LabVIEW DC-Motor Fault Monitor
Budget: ₹600 – ₹1,500 INR
I am building an intelligent virtual instrument around an NI USB-6008 DAQ and LabVIEW to watch a DC motor for trouble in real time. The system must acquire temperature, vibration, voltage and current, then flag abnormal behaviour and log it for later review.
The two fault families I care about most are temperature spikes and vibration anomalies, so your design needs to give these channels priority in sampling rate, signal conditioning and alarm logic. Voltage and current tracking can share the remaining bandwidth but still need to be visible on the same front panel.
What I need from you
• A LabVIEW VI (source + executable) that interfaces cleanly with the NI USB-6008, auto-detects connected sensors and streams all four signals on a unified dashboard.
• Configurable limits, real-time alarms and a data-logging routine that stamps each event.
• A post-processing module that produces a detailed technical analysis: trend plots, statistical summaries, and—for vibration—frequency-domain insight (FFT or equivalent).
• A concise user manual covering hardware wiring, calibration steps and how to interpret the reports.
Please attach a detailed project proposal outlining architecture, chosen libraries/toolkits, milestone breakdown and estimated development time. If you have past LabVIEW work with DAQ devices, feel free to reference it briefly, but the proposal itself is what will guide my selection.
I will supply the physical hardware and can run your beta builds for feedback. Let me know any additional sensor specifications you require so we can keep the iterations tight and focused.
The two fault families I care about most are temperature spikes and vibration anomalies, so your design needs to give these channels priority in sampling rate, signal conditioning and alarm logic. Voltage and current tracking can share the remaining bandwidth but still need to be visible on the same front panel.
What I need from you
• A LabVIEW VI (source + executable) that interfaces cleanly with the NI USB-6008, auto-detects connected sensors and streams all four signals on a unified dashboard.
• Configurable limits, real-time alarms and a data-logging routine that stamps each event.
• A post-processing module that produces a detailed technical analysis: trend plots, statistical summaries, and—for vibration—frequency-domain insight (FFT or equivalent).
• A concise user manual covering hardware wiring, calibration steps and how to interpret the reports.
Please attach a detailed project proposal outlining architecture, chosen libraries/toolkits, milestone breakdown and estimated development time. If you have past LabVIEW work with DAQ devices, feel free to reference it briefly, but the proposal itself is what will guide my selection.
I will supply the physical hardware and can run your beta builds for feedback. Let me know any additional sensor specifications you require so we can keep the iterations tight and focused.