-

Products
AT5810
Mid-frequency output, suitable for solution providers with signal processing and algorithm capabilities.
AT58MP1T1RA (AT5810E)
Mid-frequency output, suitable for solution providers with signal processing and algorithm capabilities.
AT58MP1T1RD (AT5812)
Low power consumption (9mA), direct output of control signals, suitable for applications with specific power consumption requirements.
AT58MP1T1RDB (AT5812B)
Typical power consumption: 13mA; directly outputs control signals, suitable for applications with specific power-consumption requirements.
AT58MP1T1RDC (AT5812C)
Low power consumption (0.37mA to 14mA), with direct output of control signals, making it suitable for products with flexible power consumption adjustment requirements as well as those with higher performance needs.
AT58LP1T1RD (AT5815)
Ultra-low power consumption (40–115 µA), direct output of control signals, ideal for battery-powered products with high power-consumption requirements.
AT58LP1T1RDB (AT5815B)
Ultra-low power consumption (30–335 µA), direct output of control signals, ideal for battery-powered products with high power-consumption requirements.
AT58LP1T1RDC (AT5815C)
Ultra-low power consumption (13–188 µA), direct output of control signals, ideal for battery-powered products with higher demands on power efficiency and performance.
AT58MP1T1RS32A (AT5820)
Integrates a high-performance 32-bit MCU, directly outputs control signals, and can meet application requirements such as high-altitude operation, micro-motion detection, and presence sensing.
AT58MP1T1RS32B (AT5850)
Integrates a high-performance 32-bit MCU, directly outputs control signals, and can meet application requirements such as high-altitude operation, micro-motion detection, and presence sensing.
AT24MP1T2RS32A (AT2410)
Ultra-low-power, highly integrated 1T2R 24G SoC radar chip
AT24MP1T2RP32A (AT2410 1T2R AiP)
Ultra-low-power, highly integrated 1T2R 24G SoC radar chip with AiP
AT24MF3T3RS32A (AT2430)
3T3R 24G SoC radar chip features a 32-bit processor clocked up to 213 MHz, an integrated FFT accelerator, CFAR, super-resolution accelerator, and other signal-processing units. It also includes a CAN interface and supports ultra-low-power modes.
AT60MF1T2RS32A (AT6010)
Onboard antenna with flexible customization, SoC, 5G bandwidth, precise distance measurement, angle measurement, velocity measurement, multi-target tracking/region partitioning/feature detection, and more. Power consumption <1mW, battery-powered.
AT60MF1T1RP32A (AT6010 1T1R AiP)
SoC, compact size, AiP, 5G bandwidth, precise distance measurement, speed measurement, and motion/presence detection. Power consumption <1mW, battery-powered.
AT60MF1T2RP32A (AT6010 1T2R AiP)
SoC, compact size, AiP, 5G bandwidth, precise distance measurement, speed measurement, and motion/presence detection. Power consumption <1mW, battery-powered.
5.8GHz series chips
Ultra-low power consumption, highly integrated, widely used in smart lighting, home automation, and other fields.
10.525GHz series chips
Ultra-low power consumption, highly integrated, widely used in smart lighting, home automation, and other fields.
24GHz series chips
Ultra-low power consumption, highly integrated, and widely used in smart home, home appliances, security, healthcare, and other fields.
60GHz series chips
High integration, ultra-small size, and ultra-low power consumption—widely used in home appliances, household electronics, automotive, and other fields.
77GHz series chips
Ultra-low power consumption, highly integrated, widely used in smart lighting, home automation, and other fields.
-
Applications
Smart Lighting
Precise sensing—say goodbye to “ineffective lighting.” At the heart of radar’s application in lighting is intelligent interconnection—a system that, by sensing the movement of people and objects, enables automatic control of lighting: lights turn on when someone enters the room and turn off when they leave. Essentially, this endows lighting with a “sensing brain.”
Smart Security
At the heart of radar’s application in camera-based security systems lies “precise triggering and range-based alerting.” It endows cameras with “long-distance sensing capabilities,” addressing the pain points of traditional cameras—such as “blind-spot imaging” and “post-event retrospective analysis”—and enabling proactive security through “preemptive warnings and precise capture during events.”
Smart Home Appliances
By using radar to detect the presence, distance, movement trajectories, and even subtle movements (such as breathing) of humans or objects, home appliances can “understand” the environmental conditions. For example, an air conditioner can sense prolonged absence of occupants and automatically reduce power consumption or shut down; a refrigerator can recognize when a user approaches and automatically light up the screen; and a range hood can be activated with a wave of the hand and adjust its fan speed accordingly. These features not only enhance the interaction experience but also make appliances more energy-efficient.
Smart Home
Without requiring image capture, radar can precisely detect the presence, location, and movements of people—and even subtle vital signs such as breathing and heart rate—while safeguarding privacy and penetrating non-metallic obstructions. It enables automated control that ensures devices start up when a person enters the room and automatically enter energy-saving mode when the person leaves. Additionally, it supports natural interactions like gesture-based controls and offers enhanced safety through features such as fall detection and alerts for unusual intrusions. Ultimately, this technology makes home environments more convenient, comfortable, secure, and low-carbon.
Automotive / Two-Wheeler ADAS
In smart vehicle applications, radar serves as the “eyes” for environmental perception. By precisely detecting the position, speed, distance, and motion trajectories of surrounding objects—such as vehicles, pedestrians, and obstacles—it provides critical data support for autonomous driving decision-making and driving safety.
-
About AirTouch
About Us
Stay up-to-date with the latest information on company news, trade show updates, new product launches, and more.
Contact Us
Learn more about our products and solutions, or explore business cooperation opportunities.
Join Us
We look forward to welcoming talented individuals who are capable, ambitious, and creative to join Kegong.
Radar Application|From smart door locks to mobile phone holders, Airtouch radar applications are everywhere!
Release time:
2022-05-12 14:22
As all kinds of smart products become more and more intelligent, there are more and more smart items combined with radar sensing. As a pioneer of radar chips, Airtouch Technology is committed to applying radar technology to more industries and products. Case:

Radar induction face recognition door lock
Dessmann
Through the blessing of the ultra-low-power radar technology of Airtouch Technology,Realize the human body close to wake up , trigger cat's eye work.

Radar Sensing Phone Holder
Xiaomi
Through the blessing of the ultra-low-power radar technology of Airtouch Technology,When the mobile phone is approached, the arms of the bracket are automatically opened by induction.
Airtouch Technology Ultra-low Power Radar Solution
Recommendation
01
Airtouch Technology launched the ultra-low power microwave radar sensor chip AT58LPITIRD (AT5815), the power consumption is as low as 40uA in working state, based on the excellent functions and performance characteristics of the radar chip, it can be used as infrared pair tube and pyroelectric infrared (PIR) sensor. Perfect upgrade and alternative.

Implementation principle
Path of implementation
02
radar technology
Realization principle: A device that obtains information such as the distance, distance change rate (radial velocity), azimuth, and altitude from the target to the electromagnetic wave emission point by emitting electromagnetic waves to irradiate the target and receiving its echoes.
How it works: For details, please refer to another article in this official account "Radar Principle"
Infrared tube technology
Realization principle: The infrared light-emitting diode of the infrared transmitting circuit emits infrared rays, and after being reflected by the obstacle, the infrared receiving tube of the infrared receiving circuit receives the reflected light of the object in front to judge whether there is an obstacle in front of it.
Compare the two:

Related News