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Please upgrade your browser to improve your experience. You are using an outdated browser. Password required where indicated. Want to stay informed about Doble’s DTA software updates. Subscribe to our M-Series email list to get emails about our M-Series firmware, software and security updates. FIRMWARE M4 M5 M7 SOFTWARE DTA7 DTA6 SFRA DTAWEB DTAWeb FIRMWARE M4 Series M4100 FIRMWARE V 3.4614 In this firmware upgrade, voltage ramp behavior now supports the IEC 60034-27 rotating machinery test procedure. A password is required to install the firmware; contact your Doble engineer for the password. A password is required to install the software; contact your Doble engineer for the password. Software requirements: Operating system: Windows 7, Windows XP Browser: Microsoft Internet Explorer 5.0 or newer Note: The M4100 User Guide has not changed. The manual is provided below as a password-protected zip file. You must currently subscribe to a Doble service agreement, or have a current client contract, in order to obtain the password from your Doble principal engineer or local representative. M7 Series Documentation requires password. Contact your Doble Client Service engineer for the correct password. M7100 Firmware V1.4.2 Latest firmware for M7100 test functionality. See the M7100 Firmware V1.4.2 Release Note below for complete information. M7100 firmware version 1.4.2 must be used with Doble Test Assistant version DTA 7.5.0 or later. NOTE: Please do not unzip the downloaded file. DTA7 searches for the.zip file in order to install it. If you unzip it, it will no longer function. In e-mail request please state your name and company in the text. More information about this release can be found in the release note. Doble Test Assistant version DTA 7.7.1 must be used with M7100 firmware version 1.3.0 or later. This software is administered through Doble’s License Server.
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You do not need a password to unzip the file, but will need an activation key to use the software after installation. Note: Previous installations of DTA 7.4.x or 7.5.x will not require a new activation key. Current valid software licenses will auto update after downloading the new software file. Contact your Client Service Engineer or Doble representative if you have any questions. Software Requirements Operating System: Windows 8, Windows 7, and XP Browser: Microsoft Internet Explorer 7.0 or newer Other Requirements Doble Services Agreement to run DTA6. Password (required by DTA6 Pro). Contact your Doble Client Service engineer for the password. DOWNLOADS Contact your local Doble representative or Client Service Engineer to obtain a copy of DTA6 or to obtain the passwords for the following downloads. Critical Installation Instruction. If any earlier version of DTA is running on your PC, close that program before installing DTA6.3.8. When you download and unzip the DTA file below: 1. Right-click on the setup.exe file. 2. Select Run as administrator. You do not need a password to unzip the file, but you will need an activation key to use the software after installation. The activation key will determine your edition of SFRA 6: “Viewer” or “Professional” edition. SFRA Software v6 Professional is required to operate the Doble M5500 instrument. It will also operate the Doble M5200 and M5400 instruments. For licenses that are included with an instrument purchase, your company will receive an activation key appropriate to your entitlement via email. Please state your name and company in the request. Note that all associated user documents are password protected. Please state your name and company in the text. SFRA Software V6.1.1 for Microsoft Windows 10 Operating Systems (license required): Prior to installation please read the Release Note. You must have administrator privileges to install SFRA software on your Windows PC. The only difference between versions 5.3.
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1 and 5.3 is a report generation fix for users of the Spanish language mode. If you do not use the Spanish language setting in SFRA software, there is no reason to upgrade from 5.3 to 5.3.1. Prior to installation please read the Release Note and the Quick-Start Guide. M5150 PVC Documents and Templates (password required): The following downloads support the M5150 Performance Verification Cell. The Quick Start Guide package includes sample results for comparison. The Test Templates package includes an Application Note. Discover everything Scribd has to offer, including books and audiobooks from major publishers. Start Free Trial Cancel anytime. Report this Document Download Now Save Save Doble Test Procedures For Later 0 ratings 0 found this document useful (0 votes) 136 views 21 pages Doble Test Procedures Uploaded by RamKumar Description: Doble test Full description Save Save Doble Test Procedures For Later 0 0 found this document useful, Mark this document as useful 0 0 found this document not useful, Mark this document as not useful Embed Share Print Download Now Jump to Page You are on page 1 of 21 Search inside document Browse Books Site Directory Site Language: English Change Language English Change Language. Richmond Community College Rp considered undesirable in a dielectric. There is always a certain amount of measurable loss is normal for most dielectrics and, therefore, the existence of loss, per se, does not necessarily suggest an operating hazard. In a perfect or no-loss capacitor, the current leads the test voltage by exactly 90. In a perfect resistor, the current and voltage are exactly in-phase 5 Test Modes Of The M4000 Analyzer Three basic test circuit configurations of M4000 GST-GROUND GST-GUARD UST-MEASURE 6 Grounded-Specimen Test Mode (GST) With the M4000 Analyzer in GST-GROUND (R,B), the LV Leads are brought to ground potential. Thus, the LV Leads may be used to connect ground to a specimen terminal.
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7 GST-Guard Test Modes With the M4000 Analyzer in GST-GUARD (R,B) Figure 1.5, the LV Leads are both connected to the test circuit Guard. 8 GST-Guard Test Modes Blue will be measured and red not. In both cases, the grounded lead is measured and the guarded lead is not IN ALL THREE CASES, THE TEST SET GROUND LEAD IS MEASURED 9 GST-Guard Test Modes red will be measured and blue not 10 Ungrounded-Specimen Test Mode (UST) With the M4000 Analyzer in UST-MEASURE (R,B), the only input to the measuring circuit is through the LV Leads Test set Guard and Ground are common in the UST mode; thus, current and losses to ground are not measured red and blue leads are both measured 11 Ungrounded-Specimen Test Mode (UST) Only the red lead is measured 12 Ungrounded-Specimen Test Mode (UST) Only the blue lead is measured 13 Doble High-Voltage Test Cable 14 Placement Of The High Voltage Hook The high voltage cable s outboard pothead, commonly called the hook includes a Guard and a Ground ring, or terminal, which must be KEPT at a distance from any ENERGIZED SURFACES Never hold onto the High Voltage Cable during a test. If draping the high voltage cable over an adjacent structure to keep the Guard and Ground rings away from the energized surface Do not drape it over a terminal or surface that will be energized during the test 15 16 17 Test Voltages The basic principle of the Doble Test is to measure the fundamental AC electrical parameters of insulation (i.e., power factor, capacitance, dielectricloss, etc.), applying test voltages which are moderate compared with the design rating of the insulation With due regard for properly selected test voltages, the Doble Test is NONDESTRUCTIVE, in that it should cause no measurable harm to serviceable insulation Should determine beforehand the tests to be performed and the test potentials to be applied for the various measurements. In particular, the test engineer should note those tests which must be made at reduced voltages (i.e.
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, less than 10 kv) 18 Suspect Apparatus In following situation make an initial measurement at low voltage (2 kv or less), gradually increasing, in steps, up to the normal test level only if the readings at the previous lower voltage indicate no problem 1. Equipment which has become badly contaminated with moisture in transit from the factory, repair shop, or between substations 2. Power transformers and related equipment that have tripped offline due to the operation of protective relays 3. Equipment suspected of having become badly contaminated with moisture after being stored outdoors for prolonged periods 19 Surface Leakage Two environmental variables arise which cannot be controlled easily are temperature and humidity (also humidity in combination with air pollutants) It should also be recognized that there will be times when it will be best to postpone tests until another day There are two basic approaches to minimizing the effects of surface leakage: 1. Clean and dry exposed external surfaces (usually porcelain) to reduce the losses. 2. Employ Guard Collars to divert the undesirable surface leakage currents from the measuring circuit. Caution Sometimes wiping the surface simply spreads the contamination, and may actually increase surface losses. In such cases it may be necessary to apply a silicone-base or hard-base wax or grease (after surface dirt has been removed)in order to BREAK UP conducting paths. 21 Surface Cleaning Ctd Solvents may be used to help clean surfaces which are stained or laden with particulate matter such as dirt, soot, etc. Upon evaporation, solvents tend to cool a porcelain surface and this, in turn, may increase moisture condensation. Caution Solvents should not be used where the problem is one of moisture condensation alone. Heat An excellent method for reducing surface leakage due to moisture. Infrared lamps and hot-air blowers have been used successfully.
Do not expose this equip ment to dripping or splashing and ensure that no objects Do not expose this equip ment to dripping or splashing and ensure that no objects No User-serviceable parts inside. Refer servicing to qualified No User-serviceable parts inside. Refer servicing to qualified A regular program of testing insulation resistance is strongly recommended to prevent electrical shocks, assure safety No User-serviceable parts inside. Refer servicing to qualified service personnel. WARNING: To prevent LD Physics Leaflets P3.1.2.2. 0909-Wie. Electrostatics Coulomb s law Measuring with the force sensor and newton meter Objects of the experiments Measuring the force between two charged Running test verification is crucial to ensuring that When the switch closes, the moving contacts bridge two stationary contacts, completing the trip circuit. Also during this operation two fingers Only qualified individuals should install this heater and related controls. Follow Canada 1960 Blue Heron Drive, London, ON. N6H 5L9 Phone Direct: (519) 659.7972 Phone Toll Free Direct: (800) 388.0617 Fax: Technical Information Reasonable precautions to protect steel during both transport and storage can considerably Comfortable Behind the Neck design Use only specified peripheral equipment and interface cables or you may experience problems. When A cable will be subjected to multiple tests in its lifetime HANDLING PRECAUTIONS 1. Handling Precautions Any semiconductor devices have inherently a certain rate of failure. The possibility of failure FAA 500 TR P Trim Ring transparent with Color Inserts.No User-serviceable parts inside. WARNING: To prevent fire They can be used locally or over the whole body, and the proper application of heat and cold RV Products Division P.O. Box 4020 Wichita, KS 67204 1976A376 (1-11) TABLE OF CONTENTS Instructions for Receiving, Installing, Operating and Maintaining Dry Type, VPI Sealed, Cast Coil and UNICLAD Transformers Doc. DryManual.
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doc Page 1 of 12 Phone (540) 345-9892 You have bought a great, innovative product from Showtec. The Showtec 19 LED Tube Controller brings excitement to any venue. Whether you want simple This product employs integrate circuits, low power consumption, and no radiation This UPS utilizes voltages that may be hazardous. Do not attempt to disassemble the unit. The unit contains no user replaceable parts. IM-PN-TX001-A01-EN Thank you for puchasing a Tele Radio product PN-R8-1, New Linear Regulators Solve Old Problems AN142-1 Regulators regulate but are capable of doing much more. The architecture of This test is comprised of 90 questions in the following Resources and methods for learning about these subjects (list a few here, in preparation for your research): The current version of Controlled When properly CPTR SMART CONTROL PRECISION CUSTOMIZED MANUAL OR AUTO SCR OR DIODE DRY TYPE SWITCH MODE DRY TYPE SCR OR DIODE OIL TYPE 1 INDEX PAGE 1. Cover 2. Index It delivers clear voice transmission and high quality Portable Industrial Unit Blower Air Heater Type DRA RENEWAL PARTS IDENTIFICATION All rights reserved. Kinivo is a trademark of Kinivo LLC. Bluetooth word mark and the Bluetooth logo are registered trademarks of Bluetooth SIG. All Introduction. Scope LED PORTFOLIO Replacement Replacement Curtis M. VanNess Field Operations Manager Outline Brief history of HVAC How do HVAC systems work. Types of systems and equipment Causes of failure Repair vs. Replace Uninterruptible Power System 28-2MAXPO0018 This instruction The Model GRT300 has been designed and tested according Easton, PA SCOPE AND PURPOSE OF THE PAPER Why do we bother to monitor To use this website, you must agree to our Privacy Policy, including cookie policy. This Manual is the sole property of the Doble Engineering Company (Doble) and is provided for the exclusive use of Doble Clients under contractual agreement for Doble Test Equipment and Services.
In no event does the Doble Engineering Company assume the liability for any technical or editorial errors of commission, or omission; nor is Doble liable for direct, indirect, incidental, or consequential damages arising out of the use or inability to use this Manual. Government Restricted Rights Legend: Use, duplication, or disclosure by the U.S. Government is subject to restrictions as set forth in subparagraphs (c)(1) and (c)(2) of the Commercial Computer Software - Restricted Rights Clause at FAR 52.227-19. This manual is protected by copyright, all rights reserved, and no part hereof may be photocopied or reproduced in any form without prior written consent of the Doble Engineering Company. Preface Structure of this Manual This manual consists of 4 chapters and 4 appendices. “Introduction” introduces the functions and architecture of the M4000 Insulation Analyzer, as well as important safety considerations for its use. Chapter 2 “M4000 Software” provides an overview of M4000 software and its installation. Chapter 3 “Running M4000 Tests” describes procedures for executing specimen tests. Chapter 4 “M4100 Instrument Troubleshooting” provides initial steps in troubleshooting problems and isolating a problem to either the M4100 or M4200c. Appendix A “M4000 Components Lists” describes accessories included with the M4000 Insulation Analyzer. Appendix B “Warranty” provides Doble warranty provisions applicable to the M4000. Appendix C “Error Messages” lists error message numbers and descriptions. Appendix D “Part Numbers” lists the M4000 Insulation Analyzer part numbers. 72A-1230 Rev. F July 22, 2005 Chapter 1 i Conventions Used in this Manual The following terms and typographical conventions are used in the manual: Convention Description Windows Refers to the Microsoft Windows operating system, Version 98 or later. Click Quickly press and release the left mouse button. Double-click Quickly press and release the left mouse button twice without moving the mouse.
Select Position the cursor on the desired option and click the left mouse button once. Or, highlight the desired option using the arrow keys and press ENTER. Or, press ALT and the underlined letter. Press Type a single keyboard key. For example, press ENTER. C-2 M4000 Communications Errors. C-3 July 22, 2005 Appendix D. Part Numbers 6 72A-1230 Rev. F 1. Introduction The M4000 Insulation Analyzer is used to determine the insulation quality of high-voltage power apparatus in the field. This portable test set incorporates automated Doble Testing with high accuracy and sensitivity, over a wide range of values, and with minimal susceptibility to electrostatic interference and noise. The M4000 generates a 0-12 kV test signal with an internal sine wave generator, a 3 kVA power amplifier and a step-up isolation transformer. The M4000 then calculates and reports test results by converting the sampled data into vector (magnitude and phase) quantities and applying conventional ac circuit theory. The M4000 rejects interference through the judicious application of shielding, line-synchronized reversal, and line frequency modulation (FM). The first two techniques are similar to those employed in the earlier Doble M2H product line. The FM technique involves running tests at sinusoidal frequencies 5 (or even 10, if necessary) above and below the line frequency and averaging the results. The choice is user configurable. The inevitable interference current component is removed from the sampled data set before test results are calculated using synchronous detection. This is a mathematical process that separates out a single frequency component in a given signal. It is analogous to a bandpass filter centered at the test frequency. Synchronous detection is also useful for removing harmonic distortion and random noise in the test signal itself. Safety The M4000 is designed to drive grounded and ungrounded specimens at lethal voltages and high power levels.
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Conventional ground-fault and currentlimiting schemes cannot be used to protect the operator under these test conditions. Therefore, the M4000 implements special safety techniques to minimize risk to the equipment operator. 72A-1230 Rev. F 1-1 July 22, 2005 Measurement Principles M4100 Instrument Both an operator and safety supervisor must be present when specimens are tested. Each person holds a safety switch that directly controls the output of the power amplifier through redundant electromechanical relays. In addition, the control processor can vote to disable the dc supply to the safety relay coils, thereby disabling the amplifier output if certain conditions are not met. The M4100 instrument also contains measuring circuits to determine the condition of the insulation under test, as well as direct control safety circuits to ensure electrical safety of personnel and test apparatus. The M4100 instrument has a time base generator that may be synchronized either with the power system supplying power to the test instrument, or with an internal crystal oscillator. This choice allows the test operator to select one of two modes of test operation, Line Sync Reversal or Line Frequency Modulation. When Line Sync Reversal Mode is selected, the time base is synchronized to the power source and the test will use the standard Doble 1-2 72A-1230 Rev. F M4000 Insulation Analyzer User Guide polarity reversal technique to reverse the effects of electrostatic interference. Selecting the Line Frequency Modulation Mode of operation will synchronize the time base generator to the crystal oscillator. Two tests will be run for each programmed test sequence. The first test is run at a frequency of 57 Hz and the second test is run at 63 Hz. The measured test results of each test are combined and averaged to give a 60 Hz equivalent test result. When operating in the 50 Hz frequency, the same technique will apply. The first test will run at 47 Hz, and the second test will run at 53 Hz.
This mode of test eliminates electrostatic interference from measurement, by avoiding measurement at power line frequency. Two safety switches must be attached to the M4100 instrument front panel and in the closed or depressed position prior to testing. One switch is held by the M4000 Insulation Analyzer operator and the second switch is held by a safety supervisor. The M4100 can be configured to require both switches to be opened between test sequences for the M4000 Insulation Analyzer to operate. Release of one or both switches will terminate the test sequence and high voltage potential. A safety strobe light can be used in conjunction with the instrument and is plugged into the front panel of the M4100. Whenever high voltage potential is applied from the M4100, the safety strobe light will be energized and flashing. Safety strobe connection will be required in order to operate the M4000 Insulation Analyzer, unless the default system configuration has been modified to allow for the absence of a safety strobe. In this case, the strobe connector can be removed from the M4100 front panel. 72A-1230 Rev. F 1-3 July 22, 2005 Safety circuits have been designed into the M4100 instrument to ensure safety of personnel. High voltage will not be supplied by the instrument if either of the following circuits and conditions are not satisfied: M4100 Instrument July 22, 2005 Figure 1.1 Safety Strobe Two optional items found on the M4100 front panel are the M4151 Field Calibration Reference, which will be discussed below, and a Temperature and Relative Humidity sensor. The Temperature and Relative Humidity Sensor will process temperature and humidity readings at the time of test. Front Panel Figure 1.2 M4100 Instrument 1-4 72A-1230 Rev. F The M4200c Controller is the interface between the operator and the M4000 Insulation Analyzer. The color display, control, data storage, printing and communication functions are all provided by the M4200c Controller.
This component is covered in detail in a separate manual. The M4200c has been specifically designed and built to operate in outdoor substations and other environments hostile to electronic test equipment. The unit has been hardened to electrostatic discharge (ESD) and radio frequency interference (RFI) to reduce or eliminate their effects on internal electronic circuits. The outer case of the M4200c is made of ABS plastic over an aluminum chassis that makes it rugged and suitable for transporting to remote sites. The display is a six-inch by eight-inch color transflective liquid crystal display (LCD) that runs in the VGA mode. The display has high contrast in bright sunlight, and has backlight control for low ambient light conditions. An LCD heater is installed to allow for use in cold weather. An external monitor may be used in place of the LCD screen. An external keyboard may be used in place of this keyboard. A port on the left-hand side of the M4200c allows for the use of an external, serial mouse. Third-Party Controller Certain PC’s using a Windows-based operating system available from other suppliers can be used as a system controller in lieu of the M4200c controller. These alternative machines can be used to control M4000 operations. M4000 Software Software provided with the M4200c or available to be loaded onto a ThirdParty Controller includes a program to run the M4000 Insulation Analyzer, and if desired, the optional Leakage Reactance Test, External Reference Test, and Doble Test Assistant (DTA) programs. For more information, refer to Chapter 2. The purpose of the M4150 and M4151 Field Calibration References are to provide a means of obtaining System Status, Calibration Verification, and Field Recalibration Tests of the M4100 instrument in the field. (For an explanation of these tests, refer to ”Running Diagnostics” on page 4-21). The Field Calibration Reference is mounted in the front panel of the M4100 instrument. Figure 1.
5 M4151 Field Calibration Reference 72A-1230 Rev. F 1-7 July 22, 2005 Optional M4150 And M4151 Field Calibration References Doble Standard Turns Ratio Capacitor Doble Standard Turns Ratio Capacitor This is an optional small portable capacitor that can be energized at 10 kV for performing turns ratio tests at high voltages with the M4000. Figure 1.6 Doble Turns Ratio Capacitor July 22, 2005 External Reference This is an optional feature allowing the tester to test apparatus at their full operating voltage using the M4000, providing a suitable external power source and reference are provided by the user. M4300 Transport The M4300 Transport is an option for the M4000 Insulation Analyzer that provides a means to move and store the M4000 system. It is also a platform for the field, from which the M4000 can be easily used and operated. Refer to ”Storage and Moving Mode” on page 1-10 and ”Testing Mode” on page 1-13. See Chapters 2 and 3 for further details. M4110 Leakage Reactance Interface This optional interface contains the circuitry necessary to convert the voltage and current, measured during a Leakage Reactance test on a transformer, into a form that can be measured by the M4100 Instrument. It also contains a variac so that the proper test voltage can be obtained. The Leakage Reactance test cannot be made without either this Interface or the M4130 Leakage Reactance Module, and the accompanying software. 72A-1230 Rev. F 1-9 Storage and Moving Mode July 22, 2005 When using this interface, the standard M4000 safety switch and safety strobe are used. The necessary current and voltage cables are provided for connection to the transformer, along with the necessary software, so that this becomes a self-contained kit for this test. The user is only limited by the size of the variac provided. Figure 1.
8 M4110 Leakage Reactance Interface Operating with the M4300 Transport The M4000 Insulation Analyzer is designed to be assembled on the M4300 Transport for storage, moving, and testing. The M4300 Transport is designed so that all the components of the M4000 fit in a single, packaged unit (Figure 1.9). 1-10 72A-1230 Rev. F M4000 Insulation Analyzer User Guide Controller Support Frame High Voltage Cable Cable Carry Bag M4100 Instrument Oil Test Cell July 22, 2005 M4200c Controller Figure 1.9 M4000 Insulation Analyzer in Storage Mode The recommended assembly steps for the Storage and Moving Mode is as follows: 1. Remove the M4200c Controller Support frame from the M4300 Transport. Lay the M4300 Transport down on its back, on a level surface so that the wheels and handle touch the surface. 2. Verify that the cover is installed on the M4100 Instrument front panel. Position the M4100 Instrument on the M4300 Transport as shown in the above picture. 72A-1230 Rev. F 1-11 Storage and Moving Mode 3. Position the closed M4200c Controller upside down into the area with the projections of the top cover of the M4100 Instrument. Buckle and tighten the strap snugly around both the M4100 Instrument and the M4200c Controller. 4. Lift the M4300 Transport into the upright position. 5. Place the Documentation Bag and Cable Carry Bag on top of the M4100 Instrument top cover. Buckle and tighten the strap to secure. 6. Place the Oil Test Cell on the brackets provided between the wheels on the rear of the M4300 Transport, and secure it with the strap provided. 7. Place the High Voltage Cable into the brackets provided on the top, rear part of the M4300 Transport and secure it with the strap provided. 8. Place the M4200c Controller Support frame into the tubes provided so that the end faces forward. July 22, 2005 NOTE The M4200c Controller Support frame should not be used for lifting the M4300 Transport. The M4000 Insulation Analyzer is now in Storage and Moving Mode. 1-12 72A-1230 Rev.
F M4000 Insulation Analyzer User Guide Testing Mode When assembled in the Testing Mode, the M4300 Transport serves as the field desk for the M4000 Insulation Analyzer. The Testing Mode (Figure 1.10) was designed to take advantage of the M4100 instrument's concentrated cluster of connections, providing the user with a comprehensible testing setup and a user-friendly environment while testing. F 1-13 July 22, 2005 Controller Support Frame Testing Mode The following instructions describe how to assemble the components of the M4000 Insulation Analyzer into the Testing Mode, from the Storage and Moving Mode: WARNING When preparing for a test, do not attach any test leads to the apparatus to be tested without first attaching them to the M4100 test set! 1. With the M4300 Transport in the upright position, remove the M4200c Controller Support frame, the Cable Carry bag, the Documentation bag, the High Voltage Cable, and the Oil Test Cell from the rear of the Transport. 2. Carefully lay the M4300 Transport down on its back on a level surface. The handle should face the specimen to be tested. 3. Place the M4200c Controller Support frame into the tubes provided on the M4300 Transport bottom plate, near the M4100 Instrument rubber feet. The top of the frame must extend away or opposite to the handle. July 22, 2005 4. Remove the M4200c Controller from the top surface of the M4100 Instrument. Place the M4200c Controller on the Support frame and lock it in place. 5. Remove the top cover from the M4100 Instrument top panel. The M4100 Instrument is ready for connecting the cables. 6. The M4100 Instrument top panel receptacles are designed to only accept the functionally correct cables. Place each cable into the respective receptacle. The only interchangeable cables are the Safety Switches. NOTE Inspect all cables for cracks or other damage before using. 7. Connect the Safety Ground cable to the M4100 Instrument, and to the ground of the specimen to be tested.