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I already have two LaunchXL-CC1310 development kits on my bench and a custom PCB built around the CC1310F128RSMR that reads an NST1001 temperature sensor. What I need now is a working, reproducible environment that lets me compile, flash, and validate firmware for both the sensor node and the receiver board. The goal is simple: every five minutes the custom board should wake, sample the NST1001, transmit the reading with basic RF encryption, then drop back into the lowest-possible power state. The second LaunchXL-CC1310 must catch that packet, display or log the value, and be ready for the next frame. I want all of this set up on my own PC with TI Code Composer Studio so I can continue development later without starting from scratch. During the engagement you will: • Install and configure the full TI tool-chain (Code Composer Studio, SimpleLink SDK, SmartRF Studio) on my machine and verify it builds cleanly. • Create well-structured CCS projects for both transmitter and receiver, including low-power routines, basic AES-128 encryption on the payload, and a clear way to adjust the transmit interval. • Prove functionality on my hardware by walking me through flashing, debugging, and range/consumption tests. • Supply a concise Word document that explains the project structure, pin mappings, build steps, and any bootloader or key-management considerations so future iterations are straightforward. Acceptance is reached when the temperature value reliably appears on the receiver board every five minutes, average sleep current meets CC1310 low-power numbers, and all source code plus the .doc guide are in my hands for future expansion. I am fine sticking with basic encryption for now, but please keep the code modular so stronger authentication can be dropped in later if needed.
Project ID: 40467608
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Active 21 secs ago
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