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content/hardware/09.kits/maker/nesso-n1/datasheet/datasheet.md

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| **Component** | **Details** |
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|-----------------|-----------------------------------------------------------------------------------------------------------------------------------------------------------------------|
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| Microcontroller | - ESP32-C6 RISC-V 32-bit single-core CPU @ 160 MHz<br><br/>- Wi-Fi® 6 (802.11ax), Bluetooth® 5.3, 802.15.4 (Zigbee®)<br><br/>- 16 MB external Flash (GD25Q128/W25Q128) |
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| System Memory | - 1536 kB on-chip Flash<br><br/>- 512 kB on-chip SRAM<br><br/>- 16 MB external Flash for application storage |
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| Microcontroller | - ESP32-C6 RISC-V 32-bit single-core CPU @ 160 MHz<br/>- Wi-Fi® 6 (802.11ax), Bluetooth® 5.3, 802.15.4 (Zigbee®)<br/>- 16 MB external Flash (GD25Q128/W25Q128) |
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| System Memory | - 1536 kB on-chip Flash<br/>- 512 kB on-chip SRAM<br/>- 16 MB external Flash for application storage |
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#### Connectivity and Wireless
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| **Component** | **Details** |
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|---------------------|---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------|
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| Wireless (ESP32-C6) | - 2.4 GHz Wi-Fi® 6 (802.11ax)<br><br/>- Bluetooth® 5.3 LE<br><br/>- 802.15.4 Zigbee®<br><br/>- Dedicated FPC antenna |
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| LoRa® Module | - SX1262 transceiver (850-960 MHz)<br><br/>- Detachable external IPEX4 antenna<br><br/>- FM8625H LNA for receive path<br><br/>- SGM13005L4 amplifier for transmit path<br><br/>- Antenna storage within enclosure |
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| USB Interface | - USB-C connector<br><br/>- 5V DC input for charging and programming<br><br/>- USB 3.0 data interface |
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| Wireless (ESP32-C6) | - 2.4 GHz Wi-Fi® 6 (802.11ax)<br/>- Bluetooth® 5.3 LE<br/>- 802.15.4 Zigbee®<br/>- Dedicated FPC antenna |
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| LoRa® Module | - SX1262 transceiver (850-960 MHz)<br/>- Detachable external IPEX4 antenna<br/>- FM8625H LNA for receive path<br/>- SGM13005L4 amplifier for transmit path<br/>- Antenna storage within enclosure |
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| USB Interface | - USB-C connector<br/>- 5V DC input for charging and programming<br/>- USB 3.0 data interface |
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#### Display and User Interface
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| **Component** | **Details** |
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|------------------|-------------------------------------------------------------------------------------------------------------------------|
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| Display | - 1.14" IPS LCD<br><br/>- ST7789P3 driver @ SPI communication<br><br/>- Resolution: 135 × 240 pixels<br><br/>- 262K colors (18-bit) |
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| Touch Controller | - FT6336U capacitive touch controller<br><br/>- I²C communication |
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| User Buttons | - 2× programmable buttons (KEY1, KEY2)<br><br/>- 1× power button (long-press reset function) |
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| LEDs | - 1× green user programmable LED<br><br/>- 1× blue power/status LED |
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| Audio Feedback | - Passive buzzer (4 kHz)<br><br/>- GPIO-controlled |
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| Infrared | - IR LED transmitter<br><br/>- Remote control and signal transmission capability |
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| Display | - 1.14" IPS LCD<br/>- ST7789P3 driver @ SPI communication<br/>- Resolution: 135 × 240 pixels<br/>- 262K colors (18-bit) |
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| Touch Controller | - FT6336U capacitive touch controller<br/>- I²C communication |
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| User Buttons | - 2× programmable buttons (KEY1, KEY2)<br/>- 1× power button (long-press reset function) |
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| LEDs | - 1× green user programmable LED<br/>- 1× blue power/status LED |
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| Audio Feedback | - Passive buzzer (4 kHz)<br/>- GPIO-controlled |
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| Infrared | - IR LED transmitter<br/>- Remote control and signal transmission capability |
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#### Sensors and Expansion
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| **Component** | **Details** |
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|-----------------|-----------------------------------------------------------------------------------------------------------------------------------------------------------------|
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| IMU Sensor | - BMI270 6-axis IMU<br><br/>- 3-axis accelerometer + 3-axis gyroscope<br><br/>- I²C communication<br><br/>- Motion and orientation detection |
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| Expansion Ports | - Grove connector (HY2.0-4P): I²C, GPIO, power<br><br/>- Qwiic connector (PH1.0-4P): I²C interface<br><br/>- 8-pin HAT port: M5StickC HAT-compatible (GPIO, ADC, power) |
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| IMU Sensor | - BMI270 6-axis IMU<br/>- 3-axis accelerometer + 3-axis gyroscope<br/>- I²C communication<br/>- Motion and orientation detection |
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| Expansion Ports | - Grove connector (HY2.0-4P): I²C, GPIO, power<br/>- Qwiic connector (PH1.0-4P): I²C interface<br/>- 8-pin HAT port: M5StickC HAT-compatible (GPIO, ADC, power) |
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#### Power System
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| **Component** | **Details** |
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|--------------------|--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------|
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| Battery | - 250 mAh lithium polymer battery (3.7 - 4.2 V)<br><br/>- Integrated within enclosure |
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| Power Management | - AW32001ECSR charge controller with power path management<br><br/>- BQ27220YZFR battery fuel gauge (real-time capacity, voltage, current monitoring)<br><br/>- Over-current and over-voltage protection |
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| Voltage Regulation | - JW5712 DC-DC buck converter (battery to 3.3V system rail)<br><br/>- SGM6603 boost converter (3.3V to 5V output for peripherals) |
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| Input Voltage | - USB-C®: 5V DC input<br><br/>- Battery nominal: 3.7 V (3.7 - 4.2 V range) |
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| Battery | - 250 mAh lithium polymer battery (3.7 - 4.2 V)<br/>- Integrated within enclosure |
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| Power Management | - AW32001ECSR charge controller with power path management<br/>- BQ27220YZFR battery fuel gauge (real-time capacity, voltage, current monitoring)<br/>- Over-current and over-voltage protection |
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| Voltage Regulation | - JW5712 DC-DC buck converter (battery to 3.3V system rail)<br/>- SGM6603 boost converter (3.3V to 5V output for peripherals) |
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| Input Voltage | - USB-C®: 5V DC input<br/>- Battery nominal: 3.7 V (3.7 - 4.2 V range) |
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### Related Products
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content/hardware/09.kits/maker/nesso-n1/tutorials/user-manual/content.md

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![Power Button](assets/power-button.png)
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Additionally the `POWEROFF` expander pin allows you to shut down the device programmatically.
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Additionally, the `POWEROFF` expander pin allows you to shut down the device programmatically.
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### User Buttons
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| `LORA_ANTENNA_SWITCH` | | E0.P6 | LoRa® RF Antenna Switch Control |
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| `LORA_ENABLE` | | E0.P7 | LoRa® Module Reset/Enable |
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#### LoRa® Peer-to-Peer (P2P) Examples
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**LoRa® Peer-to-Peer (P2P) Examples**
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The following examples demonstrate basic LoRa® peer-to-peer (P2P) communication using the [RadioLib](https://github.com/jgromes/RadioLib) library. This is the foundational step for testing your hardware and building more complex network applications.
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##### LoRa® Transmitter Example
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#### LoRa® Transmitter Example
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This example configures the Nesso N1 to send a "Hello World!" packet every five seconds.
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```
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##### LoRa® Receiver Example
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#### LoRa® Receiver Example
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This example configures a second Nesso N1 to listen for LoRa® packets and print them to the Serial Monitor. It uses a simple polling method where the main loop waits until a packet is received.
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