Solution Scope
Underground, outdoor and dispersed facilities require low-frequency inspection data and additional reporting when abnormalities occur. 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
Select the collection, control or recording product form based on the point environment, probe specifications, alarm classification, reporting platform protocol, and installation structure.
Power Supply and Operating Strategy
Establish daily inspection and alarm working modes to verify the energy consumption of weak underground signals, continuous triggering, extreme temperatures and long-term disconnection.
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 Liquid Level Telemetry Device Development | Pipe networks and rivers need to collect liquid levels periodically, and increase the frequency when abnormality occurs; wake up the measurement regularly, increase the sampling or reporting frequency during abnormal stages, and return to the inspection mode after recovery. |
| Low-Power Manhole Cover Monitor Development | The manhole cover needs to be opened, tilted or moved; the always-on detection triggers wake-up, and the event is recorded after debounce confirmation; the survival and battery status are sent periodically. |
| Low-Power Fire Hydrant Monitor Development | Fire hydrants need to know the pressure and usage status remotely; low-frequency inspection status, pressure or usage event trigger recording and notification, and regular self-inspection. |
| Low-Power Pipeline Acoustic Logger Development | The water supply pipeline network needs to regularly collect sounds for leakage analysis; regularly activate the front end, exclude the startup transition period, and complete sampling, storage and batch reading. |
Low-Power Liquid Level Telemetry Device Development
Low-power liquid level telemetry terminal development services for water equipment companies and municipal facilities integrators, focusing on the need for periodic collection of liquid levels in pipe networks and rivers, increasing the frequency when abnormalities occur, developing software and hardware, working status and data interfaces, and verifying power consumption and functions according to agreed working conditions.
Explore the ScopeProduct DevelopmentLow-Power Manhole Cover Monitor Development
Low-power manhole cover status monitoring terminal development services for water equipment companies and municipal facilities integrators. Based on the need to record the opening, tilting or moving of manhole covers, 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 Fire Hydrant Monitor Development
Low-power fire hydrant status monitoring terminal development services for water equipment companies and municipal facilities integrators. Focusing on the need to remotely understand the pressure and usage status of fire hydrants, 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 Pipeline Acoustic Logger Development
Low-power pipe network acoustic acquisition and recorder development services for water equipment companies and municipal facilities integrators. Focusing on the need for regular collection of sound from the water supply pipe network for leakage analysis, 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
Establish daily inspection and alarm working modes to verify the energy consumption of weak underground signals, continuous triggering, extreme temperatures and long-term disconnection.
- 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
- Point environment, probe specifications, alarm classification, reporting platform protocol, and installation structure.
- 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 | Establish daily inspection and alarm working modes, verify the energy consumption of underground weak signals, continuous triggering, extreme temperatures and long-term disconnection, and record corresponding functional behaviors 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 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 State Machine and Fault Recovery Development
Low-power state machine and exception recovery development services, design failure exit, bounded retry, persistence and restart recovery, delivery of state diagrams, code, configuration and fault injection records. The scope of the project is determined based on the target equipment, existing data and acceptance conditions.
Explore the ScopeSpecialist EngineeringNB-IoT/LTE-M Power Saving Mode Integration
NB-IoT/LTE-M power saving mode adaptation service, requesting and checking power saving parameters, linking sampling reporting and downlink windows, processing mode is unavailable, delivering module configuration, state machine, network log and corresponding current waveform. 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 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 ScopeFrequently Asked Questions
Will adding an alarm change the battery life cycle?+
It will increase the detection or communication workload. The budget should include typical event frequencies and continuous abnormal operating conditions, and clarify the number of retries and recovery rules for lost connections.
Does a scenario project have to develop all products simultaneously?+
Select the required products according to business processes. The development of low-power liquid level telemetry terminals and the development of low-power manhole cover condition monitoring terminals can be established separately, and the shared data models or platform interfaces can be unified in the demand stage.
How do I arrange for advance verification?+
First select representative points and products, check the point environment, probe specifications, alarm classification, reporting platform protocol, installation structure, verify key power supply, interfaces and business links, and then determine the development scope of the remaining points and equipment.
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