High-reliability electronics
Develop downhole electronics for 175°C and above with component screening and DFM in mind.
Markets
Custom electronics and integrated systems for demanding marine and oilfield environments.
Bryantech approach
We bring the relevant engineering disciplines together around the application, measurable requirements and a realistic path to production.
Develop downhole electronics for 175°C and above with component screening and DFM in mind.
Define thermal, vibration and mechanical requirements around the operating environment.
Plan verification, record results and maintain configuration information through the product lifecycle.
From component selection to assembly and test planning.
Global component options evaluated for temperature, electrical margins, lifecycle and application requirements.
Hardware architecture, power, sensing and interfaces developed around downhole conditions.
Production experience applied to PCB/PCBA, assembly, fixtures and process controls.
Thermal cycling, powered burn-in, high-temperature screening and vibration test planning.
Sonic logging drive electronics, resistivity logging PCBA and density logging PCBA. These illustrate engineering approaches; project-specific results are reviewed against the applicable requirements.
A structured reference plan for high-temperature electronics.
| Test | Reference conditions | Verification |
|---|---|---|
| Temperature cycling | −20°C to 175°C; at least 300 cycles; unpowered | Functional checks after cycling |
| Powered high-temperature soak | 175°C; 2,000 hours | Monitor critical signals and verify operation after testing |
| Hot vibration | 175°C example condition; 20 grms; 5–500 Hz; 4 hours per axis, three axes | Powered monitoring and post-test functional checks |
Reference test conditions from our engineering plan. Project acceptance is based on recorded test results. Requirements above 175°C are defined and verified for the intended operating environment.
Component choices and test evidence remain connected throughout development.
Review device ratings, electrical margins and sourcing options.
Apply the agreed high-temperature and aging screening plan.
Evaluate the assembled PCBA, interfaces and fixtures.
Record results, investigate failures and repeat checks.
Conditions are part of a test plan, not a claim of completed qualification.
The supplied reference plan uses −20°C to 175°C, a 60-minute ramp and a dwell of at least 120 minutes, for at least 300 unpowered cycles.
At 175°C, the reference plan specifies 2,000 hours with monitoring of critical DAC/POL behaviour and post-test functional checks.
The PCBA is installed in its fixture/sonde assembly. The reference is 20 grms over 5–500 Hz for four hours per axis, across three axes, with heat and powered monitoring.
Document conditions, configuration, measurements and any failures. Higher-temperature requirements and project-specific acceptance criteria are defined separately.
Build what comes next