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At Tersa Earth Innovations, we believe the future of industry is green, profitable, and powered by biology. We're a dynamic biotechnology company developing TersaClean, a proprietary, modular synthetic biology platform designed to fundamentally disrupt the mining sector. Our technology doesn't just treat waste; it turns environmental liability into a massive asset by recovering valuable metals and neutralizing harmful effluent streams.
Consider the scale: an estimated $3.4 Trillion and rising in recoverable minerals remains trapped in global mining waste. Tersa Earth is capturing this opportunity, driving our mission to transform resource extraction with carbon-neutral biotech—restoring ecosystems while generating significant industry revenue. We offer a first-of-its-kind, scalable solution that addresses real-world industrial challenges with scientific elegance.
This is where you come in. We are seeking a visionary Electrical Engineer ready to translate our scientific breakthroughs into market-ready, industrial-scale reality. Join us and build the future of sustainable mining.
The position is an experienced Electrical Engineer to support the scale-up of an electrochemical mining wastewater treatment biotechnology. The role focuses on designing power electronics, integrating sensors and control systems, developing electrochemical cell architectures, and supporting field-ready scale-up for industrial pilot deployments. You will work closely with mechanical and process engineering teams to deliver reliable, site-deployable treatment modules for complex mining water environments.
- Design and optimize electrical architectures for low-voltage DC electrochemical treatment modules.
- Develop power electronics for cell operation, efficiency optimization, and overpotential management.
- Perform performance modelling and electrical efficiency calculations for electrochemical reactors.
- Specify materials, interconnects, and protective designs suitable for corrosive, high-ion mining wastewater
- Other related duties as needed.
- Use LTSpice, MATLAB/Simulink, or similar tools to model circuits, simulate load behavior, and evaluate treatment cell performance under variable water chemistry.
- Conduct electrochemical cell design analysis including internal resistance, reaction efficiency, and power balance.
- Integrate industrial sensors (flow, pH, ORP, EC, pressure, temperature) with control platforms.
- Develop PLC-based control systems and HMIs for automated operation, data logging, and remote monitoring.
- Build signal conditioning, filtering, and isolation solutions for stable, long-term sensor operation in harsh environments.
- Support scaling of electrical systems from benchtop prototypes to industrial pilots.
- Design schematics, PCB layouts, panel wiring, and electrical enclosures (e.g., IP66/NEMA rated) using Altium or similar ECAD tools.
- Collaborate with mechanical and process engineers to ensure integrated electrical, hydraulic, and chemical system compatibility.
- Assist with commissioning, troubleshooting, and optimization during pilot installations on mining sites.- 2+ years in electrical engineering, focusing on battery or fuel cell technologies.
- Expertise in power electronics, sensors, control systems, and electrochemical cell design
- Hands-on work with MFCs or similar systems
- Proficiency in circuit simulation software (e.g., LTSpice, MATLAB/Simulink) for MFC scaling.
- Strong knowledge of battery/fuel cell integration, including efficiency calculations and overpotential management.
- Ability to design PLC based HMI systems for industrial applications.
- Working knowledge of Altium schematic and layout.
- Experience scaling electrical systems for industrial/cleantech pilots.
- Collaborated with mechanical and process teams on integrated designs.
- An opportunity to shape the commercialization strategy of breakthrough synthetic biology solutions with global environmental impact.
- A collaborative, mission-driven environment committed to scientific integrity and real-world impact.
- The chance to work across scientific, engineering, and business disciplines to bring world-changing technologies to market.
- Competitive compensation and benefits.