Welding on a Machine that is Equipped with an Electronic Ecm

Welding on a Machine that is Equipped with an Electronic Engine Control System
Proper welding procedures are necessary in order to avoid damage to the engine’s electronic control module, sensors, and associated components. The component that requires welding should be removed. When welding on a machine that is equipped with an electronic engine control system and removal of the component is not possible, the following procedure must be followed. This procedure provides the minimum amount of risk to the electronic components.

NOTICE
Do not ground the welder to electrical components such as the ECM or sensors. Improper grounding can cause damage to the drive train bearings, hydraulic components, electrical components, and other components.
Clamp the ground cable from the welder to the component that will be welded. Place the clamp as close as possible to the weld. This will help reduce the possibility of damage.

Stop the engine. Turn the keyswitch to the OFF position.
Disconnect the negative battery cable from the battery. If a battery disconnect switch is installed, open the switch.

Illustration 1 – The welding current will not cause damage to any of the associated components.
Connect the welding ground cable as close as possible to the area that will be welded. Components which may be damaged by welding include bearings, hydraulic components, and electrical/electronic components. Protect the wiring harness from welding debris and from spatter.
Weld the materials by using standard welding methods.

Webinar: implementing technology…

HPF_04-2015-webinar
by Todd Dawson, Caterpillar Fatigue Practice Manager

A major hurdle in managing fatigue and distraction is that it is often difficult to see and measure. With the advent of new fatigue detection technologies, we now have direct line of sight into the scale and source of fatigue in an operation. In-vehicle alert systems can wake a sleepy driver before an imminent crash. Data from an actigraphy band can tell you when your employees are best fit for duty. However, implementing new technologies designed to detect and predict fatigue without a thoughtful change management plan is certain to deliver less than desirable results.

Caterpillar’s Fatigue Practice Manager Todd Dawson, a fatigue science expert with 20 years of experience building Fatigue Risk Management Systems, will explain a systematic approach for successful implementation of risk-mitigating technologies.

Learning Objectives:
1. Understand the sources of fatigue
2. Explore available fatigue technologies
3. Understand the key aspects of effective implementation of fatigue technology
4. Recognize the benefits of properly managing the change

Seeingmachines technology

Seeing Machines signed a global alliance agreement with Caterpillar Global Mining in 2013. Together we are reducing fatigue and distraction events, through real-time monitoring and intervention, by an average of 80% in mines around the world.

Seeing Machines continues its heritage of developing world-leading operator and environmental tracking algorithms. These form the basis of our software and hardware systems that monitor operator fatigue and distraction events, enabling real-time intervention, increased productivity, and safer outcomes. Smart sensing technology that saves lives.

SEEING Machines