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M6NXF1 Folha de dados(PDF) 6 Page - M-System Co.,Ltd.

Nome de Peças. M6NXF1
descrição  Screw Terminal Ultra-Slim Signal Conditioners M6N Series
Download  7 Pages
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Fbricantes  MSYSTEM [M-System Co.,Ltd.]
Página de início  https://www.m-system.co.jp/
Logo MSYSTEM - M-System Co.,Ltd.

M6NXF1 Folha de dados(HTML) 6 Page - M-System Co.,Ltd.

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MODEL: M6NXF1
M6NXF1 SPECIFICATIONS
ES-7917 Rev.8 Page 6/7
http://www.m-system.co.jp/
FUNCTIONS
■ MOVING AVERAGE OUTPUT
The module samples input signals every H seconds and,
excluding U numbers of highest-value samples and L
numbers of lowest-value samples, outputs proportionally to
the average of the rest [N – (U + L)] of sampled data. When
a new input is sampled after another H seconds, it gives up
the oldest sample and calculates a new average including
the latest sample and outputs proportionally.
When the number of samples to be calculated equals 0 or
less, it outputs an error.
Parameters
H: Sampling cycle
(0.1000 to 100.0000 seconds)
N: Number of samples to be calculated
(1 to 128)
U: Number of highest-value samples to be cut off
(0 to 127)
L: Number of lowest-value samples to be cut off
(0 to 127)
■ DEAD-TIME COMPUTING
The module does not respond to an input signal for a
preset dead-time* duration.
In addition, with adjusting a time constant T, it generates
a first order lag output after the dead-time.
e –HNs
X0 (s) = ––––––– X1 (s)
1 + Ts
where
X1: Input
X0: Output
Dead time = H x N (s)
Parameters
H: Sampling cycle (0.1000 to 100.0000 seconds)
N: Numbers of samples to be calculated (1 to 128)
T: Time constant (0.0000 or 0.5000 to 100.0000 seconds)
*Output is refreshed every sampling cycle. The response
time may be delayed by 1 cycle at the maximum.
■ DELAY BUFFER
The module generates a first order lag output.
1
X0 (s) = ––––––– X1 (s)
1 + Ts
where
X1: Input
X0: Output
Parameters
T: Time constant (0.5000 to 100.0000 seconds)
H
H
INPUT
t
OUTPUT
t
N numbers
N numbers
average
INPUT
Step input with dead-time
t
OUTPUT
t
0
0
H x N
INPUT
Step input with dead-time plus time constant
t
OUTPUT
t
0
0
T
H x N
INPUT
Step input with time constant
t
OUTPUT
t
0
0
T


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