on operation conditions and
application See the Intel
Packaging Handbook
(or-
der number 240800) for a description of Intel’s ther-
mal impedance test methodology
PROCESS INFORMATION
These devices are manufactured on P629 5 a
CHMOS III-E process Additional process and reli-
ability information is available in Intel’s
Components
Quality and Reliability Handbook
Order Number
210997
272405– 2
Figure 2 The 87C196CA CB Familiy Nomenclature
Thermal Characteristics
Device and Package
AN87C196CB
(84-Lead PLCC Package)
AN87C196CA
(68-Lead PLCC Package)
i
JA
35 0 C W
36 5 C W
i
JC
11 0 C W
10 0 C W
NOTES
1
i
JA
e
Thermal resistance between junction and the surrounding environment (ambient) measurements are taken 1 ft
away from case in air flow environment
i
JC
e
Thermal resistance between junction and package face (case)
2 All values of
i
JA
and
i
JC
may fluctuate depending on the environment (with or without airflow and how much airflow)
and device power dissipation at temperature of operation Typical variations are
g
2 C W
3 Values listed are at a maximum power dissipation of 1 0W
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