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Linear, Rotary and Quarter-Turn
Control Valve Actuators
CMA Range
Keeping the World Flowing
CTI Controltech
San Ramon, CA USA
925-208-4250
www.cti-ct.com
2
	
	Section	Page
Product Overview 	 3
CMA Actuator Range 	 4
Advanced Design Features 	 5
Advanced Engineering 	 6
Control and Monitoring	 8
Performance Summaries	 9
General Dimensions
	CMA	 10
	 CMA Local Controls	 11
	 CMA Local Controls and Reserve Power Pack	 12
Design Specifications
	 Vibration, Shock and Noise	 13
	 Operating Temperature	 13
	 Paint Finish	 13
Approvals
	 Non-Hazardous & Hazardous 	 14
	 Certified Enclosures
	 Regulatory Standards	 15
Contents
Rotork is the global market leader in valve
automation and flow control. Our products and
services help organisations around the world
improve efficiency, assure safety and protect
the environment.
We strive always for technical excellence, innovation and
the highest quality standards in everything we do. As a
result, our people and products remain at the forefront of
flow control technology.
Uncompromising reliability is a feature of our entire product
range, from our flagship electric actuator range through to
our pneumatic, hydraulic and electro-hydraulic actuators,
as well as instruments, gearboxes and valve accessories.
Rotork is committed to providing first class support to
each client throughout the whole life of their plant, from
initial site surveys to installation, maintenance, audits and
repair. From our network of national and international
offices, our engineers work around the clock to maintain
our position of trust.
Rotork. Keeping the world flowing.
Keeping the World Flowing 3
This brochure provides a comprehensive
overview of the applications and associated
functions available with the Rotork CMA
actuators – comprising CML linear, CMQ
quarter-turn and CMR rotary actuators.
Building on Rotork’s historical success with innovative
technology, the CMA offers a highly accurate and
responsive method of automating damper drives, control
valves and metering pumps without the complexity of
spring diaphragm actuators.
With an increased focus on production costs and
efficiency, accurate control is paramount.
Product Overview
4
CMA Linear, Quarter-turn and Rotary Actuators
The Rotork CMA delivers a range of sizes suitable for
almost all linear, quarter-turn and rotary control valve and
other applications requiring exact position control and
continuous modulation.
Configuration
The Rotork CMA range provides for simple safe and easy
set up via an internal electronic 6-segment LCD display and
pushbutton configuration.
Features
•	 Powered by single-phase or 24 V direct current supplies
•	 Linear, quarter-turn and rotary drive action
•	 Optional Local Controls including positional display
•	 Optional Reserve Power Pack (RPP) including local controls
and positional display
•	 Permanently lubricated and maintenance free drive train
•	 Optional configurable ESD input for end of travel or stayput
emergency shutdown function
•	 Accurate and repeatable position control
•	 4 to 20 mA loop powered, feedback signal
•	 All CMA units have the ability to adjust their speed
50-100% of operation
•	 Seating torque/thrust capability (60 -150% of rated) for
required tight seating of the valve in the CLOSE position
•	 Wide standard ambient temperature range:
EP Product:	 -4 to +149 °F	 (-20 to 65 °C)
WT Product:	 -22 to +158 °F	 (-30 to 70 °C)
RPP Product:	 -4 to +140 °F	 (-20 to 60 °C)
•	 Manual override standard
•	 Electronic thrust/torque limiting
•	 Two standard adjustable position relay outputs
•	 Digital communication options including PakscanTM
,
HART®
, Foundation Fieldbus®
, Profibus®
, DeviceNet®
and Modbus®
are available
•	 For discreet hardwired control, the optional RIRO (Remote
In, Remote Out) can be fitted. The option allows the user to
hardwire a discreet digital control (24 VDC nominal or 120
VAC nominal) for open and close operation. The option
also allows up to four extra relay contacts to be available.
CMA Actuator Range
CML
Linear
Actuator
CMQ
Quarter-turn
Actuator
CMR
Rotary
Actuator
RIRO
5Keeping the World Flowing
STATUS
LOCAL
LOCAL
RELAYS
LOCAL
POSIT
Advanced Design Features
CMA Advanced Design Features
•	 Constantly changing process demands are no problem
to the continuous modulating capability of the CMA.
•	 The CMA encompasses advanced design in a compact,
robust and reliable package.
•	 The CMA provides consistent and precise performance
regardless of changing process conditions.
•	 The brushless DC motor technology provides high
dynamic performance with a maintenance free, high
endurance drive train.
•	 Thrust or torque is instantly delivered to the valve to
provide smooth operation without any stick/slip effect to
disrupt the process variable. The sturdy mechanical drive
train eliminates the unwanted movements associated with
spring diaphragm actuators.
•	 The CML and CMQ standard build includes an anti-
backdrive mechanism capable of resisting any backdrive
from the load, up to 125% of the rated thrust or torque
of the actuator.
•	 Compact and flexible, the CMA range can be mounted on
any type or make of valve including all the leading control
valve makers’ products.
•	 Other applications such as pump stroke control are
perfect for the CMA with its high accuracy, especially for
applications requiring hazardous area certifications.
Figure 1: Position Indication
Figure 2: Relays Set-up
Figure 3: Actuator Status
6
1 Encoder Technology
The CMA utilises absolute encoder technology where a unique
digital code corresponds to the angular position (CMQ), stroke
length (CML) or rotary (CMR) position of the actuator.
To achieve high resolution, the position sensor location
eliminates any backlash effect in the gearing. The sensor is
12-bit for quarter-turn and linear actuators and 10-bit for
rotary actuators, fitted at the output gear stages, removing any
internal backlash effect that may exist in the drive train.
2 User Interface
Two programmable relays energize upon reaching a
desired position or any other available condition among the
programmable options.
Field selectable adjustments for:
•	Deadband
•	 Zero and span
•	 Command signal type
•	 Standard or reverse acting
•	 Manual-auto operation
•	 Fail to position on loss of signal capability
3 DC Brushless Motor
The CMA uses a high efficiency, continuous rated, brushless
DC motor allowing for maintenance-free operation with
continuous modulation duty.
4 Hand Drive
A hand drive mechanism is provided as standard for all CMA
actuators to allow manual operation of the valve. Pressing
down on the hand-knob shaft engages a gear in the upper
section of the drive train and releasing the knob causes the
spring to disengage the gear.
5 Geartrain
The simple yet durable high efficiency spur gear drive is
lubricated for life with proven high reliability.
6 Output Drive
The CMQ base conforms to MSS SP-101 or ISO 5211.
CML and CMR may be adapted to suit individual valves.
CML
Linear Actuator
CMA Range Standard Unit
LOCAL
POSIT
6
4
1
2
CMQ
Quarter-Turn Actuator
2
5 6
4
CMR
Rotary Actuator
61
2
4
5
3
Advanced Engineering
7Keeping the World Flowing
CMA Range with Options
Optional Local Controls and Display
The CMA range of linear, quarter-turn and rotary actuators,
simplifies initial engineering and procurement requirements.
The display provides local control to CMA range actuators
through selector switches and an LED backlit display for clear
valve position indication.
The CMA range local controls option consists of the
following features:
•	 Linear, quarter-turn and rotary control with continuous
indication of valve position in 0.1% increments
•	 Large, easy-to-read screen with icons for fast
diagnostic feedback
•	 Vivid display showing actuator position, critical and
non-critical fault symbols
•	 Valve position as a percentage of set valve travel
(e.g. 100% = Open)
•	 Control selection knobs provide Local, Stop or Remote
operation mode selection and Open or Close input
commands for position adjustment in local control mode
•	 Tamper resistance capability for the mode selection
knob allows each mode to be locked in place preventing
unauthorized changes to actuator operation
CML
Linear Actuator
CMQ
Quarter-Turn Actuator
CMR
Rotary Actuator
CMQ
Quarter-Turn Actuator
CML
Linear Actuator
Optional Local Controls and Display Plus Reserve
Power Pack (RPP)
This option includes all the benefits of the local controls option
with the addition of power and signal-loss action functionality:
•	 Linear and quarter-turn control with continuous
indication of valve position and fail-to-position functionality
•	 Reserve Power Pack (RPP) provides the actuator with
enough stored energy to perform a predetermined action
on mains power failure
•	 Position indication during power loss action on the
LCD display
•	 Vivid display showing actuator position, critical and
non-critical fault symbols plus additional RPP status
•	 Short, 2 minute charge time for the reserve power pack,
once mains power is reinstated, allows actuation control to
continue quickly and efficiently – the LCD display will flash
and operation is inhibited during charging
•	 Super capacitors do not suffer from the ‘memory’ effect
caused by repeat partial charge/discharge cycles
•	 Power loss action is easily configured via the standard
CMA Human-Machine Interface (HMI)
Advanced Engineering
Note: Actuators not displayed in proportion to each other.
8
Control & Monitoring
Bus Network Compatibility
In addition to Rotork's own PakscanTM
network system,
Rotork actuators are compatible with most industry standard
fieldbus systems via network cards that are fitted in the main
electronics enclosure.
The Rotork Pakscan system is a world leader in flow control
automation. First launched in 1986, Pakscan has been at the
forefront of network technology since its inception, helping to
control over 100,000 actuators worldwide.
Pakscan network systems offer the customer unrivalled
control, reliability and support. This is backed-up by a
worldwide service and support network to help keep your
plant running 24 hours a day, 7 days a week.
The Pakscan system provides the vital link between valve
actuators and supervisory control. It is an intelligent, reliable,
high integrity, fast and easy to install network between field
equipment and the control room, designed specifically for use
with Rotork products.
•	 Defined transaction times based on cable parameters
and length
•	 Automatic cable monitoring and fault isolation
•	 Field cable fault tolerant
•	 Fully pre-programmed master station
•	 Master station with HMI Screen, keypad and built-in web
server for full system diagnostics
•	 Hot standby master station capability
•	 Easily expanded
•	 Simple Modbus RTU (RS232/RS485) / TCP (Ethernet)
host communications
•	 Field and host communication diagnostics and data logging
•	 Commission without the need for a host DCS or PLC
•	 Proven track record
•	 Over 100,000 installed nodes
•	 Multiple host connections supported
•	 Network with the capacity for up to 240 actuators on a
single 20 km 2-wire loop
See publication PUB059-030 for further details.
The HART®
signal consists of two parts, the analogue 4 to
20 mA current loop and a superimposed digital variable
frequency signal. Traditionally the 4 to 20 mA loop is used
for control and the superimposed digital signal for feedback,
diagnostics and configuration. Configuration and feedback
using the HART digital signal can be achieved using the host
connected to the actuator to select the parameters required.
See PUB060-006 for further details
The Rotork Foundation Fieldbus®
module connects directly
onto the standard Foundation H1 bus system. The ability to
report extensive actuator feedback within a single input block
as well as system diagnostic information makes Rotork the
first choice for use with a Foundation Fieldbus system.
See PUB060-003 for further details.
Rotork's DeviceNet®
module Electronic Data Sheet description
file is used to set up the actuator parameters to allow the
systems performance to be optimised. The Rotork module has
been certified by the Open DeviceNet Vendor Association.
See PUB060-004 for further details.
Profibus®
is a leading international network protocol for
Rotork's Profibus DP module uses DP-V0 cyclic comms and
extended actuator diagnostics and configuration is included
in the DP-V1 acyclic data. EDD and DTM files allow the Rotork
device to be incorporated into asset management systems,
whilst the GSD file guarantees device interoperability.
See PUB060-002 for further details.
Rotork’s Modbus®
module allows actuators to be connected
to a 2-wire RS485 network for direct communication to a PLC
or DCS using Modbus RTU protocol.
See PUB060-005 for further details.
For discrete hardwired control, the optional RIRO (Remote
In Remote Out) can be fitted. The option allows the user to
hardwire a discrete digital control (24 VDC nominal or 120
VAC nominal) for open and close operation. The option also
allows up to four extra relay contacts to be available for
various functions.
See PUB094-004 for further details.
9Keeping the World Flowing
Performance Summaries
Ultimate performance will be determined by the process, valve and
control system.
Positioning Control Performance
The following control positioning performance is based
on a 4 to 20 mA control system with CMA operating over
its maximum stroke, rated speed and constant force with
minimum deadband set and with a linear demand/valve
characteristic. Resolution is defined as: minimum change in
input signal required for guaranteed response.
4 to 20 mA Control - Positioning: % demand signal range
		 Equal to or better than:
Resolution	 Linear and Quarter-turn 	 0.2%
	
	 Rotary	2o
Linearity		 1%
Position Feedback Performance
The following position feedback performance is based on
CMA operating at maximum stroke with a linear characteristic
set. Feedback calibration is automatic to the set limit
positions. Resolution is defined as: minimum change in
position/thrust required for feedback signal change.
4 to 20 mA Feedback - % feedback signal range
		 Equal to or better than:
Resolution	 Linear and Quarter-turn 	 0.2%
	
	 Rotary	2o
Linearity		 1%
Model
Min Modulating
Thrust (lbf)
Min Modulating
Thrust (N)
Max
Modulating
Thrust (lbf)
Max
Modulating
Thrust (N)
Max
Seating
Thrust (lbf)*
Max
Seating
Thrust (N)*
Max Speed
(inches/sec)
Max Speed
(mm/sec)
Stroke
(inches)
Stroke
(mm)
CML-100 60 266.9 100 444.8 150.00* 667.2* 0.25 6.35 1.5 38.1
CML-250 150 667.2 250 1112.1 375.00* 1668.1* 0.13 3.18 1.5 38.1
CML-750 450 2001.7 750 3336.2 1125.00* 5004.2* 0.13 3.18 2.0 50.8
CML: Linear Actuator
CMR: Rotary Actuator
Model
Min Torque
(lbf.in)
Min Torque
(Nm)
Max Torque
(lbf.in)
Max Torque
(Nm)
Max Speed
(RPM)
Total turns
available
CMR-50 20 2.3 50 5.6 11 90º to 320 turns in 2º increments
CMR-100 40 4.5 100 11.3 10 90º to 320 turns in 2º increments
CMR-200 80 9.0 200 22.6 5 90º to 320 turns in 2º increments
CMR-89 35.6 4.0 89 10.1 24 90º to 320 turns in 2º increments
CMR-125 50 5.6 125 14.1 18 90º to 320 turns in 2º increments
CMR-250 100 11.3 250 28.2 10 90º to 320 turns in 2º increments
CMR-250/GB3 160 18.1 400 45.2 5.8 90º to 200 turns in 3.2º increments
Model
Min Modulating
Torque (lbf.in)
Min Modulating
Torque (Nm)
Max Modulating
Torque (lbf.in)
Max Modulating
Torque (Nm)
Max Seating
Torque (lbf.in)*
Max Seating
Torque (Nm)*
CMQ High Speed
Fastest Time for
1/4 Turn (secs)
CMQ Self Locking
Fastest Time for
1/4 Turn (secs)
CMQ-250 150 16.9 250 28.2 375* 42.4* 5 10
CMQ-500 300 33.9 500 56.5 750* 84.7* 7.5 15
CMQ-1000 600 67.8 1000 113.0 1100* 124.3* 11 22
CMQ: Quarter-Turn Actuator
Mechanical Performance
The values shown in the performance charts relate to the
maximum available speeds or fastest operating times. These
speeds can be slowed down to 50% of the maximum value
in 1% increments.
The rated force (thrust or torque) for each size of actuator is
detailed below. Operating time tolerance +/-10%.
The CML and CMQ can resist backdriving forces from the
valve up to 125% of rated load without movement. All CMA
actuators are factory calibrated. CMA resolution is 0.20%.
Note: The CMQ low speed units are normally self-locking up to 125% of rated load. The CMQ high speed unit is not self-locking.
* Seating Torque and Thrust – Some applications require tight seating at the valve in the close position. The CMA has a selective seating capability.
The seating torque/thrust values shown for CML and CMQ are the forces available to close a valve tightly at it’s end of travel. The seating torque/thrust
option can be selected and configured during setup (at “close action“ selection, choose “torque” or “thrust” as applicable).
10
General Dimensions
CML
Linear Actuator
CMQ
Quarter-Turn
Actuator
CMR
Rotary Actuator
CMA - General Dimensions
Model a b c d
CML-100/250 (mm) 142.60 313.10 72.10 161.50
CML-100/250 (in) 5.61 12.33 3.84 6.35
CML-750 (mm) 148.0 429.50 55.40 176.50
CML-750 (in) 5.83 16.91 2.18 6.95
Model a b c d
CMQ-250/500 (mm) 142.60 326.70 16.0 178.10
CMQ-250/500 (in) 5.61 12.86 0.63 7.010
CMQ-1000 (mm) 148.0 355.80 16.0 211.30
CMQ-1000 (in) 5.83 14.01 0.63 8.32
Model a b c d
CMR-50/100/200 (mm) 142.60 299.10 31.80 161.50
CMR-50/100/200 (in) 5.61 11.76 1.25 6.35
CMR-89/125/250 (mm) 148.0 321.80 31.80 176.50
CMR-89/125/250 (in) 5.83 12.67 1.25 6.95
a*
d
b
c
a*
d
b
c
a*
d
b
c
Note: Drawings are for reference only. Please contact Rotork for details.
Dimensions with ‘*’
indicate cover
removal allowance
Dimensions with ‘*’
indicate cover
removal allowance
Dimensions with ‘*’
indicate cover
removal allowance
a*
b
c
Model a b c
CMR-250/GB3 (mm) 148.08 391.40 176.10
CMR-250/GB3 (in) 5.83 15.41 6.93
Dimensions with ‘*’
indicate cover
removal allowance
CMR-250/GB3
Rotary Actuator
11Keeping the World Flowing
CML
Linear Actuator
CMQ
Quarter-Turn
Actuator
CMR
Rotary Actuator
CMA Local Controls - General Dimensions
Model a b c d
CML-100/250 (mm) 180.60 354.0 72.0 173.0
CML-100/250 (in) 7.11 13.94 2.84 6.80
CML-750 (mm) 186.0 467.50 55.40 188.0
CML-750 (in) 7.32 18.41 2.18 7.40
Model a b c d
CMQ-250/500 (mm) 180.60 365.10 16.0 189.60
CMQ-250/500 (in) 7.11 14.37 0.76 7.46
CMQ-1000 (mm) 180.60 393.80 16.0 188.0
CMQ-1000 (in) 7.11 15.50 0.76 7.40
Model a b c d
CMR-50/100/200 (mm) 180.60 337.10 31.80 173.0
CMR-50/100/200 (in) 7.11 13.27 1.25 6.80
CMR-89/125/250 (mm) 180.60 359.80 31.80 188.0
CMR-89/125/250 (in) 7.11 14.17 1.25 7.40
Dimensions with ‘*’
indicate cover
removal allowance
Dimensions with ‘*’
indicate cover
removal allowance
Dimensions with ‘*’
indicate cover
removal allowance
General Dimensions
a*
b
c
d
a*
b
c
d
a*
b
d
c
Note: Drawings are for reference only. Please contact Rotork for details.
12
General Dimensions
CML
Linear Actuator
CMQ
Quarter-Turn
Actuator
CMA Local Controls & Reserve Power Pack - General Dimensions
Model a b c d
CML-100/250 (mm) 242.60 416.50 53.0 173.0
CML-100/250 (in) 9.55 16.39 2.09 6.80
CML-750 (mm) 242.60 524.50 55.40 188.0
CML-750 (in) 9.55 20.65 2.18 7.40
Model a b c d
CMQ-250/500 (mm) 242.60 427.60 16.0 189.60
CMQ-250/500 (in) 9.55 16.83 0.76 7.46
CMQ-1000 (mm) 242.60 450.80 16.0 188.0
CMQ-1000 (in) 9.55 17.75 0.76 7.40
Dimensions with ‘*’
indicate cover
removal allowance
Dimensions with ‘*’
indicate cover
removal allowance
a*
b
c
d
a*
b
c
d
Note: Drawings are for reference only. Please contact Rotork for details.
13Keeping the World Flowing
Design Specifications
Vibration, Shock and Noise
CMA actuators are suitable for applications where vibration and shock severity does not exceed the following:
Type Level
Plant induced vibration 1 g RMS total for all vibration within the frequency range of 10 to 1000Hz.
Shock 5 g peak acceleration.
Seismic 2 g acceleration over a frequency range of 1 to 50 Hz if it is to operate during and after the event.
5 g over a frequency range of 1 to 50 Hz if it is only required to maintain structural integrity.
Emitted noise Independent tests have shown that at 1 m generated noise does not exceed 61 db (A).
Levels quoted are those present at the actuator mounting interface. It should be noted that the effects of vibration are cumulative and therefore an actuator
subjected to significant levels may have reduced life.
Operating Temperature
CMA actuators are suitable for operation within the ambient temperature ranges shown below. Refer to section 5 for hazardous area
certification operating temperature restrictions. For temperatures outside this range please contact Rotork. Prior to installation actuators
should be stored in a dry location with a temperature range not exceeding -50 to +70 °C (-58 to 158 °F).
Actuator Type Standard Temperature* Low Temperature Option*
CML / CMQ / CMR -30 to +70 °C (-22 to +158 °F) -40 to +60 °C (-40 to +140 °F)
*Hazardous Area certification determines permissible operating temperature range. Refer to section 5.
Paint Finish
The standard paint finish is RAL5010 (blue) polyester powder coated to Rotork specification RS237. Optional paint colours and
finishes are available, please contact Rotork for more information.
Unpainted units available for OEM customers.
14
Approvals
Non-Hazardous and Hazardous Certified Enclosures
All CMA actuator hazardous and non-hazardous area
enclosures are watertight to IP66, IP67 and NEMA 4.
CMA actuators are available with the following enclosure
types for which the ambient working temperature ranges
are stated.
The limits of frequency of operation are a function of the load
on the actuator and the ambient temperature.
Under the heaviest load at the highest temperature the
capability would be not less than 2,000 starts in one hour, in
favorable load conditions the number of starts per hour would
be infinite.
Where option temperatures are indicated, changes to
some actuator components are required and therefore the
temperature requirement must be specified. Hazardous area
approvals for other country standards are available; please
contact Rotork.
CMA range actuators are built in accordance with the
following standards:
Non-Hazardous Area Enclosures
WT: Standard Watertight
Standard Rating Standard Temperature Low Temperature Option
BS EN 60529 (1992) IP67 -30 to +70 °C (-22 to +158 ºF) -40 to +60 °C (-40 to +140 ºF)
NEMA (US) 4 & 6 -30 to +70 °C (-22 to +158 ºF) -40 to +60 °C (-40 to +140 ºF)
CSA (Canadian) 4 & 6 -30 to +70 °C (-22 to +158 ºF) -40 to +60 °C (-40 to +140 ºF)
Hazardous Area Enclosures
European ATEX Directive
Directive/Standard Rating Standard Temperature Low Temperature Option
Directive = 94/9/EC II 2GD -20 to +65 °C (-4 to +150 ºF)
-40 to +60 °C (-40 to +140 ºF)Standard = EN 60079-0
EN 60079-1
Ex d IIB T4 Gb
Ex tb IIIC T85°C Db
Units fitted with UPS or HMI option
-20 to +60 °C (-4 to 140 ºF)
International Hazardous Area IECEx
Directive/Standard Rating Standard Temperature Low Temperature Option
No Directive II 2GD -20 to +65 °C (-4 to +150 ºF)
-40 to +60 °C (-40 to +140 ºF)Standard = IEC 60079-0
IEC 60079-1
Ex d IIB T4 Gb
Ex tb IIIC T85°C Db
Units fitted with UPS or HMI option
-20 to +60 °C (-4 to 140 ºF)
USA Hazardous Area – Factory Mutual Certified Explosionproof to NEC Article 500
Class Division Group Standard Temperature Low Temperature Option
I 1 C, D
-20 to +65 °C (-4 to +150 ºF) -40 to +60 °C (-40 to +140 ºF)
II 1 E, F, G
Enclosures Types 4/IP67
Canadian Hazardous Area – Canadian Standards Association (CSA EP) to NEC Article 500
Class Division Group Standard Temperature Low Temperature Option
I 1 C, D
-20 to +65 °C (-4 to +150 ºF) -40 to +60 °C (-40 to +140 ºF)
II 1 E, F, G
15Keeping the World Flowing
Approvals
Regulatory Standards
Compliance with the following European Economic Community Directives permits the CMA range of actuators to be CE marked
under the provision of the Machinery Directive.
Directive Applicable to Reference
Electromagnetic compatibility
(EMC)
Immunity to / emissions of
electromagnetic energy
2004/108/EC by application of BS EN 61326-1:2006
Low Voltage (LV) Electrical Safety 2006/95/EC by application of BS EN 601010-1:2010
Machinery* Product Safety Actuators follow the provision of the Machinery Directive
(2006/42/EC) by the application of BS EN ISO12100-
1:2003+A1:2009.
The CMA must not be put into service until the equipment
into which it is being incorporated has been declared to be in
conformity with the provisions of the European Community
Machinery Directive 98/37/EC and 98/79/EC*
Waste Electrical Equipment Exempt under the scope
*Actuators are not classified as machines within the scope of the machinery directive.
Contact Rotork for a copy of our Declaration of Conformity and Incorporation.
Rotork plc
Brassmill Lane, Bath, UK
tel	 +44 (0)1225 733200
fax	 +44 (0)1225 333467
email	mail@rotork.com
Keeping the World Flowing
PUB094-001-00
Issue 06/15
As part of a process of on-going product development, Rotork reserves the right to amend
and change specifications without prior notice. Published data may be subject to change.
For the very latest version release, visit our website at www.rotork.com
The name Rotork is a registered trademark. Rotork recognises all registered trademarks.
Published and produced in the UK by Rotork Controls Limited. POWTG0216
www.rotork.com
A full listing of our worldwide sales and
service network is available on our website.
USA
Rotork Controls Inc.
tel	 +1 (585) 247 2304
fax	 +1 (585) 247 2308
email	info@rotork.com
Rotork is a corporate
member of the Institute
of Asset Management

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Rotork CMA Compact Electric Valve Actuators

  • 1. Linear, Rotary and Quarter-Turn Control Valve Actuators CMA Range Keeping the World Flowing CTI Controltech San Ramon, CA USA 925-208-4250 www.cti-ct.com
  • 2. 2 Section Page Product Overview 3 CMA Actuator Range 4 Advanced Design Features 5 Advanced Engineering 6 Control and Monitoring 8 Performance Summaries 9 General Dimensions CMA 10 CMA Local Controls 11 CMA Local Controls and Reserve Power Pack 12 Design Specifications Vibration, Shock and Noise 13 Operating Temperature 13 Paint Finish 13 Approvals Non-Hazardous & Hazardous 14 Certified Enclosures Regulatory Standards 15 Contents Rotork is the global market leader in valve automation and flow control. Our products and services help organisations around the world improve efficiency, assure safety and protect the environment. We strive always for technical excellence, innovation and the highest quality standards in everything we do. As a result, our people and products remain at the forefront of flow control technology. Uncompromising reliability is a feature of our entire product range, from our flagship electric actuator range through to our pneumatic, hydraulic and electro-hydraulic actuators, as well as instruments, gearboxes and valve accessories. Rotork is committed to providing first class support to each client throughout the whole life of their plant, from initial site surveys to installation, maintenance, audits and repair. From our network of national and international offices, our engineers work around the clock to maintain our position of trust. Rotork. Keeping the world flowing.
  • 3. Keeping the World Flowing 3 This brochure provides a comprehensive overview of the applications and associated functions available with the Rotork CMA actuators – comprising CML linear, CMQ quarter-turn and CMR rotary actuators. Building on Rotork’s historical success with innovative technology, the CMA offers a highly accurate and responsive method of automating damper drives, control valves and metering pumps without the complexity of spring diaphragm actuators. With an increased focus on production costs and efficiency, accurate control is paramount. Product Overview
  • 4. 4 CMA Linear, Quarter-turn and Rotary Actuators The Rotork CMA delivers a range of sizes suitable for almost all linear, quarter-turn and rotary control valve and other applications requiring exact position control and continuous modulation. Configuration The Rotork CMA range provides for simple safe and easy set up via an internal electronic 6-segment LCD display and pushbutton configuration. Features • Powered by single-phase or 24 V direct current supplies • Linear, quarter-turn and rotary drive action • Optional Local Controls including positional display • Optional Reserve Power Pack (RPP) including local controls and positional display • Permanently lubricated and maintenance free drive train • Optional configurable ESD input for end of travel or stayput emergency shutdown function • Accurate and repeatable position control • 4 to 20 mA loop powered, feedback signal • All CMA units have the ability to adjust their speed 50-100% of operation • Seating torque/thrust capability (60 -150% of rated) for required tight seating of the valve in the CLOSE position • Wide standard ambient temperature range: EP Product: -4 to +149 °F (-20 to 65 °C) WT Product: -22 to +158 °F (-30 to 70 °C) RPP Product: -4 to +140 °F (-20 to 60 °C) • Manual override standard • Electronic thrust/torque limiting • Two standard adjustable position relay outputs • Digital communication options including PakscanTM , HART® , Foundation Fieldbus® , Profibus® , DeviceNet® and Modbus® are available • For discreet hardwired control, the optional RIRO (Remote In, Remote Out) can be fitted. The option allows the user to hardwire a discreet digital control (24 VDC nominal or 120 VAC nominal) for open and close operation. The option also allows up to four extra relay contacts to be available. CMA Actuator Range CML Linear Actuator CMQ Quarter-turn Actuator CMR Rotary Actuator RIRO
  • 5. 5Keeping the World Flowing STATUS LOCAL LOCAL RELAYS LOCAL POSIT Advanced Design Features CMA Advanced Design Features • Constantly changing process demands are no problem to the continuous modulating capability of the CMA. • The CMA encompasses advanced design in a compact, robust and reliable package. • The CMA provides consistent and precise performance regardless of changing process conditions. • The brushless DC motor technology provides high dynamic performance with a maintenance free, high endurance drive train. • Thrust or torque is instantly delivered to the valve to provide smooth operation without any stick/slip effect to disrupt the process variable. The sturdy mechanical drive train eliminates the unwanted movements associated with spring diaphragm actuators. • The CML and CMQ standard build includes an anti- backdrive mechanism capable of resisting any backdrive from the load, up to 125% of the rated thrust or torque of the actuator. • Compact and flexible, the CMA range can be mounted on any type or make of valve including all the leading control valve makers’ products. • Other applications such as pump stroke control are perfect for the CMA with its high accuracy, especially for applications requiring hazardous area certifications. Figure 1: Position Indication Figure 2: Relays Set-up Figure 3: Actuator Status
  • 6. 6 1 Encoder Technology The CMA utilises absolute encoder technology where a unique digital code corresponds to the angular position (CMQ), stroke length (CML) or rotary (CMR) position of the actuator. To achieve high resolution, the position sensor location eliminates any backlash effect in the gearing. The sensor is 12-bit for quarter-turn and linear actuators and 10-bit for rotary actuators, fitted at the output gear stages, removing any internal backlash effect that may exist in the drive train. 2 User Interface Two programmable relays energize upon reaching a desired position or any other available condition among the programmable options. Field selectable adjustments for: • Deadband • Zero and span • Command signal type • Standard or reverse acting • Manual-auto operation • Fail to position on loss of signal capability 3 DC Brushless Motor The CMA uses a high efficiency, continuous rated, brushless DC motor allowing for maintenance-free operation with continuous modulation duty. 4 Hand Drive A hand drive mechanism is provided as standard for all CMA actuators to allow manual operation of the valve. Pressing down on the hand-knob shaft engages a gear in the upper section of the drive train and releasing the knob causes the spring to disengage the gear. 5 Geartrain The simple yet durable high efficiency spur gear drive is lubricated for life with proven high reliability. 6 Output Drive The CMQ base conforms to MSS SP-101 or ISO 5211. CML and CMR may be adapted to suit individual valves. CML Linear Actuator CMA Range Standard Unit LOCAL POSIT 6 4 1 2 CMQ Quarter-Turn Actuator 2 5 6 4 CMR Rotary Actuator 61 2 4 5 3 Advanced Engineering
  • 7. 7Keeping the World Flowing CMA Range with Options Optional Local Controls and Display The CMA range of linear, quarter-turn and rotary actuators, simplifies initial engineering and procurement requirements. The display provides local control to CMA range actuators through selector switches and an LED backlit display for clear valve position indication. The CMA range local controls option consists of the following features: • Linear, quarter-turn and rotary control with continuous indication of valve position in 0.1% increments • Large, easy-to-read screen with icons for fast diagnostic feedback • Vivid display showing actuator position, critical and non-critical fault symbols • Valve position as a percentage of set valve travel (e.g. 100% = Open) • Control selection knobs provide Local, Stop or Remote operation mode selection and Open or Close input commands for position adjustment in local control mode • Tamper resistance capability for the mode selection knob allows each mode to be locked in place preventing unauthorized changes to actuator operation CML Linear Actuator CMQ Quarter-Turn Actuator CMR Rotary Actuator CMQ Quarter-Turn Actuator CML Linear Actuator Optional Local Controls and Display Plus Reserve Power Pack (RPP) This option includes all the benefits of the local controls option with the addition of power and signal-loss action functionality: • Linear and quarter-turn control with continuous indication of valve position and fail-to-position functionality • Reserve Power Pack (RPP) provides the actuator with enough stored energy to perform a predetermined action on mains power failure • Position indication during power loss action on the LCD display • Vivid display showing actuator position, critical and non-critical fault symbols plus additional RPP status • Short, 2 minute charge time for the reserve power pack, once mains power is reinstated, allows actuation control to continue quickly and efficiently – the LCD display will flash and operation is inhibited during charging • Super capacitors do not suffer from the ‘memory’ effect caused by repeat partial charge/discharge cycles • Power loss action is easily configured via the standard CMA Human-Machine Interface (HMI) Advanced Engineering Note: Actuators not displayed in proportion to each other.
  • 8. 8 Control & Monitoring Bus Network Compatibility In addition to Rotork's own PakscanTM network system, Rotork actuators are compatible with most industry standard fieldbus systems via network cards that are fitted in the main electronics enclosure. The Rotork Pakscan system is a world leader in flow control automation. First launched in 1986, Pakscan has been at the forefront of network technology since its inception, helping to control over 100,000 actuators worldwide. Pakscan network systems offer the customer unrivalled control, reliability and support. This is backed-up by a worldwide service and support network to help keep your plant running 24 hours a day, 7 days a week. The Pakscan system provides the vital link between valve actuators and supervisory control. It is an intelligent, reliable, high integrity, fast and easy to install network between field equipment and the control room, designed specifically for use with Rotork products. • Defined transaction times based on cable parameters and length • Automatic cable monitoring and fault isolation • Field cable fault tolerant • Fully pre-programmed master station • Master station with HMI Screen, keypad and built-in web server for full system diagnostics • Hot standby master station capability • Easily expanded • Simple Modbus RTU (RS232/RS485) / TCP (Ethernet) host communications • Field and host communication diagnostics and data logging • Commission without the need for a host DCS or PLC • Proven track record • Over 100,000 installed nodes • Multiple host connections supported • Network with the capacity for up to 240 actuators on a single 20 km 2-wire loop See publication PUB059-030 for further details. The HART® signal consists of two parts, the analogue 4 to 20 mA current loop and a superimposed digital variable frequency signal. Traditionally the 4 to 20 mA loop is used for control and the superimposed digital signal for feedback, diagnostics and configuration. Configuration and feedback using the HART digital signal can be achieved using the host connected to the actuator to select the parameters required. See PUB060-006 for further details The Rotork Foundation Fieldbus® module connects directly onto the standard Foundation H1 bus system. The ability to report extensive actuator feedback within a single input block as well as system diagnostic information makes Rotork the first choice for use with a Foundation Fieldbus system. See PUB060-003 for further details. Rotork's DeviceNet® module Electronic Data Sheet description file is used to set up the actuator parameters to allow the systems performance to be optimised. The Rotork module has been certified by the Open DeviceNet Vendor Association. See PUB060-004 for further details. Profibus® is a leading international network protocol for Rotork's Profibus DP module uses DP-V0 cyclic comms and extended actuator diagnostics and configuration is included in the DP-V1 acyclic data. EDD and DTM files allow the Rotork device to be incorporated into asset management systems, whilst the GSD file guarantees device interoperability. See PUB060-002 for further details. Rotork’s Modbus® module allows actuators to be connected to a 2-wire RS485 network for direct communication to a PLC or DCS using Modbus RTU protocol. See PUB060-005 for further details. For discrete hardwired control, the optional RIRO (Remote In Remote Out) can be fitted. The option allows the user to hardwire a discrete digital control (24 VDC nominal or 120 VAC nominal) for open and close operation. The option also allows up to four extra relay contacts to be available for various functions. See PUB094-004 for further details.
  • 9. 9Keeping the World Flowing Performance Summaries Ultimate performance will be determined by the process, valve and control system. Positioning Control Performance The following control positioning performance is based on a 4 to 20 mA control system with CMA operating over its maximum stroke, rated speed and constant force with minimum deadband set and with a linear demand/valve characteristic. Resolution is defined as: minimum change in input signal required for guaranteed response. 4 to 20 mA Control - Positioning: % demand signal range Equal to or better than: Resolution Linear and Quarter-turn 0.2% Rotary 2o Linearity 1% Position Feedback Performance The following position feedback performance is based on CMA operating at maximum stroke with a linear characteristic set. Feedback calibration is automatic to the set limit positions. Resolution is defined as: minimum change in position/thrust required for feedback signal change. 4 to 20 mA Feedback - % feedback signal range Equal to or better than: Resolution Linear and Quarter-turn 0.2% Rotary 2o Linearity 1% Model Min Modulating Thrust (lbf) Min Modulating Thrust (N) Max Modulating Thrust (lbf) Max Modulating Thrust (N) Max Seating Thrust (lbf)* Max Seating Thrust (N)* Max Speed (inches/sec) Max Speed (mm/sec) Stroke (inches) Stroke (mm) CML-100 60 266.9 100 444.8 150.00* 667.2* 0.25 6.35 1.5 38.1 CML-250 150 667.2 250 1112.1 375.00* 1668.1* 0.13 3.18 1.5 38.1 CML-750 450 2001.7 750 3336.2 1125.00* 5004.2* 0.13 3.18 2.0 50.8 CML: Linear Actuator CMR: Rotary Actuator Model Min Torque (lbf.in) Min Torque (Nm) Max Torque (lbf.in) Max Torque (Nm) Max Speed (RPM) Total turns available CMR-50 20 2.3 50 5.6 11 90º to 320 turns in 2º increments CMR-100 40 4.5 100 11.3 10 90º to 320 turns in 2º increments CMR-200 80 9.0 200 22.6 5 90º to 320 turns in 2º increments CMR-89 35.6 4.0 89 10.1 24 90º to 320 turns in 2º increments CMR-125 50 5.6 125 14.1 18 90º to 320 turns in 2º increments CMR-250 100 11.3 250 28.2 10 90º to 320 turns in 2º increments CMR-250/GB3 160 18.1 400 45.2 5.8 90º to 200 turns in 3.2º increments Model Min Modulating Torque (lbf.in) Min Modulating Torque (Nm) Max Modulating Torque (lbf.in) Max Modulating Torque (Nm) Max Seating Torque (lbf.in)* Max Seating Torque (Nm)* CMQ High Speed Fastest Time for 1/4 Turn (secs) CMQ Self Locking Fastest Time for 1/4 Turn (secs) CMQ-250 150 16.9 250 28.2 375* 42.4* 5 10 CMQ-500 300 33.9 500 56.5 750* 84.7* 7.5 15 CMQ-1000 600 67.8 1000 113.0 1100* 124.3* 11 22 CMQ: Quarter-Turn Actuator Mechanical Performance The values shown in the performance charts relate to the maximum available speeds or fastest operating times. These speeds can be slowed down to 50% of the maximum value in 1% increments. The rated force (thrust or torque) for each size of actuator is detailed below. Operating time tolerance +/-10%. The CML and CMQ can resist backdriving forces from the valve up to 125% of rated load without movement. All CMA actuators are factory calibrated. CMA resolution is 0.20%. Note: The CMQ low speed units are normally self-locking up to 125% of rated load. The CMQ high speed unit is not self-locking. * Seating Torque and Thrust – Some applications require tight seating at the valve in the close position. The CMA has a selective seating capability. The seating torque/thrust values shown for CML and CMQ are the forces available to close a valve tightly at it’s end of travel. The seating torque/thrust option can be selected and configured during setup (at “close action“ selection, choose “torque” or “thrust” as applicable).
  • 10. 10 General Dimensions CML Linear Actuator CMQ Quarter-Turn Actuator CMR Rotary Actuator CMA - General Dimensions Model a b c d CML-100/250 (mm) 142.60 313.10 72.10 161.50 CML-100/250 (in) 5.61 12.33 3.84 6.35 CML-750 (mm) 148.0 429.50 55.40 176.50 CML-750 (in) 5.83 16.91 2.18 6.95 Model a b c d CMQ-250/500 (mm) 142.60 326.70 16.0 178.10 CMQ-250/500 (in) 5.61 12.86 0.63 7.010 CMQ-1000 (mm) 148.0 355.80 16.0 211.30 CMQ-1000 (in) 5.83 14.01 0.63 8.32 Model a b c d CMR-50/100/200 (mm) 142.60 299.10 31.80 161.50 CMR-50/100/200 (in) 5.61 11.76 1.25 6.35 CMR-89/125/250 (mm) 148.0 321.80 31.80 176.50 CMR-89/125/250 (in) 5.83 12.67 1.25 6.95 a* d b c a* d b c a* d b c Note: Drawings are for reference only. Please contact Rotork for details. Dimensions with ‘*’ indicate cover removal allowance Dimensions with ‘*’ indicate cover removal allowance Dimensions with ‘*’ indicate cover removal allowance a* b c Model a b c CMR-250/GB3 (mm) 148.08 391.40 176.10 CMR-250/GB3 (in) 5.83 15.41 6.93 Dimensions with ‘*’ indicate cover removal allowance CMR-250/GB3 Rotary Actuator
  • 11. 11Keeping the World Flowing CML Linear Actuator CMQ Quarter-Turn Actuator CMR Rotary Actuator CMA Local Controls - General Dimensions Model a b c d CML-100/250 (mm) 180.60 354.0 72.0 173.0 CML-100/250 (in) 7.11 13.94 2.84 6.80 CML-750 (mm) 186.0 467.50 55.40 188.0 CML-750 (in) 7.32 18.41 2.18 7.40 Model a b c d CMQ-250/500 (mm) 180.60 365.10 16.0 189.60 CMQ-250/500 (in) 7.11 14.37 0.76 7.46 CMQ-1000 (mm) 180.60 393.80 16.0 188.0 CMQ-1000 (in) 7.11 15.50 0.76 7.40 Model a b c d CMR-50/100/200 (mm) 180.60 337.10 31.80 173.0 CMR-50/100/200 (in) 7.11 13.27 1.25 6.80 CMR-89/125/250 (mm) 180.60 359.80 31.80 188.0 CMR-89/125/250 (in) 7.11 14.17 1.25 7.40 Dimensions with ‘*’ indicate cover removal allowance Dimensions with ‘*’ indicate cover removal allowance Dimensions with ‘*’ indicate cover removal allowance General Dimensions a* b c d a* b c d a* b d c Note: Drawings are for reference only. Please contact Rotork for details.
  • 12. 12 General Dimensions CML Linear Actuator CMQ Quarter-Turn Actuator CMA Local Controls & Reserve Power Pack - General Dimensions Model a b c d CML-100/250 (mm) 242.60 416.50 53.0 173.0 CML-100/250 (in) 9.55 16.39 2.09 6.80 CML-750 (mm) 242.60 524.50 55.40 188.0 CML-750 (in) 9.55 20.65 2.18 7.40 Model a b c d CMQ-250/500 (mm) 242.60 427.60 16.0 189.60 CMQ-250/500 (in) 9.55 16.83 0.76 7.46 CMQ-1000 (mm) 242.60 450.80 16.0 188.0 CMQ-1000 (in) 9.55 17.75 0.76 7.40 Dimensions with ‘*’ indicate cover removal allowance Dimensions with ‘*’ indicate cover removal allowance a* b c d a* b c d Note: Drawings are for reference only. Please contact Rotork for details.
  • 13. 13Keeping the World Flowing Design Specifications Vibration, Shock and Noise CMA actuators are suitable for applications where vibration and shock severity does not exceed the following: Type Level Plant induced vibration 1 g RMS total for all vibration within the frequency range of 10 to 1000Hz. Shock 5 g peak acceleration. Seismic 2 g acceleration over a frequency range of 1 to 50 Hz if it is to operate during and after the event. 5 g over a frequency range of 1 to 50 Hz if it is only required to maintain structural integrity. Emitted noise Independent tests have shown that at 1 m generated noise does not exceed 61 db (A). Levels quoted are those present at the actuator mounting interface. It should be noted that the effects of vibration are cumulative and therefore an actuator subjected to significant levels may have reduced life. Operating Temperature CMA actuators are suitable for operation within the ambient temperature ranges shown below. Refer to section 5 for hazardous area certification operating temperature restrictions. For temperatures outside this range please contact Rotork. Prior to installation actuators should be stored in a dry location with a temperature range not exceeding -50 to +70 °C (-58 to 158 °F). Actuator Type Standard Temperature* Low Temperature Option* CML / CMQ / CMR -30 to +70 °C (-22 to +158 °F) -40 to +60 °C (-40 to +140 °F) *Hazardous Area certification determines permissible operating temperature range. Refer to section 5. Paint Finish The standard paint finish is RAL5010 (blue) polyester powder coated to Rotork specification RS237. Optional paint colours and finishes are available, please contact Rotork for more information. Unpainted units available for OEM customers.
  • 14. 14 Approvals Non-Hazardous and Hazardous Certified Enclosures All CMA actuator hazardous and non-hazardous area enclosures are watertight to IP66, IP67 and NEMA 4. CMA actuators are available with the following enclosure types for which the ambient working temperature ranges are stated. The limits of frequency of operation are a function of the load on the actuator and the ambient temperature. Under the heaviest load at the highest temperature the capability would be not less than 2,000 starts in one hour, in favorable load conditions the number of starts per hour would be infinite. Where option temperatures are indicated, changes to some actuator components are required and therefore the temperature requirement must be specified. Hazardous area approvals for other country standards are available; please contact Rotork. CMA range actuators are built in accordance with the following standards: Non-Hazardous Area Enclosures WT: Standard Watertight Standard Rating Standard Temperature Low Temperature Option BS EN 60529 (1992) IP67 -30 to +70 °C (-22 to +158 ºF) -40 to +60 °C (-40 to +140 ºF) NEMA (US) 4 & 6 -30 to +70 °C (-22 to +158 ºF) -40 to +60 °C (-40 to +140 ºF) CSA (Canadian) 4 & 6 -30 to +70 °C (-22 to +158 ºF) -40 to +60 °C (-40 to +140 ºF) Hazardous Area Enclosures European ATEX Directive Directive/Standard Rating Standard Temperature Low Temperature Option Directive = 94/9/EC II 2GD -20 to +65 °C (-4 to +150 ºF) -40 to +60 °C (-40 to +140 ºF)Standard = EN 60079-0 EN 60079-1 Ex d IIB T4 Gb Ex tb IIIC T85°C Db Units fitted with UPS or HMI option -20 to +60 °C (-4 to 140 ºF) International Hazardous Area IECEx Directive/Standard Rating Standard Temperature Low Temperature Option No Directive II 2GD -20 to +65 °C (-4 to +150 ºF) -40 to +60 °C (-40 to +140 ºF)Standard = IEC 60079-0 IEC 60079-1 Ex d IIB T4 Gb Ex tb IIIC T85°C Db Units fitted with UPS or HMI option -20 to +60 °C (-4 to 140 ºF) USA Hazardous Area – Factory Mutual Certified Explosionproof to NEC Article 500 Class Division Group Standard Temperature Low Temperature Option I 1 C, D -20 to +65 °C (-4 to +150 ºF) -40 to +60 °C (-40 to +140 ºF) II 1 E, F, G Enclosures Types 4/IP67 Canadian Hazardous Area – Canadian Standards Association (CSA EP) to NEC Article 500 Class Division Group Standard Temperature Low Temperature Option I 1 C, D -20 to +65 °C (-4 to +150 ºF) -40 to +60 °C (-40 to +140 ºF) II 1 E, F, G
  • 15. 15Keeping the World Flowing Approvals Regulatory Standards Compliance with the following European Economic Community Directives permits the CMA range of actuators to be CE marked under the provision of the Machinery Directive. Directive Applicable to Reference Electromagnetic compatibility (EMC) Immunity to / emissions of electromagnetic energy 2004/108/EC by application of BS EN 61326-1:2006 Low Voltage (LV) Electrical Safety 2006/95/EC by application of BS EN 601010-1:2010 Machinery* Product Safety Actuators follow the provision of the Machinery Directive (2006/42/EC) by the application of BS EN ISO12100- 1:2003+A1:2009. The CMA must not be put into service until the equipment into which it is being incorporated has been declared to be in conformity with the provisions of the European Community Machinery Directive 98/37/EC and 98/79/EC* Waste Electrical Equipment Exempt under the scope *Actuators are not classified as machines within the scope of the machinery directive. Contact Rotork for a copy of our Declaration of Conformity and Incorporation.
  • 16. Rotork plc Brassmill Lane, Bath, UK tel +44 (0)1225 733200 fax +44 (0)1225 333467 email mail@rotork.com Keeping the World Flowing PUB094-001-00 Issue 06/15 As part of a process of on-going product development, Rotork reserves the right to amend and change specifications without prior notice. Published data may be subject to change. For the very latest version release, visit our website at www.rotork.com The name Rotork is a registered trademark. Rotork recognises all registered trademarks. Published and produced in the UK by Rotork Controls Limited. POWTG0216 www.rotork.com A full listing of our worldwide sales and service network is available on our website. USA Rotork Controls Inc. tel +1 (585) 247 2304 fax +1 (585) 247 2308 email info@rotork.com Rotork is a corporate member of the Institute of Asset Management