Last Updated on : 2024-10-28 03:30:37download
This topic describes the low power embedded Bluetooth module TYBT4L.
TYBT4L is a low power embedded Bluetooth module developed by Tuya Smart. The module consists of a highly integrated Bluetooth chip TLSR8269 and a few peripheral components, with a built-in Bluetooth network protocol stack and various library functions. TYBT4L also contains a low power 32-bit MCU, Bluetooth Low Energy (LE)/2.4G radio, 512 KB flash, 16 KB static random access memory (SRAM), and 9 reusable I/O ports.
For more information, see TYBT4L Module Datasheet.
Figure 1 is a reference diagram of the coordinated processing mode of the module and 3.3 V MCU.
Figure 2 is a reference diagram of the coordinated processing mode of the module and 5 V MCU.
Module power supply:
Module pin:
Radio frequency (RF) of the module:
It is recommended that the distance between the module antenna and other metal parts should be at least 15 mm, in order to optimize the RF performance. Through the surface mount technology (SMT) process, TYBT4L is attached to the main control board to work with other components. The position and placement of the PCB antenna directly affect the RF performance. The following are positions that are recommended and not recommended.
The antenna of the TYBT4L module is placed as shown in Figure 5.1. It is recommended to use the placement positions of Option 1 and Option 2. The antenna is outside the board frame, or the board near the antenna must be hollowed out. The performance is basically the same as the RF test performance of a single module.
If the PCB antenna must be placed on the bottom plate due to design restrictions, you can refer to the placement of Option 3. The antenna is inside the board frame, but there is no copper pour and wiring near the antenna. However, it will cost some RF performance, almost with an attenuation of 1–2 dBm.
It is not recommended to use the placement position of Option 4. The antenna is inside the board frame, and there is copper pour or wiring below the antenna. The RF signal will be significantly attenuated.
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