Eric H. Maier
Mullica Hill, NJ 08062
Cell: 856-***-****
Email: *******@*******.***
Work Experience:
Nov 2023 – Oct 2024
Boeing – Vertical Lift Division
Software Test Engineer
Develops low level test procedures for the V-22 Osprey Flight Control System; using Agile software development framework to verify that software design meets the requirements.
Performs unit testing of code, including manipulation of data for analysis of system requirements.
Onboards new team members
Develops and prepares test metrics for customer reviews.
Participates in software code and test procedures reviews.
October 2016 – June 2023
ASRC – Mission Systems, Moorestown NJ
Clearance:
Secret
Senior Software Engineer
Develops software designs from requirements, implementing these designs in code, developing unit test cases, and supporting integrated software code with the team for builds/integration tests onto the AEGIS Combat platform for the CSL baseline.
Performs unit testing of code, including manipulation of data for analysis of system requirements.
Develops test procedures to verify that software design meets the requirements.
Performs regression and system level testing.
Participates in software requirements review, preliminary and critical design reviews, integration readiness review, and software acceptance reviews.
Research problems and develop solutions that meet the program’s requirements.
November 2014 – April 2016
PSEG – Nuclear Power, Salem NJ
Project Manager – IT Infrastructures & Application Solutions
Installed an Avaya wireless VoIP phone system at nuclear generating stations on schedule and within cost.
Managed Site wireless project that increased the coverage of Wi-Fi at the nuclear plant.
Integrated a bar coding system within a tool management system.
November 1989 – June 2014
The Boeing Company - Vertical Lift Division, Philadelphia, Pa
Senior Software Engineer
Led a team of 8 engineers for Chinook Mission Systems Avionics United Kingdom (UK) Integrated Product Team (IPT).
Was responsible for the design, integration and testing of a digital cockpit and mission management hardware and software onto the UK Royal Air Force (RAF) Chinook platform.
Managed a supplier contract worth $76 million for the development of digital cockpit and mission management hardware and software for the UK RAF Chinook platform within accordance of DO-254 and DO-178B.
Designed, coded, & tested over 100k lines of Ada avionics software for a real-time multi-processor embedded system using CASE tools in accordance with MIL-STD-2167A for Flight Management System, Fault Detection and On-board Maintenance Aid.
Designed the Fault Detection architecture for the Avionics Suite of hardware.
Maintained the OFP simulation code written in C++.
Managed the quality and integrity of system requirements within and across program IPTs using Rational DOORS.
Ensured successful conduct of Program technical reviews removing barriers, providing clarity and direction, and facilitate communication across all program teams.
Technical lead for Site Process Group using CMMI as the framework for the process improvements activities.
Conducted appraisal and provided recommendations to engineering organizations at multiple Boeing sites (Philadelphia, Mesa and Houston).
Cost Account Manager for the EPG process improvement initiative totaling 1.6 million directing the activities of 5 direct personnel and multiple indirect personnel.
Led 4 engineers for Comanche On-board Flight Program (OFP) Simulation Program by developing plans and schedules in accordance with customer requirements.
Cost Account Manager for 5 Labor cost accounts directing the activities of 10 personnel.
Developed Avionics requirements, including analysis and decomposition of hi-level requirements, derivation of low-level requirements, and requirements allocation to subsystems.
Designed diagnostic software embedded on a tilt-rotor aircraft in accordance with MIL-STD-1679
Developed code using CMS-2 diagnostic software embedded on a tilt-rotor aircraft in accordance with MIL-STD-1679.
Developed test plans, test cases and test procedures that traced to the system requirements.
Tested the diagnostic software embedded on a tilt-rotor aircraft in accordance with MIL-STD-1679
Software:
C++, Python, Ada, CMS-2, FORTRAN, Assembly language,
Tools:
Jira, GitLab, Matlab, Bitbucket, ClearQuest, ClearCase, DOORS