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Product History
Early Exploration Stage (late 20th century - early 2000s): Initial pollination attempts were mostly focused on simple vibration or blowing devices, which had limited functions and low automation, and the Greenhouse Pollination Robot PCB Assembly at this time was relatively simple.
Automation and Intelligence Start-up Stage (mid-2000s - early 2010s): With the development of sensor technology, microcontrollers and image recognition technology, pollination robots began to have more complex navigation and recognition capabilities. PCBA began to integrate more sensor interfaces (such as visual sensors, distance sensors), more powerful processors and more motor drive modules at this stage to support the robot's path planning and target recognition.
Multi-function and high-precision development stage (mid-2010s to present): Modern greenhouse pollination robot PCBA has developed into a highly integrated and intelligent core component. It not only supports the robot's autonomous navigation, accurate identification and efficient pollination, but may also integrate environmental monitoring, data collection and remote control functions.
Product Specifications
Main control chip: commonly used STM32F103ZET6 (ARM Cortex-M3 core) or Arduino UNO, processing sensor data, controlling mechanical parts, and meeting basic control needs.
Sensor interface: reserved interfaces for vision, ranging, temperature and humidity, such as connecting a camera to identify flowers, supporting more than 15 lines of laser radar (detection angle ≥ 270°, ranging ≥ 30m) and IMU, and some are equipped with DH111 temperature and humidity sensor interface.
Motor drive interface: including servo control board interface (controlling the robotic arm) and DC motor drive (such as 1.5A dual-channel module, supporting PWM speed regulation), adapting to mobile parts such as Mecanum wheels.
Power management module: adapt the battery voltage (such as 12V to 9V) to each module, with overvoltage and overcurrent protection, and some support wireless charging.
Communication interface: USB and serial port are standard, some have WiFi module interface, and some chassis contain RJ45 and HDMI interfaces.
Others: The robot arm has an extended I/O interface, and the chassis is 360mm×300mm

Product application
Improve pollination efficiency and quality: Greenhouse Pollination Robot PCB Assembly controls the robot arm and combines visual recognition to quickly locate flowers to complete pollination, increase the amount of pollination per unit time, reduce missed and wrong pollination, make the results more uniform, and improve crop quality.
Reduce labor costs and labor intensity: Driving robots to replace manual pollination, reduce dependence on labor, suitable for labor shortage scenarios, reduce long-term costs, and avoid labor fatigue.
Assist in large-scale and standardized planting: Through the communication interface, multiple robots can be uniformly dispatched and data managed, large-scale standardized pollination can be achieved, the process is consistent, and stable conditions are provided for crop growth.
Adapt to the pollination needs of diverse crops: The robot arm expansion interface is adapted to different tools, and the PCBA processes sensor data. The pollination method can be adjusted for different crop flowers, and it can be flexibly applied to a variety of crops such as strawberries and tomatoes.
Ensure pollination continuity and environmental adaptability: The power management module supports stable power supply and wireless charging to achieve long-term operation; combined with data such as temperature and humidity, it guides the robot to work under suitable conditions to ensure the effect.
Our BQC Key Service Range
- JDSM: (Join Design Manufacture), also known as joint design. It emphasizes joint design service manufacturing with customers, that is, working closely with customers in the product design stage to jointly determine the design plan and specifications of the product.
- OEM:Original Equipment Manufacturer

FAQ
Q1: What components are typically included in a PCBA for greenhouse pollination robots?
A1: It usually includes main control chips, sensor interfaces, motor drive interfaces, power management modules, and communication interfaces.
Q2: How does the PCBA ensure the accuracy of pollination operations in greenhouses?
A2: It processes visual sensor data via the main control chip to control the mechanical arm for precise positioning and pollination, reducing errors.
Q3: Can the PCBA of greenhouse pollination robots be customized?
A3: Yes, it can be customized according to the specific needs of different greenhouse environments and crop types, such as interface configurations.
Q4: What role does the power management module in the PCBA play?
A4: It converts battery voltage to meet the needs of various components, provides overvoltage and overcurrent protection, and supports continuous operation.
The quality of our Full Turnkey PCB Assembly Contract Manufacturing and RoHS Compliant PCBA is reliable, the price is favorable, the quality is excellent, durable, long by the majority of customers praise and praise, is the first choice of customers to choose similar products. Our company implements a very strict code of conduct and accepts the supervision of friends and customers from all walks of life. At present, our company has a number of loyal customers. Our professional technical team can provide cost-effective products and services to customers as well as professional system solutions.
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