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IN100-Q1-R-RC1F Datasheet(PDF) 23 Page - List of Unclassifed Manufacturers

Part # IN100-Q1-R-RC1F
Description  Ultra-Low Power Bluetooth Beacon SoC
PDF  49 Pages
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Manufacturer  ETC [List of Unclassifed Manufacturers]
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IN100-Q1-R-RC1F Datasheet(HTML) 23 Page - List of Unclassifed Manufacturers

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N1EDOC-DS-IN100-EN-V1.3
4.2. I2C
To communicate with sensors that do not support UART, an I2C master is provided. The I2C
master can communicate with multiple external I2C slave sensors/devices with different slave
addresses in sequence. The I2C commands are stored in the region 4 of the eFuse memory. For
each I2C slave, the I2C master (based on the preset values in the eFuse memory) can program
registers or read back values. The I2C master can also insert delays between two I2C commands
to give the I2C slave time to respond to the previous command. The read-back value will be stored
in memory and can be broadcast through as part of packet payload. The operations of the I2C
master can be defined through the NanoBeacon Config PC GUI. The I2C interface SCL and SDA
pins can refer to Table 1.
4.3. Pulse train counting and pulse width detection
To interface with some external digital-interface sensors, the device can count the number of
pulses in a pulse sequence (Figure 7). the device can also detect the high/low width ratio of the
sequence of pulses (pulse-width modulation, Figure 8). The ratio between the time high and time
low of a pulse can be encoded as a digital 0 or 1. The sequence can be applied to any of the available
pins defined in Table 1 above.
Figure 7 : Pulse counting
Figure 8 : PWM sequence
4.4. Sensor ADC
The Sensor ADC has 11 physical bits and can convert at a maximum of 64KSPS. The input to the
ADC is preceded by a multiplexer which enables the user to sample up to 4 different channels, as
shown in Figure 9. The package options and the pin assignments are shown in



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