Embedded Systems & Healthcare
Embedded Systems & Healthcare
Automatic Membrane Casting Device
Automatic membrane casting Device
Automatic membrane casting is a precise and efficient process used to produce high-quality membranes for various applications, including filtration, separation, and medical devices. This automated method involves the controlled deposition of polymer or other membrane-forming solutions onto a substrate, followed by processes like evaporation or phase inversion to form a consistent, uniform membrane structure. Automation ensures repeatability, reduces human error, and allows for fine-tuning of parameters such as thickness, porosity, and surface properties. Widely utilized in research and industrial settings, automatic membrane casting enhances productivity, improves quality control, and supports the development of advanced materials tailored to specific functional requirements.
Embedded System Design for NPWT Device
Embedded System Design for NPWT Device
Besides the cost reductions, the challenge was to design the UI/UX for the embedded application based on the research conducted by the client. We integrated a 5" display with the main motherboard and full embedded system development was done from scratch to production-level boards in such a way that batch quantity production was also feasible. The outside form was later reduced to sheet metal coverings hiding all screws and making it rough and tough for use.
Embedded System Design of Beeper for Neurotherapy
Challenge for embedded system design was to design its interface, which would be so easy to use and have very minimalistic, and rough usage considerations. Another issue was that it was not a full-scale production requirement. Quantities were in the order of a few numbers. So we 3D printed the outside form and embedded an 1800 mAh rechargeable battery making it a super performing beeper.
STM32F Cortex-M0/M0+/M3 Based Development Board
STM32F Cortex-M0/M0+/M3 Based Development Boards
The development board based on the STM32F Microcontroller is a small and highly versatile platform suitable for various general-purpose applications. This board features the STM32F0 MCU and is designed for easy integration and scalability. It includes headers for ESP01 Wi-Fi and HC-05 Bluetooth modules, enabling efficient wireless communication and IoT functionalities. Additionally, the onboard EEPROM provides reliable non-volatile memory for storing data. The board supports high-speed USB 2.0 with a USB 3 connector, and it has two LEDs: one indicating power status and another that can be customized for different applications. Designed to be compatible with breadboards, it allows for prototyping and debugging, with accessible pins and a dedicated ST-Link header. This motherboard is ideal for educators, educational workshops, developers, and hobbyists seeking a flexible, reliable, and efficient solution for their projects.
Embedded System Design for Password-Protected Automatic Gate
Embedded System Design for Password-Protected Automatic Gate
Available automatic gate solutions at the time of this development was all dependent on IR sensing and none of them could be classified as security gates. We designed this product / its embedded application such as the gate can be connected via Bluetooth and operates with a 6-digit password. Giving an edge as a security gate. secondly, you can always miss a remote, however is not the case with a phone app. Also, all the family members can use this Android app to control the gate. The product is currently under development.
N-Channel (A03400) MOSFET Module
N-Channel (A03400) MOSFET Module
The N-Channel (A03400) MOSFET Module is a compact and effective solution for load-driving in applications that demand accurate power delivery management. This module functions with a 12V input voltage and accommodates a current rating of up to 2A, making it suitable for devices with low to medium power requirements. This N-channel MOSFET design, provides outstanding switching capabilities with minimal on-resistance, reducing both power losses and heat production. The module is appropriate for powering resistive or inductive loads, including LED strips, small motors, solenoids, and various other DC devices. Its simple interface allows for smooth integration into control circuits, ensuring dependable performance in automation, robotics, and various electronic systems. It is compatible with breadboards and directly fits on Arduino and STM32 Nucleo boards.
FTDI to ESP-01/HC-05 Module
FTDI to ESP-01/HC-05 Module
The FTDI to ESP-01/HC-05 module is a flexible interface that connects a PC to ESP-01 or HC-05 modules through an FTDI chip. This module facilitates smooth communication, programming, and setup using AT commands, making it a crucial tool for IoT and Bluetooth projects. It allows for firmware updates, enabling developers to efficiently upload or flash new code onto the ESP-01 or HC-05 modules. This module streamlines the development process, providing a dependable and user-friendly solution for testing, troubleshooting, and implementing wireless applications.
Switch Module
Switch Module
The Switch Module is a compact and adaptable component that includes two push buttons and four connection pins: VCC, GND, S1, and S2. It is engineered to function with an input voltage of 5V or 3.3V, capable of handling a current rating of 50mA, allowing for smooth integration with microcontroller-based systems. The S1 and S2 pins are versatile, serving as either input or output, which are suitable for various applications such as user input interfaces, control signals, or status indicators. Its straightforward design makes it perfect for prototyping and educational projects, offering a dependable and easy method to interact with microcontrollers like Arduino, STM32, and other development platforms.
END SENSOR(MOC7811) Module
END SENSOR(MOC7811) Module
The END SENSOR (MOC7811) Module is a dependable and effective sensor module with three distinct end sensors for accurate edge or position detection. Structured with connection pins including VCC, GND, S1, S2, S3, and EN, this module is designed for easy integration with microcontroller systems. It is frequently utilized in automation, robotics, and object detection scenarios, providing precise feedback for position tracking or obstacle detection. Thanks to its compact design and simple connectivity, the MOC7811 module is perfect for projects that require multiple sensors for functions such as limit detection, rotary encoding, or monitoring linear movement. Its compatibility with 5V systems guarantees smooth integration with popular microcontrollers like Arduino and other development platforms.
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