Because the maximum transmitter output level is -7 dB, and the maximum receiver input level is -10 dB, the receiver may be overdriven on a short link and may require a 3 dB attenuator. Connector allowances for the transmitter and receiver are included in the above power declaration.
Brand:HONEYWELL Model number:51303982-300
Colour:new Warranty: 12 months
Lead Time:3-day working day Country of origin: USA
Price: Please contact us Product weight:0.22kg
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51303982-300 Honeywell Programmable controller Brand new
Low Latency Mode
When the DIMODE parameter in DI24V and DI-SOE IOM FB is set to LowLatency, the channel's
inputs are sampled and processed every 5 msec for better response times when using Discrete
Loops that require low latency responses. In the case of DI-SOE, SOE event generation is not
supported when DIMODE is LowLatency. This mode will also not support Open Wire Detection.
12.12.2 OWDENBL changes in Project View
The following Open Wire Detection changes occur when the initial value of DIMODE = LowLatency
DIMODE and is modified:
l Changing the OWDENBL parameter value to TRUE is not allowed in LowLatency and SOE
modes.
l If this is done, the following error is displayed: 'Open Wire Detection cannot be enabled if
DIMODE of IO Module is configured as LowLatency or SOE.'
12.13 Enabling pulse proving in Pulse Input Module
To improve metering accuracy, turbine meters used for custody transfer purposes are often
“proved” in situ using the real process fluid at the correct flow rate. When a meter is being proved,
its flow is diverted such that the prover is downstream and in series with the meter. Thus the same
flow passes through the meter and the prover in series.
The prover is basically a length of pipe. Inside the pipe is a sphere which is driven around the pipe
by the pressure of the flow. In a bi-directional prover, the sphere can move in the forward or
reverse direction as determined by the position of the 4-way valve. As the sphere moves around
the pipe, it passes sphere detection switches. The swept volumes between all sphere switch
combinations (that is 1 and 3, 1 and 4, 2 and 3 and 2 and 4) are determined offline and are known
extremely accurately. The sphere switches are used to turn on and off a copy of the good pulses
from the meter being proved. Thus a total number of pulses can be obtained versus a known swept
volume and so the actual K factor of the meter being proved can be determined.
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We have the same series of models in stock. If you don't find the model you need, please contact us and we will provide you with an official quotation!
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