Transducer Block
December 2009
4-39
For instruments with relay A or C If increasing air
pressure at output A causes the shaft to turn
clockwise, enter Clockwise. If it causes the shaft to
turn counterclockwise, enter Counterclockwise.
For instruments with relay B If decreasing air
pressure at output B causes the shaft to turn
clockwise, enter Clockwise. If it causes the shaft to
turn counterclockwise, enter Counterclockwise.
Lever Style
Enter the lever style (LEVER_STYLE [85.10]) for
rotary actuators as either Pivot Point or Rack and
Pinion.
Lever Arm Length
Defines the lever arm length (MOMENT_ARM [85.11])
for rotary actuators.
Effective Area
Enter the actuator effective area (EFFECTIVE_AREA
[85.2]) in in
2
, cm
2
, or mm
2
.
Air
Select Opens or Closes, indicating the effect of
increasing air pressure (AIR [85.3]) on the valve travel.
Upper Bench Set
Enter the upper actuator operating pressure
(UPPER_BENCH_SET [85.5]).
Lower Bench Set
Enter the lower actuator operating pressure
(LOWER_BENCH SET [85.4]).
Nominal Supply Pressure
Enter the nominal instrument supply pressure
(NOMINAL_SUPPLY PRESSURE [85.6]).
Spring Rate
Enter the actuator spring rate (SPRING_RATE [85.7])
in lbs
in or N
m.
Reference
Trim Style 1
Enter the valve trim style (TRIM_STYLE_1 [84.9]).
Trim Style 2
Enter the valve trim style (TRIM_STYLE_2 [84.10]).
Stroking Time Open
Enter the time required to stroke the valve from closed
to open (STROKING_TIME_OPEN [85.8]).
Stroking Time Close
Enter the time required to stroke the valve from open
to close (STROKING_TIME_CLOSE [85.9]).
MAI Channel Map
(TB
>
Configure/Setup
>
Detailed Setup
>
MAI
Channel Map)
Allows the user to specify which transducer block
parameter is available through each of the MAI Block
channels (MAI_CHANNEL_1 through
MAI_CHANNEL_8 [95.1 through 95.8]). Transducer
block parameters available to each channel:
1
1
= FINAL_VALUE
1
2
= TRAVEL_TARGET
1
3
= FINAL_POSITION_VALUE
1
4
= TRAVEL
1
5
= SUPPLY_PRESS
1
6
= ACT_PRESS_A
1
7
= ACT_PRESS_B
1
8
= ACT_PRESS_DIFF
1
9
= DRIVE_SIGNAL
10
= TRAVEL_DEVIATION
11
= TEMPERATURE
12
= CYCLE_COUNT
13
= TRAVEL_ACCUM
4
Summary of Contents for Fisher FIELDVUE DVC6000f
Page 54: ...DVC6000f Digital Valve Controllers December 2009 2 30 2 ...
Page 62: ...DVC6000f Digital Valve Controllers December 2009 4 2 4 ...
Page 127: ...Transducer Block December 2009 4 67 4 ...
Page 141: ...AO Function Block December 2009 4 81 4 ...
Page 207: ...MAI Function Block December 2009 4 147 4 ...
Page 219: ...DO Function Block December 2009 4 159 4 ...
Page 231: ...DI Function Block December 2009 4 171 4 ...
Page 302: ...DVC6000f Digital Valve Controllers December 2009 8 16 8 ...
Page 306: ...DVC6000f Digital Valve Controllers December 2009 A 4 A ...
Page 350: ...DVC6000f Digital Valve Controllers December 2009 E 6 E ...
Page 368: ...DVC6000f Digital Valve Controllers December 2009 F 18 F ...
Page 372: ...DVC6000f Digital Valve Controllers December 2009 Glossary 4 Notes G Glossary ...
Page 382: ...DVC6000f Digital Valve Controllers December 2009 Index 10 F Index ...