Solution Scope
Field, greenhouse and animal-worn devices lack fixed power supplies and need to collect information by growth, irrigation or activity cycles. The project design needs to also answer what tasks the device completes, how often it works, how exceptions are handled, and who receives the data.
Product and Interface Selection
Combined with probe and valve data, field or shed layout, planning rules, seasonal temperatures, and receiving facilities, you can choose to collect, control, or record product forms.
Power Supply and Operating Strategy
The power supply schedule is designed according to the probe stabilization time and valve type, and the offline plan is retained; the ear tag arranges broadcasts based on the wearing movement and receiving facilities.
Device and Platform Integration
Clarify the data model, connection facilities, parameter configuration, task confirmation and offline business behavior.
Validation and Project Delivery
Write the function, energy consumption and environmental conditions into the test schedule, and deliver the design, procedures and records by product module.
Product Development Services
| Product direction | Business issues and development priorities |
|---|---|
| Low-Power Soil Moisture Monitor Development | Farmland needs to collect soil moisture and temperature at multiple depths; start the probes in sequence and wait for stabilization, then cache the readings and upload them periodically or in case of limit violations. |
| Low-Power Battery Irrigation Valve Controller Development | The decentralized irrigation valve needs to be switched on and off according to the plan; receive and save the plan, perform actions on time, and check feedback; and run according to local rules when the connection is lost. |
| Low-Power Greenhouse Sensor Node Development | The greenhouse needs to add wireless environment measurement points; schedule sampling according to the stabilization time of each sensor, aggregate the records and upload them, and accept periodic configuration. |
| Low-Power Electronic Livestock Ear Tag Development | Ranches need animal identity and activity records; switch sampling and broadcast rhythms based on activity status, and regularly send identity, battery, and activity summaries. |
Low-Power Soil Moisture Monitor Development
Low-power soil moisture monitoring terminal development services for agricultural equipment manufacturers and breeding system companies, focusing on the need to collect soil moisture and temperature at multiple depths in farmland, develop software and hardware, working status and data interfaces, and verify power consumption and functions according to agreed working conditions.
Explore the ScopeProduct DevelopmentLow-Power Battery Irrigation Valve Controller Development
Low-power battery irrigation valve controller development services for agricultural equipment manufacturers and breeding system companies. Focusing on the planned switching of decentralized irrigation valves, we develop software and hardware, working status and data interfaces, and verify power consumption and functions according to agreed working conditions.
Explore the ScopeProduct DevelopmentLow-Power Greenhouse Sensor Node Development
Low-power greenhouse environment collection node development services for agricultural equipment manufacturers and breeding system companies. Wireless environment measurement points are added around greenhouse needs, software and hardware, working status and data interface development are carried out, and power consumption and functions are verified according to agreed working conditions.
Explore the ScopeProduct DevelopmentLow-Power Electronic Livestock Ear Tag Development
Low-power livestock electronic ear tag development services for agricultural equipment manufacturers and breeding system companies. Focusing on the animal identity and activity records required by the ranch, we develop software and hardware, working status and data interfaces, and verify power consumption and functions according to agreed working conditions.
Explore the ScopeSystem Architecture and Operation
The power supply schedule is designed according to the probe stabilization time and valve type, and the offline plan is retained; the ear tag arranges broadcasts based on the wearing movement and receiving facilities.
- Device side: Determine the always-on detection, periodic collection and on-demand execution modules according to the target product.
- Connector: Determine the receiving node, gateway or public network link, and define the receiving window and disconnection status.
- Business end: Process records, alarms, configurations and execution acknowledgments according to the customer system.
- Maintenance end: retain power, exception and version information, arrange local maintenance or remote upgrade.
Project Inputs
- Probe and valve information, field or shed layout, planning rules, seasonal temperatures, receiving facilities.
- Target equipment quantity, installation method, life cycle and on-site environment.
- Hardware, program, platform and protocol information are available.
- Battery or energy constraints, functional delays, and acceptable maintenance practices.
Delivery and Acceptance
| Delivery level | Content and verification focus |
|---|---|
| Product plan | Form product portfolios, interface boundaries, power supply and communication solutions, accounting for on-site infrastructure dependencies. |
| Development and implementation | The hardware or firmware, data interface, parameters and joint debugging records will be delivered according to the selected product. |
| Business verification | The power supply schedule is designed according to the probe stabilization time and valve type, and the offline plan is retained; the ear tag arranges broadcasts based on the wearing movement and receiving facilities, and records the corresponding functional behavior and on-site differences. |
| Power consumption and maintenance | Measure typical and abnormal energy consumption in a certain business cycle, check for low battery, loss of connection and recovery, and provide version and maintenance instructions. |
Specialist Engineering Services
Choose module development, system integration or testing services based on product foundation to avoid duplication of existing capabilities.
Power Domain and Peripheral Power-Gating Development
Multi-power domain and peripheral power-off control development services, split power domains, design switches, signal isolation and recovery timing, and deliver power trees, timing diagrams, switching circuits, drive and shutdown test records. The scope of the project is determined based on the target equipment, existing data and acceptance conditions.
Explore the ScopeSpecialist EngineeringMCU Sleep and Wake-Up Firmware Development
MCU Sleep wake-up firmware development service, develops sleep entry conditions, wake-up determination, clock recovery and driver reconstruction, and delivers state machine, firmware, wake-up timing and function regression records. The scope of the project is determined based on the target equipment, existing data and acceptance conditions.
Explore the ScopeSpecialist EngineeringLow-Power Sensor Acquisition Driver Development
Sensor low-power acquisition driver development service, develop single measurement, FIFO, interrupt and power supply control, retain the necessary stabilization time, and deliver driver source code, parameter description, sampling record and exception handling. The scope of the project is determined based on the target equipment, existing data and acceptance conditions.
Explore the ScopeSpecialist EngineeringLow-Power LoRa/LoRaWAN Node Development
LoRa/LoRaWAN low-power node development services implement sending and receiving windows, confirmation, retransmission and network access recovery, and deliver firmware, network parameters, message records and field test reports. The scope of the project is determined based on the target equipment, existing data and acceptance conditions.
Explore the ScopeSpecialist EngineeringSystem Power, Battery Life and Environmental Validation
Complete machine power consumption, battery life and environmental verification services, measuring state current, event energy, peak voltage drop and long-term business operation, delivering original waveforms, logs, calculation sheets, test reports and coverage. The scope of the project is determined based on the target equipment, existing data and acceptance conditions.
Explore the ScopeSpecialist EngineeringBattery Power, Charging and State-of-Charge Management
Battery power supply, charging and power management development services, design conversion, charging and protection, determine power estimation and low battery threshold, deliver power circuit, parameter configuration, status interface and load test records. The scope of the project is determined based on the target equipment, existing data and acceptance conditions.
Explore the ScopeFrequently Asked Questions
Can a battery controller drive existing irrigation valves?+
Need to check the voltage, peak current and hold mode. Continuously energized valves have different energy budgets than pulse-held valves, and a drive and power supply evaluation should be completed first.
Does a scenario project have to develop all products simultaneously?+
Select the required products according to business processes. The development of low-power soil moisture monitoring terminals and the development of low-power battery irrigation valve controllers can be established separately, and the shared data model or platform interface can be unified in the demand stage.
How do I arrange for advance verification?+
First select representative points and products, check probe and valve data, field or shed layout, planning rules, seasonal temperature, receiving facilities, verify key power supply, interfaces and business links, and then determine the development scope of other points and equipment.
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