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The 60GHz MR60BHA1 millimeter-wave sensor module features human presence and motion perception, real-time analysis of the target's respiratory and heart rate, and reports the sleep status combined with long-term sleep posture and body movement collection. With high accuracy and private protection, it is an ideal solution for secure contactless biotic radar systems in consumer electronics and healthcare.
The module uses 60GHz mmWave radar technology to enable respiratory and heart rate detection and sleep evaluation. Based on the FMCW radar system and 1 transmit 3 receive (1T3R) antenna, the algorithm accurately scans the motion tomography of the human body and provides sleep detection of stationary and vital sign collection.
The detected area is a three-dimensional sector of 40° horizontally and 40° tilted and the measured distance of breath and heart rate detection is between 0.4-1.5 m, sleep and human presence detection should be ≤2.5m.
The radar supports secondary development, using a universal UART communication interface that provides an extra common protocol as 4 groups of I/O that are reserved by the user’s definition. It can also be equipped with a host computer to output detection status and data, and its several groups of GPIOs can be customized and developed by users.
Parameter content | Minimum | Typical | Maximum | Unit |
Performance | ||||
Detection distance (thoracic) | 0.4 | 1.5 | m | |
Respiratory measurement accuracy | 90 | % | ||
Heartbeat measurement accuracy | 95 | % | ||
Refresh time | 1 | 30 | S | |
Observation set-up time | 20 | S | ||
Operating parameters | ||||
Operating voltage (VCC) | 4.6 | 5 | 6 | V |
Operating current (ICC) | 150 | mA | ||
Operating temperature (TOP) | -20 | 60 | ℃ | |
Storage temperature (TST) | -40 | 80 | ℃ | |
Launch parameters | ||||
Operating frequency (fTX) | 58 | 60 | 63.5 | GHz |
Transmitted power (Pout) | 6 | dBm | ||
Antenna parameters | ||||
Antenna gain (GANT) | 4 | dBi | ||
Horizontal beam (-3dB) | -20 | 20 | o | |
Vertical beam (-3dB) | -20 | 20 | o |
Interface 1:
Interface 2: