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Ten-dimensional light-and-shadow nuclear power! Hangshun’s HK32 MCU empowers Transsion to jointly create a premium flagship experience that you can enjoy ahead of time.

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Hangshun Chip

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Hangshun Chip

2026.01.27

On January 19, 2026, Infinix, a brand under Transsion Holdings, officially launched the Infinix NOTE Edge—a 5G curved-screen smartphone featuring “Ten-Dimensional Light and Shadow”—at a immersive creative event held on a Jakarta beach. This new product, which combines aesthetic sophistication, flagship-level performance, and ultra-long battery life, owes its remarkable features to the years of deep-rooted technological collaboration between Hangshun Chips and Transsion—specifically, the jointly developed backlight system for the phone. M4+ Hangshun Core Algorithm It has become a key enabler for achieving breakthroughs in visual experience and optimizing energy efficiency in the new device, injecting robust technological momentum into the “Decathlon” product philosophy.

As a long-term strategic partner of Transsion, Hangshun Chip, leveraging its deep-rooted technological expertise in the semiconductor field, has established a full-chain collaboration system with the Transsion team—from technology R&D to product implementation. The mobile phone backlight featured in this Infinix NOTE Edge is... M4+ Hangshun Core Algorithm The solution represents the core outcome of iterative upgrades based on both parties’ extensive mass-production experience with tens of millions of terminals. Tailored specifically for the display characteristics of the new device’s 1.5K-resolution 3D curved screen, this solution features a finely tuned backlight control logic that, combined with Hangshun’s proprietary core algorithms, achieves a precise balance between brightness adjustment and power consumption control.

Empowered by the core algorithms of Hangshun’s HK32 MCU, Infinix NOTE Edge’s backlight system boasts three key advantages: First, its brightness adjustment accuracy reaches industry-leading levels, enabling smooth transitions from low brightness all the way up to a peak brightness of 4,500 nits. Whether it’s clear visibility in bright outdoor conditions or gentle, eye-friendly illumination for nighttime use, the system intelligently adapts to ambient light conditions, faithfully reproducing subtle light and shadow details. Second, the system significantly improves energy efficiency. Through algorithm-driven dynamic management of backlight zones, it ensures vivid and transparent image quality while effectively reducing screen power consumption—a crucial boost for the new device’s ultra-long battery life, thanks to its 6,500 mAh large-capacity battery. Third, the system’s stability has been comprehensively enhanced. The algorithm incorporates an adaptive compensation mechanism that can handle fluctuations in backlight output under varying temperature and voltage conditions, guaranteeing color consistency and display reliability over the long term.

Notably, the collaboration between Hangshun Chip and Transsion goes beyond mere component optimization—it is deeply integrated into the design of the product’s all-around user experience. In the XOS 16 system, based on Android 16, featured in the Infinix NOTE Edge, Glow Space’s natural-light visual elements work in synergy with Hangshun’s HK32 MCU backlight algorithm. By dynamically detecting changes in ambient light, the system adjusts the screen’s color temperature and brightness curve accordingly, ensuring that the visual experience closely aligns with the physiological habits of the human eye and delivering a “light and immersive” user experience. This approach of software-hardware collaborative optimization represents the core competitive edge that both companies have built up through years of cooperation.

The long-term strategic partnership between Transsion Holdings and Hangshun Chip is a crucial guarantee for Infinix to continue launching differentiated products. From early-stage adaptation of basic components to today’s joint R&D of core algorithms, the two companies have consistently been user-demand oriented, continuously making breakthroughs in key areas such as display performance, power consumption control, and scene adaptation. The dual strengths of the Infinix NOTE Edge—in terms of visual experience and battery life—would not have been possible without the full support of Hangshun’s HK32 MCU in backlight technology and algorithm optimization.

Looking ahead, as 5G technology continues to gain widespread adoption and the user experience of smart devices keeps improving, Hangshun Chips and Transsion will further deepen their collaboration, focusing on core areas such as display technology, energy efficiency management, and intelligent interaction. Together, they will explore more possibilities for technological innovation, delivering mobile device products that combine both premium quality and outstanding performance for users worldwide, and jointly achieve higher-quality development in the global smartphone market.

Hangshun Chip’s main product portfolio includes over 300 models across 29 major families of 32-bit MCUs—ranging from industrial, commercial, and automotive-grade to general-purpose, application-specific, and custom-designed—based on cores such as ARM Cortex-M0, M3, M4, and RISC-V. Below is a selection of specific product families:


 

HK32F005 family (the world’s smallest 32-bit MCU with an area of just 1 mm²—shattering the previous, less rigorous standards set by industry veteran TI)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 48 MHz.

Storage capacity: Maximum Flash memory is 32 KB, and maximum SRAM is 4 KB.

Segmented market: Suitable for a variety of application scenarios, such as smart homes, consumer electronics, wearable devices, and more.

The HK32L010 family—low-power powerhouse, offering exceptional cost-effectiveness and high stability, truly standing head and shoulders above the rest in the MCU world!

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 48 MHz.

Storage capacity: Maximum Flash memory is 64 KB, and maximum SRAM is 4 KB.

Segmented market: Suitable for ultra-low-power applications such as simple wearable devices and environmental monitoring sensor terminals.

HK32F407/405/417/415 family (thanks to innovative manufacturing processes and outstanding performance, it truly stands as a performance powerhouse in the fields of industrial control and smart applications).

Kernel and Main Frequency: Based on the ARM Cortex-M4F kernel, with a main frequency of up to 168 MHz.

Storage capacity: The maximum Flash memory is 1 MB, and the maximum SRAM is 256 KB.

Segmented Markets: Applicable to scenarios including industrial automation, high-end medical devices, industrial control, power equipment, energy storage, photovoltaic inverters, charging guns, battery management systems (BMS), display screens, access control and intercom systems, cooking appliances, floor-scrubbing robots, floor-washing machines, printers, stage lighting, and more.

The HK32F103A family—boasting a high-performance 120MHz main frequency and exceptional precision—truly deserves the title of “performance-to-price ratio king” in the MCU world, empowering the era of IoT.

Kernel and Main Frequency: Based on the ARM Cortex-M3 kernel, with a maximum main frequency of 120 MHz.

Storage capacity: Maximum Flash memory is 512 KB, and maximum SRAM is 97 KB.

Segmented Markets: Applicable to scenarios including industrial automation, high-end medical devices, industrial control, power equipment, energy storage, photovoltaic inverters, charging guns, battery management systems (BMS), display screens, access control and intercom systems, cooking appliances, floor-scrubbing robots, floor-washing machines, printers, stage lighting, and more.

HK32F04AA/030A family (a performance powerhouse with abundant peripheral resources and high cost-effectiveness—truly a versatile contender in the MCU world)

Kernel And clock frequency: Based on the ARM Cortex-M0 core, with a maximum clock frequency of 96 MHz.

Storage capacity: Maximum Flash memory is 128 KB, and maximum SRAM is 10 KB.

Segmented markets: Applicable to fields such as IoT, smart home, industrial, medical, and home appliances.

HK32C030 Family (Setting a New Benchmark for MCUs with its High-Performance Core, Rich Peripheral Resources, and Cost-Effectiveness)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 64 MHz.

Storage capacity: Maximum Flash memory is 64 KB, and maximum SRAM is 10 KB.

Niche market: Suitable for consumer electronics such as coffee makers, smart locks, LED control and dimming, etc.

HK32F0301MC family (a performance monster with abundant peripherals, truly a legend in terms of cost-effectiveness)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 48 MHz.

Storage capacity: Maximum Flash memory is 16 KB, and maximum SRAM is 4 KB.

Segmented market: Suitable for a variety of application scenarios, such as smart homes, industrial control, consumer electronics, and more.

HK32F0301MA family (super-powered peripherals, blazing performance, and excellent cost-effectiveness—truly a master in the MCU world)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 48 MHz.

Storage capacity: Maximum Flash memory is 32 KB, and maximum SRAM is 4 KB.

Segmented market: Suitable for a variety of application scenarios, such as smart homes, industrial control, consumer electronics, and more.

HK32L08X family (ultra-low-power monster with rich peripherals, truly the king of ultra-low power for IoT and metering applications)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 48 MHz.

Storage capacity: Maximum Flash memory is 128 KB, and maximum SRAM is 20 KB.

Segmented market: Suitable for ultra-low-power applications such as metering devices, environmental monitoring sensor nodes, industrial ranging, in-vehicle multimedia systems, and medical handheld devices—examples include water meters and gas meters.

HK32A040 family (automotive-grade quality, high performance, and rich peripherals—truly the king of cost-effectiveness for body domain and cockpit domain MCUs)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 96 MHz.

Storage capacity: Maximum Flash memory is 128 KB, and maximum SRAM is 10 KB.

Segmented market: Suitable for automotive electronic control systems such as the body domain and cabin domain.

HK32AUTO39A family (a high-reliability, ultra-large-storage performance monster—truly the all-around king in the automotive-grade MCU world)

Kernel and Main Frequency: Based on the ARM Cortex-M3 kernel, with a maximum main frequency of 120 MHz.

Storage capacity: Maximum Flash memory is 512 KB, and maximum SRAM is 96 KB.

Segmented market: Suitable for automotive electronic control systems such as the body domain and cabin domain.

HK32R78 family (high integration, low power consumption, high performance—truly a powerhouse in the home appliance MCU arena)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 64 MHz.

Storage capacity: Maximum Flash memory is 64 KB, and maximum SRAM is 10 KB.

Segmented Market: Suitable for home appliances such as air conditioners, refrigerators, washing machines, range hoods, coffee makers, smart locks, LED control and dimming systems, and more.

HK32C005 Family (backed by functional safety certification, a high-performance, cost-effective powerhouse—the king of smart control in the consumer market)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 64 MHz.

Storage capacity: Maximum Flash memory is 64 KB, and maximum SRAM is 10 KB.

Segmented markets: Applicable to fields such as IoT, smart home, industrial, medical, and home appliances.

HK32C105 Family (outstanding cost-performance ratio, highly compatible with multiple packages, IEC60730 certified, a performance powerhouse for the home appliance market)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 64 MHz.

Storage capacity: Maximum Flash memory is 64 KB, and maximum SRAM is 10 KB.

Segmented markets: Applicable to fields such as IoT, smart home, industrial, medical, and home appliances.

The HK32C207 family—combining functional safety with powerful performance, making it a true game-changer in the field of intelligent control.

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 64 MHz.

Storage capacity: Maximum Flash memory is 64 KB, and maximum SRAM is 10 KB.

Segmented markets: Applicable to fields such as IoT, smart home, industrial, medical, and home appliances.

HK32M050 family (high integration, low power consumption, flexible packaging—performance powerhouse in the motor control field)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 64 MHz.

Storage capacity: Maximum Flash memory is 16 KB, and maximum SRAM is 4 KB.

Segmented market: Suitable for motor control applications such as water pumps, power tools, fan applications, high-speed motors, and electric mobility.

HK32M060 Family (High Integration, High Precision, High Performance, and a Self-Developed Motor Acceleration Unit for More Efficient Motor Control)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 48 MHz.

Storage capacity: Maximum Flash memory is 64 KB, and maximum SRAM is 8 KB.

Segmented market: Suitable for motor control applications such as water pumps, power tools, fan applications, high-speed motors, and electric mobility.

HK32M070 Family (a monster of high precision, high efficiency, and cost performance—the ultimate powerhouse in motor control performance)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 64 MHz.

Storage capacity: Maximum Flash memory is 32 KB, and maximum SRAM is 4 KB.

Segmented market: Suitable for motor control applications such as water pumps, power tools, fan applications, high-speed motors, and electric mobility.

HK32EC021 Family (Low Power, High Integration, Intelligent Control—A Monster in E-cigarette Control Performance)

Kernel and Main Frequency: Based on the ARM Cortex-M0 kernel, with a maximum main frequency of 48 MHz.

Storage capacity: Maximum Flash memory is 32 KB, and maximum SRAM is 4 KB.

Niche market: Suitable for the e-cigarette market.

HK16P053 Family (Less than 0.018 per chip! Ahsen’s Dark Horse MCU—Reaching the Pinnacle of the World)

Kernel and clock frequency: 8-bit microcontroller with a maximum clock frequency of 16 MHz.

Storage capacity: Flash is 1 KB, and SRAM is 64 × 8 bits.

Segmented market: Suitable for applications including small home appliances, toys, smoke detectors, infrared remote controls, sensors, electronic tags, consumer electronics, and more.

HK16P071 Family (Legendary Rebirth, Dark Horse Returns, New Peak for MCUs)

Kernel and clock frequency: 8-bit microcontroller with a maximum clock frequency of 16 MHz.

Storage capacity: Flash is 2 KB, and SRAM is 128 x 8 bits.

Segmented Markets: Suitable for applications including wearable devices, consumer electronics, sensors, IoT, small home appliances, toys, infrared remote controls, LED beads, electronic scales, and more.

HK24Cxx EEPROM (Storing New Legends—Hangshun EEPROM Sets the Industry Ablaze)

Capacity: Full coverage from 2K to 512K.

Operating voltage and temperature: 1.8–5.5V, -40–85℃.

Segmented market: Suitable for critical data storage in power-off protection data control devices, diagnostic instruments, consumer electronics, and electronic tag data storage, among others.

HK25Qxx NOR Flash (Reliable storage, ultimate performance—Hangshun NOR Flash sets the industry benchmark)

Capacity: Full coverage from 1M to 128M.

Operating voltage and temperature: 2.3–5.5V, -40–85℃.

Segmented Markets: Applicable to wearable devices, PC motherboards, set-top boxes, routers, sensor nodes, electronic cigarettes, smart speakers, smart door locks, 5G base stations, and more.

Key words:

HK32MCU,Hangshun Chip,Transsion Mobile