Microparity MPX106Q High-Precision Single-Point SPAD Chip Product Introduction—Mingjiada New Original Stock Supply
Amid rapid iterations in single-photon detection technology, SPAD (Single-Photon Avalanche Diode) chips have emerged as core components in laser ranging and 3D imaging applications, leveraging their ultra-high sensitivity and precision. Microparity's MPX106Q single-point SPAD chip, an integrated high-precision single-photon detection sensor SoC, is highly favored by the industry for its highly integrated architecture and outstanding performance that meets diverse application demands. With years of expertise in the electronic component supply chain, Mingjiada Electronics now offers new, genuine Microparity MPX106Q chips in stock. This service accelerates project R&D and mass production while eliminating supply chain delays.
Core Architecture: Highly Integrated SoC Design Simplifies System Solutions
The MPX106Q employs an advanced System-on-Chip (SoC) architecture, integrating an SPAD array, Time-to-Digital Converter (TDC), and digital processing unit onto a single chip. This eliminates the need for complex peripheral circuits, significantly streamlining the hardware design process for end devices. This integrated design not only reduces the overall chip footprint but also lowers system power consumption and overall costs, perfectly aligning with the miniaturization and low-power trends in modern smart devices. Compared to traditional discrete solutions, the MPX106Q's fully digital architecture enables end-to-end digital processing from photon detection to signal output. This eliminates signal loss during analog-to-digital conversion, significantly enhancing signal-to-noise ratio and detection accuracy.
As a single-photon detection chip based on dToF (direct time-of-flight) technology, the MPX106Q employs a narrow-pulse laser signal detection scheme, delivering ultra-fast response capabilities and precise time measurement performance. The integrated SPAD array efficiently captures individual photon signals, converting faint optical signals into identifiable electrical signals through the avalanche multiplication effect. Combined with a high-precision TDC module, it enables accurate measurement of photon flight time, providing robust technical support for distance detection.
Performance Highlights: Precision and Stability for Complex Conditions
High precision and stability form the core competitiveness of the MPX106Q. The chip incorporates professional temperature compensation functionality, automatically calibrating parameters across varying ambient temperatures to effectively counteract the impact of thermal fluctuations on detection accuracy. This ensures stable data output across a wide operating temperature range. Additionally, its integrated crosstalk suppression technology significantly reduces signal interference during multi-device collaboration, preventing false triggers and measurement deviations while enhancing operational reliability in complex environments.
To meet diverse industry requirements, the MPX106Q offers flexible parameter adjustment capabilities. Core parameters like detection distance and response speed can be customized for specific applications, balancing versatility with tailored functionality. Leveraging its low-power consumption and high integration, the chip delivers high performance while extending device battery life, making it ideal for portable and mobile applications.
Diverse Applications: Covering Multi-domain Smart Scenarios
Leveraging its outstanding performance, the MPX106Q seamlessly integrates into multiple high-end intelligent domains as a core sensing component for scenario implementation. In industrial automation, it can be incorporated into AGV (Automated Guided Vehicle) LiDAR systems to enable precise obstacle avoidance and path planning, ensuring efficient operations in warehouses and workshops. In the drone sector, it serves as a height-maintaining detection module, providing stable distance feedback for low-altitude flight and hovering tasks, thereby enhancing flight safety.
In consumer electronics and AV applications, the MPX106Q powers autofocus modules for laser TVs and projectors, rapidly achieving sharp image focus to optimize user experience. Its high-precision detection capabilities also suit compact LiDAR systems and security ranging devices, delivering accurate sensing solutions for smart security and spatial mapping. As SPAD technology gains wider adoption, the MPX106Q continues to expand its application scenarios, empowering more smart devices with enhanced perception capabilities.
Mingjiada Supply Assurance: Brand-New, Genuine, Direct-to-Customer
Leveraging years of industry resources and a rigorous supply chain management system, Mingjiada Electronics guarantees that all supplied Microparity MPX106Q chips are brand new and genuine. Each chip undergoes source-level quality verification, eliminating refurbished or substandard products to ensure stable performance and extended lifespan for end devices. Mingjiada offers flexible bulk procurement solutions tailored to the diverse needs of R&D enterprises and mass-production manufacturers, providing efficient support from sample requests to bulk shipments.
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