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TTGO T-Echo SoftRF NRF52840 LoRa Module with 1.54 E-Paper display and BLE

SKU: ELC8034

₹ 8,195.99

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TTGO T-Echo SoftRF NRF52840 LoRa Module with 1.54 E-Paper display and BLE₹ 8,195.99
Ask AI about this product

LILYGO T-Echo is a version evolved from LILYGO T-BEAM. At the beginning of the design, more consideration was to adapt to Meshtastic and SotfRF, so Bluetooth and low power consumption were considered when designing, and NRF52840 Advanced Bluetooth 5 was selected with Thread and Zigbee multiprotocol SoC.

The LORA function continues T-BEAM's LILYGO SX1262 (alternate forĀ SX1276)Ā version functional module.

T-SX1262 wireless transceiver module, using Semtech SX1262 LORA RF transceiver chip design, working in the 868/915MHz ISM frequency band, integrated high stability TCXO 32MHz crystal oscillator, half-duplex transceiver module, power up to +22dBm, receiving sensitivity -139dBm. Automatic transceiver Switching, internal transmission and reception channel isolation, advanced LORA spread spectrum communication technology, strong anti-interference and privacy, can realize long-distance wireless data transmission and reception.

GPS module uses QUECTEL L76K GPS module

Features of the module: Multi-satellite positioning system L76K is a support multi-satellite system (GPS, BeiDou, GLONASS, QZSS), multi-system joint positioning and single system independent positioning, support AGNSS function, built-in low noise amplifier and surface filter, can provide users GNSS module with fast, accurate and high-performance positioning experience.

Compared with a single GPS system, the high-precision positioning multi-satellite system greatly increases the number of visible and usable satellites, improves positioning accuracy, and can achieve stable high-precision positioning even in complex urban environments. It supports the AGNSS function, which can greatly Reduce the time for the first positioning, built-in low-noise amplifier, can achieve high sensitivity, high-precision positioning and fast signal capture and tracking, even under weak signal conditions can also ensure a good positioning performance, built-in surface acoustic filter, can greatly The anti-interference ability of the module is enhanced, and the active antenna detection circuit and protection circuit are integrated inside to protect the module and the active antenna from damage.

The display uses a 1.54-inch electronic paper display with front light, 200x200 resolution 1.54 front LED E-paper, and it can be used in a dark environment.

Github link:

https://github.com/lyusupov/SoftRF/wiki/Badge-Edition

https://github.com/Xinyuan-LilyGO/SoftRF

Application scenarios:

  • IOT terminal controller
  • lora networking
  • Stem education product
  • DIY creation
  • GPS positioning
T-Echo Specifications:
Ā 
- NRF52840 BLE/NFC
- L76K GPS module
- T-SX1262 LORA module
- 1 .54 E-paper with front LED screen light
- RTC PCF8563
- RGB LED
- RST button X1
- Custom button X1
- Touch button TTP223
- IPX Antenna Base X3
- 1.25 pitch battery holder
- 12. 5V input Type-C USB
- 10pin 0.4 pitch BTB socket can be used to expand functional modules
What wireless and navigation technologies are supported by the module?
The board combines NRF52840 multi protocol SoC with BLE and NFC, a SX1262 LoRa transceiver for 868/915 MHz, and a QUECTEL L76K GPS module for multi satellite positioning, enabling Meshtastic and SoftRF workflows.
Does the GPS module support multiple satellite systems and AGNSS?
Yes. The L76K supports GPS, BeiDou, GLONASS and QZSS with AGNSS, high sensitivity, and fast cold start for improved positioning.
What display and input options are available on the board?
It features a 1.54 inch front light E paper display with 200x200 resolution, RTC PCF8563, RGB LED, a reset button, a custom button and a touch button (TTP223), plus expansion options via IPX bases and BTB sockets.
What are the typical use cases for this module?
Ideal for IoT terminal controllers, LoRa networking, STEM education, DIY projects, and GPS positioning tasks.
Where can I find more information and documentation for SoftRF and T Echo?
See the SoftRF wiki at https://github.com/lyusupov/SoftRF/wiki/Badge-Edition and the LilyGO SoftRF repository at https://github.com/Xinyuan-LilyGO/SoftRF for documentation and examples.
Welcome to the discussion thread for TTGO T-Echo SoftRF NRF52840 LoRa Module with 1.54 E-Paper display and BLE
Feel free to ask questions, share tips or report issues.

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Description
Ask AI about this product

LILYGO T-Echo is a version evolved from LILYGO T-BEAM. At the beginning of the design, more consideration was to adapt to Meshtastic and SotfRF, so Bluetooth and low power consumption were considered when designing, and NRF52840 Advanced Bluetooth 5 was selected with Thread and Zigbee multiprotocol SoC.

The LORA function continues T-BEAM's LILYGO SX1262 (alternate forĀ SX1276)Ā version functional module.

T-SX1262 wireless transceiver module, using Semtech SX1262 LORA RF transceiver chip design, working in the 868/915MHz ISM frequency band, integrated high stability TCXO 32MHz crystal oscillator, half-duplex transceiver module, power up to +22dBm, receiving sensitivity -139dBm. Automatic transceiver Switching, internal transmission and reception channel isolation, advanced LORA spread spectrum communication technology, strong anti-interference and privacy, can realize long-distance wireless data transmission and reception.

GPS module uses QUECTEL L76K GPS module

Features of the module: Multi-satellite positioning system L76K is a support multi-satellite system (GPS, BeiDou, GLONASS, QZSS), multi-system joint positioning and single system independent positioning, support AGNSS function, built-in low noise amplifier and surface filter, can provide users GNSS module with fast, accurate and high-performance positioning experience.

Compared with a single GPS system, the high-precision positioning multi-satellite system greatly increases the number of visible and usable satellites, improves positioning accuracy, and can achieve stable high-precision positioning even in complex urban environments. It supports the AGNSS function, which can greatly Reduce the time for the first positioning, built-in low-noise amplifier, can achieve high sensitivity, high-precision positioning and fast signal capture and tracking, even under weak signal conditions can also ensure a good positioning performance, built-in surface acoustic filter, can greatly The anti-interference ability of the module is enhanced, and the active antenna detection circuit and protection circuit are integrated inside to protect the module and the active antenna from damage.

The display uses a 1.54-inch electronic paper display with front light, 200x200 resolution 1.54 front LED E-paper, and it can be used in a dark environment.

Github link:

https://github.com/lyusupov/SoftRF/wiki/Badge-Edition

https://github.com/Xinyuan-LilyGO/SoftRF

Application scenarios:

  • IOT terminal controller
  • lora networking
  • Stem education product
  • DIY creation
  • GPS positioning
T-Echo Specifications:
Ā 
- NRF52840 BLE/NFC
- L76K GPS module
- T-SX1262 LORA module
- 1 .54 E-paper with front LED screen light
- RTC PCF8563
- RGB LED
- RST button X1
- Custom button X1
- Touch button TTP223
- IPX Antenna Base X3
- 1.25 pitch battery holder
- 12. 5V input Type-C USB
- 10pin 0.4 pitch BTB socket can be used to expand functional modules
FAQ
What wireless and navigation technologies are supported by the module?
The board combines NRF52840 multi protocol SoC with BLE and NFC, a SX1262 LoRa transceiver for 868/915 MHz, and a QUECTEL L76K GPS module for multi satellite positioning, enabling Meshtastic and SoftRF workflows.
Does the GPS module support multiple satellite systems and AGNSS?
Yes. The L76K supports GPS, BeiDou, GLONASS and QZSS with AGNSS, high sensitivity, and fast cold start for improved positioning.
What display and input options are available on the board?
It features a 1.54 inch front light E paper display with 200x200 resolution, RTC PCF8563, RGB LED, a reset button, a custom button and a touch button (TTP223), plus expansion options via IPX bases and BTB sockets.
What are the typical use cases for this module?
Ideal for IoT terminal controllers, LoRa networking, STEM education, DIY projects, and GPS positioning tasks.
Where can I find more information and documentation for SoftRF and T Echo?
See the SoftRF wiki at https://github.com/lyusupov/SoftRF/wiki/Badge-Edition and the LilyGO SoftRF repository at https://github.com/Xinyuan-LilyGO/SoftRF for documentation and examples.
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Feel free to ask questions, share tips or report issues.
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