Monday, September 23, 2013

Watlow Screw Plug Immersion Heaters for Clean water

 Watlow Immersion Heaters by Anderson-Bolds

Watlow's immersion heaters are designed primarily for direct immersion in liquids such as water, oils, solvents and process solutions, molten materials as well as air and gases. By generating all the heat within the liquid or process, these heaters are virtually 100 percent energy efficient. These versatile heaters can also be formed and shaped into various geometries for radiant heating and contact surface heating applications. UL® and CSA component recognized elements are available.


Watlow Screw plug immersion heaters are ideal for direct immersion heating of liquids, including all types of oils and heat transfer solutions.
Available in a variety of sizes, Watlow® screw plug immersion heaters feature both WATROD™ round and FIREBAR® flat tubular elements.
Heating elements are hairpin bent and either welded or brazed into the screw plug —depending on element sheath and plug material compatibility.
General purpose terminal enclosures are standard; with optional moisture resistant, explosion resistant and explosion/moisture resistant enclosures available to meet specific application needs.
Optional thermostats provide convenient process temperature regulation to the screw plug immersion heater.



Watlow Screw Plug Electric Immersion Heaters with a 1.25 inch Plug for Clean Water with General Purpose Terminal Housing (NEMA 1).  Heaters designed for use in clean water with a high watt density.  Heaters have Alloy 800 elements with a brass screw plug.  Voltages from 120 to 480 and wattages from .5 kw to 6 kw.  Available with or without an integral Thermostat.

Watlow Screw Plug Electric Immersion Heaters with a 1.25 inch Plug for Clean Water with moisture resistant/explosion resistant Terminal Housing (NEMA 4/7).  Heaters designed for use in clean water with a high watt density.  Heaters have Alloy 800 elements with a brass screw plug.  Voltages from 120 to 480 and wattages from .5 kw to 6 kw.  Available with or without an integral Thermostat. Watlow BDN and BEN Series heaters.

Watlow 2 inch Brass Screw Plug Electric Immersion Heaters for Clean Water with General Purpose Terminal Housing (NEMA 1) Heaters designed for use in clean water with a high watt density.  Heaters have Alloy 800 elements with a brass screw plug.  Voltages from 120 to 480 and wattages from 2 kw to 15 kw.  Available with or without an integral Thermostat.  Watlow BGN series Heaters.

Watlow BGN711C6S7A, Immersion Heater, 3 kw, 120/240 VAC/1 phase, Alloy 800 Elements, 100-550 Tstat

Watlow BGN721C3S, Immersion Heater, 9 kw, 240 VAC/3 phase, Alloy 800 Elements

Watlow 2 inch Screw Plug Electric Immersion Heaters for Clean Water with Moisture/Explosion Proof Terminal Housing (NEMA 4 / 7)  Heaters designed for use in clean water with a high watt density.  Heaters have Alloy 800 elements with a brass screw plug.  Voltages from 120 to 480 and wattages from 2 kw to 15 kw.  Available with or without an integral Thermostat.  Watlow BGN series heaters.

    Watlow BGN78C7C, Immersion Heater, 2 kw, 240/480 VAC/1 phase, Alloy 800   Elements

   Watlow BGN715C5C, Immersion Heater, 6 kw, 480 VAC/3 phase, Alloy 800 Elements

Watlow 2.5 inch Screw Plug Electric Immersion Heaters for Clean Water with General Purpose Terminal Housing (NEMA 1) Heaters designed for use in clean water with a high watt density.  Heaters have Alloy 800 elements with a brass screw plug.  Voltages from 120 to 480 and wattages from 3 kw to 38 kw.  Available with or without an integral Thermostat.  Watlow BLN series heaters.

    Watlow BLN77L1S, Immersion Heater, 3 kw, 120 VAC/1 phase, Alloy 800 Elements

    Watlow BLNF33L5S, Immersion Heater, 38 kw, 480 VAC/3 phase, Alloy 800 Elements

Watlow 2.5 inch Screw Plug Electric Immersion Heaters for Clean Water with Moisture/Explosion Proof Terminal Housing (NEMA 4/7) Heaters designed for use in clean water with a high watt density.  Heaters have Alloy 800 elements with a brass screw plug.  Voltages from 120 to 480 and wattages from 3 kw to 38 kw.  Available with or without an integral Thermostat.  Watlow BLN series heaters.

    Watlow BLN710L3C5A, Immersion Heater, 4.5 kw, 240 VAC/3 phase, Alloy 800 Elements, 60-250 Tstat

   Watlow BLN720L3C7A, Immersion Heater, 9 kw, 240 VAC/3 phase, Alloy 800 Elements, 100-550 Tstat
    

If you need help to pick out a heater, please use our Immersion Heater Design Form.

Anderson-Bolds has been helping people and companies with electric heaters for over 75 years.

www.anderson-bolds.com    216-360-9800

Saturday, August 3, 2013

RONAN Intrinsic Safety Barriers

Ronan and Anderson-Bolds can provide Intrinsic Safety Barriers for your Hazardous Locations.


Intrinsic Safety Barriers are devices which limit the power (energy) that can be delivered from a safe area into a hazardous area. Explosions are therefore prevented, not just contained, in explosion-proof conduit and heavy cast housings. Electrical energy (voltage and current) and total energy are held within safe limits, eliminating the possibility of an explosion due to excessive heat.
The Ronan Intrinsic Safety Barriers Series X57 are plug-in modules containing one to four channels. Up to 20 barrier modules can be installed on a surface mount chassis.

Model Attributes:

  • Immediately accessible system components
  • Low voltage operation ensures personnel safety
  • Special skill levels not needed to shut down or service
  • Simple barrier replacement




The following features indicate the clear benefits of choosing an intrinsically safe design instead of an explosion-proof design, and reflect the unique features of the Series X57 family of barriers.
All system components are immediately accessible — no time consuming opening of explosion proof housings.
Personnel safety is assured because of low voltage operation.
Standard wiring techniques in open cable trays or light gauge conduit save on material and labor cost during initial installation.
Calibration and maintenance can be performed with the system in operation.
Special skill levels are not needed to open heavy housings, to test for gas, or to shut down the process in order to service or operate the instrumentation.
Barrier replacement is accomplished by simple exchange of plug-in modules. There is no need to disconnect wiring or to remove ground bars.
Barriers are manufactured and stocked in the U.S.A. in Woodland Hills, California. (Los Angeles area)
Multiple channels in one barrier minimize the total number of barrier modules needed and space required.




The Ronan I.S. Barriers are plug-in modules containing one to four channels. Up to twenty barrier modules can be installed in a 20 position surface mounted chassis. Single barrier surface or DIN rail chassis are also available. Each module has eight screw terminals. The terminals are arranged in the chassis so that four are located in the safe area and four are located in a protected compartment for the wiring to the hazardous area. The safe area terminals are numbered 1 through 4 and the protected terminals are numbered 5 through 8. These compression type screw terminals accept up to 12 AWG wire. The safe area terminals are connected to equipment in a location where the sources of potential with respect to each other or to ground do not exceed 250 Vdc or RMS. The I.S. grounding connection for the barriers is provided by an integral, fixed, #8 stud with self-locking nuts. Optional ground bus bars and multi-pin cable connectors are also available.


Shunt Diode Zener (Passive) I.S. Barriers
Ronan's Zener Barriers, especially the multi- channel versions, are a logical choice when space and cost are the major considerations. They do not require their own power supply, but rather provide protection passively. Most likely, there is a barrier that will work, and a detailed analysis of the applica- tion will usually identify a zener barrier that is right for the application. However, zener barriers do require a high integrity I.S. ground. This may present a problem, especially in older plant installations. When the quality or availability of an I.S. ground is questionable, the designer should consider using active barriers.

Lowest Cost Barrier Option 
1, 2, 3, and 4 Channel Barriers 
Negative, Positive, or AC Voltage Versions
  Highly Reliable Fast Acting Fuses 
Power Supply is Not Required 
NO FAULT “Blown Fuse” Barrier Replacement Policy
DIN Rail or Multi-Barrier Surface Mount Chassis


Galvanic Isolation (Active) Barriers
In numerous applications, zener diode barriers will either not work, or they impose constraints that complicate system design. The series resistance, fuse rating and maximum working voltage of a zener diode barrier, can cause the design engineer hours of frustrating analysis to confirm both safety and proper system operation. Ronan's line of active I.S. barriers eliminates much of the tedious analysis re- quired. In some cases, the active barrier can actually double as a signal conditioner and eliminate other devices from the loop. These considerations, along with the fact that no I.S. ground is required, and the fact that most circuits are short circuit proof, has caused the active barriers to gain popularity.

Full Input, Output and Power Isolation (Eliminates ground loops)
Short Circuit Proof (Most models) or Fuse Protected
No I.S. Ground Required
Less Critical Circuit Design Constraints
Eliminates Other Signal Conditioning, thereby Lowering Installed Cost
Discrete or Analog Input and Output Barrier Options


Entity Approvals vs. Loop Approval

The concept of "Intrinsic Safety" originated in the European markets but is gaining in popularity all over the world. Originally, and still the case with some equipment, manufacturers had their field instruments tested and approved with a specific I.S. barrier (Loop Approvals). This limited the user's choices of field instruments and
barriers. The Entity Approval concept is now becoming the standard because it allows the user to select field instruments and I.S. barriers from any approved supplier. The only stipulation is that the entity numbers of both devices are properly matched and that the equipment is properly installed per the approved installation drawings.
It is important to remember that an l.S. barrier does not make a field device safe. The field instrument must be either a "simple apparatus" or an l.S. device which was certified under the entity concept in order for it to be compatible with Ronan l.S. barriers. If you have a question or concern about your application, contact Ronan and Anderson-Bolds for assistance.






www.anderson-bolds.com
216-360-9800

Wednesday, July 31, 2013

Nematron iPC Hardened Computers and Workstations


Nematron Corporation announces the launch of the new Fanless iPC-Series of Industrial Computers, now with the Intel® Dual CoreTM ATOM N2800 processor. In many of today’s industrial applications and industries, especially those that utilize an industrial computer within an enclosure, overheating of the PC is a major concern. Where continuous processes or automation are concerned, the downtime caused by the overheating and eventual loss of a PC can be costly. The need for fanless processing and solid state media is a major consideration in many industrial applications that Nematron has addressed with continuous improvements.
In March 2010, Nematron introduced one of the first lines of fanless industrial PCs to hit the market, following the Intel embedded roadmap using the ATOM N270 processor. The launch of the ePC-Fanless Series allowed the concerns of overheating to be addressed for many applications that required a low heat producing industrial PC.
In keeping with the continuous improvement philosophy that Nematron has employed for years, the iPC-Series takes a step forward by offering an even more powerful fanless processing solution with the Intel Dual Core ATOM N2800, which in comparison to its ATOM N270 predecessor, more than doubles the PassMarkTM CPU benchmark score, providing applications with more processing horsepower. The use of solid state storage media and optional 24VDC further add to the strength and reliability of these rugged industrial fanless PCs offerings. 




“The new iPC-Fanless Series is the logical evolution of our industrial PC product offering strategy,” explains Ralph Damato, VP – Product Management of Nematron. “With the speed at which computer components change in the marketplace, Nematron continues to lead as an industrial PC manufacturer committed to building products with the longest life cycle. The ePC-Fanless Series was a success, which makes us even more proud to introduce the iPC-Fanless N2800 Series. It also gives current and new customers the peace of mind that Nematron will be able to support this new offering for years to come,” continues Damato.
Concurrent with the iPC-Series, the iPC-Fanless Series computers include the same 12” (iPC1200), 15” (iPC1500), 17” (iPC1700), and 19” (iPC1900) LED-backlit versions. The iPC-Fanless Series can also be ordered as a non-display node computer (nPC300) offering flexibility for mounting in space-constrained applications. All sizes and models of the iPC-Fanless Series and nPC300 have UL and cUL 508 as well as Class I Division 2, RoHS, and European CE approvals, making system integration a breeze for virtually any application and/or location. For more information contact Nematron at sales@anderson-bolds.com .

iPC-Fanless Series Features: 
  • Choice of: 12.1” SVGA to 19” SXGA Color TFT LED-backlit displays 
  • Available in Non-Display Node Version (nPC300)
  • High Performance / Very Low Power Fanless Processor
    - Intel® Dual Core ATOM N2800 (1.86 GHz, 1 MB cache, 4 Threads) 
  • 5-wire Analog Resistive Touchscreen
    - Optional Non-Touch with clear Lexan window (polycarbonite) 
  • 2 GB DRAM (4 GB Optional) 
  • 80 GB Easily Removable SATA Solid State Drive
    - Optional larger sizes and rotating HD 
  • Ultra-Thin panel mounting depth, less than 3.2” 
  • Extensive I/O Connectivity
    - Dual Gigabit (10/100/1000) Ethernet ports
    - Two USB 2.0 ports
    - Two USB 3.0 ports
    - One RS-485/422 serial port 
    - Two RS-232 serial ports
    - Additional Analog Video port or HDMI port - supports dual video with internal LCD and one port(Optional HDMI to DVI cable available - sold separately) 
  • Integrated 100-240 VAC power supply
    - 24 VDC optional 
  • Powder Coated Aluminum Front Panel (optional Stainless Steel) 
  • NEMA 4/4x/12 front panel 1 
  • Optional Rack Mount Front Panel (iPC1900 only) 
  • UL and cUL Ordinary Locations Listed 
  • UL and cUL Hazardous Locations Listed
    - Class I Division 2, Groups A, B, C, & D; Class II Division 2, Groups F & G; Class III when mounted in a NEMA enclosure
  • FCC & European compliant
  • RoHS compliant
  • Windows® 7 Professional (32-bit) pre-installedWindows XP Professional (32-bit)* or Windows 7 Ultimate (32-bit) optional
  • 2-year Warranty
Availability of Windows XP on display units TBD (Intel video driver Issue). Windows XP available on nPC300-N2800.

About Nematron

Nematron has produced heavy-duty, high reliability Industrial Automation Products for nearly 30 years. Nematron operates from their North American headquarters in Ann Arbor, Michigan. Complete service and repair capabilities for current and legacy products are offered from their Ann Arbor Michigan location. 


Tuesday, June 25, 2013

Grieve Walk-In Ovens for Industrial Applications



Grieve Ovens, in business for over 50 years, is in the business of manufacturing the best industrial ovens in the USA.  Build in Illinois and completed tested, the Grieve oven will meet the test of time for your application for years to come.
Ovens and furnaces for which there simply are no equals...Grieve.

Walk In Ovens are used for paint baking, drying, preheating, annealing or any other heat processing of large or numerous parts at temperatures to 750°F. Oven size conveniently accommodates materials handling equipment. Choice of either combination or full horizontal air flow in either rear or top mounted heat chamber configurations. Designed and constructed for long, hard, continuous use.
Every oven fully assembled and individually factory tested 
STANDARD FEATURES
UL ul1.gif LISTED CONTROL PANEL 
Standard Truck Ovens from Grieve meet the requirements of National Fire Protection Association Standard 86, Industrial Risk Insurers, Factory Mutual and OSHA standards. For some applications, such as those involving flammable solvents or hazardous locations, the above organizations require additional safety devices.

Controls
— Digital, microprocessor based, thermocouple actuated, indicating temperature controller
— Modulating burner on gas ovens
— Motor control push buttons and on-off heat switch
— LED pilot lights
Safety Equipment — Electric Oven
— Adjustable, thermocouple actuated, manual reset excess temperature interlock
— Separate heating element control contactors
— Recirculating blower air flow safety switch
Safety Equipment — Gas Oven
—Adjustable, thermocouple actuated, manual reset excess temperature interlock
—Electronic flame safeguard protection
—Powered forced exhauster for combustion venting
—Exhauster air flow safety switch
—Recirculating blower air flow safety switch
—Two pilot safety shutoff valves with leak test stations
—Two main safety shutoff valves with leak test stations (Industrial Risks Insurers vent valve only provided on specific request)
—Valve position indicator on main safety shutoff valves
—Over 400,000 BTU/HR safety shutoff valve interlocked with
purge timer
—Purge timer
—High gas pressure switch
—Low gas pressure switch
Construction
—Choice of air flow patterns
—Adjustable opposed louvers on full coverage supply and return
duct work
—Choice of rear or top heat chamber
—Available with doors at each end
—Choice of floor configurations, flat plate, insulated floor, truck
wheel guide tracks
—Exceptionally heavy duty doors
—Aluminized steel interior
—Aluminized steel exterior with enamel finish
—High temperature door gasket with stainless steel spring insert
—6 lbs/cf density industrial rockwool insulation
—Brushed stainless steel control panel face
—1 year limited warranty
Every oven fully assembled and individually factory tested 


Combination Air Flow
Heated air is provided from full coverage supply duct work at each side of the work space and sweeps upward through the load to a return duct at the top of the work space. Used in most shelf truck loading applications where sufficient shelf area is left open to allow vertical air movement upward through the loaded truck. Ideal for large parts placed directly on oven floor or loaded on a flat bed truck. 

Horizontal Air Flow
Heated air is blown horizontally across the work space between full coverage duct work. For shelf truck loading applications with densely loaded shelves, solid bottom trays, or flat sheets where heated air can only pass sideways above and below each level. Also used on oven floor or loaded on a flat bed truck. 

Electric Models
Each features completely wired, side access UL listed control panel enclosing terminals for incoming power, temperature controllers, push buttons and pilot lights. Motor starter and heating element contactors electrically interlocked to shut off heaters if power to blower is interrupted and to permit operation of blower without heat for cooling. Incoloy sheathed tubular heating elements.

Gas Models
— 1,000 BTU natural gas at 6" water column pressure: 1" NPT inlet to 350,000 BTU/HR; 1-1/4" NPT to 1,200,000 BTU/HR

Anderson-Bolds represents the Grieve Oven Corporation throughout Ohio and Kentucky.

email us at grieve@anderson-bolds.com
216-360-9800

Other industrial products are found at www.anderson-bolds.com

Saturday, June 1, 2013

Elster American Meter Gas Meters ~ Stock at Anderson-Bolds

Call Anderson-Bolds or order online for Elster American Meter Gas Meters and Regulators.

216-360-9800 ask for Jerry or email to amco@anderson-bolds.com

AMCO = American Meter Company

Below units are usually stocked at Anderson-Bolds


DTM-200A-1      AMCO DRY TEST METER
DTM-200A-2      AMCO DRY TEST METER





AM-250-5#TC         AMCO METER, TC, 5#

AL-800-20#TC        AMCO AL-800, 20# WP, TEMP COMP

AL-425-25#TC        AMCO AL-425, 25# WP, TEMP. COM

AL-425-25#             AMCO METER, 1-1/4, W/ODOMETER

AL-425-10#TC        AMCO AL-425, 10#WP, TEMP. COMP

AC-630-25#TC       AMCO AC-630 METER, 25#, TC

AC-250-5#TC          AMCO AC-250, 5# WP, TEMP. COMP

AC-250-10#TC       AMCO METER, 1", ODOMETER INDEX





2M-CID-2"                           AMCO RPM METER WITH instrument Drive

2M-MTCI-2"-TWELL       AMCO 2" 3.5M RPM W/MERCURY TCI, 80 MESH SCREEN, BOLT/GSKT SET

3.5M-CTR-2"-TWELL       AMCO 3.5M RPM WITH TWELL, 80 MESH SCREEN, BOLT/GSKT SET

3.5M-MTCI-2"-TWELL    AMCO 2" 3.5M RPM W/MERCURY TCI, 80 MESH SCREEN, BOLT/GSKT SET

5.5M-CTR-2"-TWELL       AMCO 5.5M RPM W/TWELL  80 MESH SCREEN, BOLT/GSKT SET

5.5M-CTR-3"-TWELL       AMCO 3" 5.5M RPM W/MERCURY TCI, 80 MESH SCREEN, BOLT/GSKT SET

5.5M-MTCI-3"-TWELL    AMCO 3" 5.5M RPM W/MERCURY TCI, 80 MESH SCREEN, BOLT/GSKT SET




Anderson-Bolds also has Elster American Meter Company regulators and parts.

Along with Gas meters, Anderson-Bolds carries Water meters and Flow Meters.

216-360-9800 (Jerry)
www.anderson-bolds.com


Friday, May 24, 2013

King-Gage Guided Wave Level Radar

LevelWAVE by King-Gage - Guided Wave Radar

Anderson-Bolds King-Gage Parts Form - Click for a quote!


Time Domain Reflectometry (TDR) 
Measure Level, Volume or Ullage 
4–20 mA HART output option

KING-GAGE® LevelWAV guided wave level transmitter provides continuous measurement suitable over a broad range of temperatures, pressures and density variations in tanks containing liquids and solids. This radar transmitter can be used in process conditions exhibiting visible vapors, foam, surface agitation, high temperature and/or pressure.
KING-GAGE LevelWAV utilizes time domain reflectometry (TDR) technology whereby pulses of microwave energy are propagated down a waveguide (probe) extending into the tank contents. Guided wave radar works exceptionally well in tanks having internal structures while providing measured level accuracy to typically within ± 0.6 inch (± 15mm). Setup is easier, simpler and more repeatable than “through air” non-contacting radar because the probe minimizes energy dispersion so that it can even measure material having a very low dielectric value.
LevelWAV guided wave radar will detect the level of liquids, pastes, or slurries and easily lends itself to ullage (unfilled capacity) measurement. Probe length for each LevelWAV transmitter is factory calibrated based on tank depth to virtually eliminate on-site adjustment and commissioning.
Output from the LevelWAV radar transmitter can be monitored on KING-GAGE indicators and multiple tank displays enabling tank level to be represented as total volume, weight or depth of contents. Options include network connectivity including Ethernet. Each of these display options also provides excitation power (24Vdc) to the transmitter through the signal loop cable.
Application profiles:
Food/beverage • Chemical •  Water/wastewater • Marine
Specifications
Model LWAV1000
Epoxy coated cast aluminum housing
Stainless steel braided cable or solid rod
Environmental Rating IP-65
Temperature (Process) -5°F to 392°F (-20° to +200°C)
Power Requirement 18-35 Vdc
Maximum Measurement 24m (78 Ft.)
Accuracy ±15 mm (0.6 In.)
Analog Output 4-20mAdc
Guided Wave Radar 
Microwave pulses are guided down the probe and reflected back by contact with the surface of the liquid. In time domain reflectometry (TDR), the time duration of the pulse and reflected response corresponds to distance traveled. KING-GAGE LevelWAV measures level from the tank top, enabling inventory monitoring and process measurements such as level or ullage. Unlike other probe technologies, LevelWAV is not affected by foaming of liquids or where the material tends to build up on surfaces. 
KING-GAGE LevelWAV supports point-to-point communication using HART® to monitor measured levels, device status, output value (mA) and configuration parameters. (Also supports use with a handheld HART communicator for troubleshooting and field testing of the installed unit.) 

LevelWAV Sensor Configurations 

Probe Type     Max. Length     Min. Dielectric 
4mm Cable         945 inches           2.1
8mm Cable         945 inches           2.1
Twin cable          945 inches          1.8
Rod                   236 inches           2.1
Twin Rod           118 inches           1.8

Contact Anderson-Bolds at:
216-360-9800
info@anderson-bolds.com
or our contact page HERE.

Tuesday, May 14, 2013

Meltric Decontactor DS20 Repair / Spare Parts

Meltric Decontactors and Industrial plugs can be rebuilt as all the parts are replaceable.

The Meltric DS20 series of Industrial plugs and Receptacles are a 20 amp device with a Polyester housing and silver contacts. The Meltric DeContactor meets NEC codes and NFPA 70E Safety guidelines.  Below are the spare parts.  Note that the voltage and phasing are integral to the spare parts to the the parts are correct.  A 120 volt device will not fit into a 480 rated device. So when picking a part, please pick the correct voltage part or let us know the phasing and voltage.
the last three digits of the receptacle or inlet part number is the key.

Look for your part below or use our Contact Form and Anderson-Bolds will email a quote.

The DS20 Male Inlet parts diagram:


Part 1 is the Plug Interior*    31-1A010-xxx
Includes the Interior TOP and Interior BOTTOM
*(Need the voltage code, the last 3 digits of the part number)


31-1A010-076  125/250  Plug
31-1A010-073  250 volt  Plug
31-1A010-045  277 volt  Plug
31-1A010-043  480 volt  Plug
31-1A010-143  600 volt  Plug
(Others available, please call)


Part 2 is the Interior Bottom  31-1A010

Part 3 is the Interior Top*  31-1A010-xxx
*(Need the voltage code, the last 3 digits of the part number)

31-1A010-T-076  125/250  Plug
31-1A010-T-073  250 volt  Plug
31-1A010-T-045  277 volt  Plug
31-1A010-T-043  480 volt  Plug
31-1A010-T-143  600 volt  Plug
(Others available, please call)


Part 4 is the Locking Ring  31-1A583

Part 5 is the Plug Phase Contact  31-1A011-380
(If no aux. contacts.)


Part 5 is the Plug Phase Contact  31-1A011
(If there are aux. contacts.)

Part 5 is also the Plug Ground Contact  31-1A019


PART 6 is the color coded voltage Gasket
208V   31-1AB26   BLUE
250V   31-1AC26   ORANGE
480V   31-1AR26   RED
600V   31-1AN26   BLACK
125V   31-1AC26   ORANGE

Part 7 is the Plug Casing*  31-1A014-xxx
*(Need the voltage code, the last 3 digits of the part number)


31-1A014-076  125/250 Plug Casing

31-1A014-073  250 volt Plug Casing
31-1A014-045  277 volt Plug Casing
31-1A014-043  480 volt Plug Casing
31-1A014-143  600 volt Plug Casing
(Others available, please call)


The DS20 Female Inlet parts diagram:




Part 1 is the Receptacle Interior*    31-1A020-xxx 
Includes the Interior TOP and Interior BOTTOM
*(Need the voltage code, the last 3 digits of the part number)

31-1A020-076  125/250 Receptacle
31-1A020-073  250 volt Receptacle  
31-1A020-045  277 volt Receptacle
31-1A020-043  480 volt Receptacle
31-1A020-143  600 volt Receptacle
(Others available, please call)

Part 2 is the Interior Bottom  31-1A020

Part 3 is the Interior Top*  31-1A020-T-xxx
*(Need the voltage code, the last 3 digits of the part number)

31-1A020-T-076  125/250 Receptacle

31-1A020-T-073  250 volt Receptacle  
31-1A020-T-045  277 volt Receptacle
31-1A020-T-043  480 volt Receptacle
31-1A020-T-143  600 volt Receptacle
(Others available, please call)

Part 4 is the Locking Ring  31-1A583

Part 5 is the Plug Phase Contact  31-1A021-380
(If no aux. contacts.)

Part 5 is the Plug Phase Contact  31-1A021
(If there are aux. contacts.)


PART 6 is the color coded voltage Gasket
208V   31-1AB26   BLUE
250V   31-1AC26   ORANGE
480V   31-1AR26   RED
600V   31-1AN26   BLACK
125V   31-1AC26   ORANGE

Part 7 is the Receptacle Casing*  31-1A024-xxx
*(Need the voltage code, the last 3 digits of the part number)
31-1A024-076  125/250 Receptacle Casing

31-1A024-073  250 volt Receptacle Casing
31-1A024-045  277 volt Receptacle Casing
31-1A024-043  480 volt Receptacle Casing
31-1A024-143  600 volt Receptacle Casing
(Others available, please call)

Part 8 is the Lid Replacement kit 31-1A125

Part 9 is the PAWL Replacement kit 31-1A824

www.anderson-bolds.com
216-360-9800
CLEVELAND, OHIO USA