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CC2650MODAMOHT датащи(PDF) 25 Page - Texas Instruments |
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CC2650MODAMOHT датащи(HTML) 25 Page - Texas Instruments |
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25 / 40 page ![]() 25 CC2650MODA www.ti.com SWRS187A – AUGUST 2016 – REVISED AUGUST 2016 Submit Documentation Feedback Product Folder Links: CC2650MODA Detailed Description Copyright © 2016, Texas Instruments Incorporated 6.5 Sensor Controller The Sensor Controller contains circuitry that can be selectively enabled in standby mode. The peripherals in this domain may be controlled by the Sensor Controller Engine, which is a proprietary power-optimized CPU. This CPU can read and monitor sensors or perform other tasks autonomously, thereby significantly reducing power consumption and offloading the main CM3 CPU. The Sensor Controller is set up using a PC-based configuration tool, called Sensor Controller Studio, and typical use cases may be (but are not limited to): • Analog sensors using integrated ADC • Digital sensors using GPIOs and bit-banged I2C or SPI • UART communication for sensor reading or debugging • Capacitive sensing • Waveform generation • Pulse counting • Keyboard scan • Quadrature decoder for polling rotation sensors • Oscillator calibration The peripherals in the Sensor Controller include the following: • The low-power clocked comparator can be used to wake the device from any state in which the comparator is active. A configurable internal reference can be used with the comparator. The output of the comparator can also be used to trigger an interrupt or the ADC. • Capacitive sensing functionality is implemented through the use of a constant current source, a time- to-digital converter, and a comparator. The continuous time comparator in this block can also be used as a higher-accuracy alternative to the low-power clocked comparator. The Sensor Controller will take care of baseline tracking, hysteresis, filtering and other related functions. • The ADC is a 12-bit, 200-ksamples/s ADC with eight inputs and a built-in voltage reference. The ADC can be triggered by many different sources, including timers, I/O pins, software, the analog comparator, and the RTC. • The Sensor Controller also includes a SPI/I2C digital interface. • The analog modules can be connected to up to eight different GPIOs. The peripherals in the Sensor Controller can also be controlled from the main application processor. Table 6-1 lists the GPIOs that are connected to the Sensor Controller. |
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