DataCard CP80 Plus Service Manual page 36

Card printers
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Parity Check
A parity check is a method of determining if an error has occurred. This is
accomplished by adding one extra bit to the end of a binary character code. The
purpose of the parity bit is to make the sum of data bits in a binary word either
even or odd. This way, all words throughout the data string will have the same
parity. In the table below, note that the sum of all the bits in each row is an odd
number. This is called odd parity. With even parity, the sum of the rows would be
an even number.
Data String
Regardless what type of information is written on a magnetic stripe, there is a
basic layout that is followed. This basic layout is shown below.
Leading
Start
Clock
Sentinel
Pulses
Leading/Trailing Clock Pulses
The actual information written to a magnetic stripe cannot extend fully to the
edges of the stripe. The main reason for this is because the card reader needs to
synchronize its timing to the speed at which the card is swiped through the
reader. Leading and trailing clock pulses permit the reader to gauge the speed of
the card without losing data. (The timing is continuously updated as the whole
card is read, but the leading and trailing clock pulses provide a starting point
without data loss.)
Specific Data
This is the actual data that personalizes the card. This data can represent a
person's name, birth date, account number, etc. The actual content of this data is
determined by the card issuer or one of the many international standards. (Refer
to the
Magnetic Stripe Primary Data Standards
common standards.)
2-22
Parity
Binary Char Code
Char
Bit
2
2
2
5
4
$
0
0
0
0
A
1
1
0
0
B
1
1
0
0
C
0
1
0
0
S
1
1
1
0
W
0
1
1
0
Z
1
1
1
1
Specific Data
Bit
Sum
2
2
2
3
2
1
0
1
0
0
1
0
0
1
3
0
1
0
3
0
1
1
3
0
1
1
5
1
1
1
5
0
1
0
5
End
Longitudinal
Sentinel
Redundancy Check
section for a description of some
Trailing
Clock
Pulses
Theory of Operation

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