ST52T430K3M6 STMicroelectronics, ST52T430K3M6 Datasheet - Page 40

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ST52T430K3M6

Manufacturer Part Number
ST52T430K3M6
Description
Manufacturer
STMicroelectronics
Datasheet

Specifications of ST52T430K3M6

Cpu Family
ST52
Device Core Size
8b
Frequency (max)
20MHz
Interface Type
SCI/UART
Program Memory Type
EPROM
Program Memory Size
8KB
Total Internal Ram Size
256Byte
# I/os (max)
23
Number Of Timers - General Purpose
3
Operating Supply Voltage (typ)
3.3/5V
Operating Supply Voltage (max)
5.5/5.8V
Operating Supply Voltage (min)
2.7/3V
On-chip Adc
8-chx8-bit
Instruction Set Architecture
CISC
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
34
Package Type
SSO
Lead Free Status / Rohs Status
Not Compliant

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ST52T430/E430
Figure 7.3 Fuzzyfication
7.4 Defuzzyfication
In this phase the output crisp values are
determined by implementing the consequent part
of the rules.
Each consequent Singleton X
weight values
processor, in order to compute the upper part of
the Defuzzyfication formula.
Each output value is obtained from the consequent
crisp values (X
Defuzzyfication formula:
where:
i = identifies the current output variable
N = number of the active rules on the current
output
X
The Decision Processor outputs are stored in the
RAM location i-th specified in the assembler
instruction OUT i.
40/85
IF INPUT 1 IS X1 OR INPUT 2 IS X2 THEN .......
IF INPUT 1 IS X1 AND INPUT 2 IS X2 THEN .......
ij
ij
1
1
= weight of the j-th singleton
= abscissa of the j-th singleton
X1
X1
i
) by carrying out the following
Input 1
Input 1
Y
i
, calculated by the Decision
i
=
OR = Max
---------------------
N
j
N
j
X
ij ij
ij
i
is multiplied by its
X2
X2
Input 2
Input 2
7.5 Input Membership Function
The Decision Processor allows the management of
triangular Mbfs. In order to define an Mbf, three
different parameters must be stored on the
Program/Data Memory (see Figure 7.4):
I
I
I
In order to reduce the size of the memory area and
the computational effort the vertical range of the
vertex is fixed between 0 and 15 (4 bits)
By using the previous memorization method
different kinds of triangular Membership Functions
may be stored. Figure 7.5 shows some examples
of valid Mbfs that can be defined in ST52T430/
E430.
Each Mbf is then defined storing 3 bytes in the first
Kbyte of the Program/Data Memory.
The Mbf is stored by using the following instruction:
MBF n_mbf lvd v rvd
where:
n_mbf is a tag number that identifies the Mbf
lvd, v, and rvd are the parameters that describe the
Mbf’s shape as described above.
Figure 7.4 Mbfs Parameters
the vertex of the Mbf: V;
the length of the left semi-base: LVD;
the length of the right semi-base: RVD;
15
15
w
0
0
X
V
LVD
Input Mbf
Output Singleton
RVD
Input Variable
Output Variable

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