IoT: RF, Wi-Fi, Bluetooth LE (BLE), Zigbee & Thread Training
- IoT: RF, Wi-Fi, Bluetooth LE (BLE), Zigbee & Thread Training – Introduction: Course Objectives and Overview
- IoT: RF, Wi-Fi, Bluetooth LE (BLE), Zigbee & Thread Training – Measurements
- Power: Current, Voltage, Resistance, Energy, Ohm’s Law, Power, Joule’s Law
- Scattering (S-) Parameter: Balanced and Unbalanced
- Load-pull
- Noise Figure (NF) and Noise Factor (F)
- 1dB Compression Point
- Modulation Accuracy: Error Vector Magnitude (EVM) or Relative Constellation Error (RCE)
- Gain, Efficiency
- Bit Error Rate (BER), Packet Error Rate (PER)
- Selectivity
- Relative Received Signal Strength (RSSI)
- Sensitivity
- Harmonics, Spurious Emissions
- IoT: RF, Wi-Fi, Bluetooth LE (BLE), Zigbee & Thread Training – System
- Transceiver Architectures
- Low Noise Amplifier (LNA), Power Amplifier (PA)
- Frequency Mixers
- Electronic Filters: Low, High, and Band Pass
- Intermediate Frequency (IF)
- Modulation and Modulators
- Eye Diagram or Eye Pattern
- Filtering
- IoT: RF, Wi-Fi, Bluetooth LE (BLE), Zigbee & Thread Training – Technologies
- Internet of Things (IoT)
- Machine-to-Machine (M2M) Communications and Internet of Things (IoT)
- IoT Applications
- IoT-enabling Technologies
- WiFi, Bluetooth Low Energy (Bluetooth LE or BLE), Zigbee, Thread
- Basic Principles
- Architecture and Operation
- Protocols
- Applications
- Internet of Things (IoT)
- IoT: RF, Wi-Fi, Bluetooth LE (BLE), Zigbee & Thread Training – Demos and Discussion
- Course Recap
- Site Survey Demo: Troubleshooting issues encountered by your products within a wireless network
- Demo (and/or participant exercises): Use of the inSSIDer freeware to measure RSSI in WiFi networks.
- Demos (optional): The instructor will demonstrate the use of Ekahau, inSSIDer, and AirPcap to design and troubleshoot WiFi networks.
- Discussion: Questions/Answers