# Heart Beat GATT: ble_hr_0d.py # wie ble_hr_0c.py, allerdings mit eigenen UUIDs # ggf. TTGO resetten # Programm starten # nRF APP starten -> CONNECT -> Unknown Service "öffnen" # Zufallszahlen: from random import randint # Pausen: from time import sleep # Bluetooth-Klasse BLE: from micropython import const _ADV_TYP_NAME = const(9) _IRQ_CENTRAL_CONNECT = const(1) _IRQ_CENTRAL_DISCONNECT = const(2) _FLAG_NOTIFY = const(16) import ubluetooth class MyBLEServer(): def __init__(self, name): self.name = name self.ble = ubluetooth.BLE() self.ble.active(True) self.ble.irq(self.my_ble_irq) self.register() self.advertiser() self.conn = False def my_ble_irq(self, event, data): if event == _IRQ_CENTRAL_CONNECT: print('Central connected') self.conn = True elif event == _IRQ_CENTRAL_DISCONNECT: print('Central disconnected') self.conn = False self.advertiser() def register(self): S_UUID = 'b46dfbb4-00fb-4bb8-85c5-773ca0c21a00' # generiert mit https://www.uuidgenerator.net/ C_UUID = '58589d08-632c-497f-930b-14d0c28d2aee' # Heart Rate (HR) HR_UUID = ubluetooth.UUID(S_UUID) HR_CHAR = (ubluetooth.UUID(C_UUID), _FLAG_NOTIFY) HR_SERVICE = (HR_UUID, (HR_CHAR,)) SERVICES = (HR_SERVICE, ) ((self.hr,),) = self.ble.gatts_register_services(SERVICES) def write(self, data): self.ble.gatts_write(self.hr, data) def notify(self, data): self.ble.gatts_notify(0, self.hr, data) def advertiser(self): adv_data = b'\x02\x01\x06' name = bytes(self.name, 'UTF-8') adv_data = adv_data + bytearray((len(name) + 1, _ADV_TYP_NAME)) + name self.ble.gap_advertise(200000, adv_data, connectable=True) # 200 ms Adv_Antervall print('advertising') # main: ble = MyBLEServer("ESP32-HR") while not ble.conn: # warten, bis Verbindung besteht pass while True: sleep(3) bpm = randint(50, 65) # simulierter bpm-Wert zwischen 50 und 65 print(bpm) bpm = bytes([0, bpm]) ble.notify(bpm)