NEWLY SOFT HARDWARE DESIGN

Hardware design and embedded systems for connected products.

NEWLY SOFT develops end-to-end technical solutions for hardware design, embedded software, prototyping, IoT connectivity and production-readiness processes.

HARDWARE ENGINEERING PANELACTIVE
PCB Design
Multi-layer boards, sensors and communication circuits
CORE
Embedded Software
Microcontroller, sensor and device control software
ACTIVE
Prototyping
Sample device, test circuit and field trial processes
READY
IoT Connectivity
Panel, mobile app, cloud and local network integration
CONNECTED
Production Readiness
Manufacturability, quality control and compliance planning
PLANNED
HARDWARE SYSTEM IDENTITY

We combine hardware, embedded software and cloud connectivity in one engineering architecture.

Every hardware project is designed by considering energy efficiency, field durability, sensor accuracy, connection security, manufacturability and software integration.

NEWLY SOFT approaches hardware products as living systems that include circuit design, firmware, testing, data flow, panel integration and future production planning.

“We combine hardware, embedded software, and cloud connectivity in one engineering architecture.”
HARDWARE DEVELOPMENT DISCIPLINE

Hardware reliability starts with correct circuit, power and firmware design.

A correctly designed circuit architecture forms the foundation of hardware products. Power management, sensor connections, communication modules, low noise, thermal durability and manufacturability criteria must be planned together.

Embedded software then turns the circuit into a controlled product through sensor reading, device status, connection control, data logging and remote command management.

CORE HARDWARE SERVICES

The core building blocks of hardware and embedded product development.

PCB design, embedded software and prototyping processes designed for field-ready products.

PCB Design

Multi-layer circuit boards, sensors, power management and communication circuit designs.

Embedded Software

Microcontroller, sensor, communication and device control software.

Prototyping

Initial sample device, test circuit, enclosure compatibility and field trial processes.

PCB, POWER AND EMBEDDED SOFTWARE

Power, sensors, firmware and communication layers are designed together.

  • PCB and circuit design: Circuit schematic, board layout, sensor connections, communication modules and manufacturability criteria.
  • Power and energy management: Battery, adapter, low-power mode, charging circuit and energy consumption optimization.
  • Communication infrastructure: Wi-Fi, Bluetooth, LTE, LoRa, RFID, NFC or wired communication options based on usage scenario.
  • Microcontroller systems: STM32, ESP32, ARM-based control boards and custom embedded system logic.
  • Sensor control: Temperature, humidity, motion, location, pressure, current, level and custom sensor reading systems.
  • Firmware architecture: Device software, update infrastructure, error management and operating scenarios.
  • Secure device operation: Connection control, data logging, remote command management and field stability planning.
  • PROTOTYPING AND IoT INTEGRATION

    Prototype testing must validate circuit, enclosure, connection and software together.

    Hardware devices can operate with panels, mobile applications, cloud servers or local network systems.

    Circuit Schematic and PCB Prototype

    The initial circuit and PCB prototype are prepared to test the technical foundation of the product.

    Enclosure and Field Scenario

    3D printing, sample enclosure work, field usage scenario and durability controls can be evaluated together.

    Remote Monitoring

    Device status, sensor data, error logs, usage density and performance information can be monitored through a panel.

    Mobile App Connection

    Hardware products can be controlled through a mobile application and provide users with notifications or reports.

    PRODUCTION READINESS AND QUALITY CONTROL

    Prototype-to-production transition requires cost, supply, testing and compliance planning.

    During the transition from prototype to mass production, cost, enclosure, component supply, production testing, quality control and certification processes must be considered.

    Hardware design can be prepared for manufacturability, component selection, board dimensions, assembly ease, production cost, CE, RoHS, safety, electromagnetic compatibility and sector requirements.

    HARDWARE PROJECT REQUEST

    Turn hardware into a connected product with software and data.

    You can contact NEWLY SOFT for PCB design, embedded software, IoT device, sensor system, prototype or production-readiness projects.

    Content is protected