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cdr-report-sample-for-engineering-manager

CDR Sample for Engineering Managers

Engineering managers with a Bachelor’s Degree or higher can assess their engineering qualification. Engineering manager is a high-level occupation comprising the formulation of policies, strategies and plans of engineering and must have at least 3 years of experience in the direction, administration and review of engineering operations for an organization. The experience is required to be demonstrated through reference letters and organizational charts showing the position of the applicant. The engineering and technical operations of the organization is planned, organized, directed, controlled and coordinated by the Engineering managers.
CDR sample for Engineering Manager includes all the required reports such as Curriculum Vitae (CV), Continuing Professional Development (CPD), three Career Episodes (CE), and Summary Statement. The content of the CDR Report Samples is given below:

Curriculum Vitae (CV)

Resume on the basis of a professional template.

Continuing Professional Development (CPD)

The sample of CPD clarifies the Engineering Knowledge of the applicant – 159 words.

Engineering Manager Career Episode Sample 1

“Development of Micro-Grid with Automated Distribution & Monitoring – 2340 words”

Engineering Manager Career Episode Sample 2

“Series Resonant Inverter with Induction Heating – 1865 words”

Engineering Manager Career Episode Sample 3

“Fault and Load Flow Evaluation of 11KV Line Distribution Transformer – 1855 words”

Engineering Manager Summary Statement Sample:

Detail explanation of all the competency element – 2077 words.

Engineering Manager Career Episode Sample 1

Project Name: Development of Micro-Grid with Automated Distribution & Monitoring
In the first Career Episode, the author explains the ultimate project he undertook during the accomplishment of Bachelor’s degree in Electrical Engineering.

The name of the project was “Development of Micro-Grid with Automated Distribution & Monitoring”. The responsibilities of the author were:

  • To complete the important parameter of research for this project and develop a complete operational practice that helps for an effective result.
  • To frame the required block diagram of the entire project and carry out the required selection of the components.
  • To conduct required processes for tracking the solar on the solar panel.
  • To experience programmatically with the maximum tracking of power point of the buck converter.
  • To start the push-pull boost converter by using the ferrite core chopper transformer.
  • To develop essential processes for single phase full bridge inverter.
  • To fabricate the overall system and continue with the discussion of outcomes.

Engineering Manager Career Episode Sample 2

Project Name: Series Resonant Inverter with Induction Heating

In the second Career Episode, the author describes the engineering skills he used in the project he was involved in for a duration of a year as an electrical engineer. His duties and responsibilities in the project “Series Resonant Inverter with Induction Heating” were:

  • To gather sufficient information regarding induction heating and resonant inverter and its circuit.
  • To design a general block diagram of a resonant inverter and its circuit.
  • To design an inverter’s software and hardware with the use of damping factor.
  • To simulate the discovered result of the circuit diagram of the inverter.
  • To implement the hardware using MOSFET driving IC.
  • To tabulate the result and prepare documentation of the project.

Engineering Manager Episode Sample 3

Project Name: Fault and Load Flow Evaluation of 11KV Line Distribution Transformer
In the third Career Episode, the author demonstrates his technical skills he used to accomplish the project he was involved in.

His roles and responsibilities in the project “Fault and Load Flow Evaluation of 11KV Line Distribution Transformer” were:

  • To review various topics for attaining the required knowledge of the project.
  • To formulate the block illustration of the proposed system.
  • To install the sensors for measuring voltage and current.
  • To implement the three-phase PCB module with the microcontroller so as to process the data gained from the sensors
  • To design the backup supply to monitor the installed device in case of load shedding.
  • To analyze entire result gained from the sensors and online management system.

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