diymore 1pcs for ESP32-CAM-MB WiFi Bluetooth Development Board vs Binghe ESP-32 Type-C USB CH340 Development Board + 30-Pin V1 Power Supply Board
Updated August 2026 — The diymore board is a more budget-friendly option, while the Binghe board offers additional features and power supply versatility.
The diymore board is a more budget-friendly option, while the Binghe board offers additional features and power supply versatility.
Why diymore 1pcs for ESP32-CAM-MB WiFi Bluetooth Development Board is better
lower price
diymore costs £10.98, £1.01 less than Binghe
built-in flash
diymore includes built-in flash memory
multiple interfaces
diymore supports various communication protocols
Why Binghe ESP-32 Type-C USB CH340 Development Board + 30-Pin V1 Power Supply Board is better
power supply options
Binghe supports VIN input from 5-12V
programming compatibility
Binghe supports a wider range of programming software
additional power board
Binghe includes a 30-Pin V1 Power Supply Board
Overall score
Specifications
| Spec | diymore 1pcs for ESP32-CAM-MB WiFi Bluetooth Development Board | Binghe ESP-32 Type-C USB CH340 Development Board + 30-Pin V1 Power Supply Board |
|---|---|---|
| Main Frequency | 240MHz | 240MHz |
| SRAM | 520 KB | 520 KB |
| ROM | N/A | 448 KB |
| USB Driver | N/A | CH340C |
| Programming | Limited | Arduino IDE, Lua |
Dimension comparison
Price Comparison
The diymore 1pcs for ESP32-CAM-MB WiFi Bluetooth Development Board is priced at £10.98, while the Binghe ESP-32 Type-C USB CH340 Development Board + 30-Pin V1 Power Supply Board is slightly more expensive at £11.99. This makes the diymore board a more budget-friendly option, costing £1.01 less than the Binghe board. For hobbyists and developers who are price-conscious, the diymore board offers a compelling choice without sacrificing essential functionalities.
Performance and Features
In terms of performance, both development boards boast impressive specifications. The diymore board operates at a main frequency of up to 240MHz with a computing power of 600 DMIPS, making it suitable for various applications. It also includes built-in 520 KB SRAM and supports multiple interfaces like UART, SPI, I2C, and more. On the other hand, the Binghe board features a dual-core 32-bit MCU with integrated WiFi and Bluetooth, also equipped with 520 KB of SRAM. It supports a wide range of programming software, including Arduino IDE, which enhances its versatility. While both boards are equipped for robust performance, the choice may depend on specific project requirements.
Compatibility
When it comes to compatibility, both boards excel in supporting popular programming environments. The diymore board is compatible with various communication protocols and supports cameras like OV2640 and OV7670, making it ideal for projects that require image processing. Conversely, the Binghe board also supports Arduino IDE and has a good system compatibility due to its USB driver chip, CH340C. This allows developers to easily integrate it into existing projects. Therefore, while both boards are compatible, the specific applications will dictate which board serves better in a given context.
Power Supply Options
The diymore board is designed for flexibility, supporting multiple working modes such as STA, AP, and STA+AP, but does not specify power supply options. In contrast, the Binghe board offers more defined power supply versatility, accepting VIN external wide voltage input ranging from 5-12V, along with USB and external 3.3V power supply options. This broader power supply compatibility may make the Binghe board more adaptable to various setups, especially when working in environments with different power requirements.
Additional Features
The diymore board includes built-in flash memory, which can be advantageous in applications requiring quick data storage and retrieval. Additionally, its support for various interfaces makes it a strong contender for complex projects. The Binghe board, however, comes with a 30-Pin V1 Power Supply Board, which enhances its functionality by providing additional power management features. This inclusion can be particularly useful for developers needing to manage multiple components effectively. The additional power board may justify the price difference for some users.
User Experience and Ease of Use
The diymore board is straightforward to set up and use, particularly for those familiar with programming and development boards. Its support for various interfaces means that users can easily connect other components. The Binghe board's compatibility with a range of programming software, including Lua programming, makes it user-friendly for developers of varying skill levels. The integration of the CH340 USB driver also aids in smoother installation and use. Hence, while both boards offer ease of use, the choice may hinge on the programming languages and environments preferred by the user.
Customer Feedback and Market Presence
The diymore brand may appeal more to users who prioritize affordability without sacrificing quality. Its lower price point could attract a larger customer base, especially among beginners. Meanwhile, the Binghe board, with its additional features like the power supply board, may cater more to advanced users looking for specialised capabilities despite its higher cost. The differing market strategies of both brands could influence user preferences, with each board finding its niche in the development community.
Which should you buy?
Deciding between the diymore 1pcs for ESP32-CAM-MB and the Binghe ESP-32 Type-C USB CH340 development boards ultimately depends on your specific needs and budget. If you are looking for a cost-effective solution with essential functionalities, the diymore board is the better choice at £10.98. However, if you require additional power supply options and broader compatibility with various programming environments, the Binghe board at £11.99 could offer more value in the long run. Each board has its strengths, making them suitable for different types of projects and user preferences.
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