Starting point
Power architecture support
Custom Power Integration
Engineering coordination for OEM teams integrating batteries, charging inputs, protection, conversion, connectors and compact solar into a practical product power architecture.

Coverage
Electrical + mechanical
Path
Concept to pilot production
Product details & applications
See how the solution is configured and applied.

Voltage rails, current peaks, charging, protection, sensing, communications and harnesses are documented around the host product.

Electrical fit, mechanical envelope, environment, compliance boundary and production change control are agreed together.
Product overview
Engineered around the application.
Engineering coordination for OEM teams integrating batteries, charging inputs, protection, conversion, connectors and compact solar into a practical product power architecture.
Key features
- Electrical requirement and risk review
- Cell chemistry and battery architecture selection
- Charging and power-path concept coordination
- PCM/BMS and communication definition
- Wire harness and connector interface design
- Mechanical fit, mounting and service access review
- Prototype build and validation planning
- Supplier and production coordination
Common configurable ranges
Useful starting points for an RFQ.
These are selection ranges rather than fixed stock SKUs. Dimensions, capacity, load and interfaces must be evaluated together.
Input information
Power subsystem
Project outputs
Customization capabilities
Electrical, mechanical and interface options.
Power budget
Voltage rails
Battery architecture
Charging method
BMS functions
DC conversion
Solar input
Communication
Harness & pinout
Mechanical envelope
Thermal strategy
Test plan
Documentation
Pilot build
Typical specifications
Detailed engineering discussion range.
Values below describe common feasibility discussions—not a guaranteed stock model. Final limits are confirmed in the approved specification, prototypes and project validation.
Core product specifications
| Engagement type | Application review, component selection, interface coordination and prototype-to-production support |
|---|---|
| Input requirements | Load profile, voltage rails, peak current, runtime, charging sources, dimensions, environment and target market |
| Battery scope | LiPo, cylindrical Li-ion or LiFePO4 selection and pack definition |
| Charging scope | External charger, embedded charging input or solar charging concept coordination |
| Power conversion | Voltage compatibility and DC-DC needs identified with the customer engineering team |
| Protection strategy | Cell-level, pack-level and system-interface risks reviewed for the proposed architecture |
| Communication | Analogue status, NTC, fuel gauge, UART, SMBus, CAN, RS485 or Bluetooth options considered where relevant |
| Mechanical integration | Envelope, retention, cable routing, connector access, ventilation and service strategy |
| Prototype verification | Electrical behavior, runtime, thermal response, fit, charging and fault behavior evaluated to an agreed plan |
| Documentation | Approved specification, interface definition, drawings, labels and test requirements developed per project |
Integration, validation & production
| Compliance boundary | Applicable component and end-product standards are identified; final responsibilities and evidence are agreed in writing |
|---|---|
| Production support | Prototype, design iteration, pilot build, change control and coordinated OEM production |
| Input voltage range | Minimum, nominal, maximum and transient input conditions documented for every charging or supply source |
| Output rails | Nominal voltage, tolerance, continuous current, peak current, ripple and start-up behavior defined per rail |
| Standby consumption | Sleep and quiescent-current targets included where runtime or energy harvesting is critical |
| Charging parameters | Charge voltage, current, termination, pre-charge, temperature and source priority defined for the approved battery |
| Thermal review | Losses, hot components, sensor placement, ventilation and enclosure temperature evaluated under representative loads |
| EMC / ESD planning | Interface filtering, grounding, shielding and applicable immunity / emissions responsibilities identified early |
| Traceability | Approved BOM, critical components, drawings, firmware where applicable and production test records controlled per project |
| Change management | Cell, BMS, converter, connector and other critical substitutions require documented review and approval |
Applications
Typical product uses.
New product development
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Battery redesigns
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Legacy power replacement
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Connected hardware
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Industrial instruments
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Remote equipment
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Portable electronics
Configuration is evaluated against the device load, available space, operating environment and production requirements.
OEM platform development
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Engineering support
From requirements to production.
- 01Requirement Review
- 02Electrical Evaluation
- 03Solution Design
- 04Prototype Development
- 05Testing & Validation
- 06Pilot Production
- 07Mass Production
FAQ
Planning your custom project.
When should we involve Meanwatt?
Early involvement is useful before the enclosure, charger and connector are frozen, but existing designs can also be reviewed for fit, availability or performance issues.
What files help the review?
A block diagram, load profile, mechanical envelope, connector pinout, charger details, environmental targets and forecast quantities are the most useful starting materials.
Does integration mean complete product design?
Not automatically. Our core role covers the power subsystem and supply coordination. Any wider electronics, firmware, industrial-design or certification responsibility must be explicitly scoped.
Can you replace an obsolete battery?
Yes, subject to evaluation. We compare voltage limits, capacity, current, charging method, communications, dimensions, mounting, connector and safety requirements before proposing a replacement.
How is a design frozen for production?
The electrical specification, approved cells, BMS, mechanical drawings, connector pinout, label, test criteria and change-control process are agreed before pilot and repeat production.
Faster engineering review
Send the details that define your application.
- Device and use environment
- Voltage, load and runtime
- Maximum dimensions
- Charging method
- Connector or interface
- Prototype and annual quantity
Start a project
Developing a product that needs a custom power solution?
Tell us your voltage, capacity, size, power or application requirements. We will help evaluate the right battery, solar or integrated solution.