From 4b99e512944d8c0db3146688cf0bd4212d61ce9a Mon Sep 17 00:00:00 2001 From: Rob Lauer Date: Tue, 30 Jun 2026 11:26:27 -0500 Subject: [PATCH] add mention to point ai assistants at the firmware --- 51-rooftop-hvac-predictive-maintenance/README.md | 2 ++ 52-vfd-pump-predictive-maintenance/README.md | 2 ++ 53-municipal-wastewater-lift-station-monitor/README.md | 2 ++ 54-multi-site-walk-in-cooler-energy-setpoint-monitor/README.md | 2 ++ 55-demand-response-solar-battery-dispatcher/README.md | 2 ++ 56-commercial-plug-load-after-hours-waste-dashboard/README.md | 2 ++ 57-propane-lpg-tank-fill-telemetry/README.md | 2 ++ 58-commercial-grease-interceptor-level-monitor/README.md | 2 ++ 60-lone-worker-panic-fall-detection-beacon/README.md | 2 ++ .../README.md | 2 ++ .../README.md | 2 ++ .../README.md | 2 ++ 65-off-grid-livestock-water-tank-monitor/README.md | 2 ++ 66-remote-apiary-hive-health-monitor/README.md | 2 ++ 68-cnc-machine-spindle-load-cycle-time-tracker/README.md | 2 ++ 69-injection-molding-shot-to-shot-process-monitor/README.md | 2 ++ 70-trailer-manufacturer-connected-trailer-platform/README.md | 2 ++ 71-legacy-diesel-generator-fleet-performance-uplift/README.md | 2 ++ 72-solar-array-string-level-performance-dashboard/README.md | 2 ++ 74-returnable-container-tote-pool-tracker/README.md | 2 ++ 75-heavy-equipment-hours-of-use-utilization-tracker/README.md | 2 ++ 76-untethered-trailer-chassis-fleet-tracker/README.md | 2 ++ 78-rail-car-condition-interchange-tracker/README.md | 2 ++ 79-utility-distribution-transformer-load-monitor/README.md | 2 ++ 80-ev-charger-session-utilization-monitor/README.md | 2 ++ 81-commercial-tenant-sub-metering-bridge/README.md | 2 ++ .../README.md | 2 ++ 83-off-grid-solar-battery-site-controller/README.md | 2 ++ 84-remote-cabinet-backup-battery-sentinel/README.md | 2 ++ 85-cellular-medication-adherence-pillbox/README.md | 2 ++ 87-post-discharge-vitals-relay-hub/README.md | 2 ++ 88-reefer-trailer-cold-chain-door-event-monitor/README.md | 2 ++ 89-pallet-attached-cold-chain-logger/README.md | 2 ++ 33 files changed, 66 insertions(+) diff --git a/51-rooftop-hvac-predictive-maintenance/README.md b/51-rooftop-hvac-predictive-maintenance/README.md index 7122fd93..47766be7 100644 --- a/51-rooftop-hvac-predictive-maintenance/README.md +++ b/51-rooftop-hvac-predictive-maintenance/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Rooftop%20HVAC%20Unit%20Predictive%20Maintenance%20Pack). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/rtu_predictive_maintenance/](firmware/rtu_predictive_maintenance/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a retrofit [downtime prevention](https://blues.com/downtime-prevention/) pack for commercial rooftop HVAC units. A handful of inexpensive sensors and a Blues [Notecard Cell+WiFi](https://shop.blues.com/products/notecard-cellular?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) turn an ordinary rooftop unit into a remotely-monitored, predictively-maintained asset — catching refrigerant loss, short-cycling, and clogged filters *before* the unit fails and a tenant loses cooling. diff --git a/52-vfd-pump-predictive-maintenance/README.md b/52-vfd-pump-predictive-maintenance/README.md index e3a11d56..feadfcc9 100644 --- a/52-vfd-pump-predictive-maintenance/README.md +++ b/52-vfd-pump-predictive-maintenance/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=VFD-Driven%20Pump%20Predictive%20Maintenance%20via%20Modbus). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/vfd_pump_monitor/](firmware/vfd_pump_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [downtime prevention](https://blues.com/downtime-prevention/) reference design that turns an industrial centrifugal pump into a predictively-maintained, remotely-monitored asset by reading what the pump's existing **VFD (variable frequency drive)** already knows about itself over **Modbus RTU**, on a real industrial **PLC** (programmable logic controller), with a cellular [Notecard](https://shop.blues.com/products/notecard-cellular?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) for the data uplink. diff --git a/53-municipal-wastewater-lift-station-monitor/README.md b/53-municipal-wastewater-lift-station-monitor/README.md index 523d2f85..b01414ac 100644 --- a/53-municipal-wastewater-lift-station-monitor/README.md +++ b/53-municipal-wastewater-lift-station-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Municipal%20Wastewater%20Lift%20Station%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/lift_station_monitor/](firmware/lift_station_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [downtime prevention](https://blues.com/downtime-prevention/) retrofit for municipal wastewater lift stations that catches pump failures, discharge obstructions, and high-water conditions before they become a sanitary overflow. A handful of sensors and a single [Notecard for Skylo](https://shop.blues.com/products/notecard-for-skylo?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) — one module that carries cellular, WiFi, and Skylo satellite radios and fails over between them automatically — transform a sealed concrete vault into a remotely-monitored station that delivers alerts to the on-call crew within minutes, not hours after a manual site visit. One SKU and one firmware image cover the entire fleet, from the station three blocks from city hall to the one at the edge of the service territory beyond any cell tower. diff --git a/54-multi-site-walk-in-cooler-energy-setpoint-monitor/README.md b/54-multi-site-walk-in-cooler-energy-setpoint-monitor/README.md index e232ee53..c2178146 100644 --- a/54-multi-site-walk-in-cooler-energy-setpoint-monitor/README.md +++ b/54-multi-site-walk-in-cooler-energy-setpoint-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Multi-Site%20Walk-In%20Cooler%20Energy%20%26%20Setpoint%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/cooler_monitor/](firmware/cooler_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a cellular [energy savings](https://blues.com/energy-savings/) reference design that gives corporate operations teams a live view into the temperature, compressor runtime, and door behavior of every walk-in cooler in their fleet, without touching a single franchisee or operator's WiFi network. diff --git a/55-demand-response-solar-battery-dispatcher/README.md b/55-demand-response-solar-battery-dispatcher/README.md index 74da7301..4ebb7ad7 100644 --- a/55-demand-response-solar-battery-dispatcher/README.md +++ b/55-demand-response-solar-battery-dispatcher/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Demand-Response%20Solar%20%2B%20Battery%20Dispatcher). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/solar_battery_dispatcher/](firmware/solar_battery_dispatcher/) — so it can learn how the device works and help you adapt it to your hardware. + This project is an [energy savings](https://blues.com/energy-savings/) reference design that gives a commercial solar + battery installation an independent cellular control channel, so the asset owner can dispatch the battery to discharge during expensive peak-rate hours, charge during cheap overnight hours, and curtail grid export when the utility calls a demand-response (DR) event, without depending on the building's IT network or a vendor's proprietary cloud portal. The device reads live operating state from the inverter and the battery's management system (BMS) over the industrial bus they already share, and signals each one to enter the right mode at the right time, driven by a schedule or by live commands routed through the [Blues Notehub](https://blues.com/notehub/) cloud service. diff --git a/56-commercial-plug-load-after-hours-waste-dashboard/README.md b/56-commercial-plug-load-after-hours-waste-dashboard/README.md index 4d66fa92..5b17900f 100644 --- a/56-commercial-plug-load-after-hours-waste-dashboard/README.md +++ b/56-commercial-plug-load-after-hours-waste-dashboard/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Commercial%20Plug-Load%20%26%20After-Hours%20Waste%20Dashboard). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/plug_load_monitor/](firmware/plug_load_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a cellular-connected [energy savings](https://blues.com/energy-savings/) monitor that clips non-invasive CT (current transformer) clamps onto branch circuits in a commercial sub-panel, samples RMS current once a minute, and transmits hourly per-circuit profiles to the [Blues Notehub](https://blues.com/notehub/) cloud service, giving energy consultants a view into which circuits are burning money at 2 AM without ever touching the building's corporate network. diff --git a/57-propane-lpg-tank-fill-telemetry/README.md b/57-propane-lpg-tank-fill-telemetry/README.md index 2f6c45c9..569830ae 100644 --- a/57-propane-lpg-tank-fill-telemetry/README.md +++ b/57-propane-lpg-tank-fill-telemetry/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Propane%20%2F%20LPG%20Tank%20Fill%20Telemetry%20%E2%80%94%204%E2%80%9320%20mA%20Float-Transmitter%20Variant). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/propane_tank_telemetry/](firmware/propane_tank_telemetry/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [truck roll reduction](https://blues.com/truck-roll-reduction/) reference design that gives propane dealers per-tank fill telemetry across their entire delivery territory, replacing fixed-schedule routes with demand-driven dispatch and projecting days-until-empty for every tank in the fleet. A level sensor at the tank's existing gauge port and a temperature probe on the tank shell turn each tank into a self-reporting asset; a single [Notecard for Skylo](https://shop.blues.com/products/notecard-for-skylo?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) (one module carrying cellular, WiFi, and Skylo satellite radios that fails over between them automatically) carries the data from the tank three minutes outside town just as readily as from the remote mountain cabin beyond any cell tower. One SKU and one firmware image cover every site type in the territory. diff --git a/58-commercial-grease-interceptor-level-monitor/README.md b/58-commercial-grease-interceptor-level-monitor/README.md index 4cc7cded..b881d367 100644 --- a/58-commercial-grease-interceptor-level-monitor/README.md +++ b/58-commercial-grease-interceptor-level-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Hydromechanical%20%28HGI%29%20and%20Batch-Collection%20Grease%20Interceptor%20Level%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/grease_interceptor_monitor/](firmware/grease_interceptor_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [truck-roll reduction](https://blues.com/truck-roll-reduction/) device for pumping providers who service **commercial grease interceptors**. A waterproof ultrasonic distance sensor installed in the access cover reports fill level over cellular every 15 minutes; when the level reaches a threshold, an alert dispatches immediately to the [Blues Notehub](https://blues.com/notehub/) cloud service. Trucks are routed on actual condition, not a fixed calendar. diff --git a/60-lone-worker-panic-fall-detection-beacon/README.md b/60-lone-worker-panic-fall-detection-beacon/README.md index 04ba3c32..bdb59ea7 100644 --- a/60-lone-worker-panic-fall-detection-beacon/README.md +++ b/60-lone-worker-panic-fall-detection-beacon/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Lone%20Worker%20Panic%20%26%20Fall%20Detection%20Safety%20Beacon). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/lone_worker_beacon/](firmware/lone_worker_beacon/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a wearable [safety assurance](https://blues.com/safety-assurance/) device for utility linemen, oilfield pumpers, field service technicians, and solo contractors. A single [Notecard for Skylo](https://shop.blues.com/products/notecard-for-skylo?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) carries cellular, WiFi, and Skylo NTN satellite radios on one module and fails over between them automatically. It turns a belt-clip enclosure into a cellular-first, satellite-backed distress beacon — detecting falls and accepting an explicit panic-button press — that can reach a dispatcher from the middle of nowhere, exactly where lone-worker incidents happen. diff --git a/61-regulatory-grade-pharmacy-lab-cold-storage-audit-monitor/README.md b/61-regulatory-grade-pharmacy-lab-cold-storage-audit-monitor/README.md index 9a6983d4..f8bf5912 100644 --- a/61-regulatory-grade-pharmacy-lab-cold-storage-audit-monitor/README.md +++ b/61-regulatory-grade-pharmacy-lab-cold-storage-audit-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Pharmacy%2FLab%20Cold-Storage%20Audit%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/cold_storage_audit_monitor/](firmware/cold_storage_audit_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [safety assurance](https://blues.com/safety-assurance/) reference design that gives pharmacies, clinical laboratories, and vaccine depots a continuous, automatically-timestamped temperature record for every refrigerator and freezer in their compliance scope, delivered over a cellular data path that bypasses the facility's regulated network entirely. Immediate alerts fire the moment the temperature strays outside its configured range or a door is left open too long. diff --git a/62-construction-site-environmental-noise-exposure-monitor/README.md b/62-construction-site-environmental-noise-exposure-monitor/README.md index 3952078b..4a36f1d4 100644 --- a/62-construction-site-environmental-noise-exposure-monitor/README.md +++ b/62-construction-site-environmental-noise-exposure-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Construction%20Site%20Environmental%20%26%20Noise%20Exposure%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/construction_env_monitor/](firmware/construction_env_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [safety assurance](https://blues.com/safety-assurance/) reference design that turns a construction site into a continuously monitored, GPS-stamped area monitoring point — tracking PM2.5, PM10, and dB(A) sound levels in real time without any site WiFi, power outlets, or IT coordination. diff --git a/63-construction-equipment-anti-theft-tracker-with-immobilizer/README.md b/63-construction-equipment-anti-theft-tracker-with-immobilizer/README.md index a39fbe45..301eec51 100644 --- a/63-construction-equipment-anti-theft-tracker-with-immobilizer/README.md +++ b/63-construction-equipment-anti-theft-tracker-with-immobilizer/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Construction%20Equipment%20Anti-Theft%20Tracker%20with%20Immobilizer). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/construction_equipment_anti_theft/](firmware/construction_equipment_anti_theft/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [loss prevention](https://blues.com/loss-prevention/) reference design for construction equipment fleets. The system turns any skid steer, light tower, portable compressor, or generator into a hardened asset that reports its own location continuously, fires alerts on geofence breach and after-hours motion, and accepts a remotely-staged ignition immobilizer command. It runs on a self-contained cellular-plus-satellite link with a small solar-trickled battery, requiring no job-site WiFi or IT coordination. diff --git a/65-off-grid-livestock-water-tank-monitor/README.md b/65-off-grid-livestock-water-tank-monitor/README.md index fab8c95f..fd0dac24 100644 --- a/65-off-grid-livestock-water-tank-monitor/README.md +++ b/65-off-grid-livestock-water-tank-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Off-Grid%20Livestock%20Water%20Tank%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/livestock_water_tank_monitor/](firmware/livestock_water_tank_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a solar-powered [remote monitoring](https://blues.com/solutions-remote-monitoring/) system for off-grid livestock water tanks. It tells a rancher when a stock tank is going dry — without anyone driving the pasture roads to check. The device measures the water level, the pump's current draw, and the solar system's own battery voltage, then reports all three to a phone or dispatch system over cellular wherever a tower is reachable and over satellite via [Skylo](https://www.skylo.tech/)'s non-terrestrial network (NTN) where it isn't. The radio stays off between an immediate alert and a 4-hour summary, so the device runs indefinitely on a modest solar panel and a single battery. diff --git a/66-remote-apiary-hive-health-monitor/README.md b/66-remote-apiary-hive-health-monitor/README.md index 46eda9a8..a2b76367 100644 --- a/66-remote-apiary-hive-health-monitor/README.md +++ b/66-remote-apiary-hive-health-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Remote%20Apiary%20Hive%20Health%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/apiary_hive_monitor/](firmware/apiary_hive_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a solar-powered hive monitor that turns each hive into a [remotely-monitored asset](https://blues.com/solutions-remote-monitoring/) — tracking hive weight and brood-box climate every 15 minutes, capturing a brief acoustic snapshot of the colony once per day, and reporting it all without grid power and without a truck roll every time the data looks wrong. A single [Notecard for Skylo](https://shop.blues.com/products/notecard-for-skylo?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) carries cellular, WiFi, and Skylo satellite radios on one module and fails over between them automatically, so the same hardware and firmware reach the [Blues Notehub](https://blues.com/notehub/) cloud service from an orchard with cell coverage or a meadow beyond any tower. diff --git a/68-cnc-machine-spindle-load-cycle-time-tracker/README.md b/68-cnc-machine-spindle-load-cycle-time-tracker/README.md index b0f4760d..d172b152 100644 --- a/68-cnc-machine-spindle-load-cycle-time-tracker/README.md +++ b/68-cnc-machine-spindle-load-cycle-time-tracker/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=CNC%20Machine%20Spindle%20Load%20%26%20Cycle%20Time%20Tracker). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/cnc_spindle_tracker/](firmware/cnc_spindle_tracker/) — so it can learn how the device works and help you adapt it to your hardware. + This project is an [industrial equipment monitoring](https://blues.com/industrial-equipment-monitoring/) reference design for machine-tool OEMs who want continuous visibility into how their installed base is actually being used. The device sits on the customer's CNC machine and reports the operational signals an OEM cares about: how hard the spindle is working, how many cycles ran each hour, how often the machine sits idle, which operator is logged in, and what alarm codes the controller raises. All of it travels back to the OEM's cloud over cellular, without ever touching the customer's plant network. Routine telemetry batches into hourly summaries; alarms and operator-ID changes arrive immediately. The hardware is an Arduino OPTA RS485 with a Blues Wireless for OPTA cellular expansion (see §4 for the BOM); the data source is any CNC controller that exposes telemetry over **Modbus TCP**. diff --git a/69-injection-molding-shot-to-shot-process-monitor/README.md b/69-injection-molding-shot-to-shot-process-monitor/README.md index 23b109a6..4b5ca652 100644 --- a/69-injection-molding-shot-to-shot-process-monitor/README.md +++ b/69-injection-molding-shot-to-shot-process-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Injection%20Molding%20Hydraulic%20Injection%20Pressure%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/injection_molding_shot_monitor/](firmware/injection_molding_shot_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a shot-level process monitor for plastic [injection molding](https://blues.com/industrial-equipment-monitoring/) machines. The device captures the two signals that drive part quality on every shot (hydraulic injection pressure and mold temperature) and reduces each shot to a handful of summary metrics a process engineer would want to see (peak pressure, fill time, pack pressure, average mold temperature, shot sequence number), then pushes them to the cloud over cellular. Because the connectivity sits outside the plant's OT network, no IT or network ticket is required at the customer site. The hardware is a Blues Notecarrier CX paired with a [Notecard Cell+WiFi](https://shop.blues.com/products/notecard-cell-wifi?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link). diff --git a/70-trailer-manufacturer-connected-trailer-platform/README.md b/70-trailer-manufacturer-connected-trailer-platform/README.md index a282bbd6..b2b112f2 100644 --- a/70-trailer-manufacturer-connected-trailer-platform/README.md +++ b/70-trailer-manufacturer-connected-trailer-platform/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Connected%20Trailer%20Platform%20%E2%80%94%20Cargo%20Temperature%2C%20Door%2C%20and%20GPS%20Monitoring). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/connected_trailer_platform/](firmware/connected_trailer_platform/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a connected-trailer platform for trailer OEM integration, targeting manufacturers who want to own the cellular and satellite connectivity layer on refrigerated trailers from day one. The platform reports the operational signals a fleet operator actually checks (cargo-air temperature at two points inside the trailer, rear-door open/close events, GPS position, and, with vendor-specific decode work, reefer setpoint and tire pressure) back to the OEM's cloud continuously, including across the cellular dead zones common on long rural hauls and at intermodal rail yards. When cellular coverage is unavailable, the device falls back automatically to the [Skylo](https://blues.com/industrial-equipment-monitoring/) non-terrestrial satellite network so the cold-chain record stays continuous through coverage gaps. The hardware is a Blues [Notecarrier CX](https://shop.blues.com/products/notecarrier-cx?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) paired with a [Notecard for Skylo](https://shop.blues.com/products/notecard-for-skylo?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) (see §4 for the BOM); the firmware ships three sensor paths fully implemented today (cargo temperature, door, GPS) and two as integration-point stubs awaiting vendor engineering: J2497 reefer telemetry and TPMS tire pressure. The implementation-status callout below summarizes all five paths. diff --git a/71-legacy-diesel-generator-fleet-performance-uplift/README.md b/71-legacy-diesel-generator-fleet-performance-uplift/README.md index c1fa273f..682ef87f 100644 --- a/71-legacy-diesel-generator-fleet-performance-uplift/README.md +++ b/71-legacy-diesel-generator-fleet-performance-uplift/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Legacy%20Diesel%20Generator%20Fleet%20Performance%20Uplift). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/diesel_gen_monitor/](firmware/diesel_gen_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is an [asset performance optimization](https://blues.com/solutions-asset-performance-optimization/) retrofit for operators of standby diesel generators at hospitals, data centers, and industrial sites. The device sits on the DIN rail inside the generator panel, reads the controller's existing Modbus port, and reports run hours, fault codes, fuel level, coolant temperature, oil pressure, and load to the cloud over cellular — with immediate alerts on faults, coolant overtemp, low oil pressure, low fuel, and lost communication. Crucially, it draws from the panel's battery-backed DC control bus and uses an external antenna routed outside the metal enclosure, so the monitoring path stays alive when mains and facility WiFi go dark, which is exactly when a standby generator either starts successfully or doesn't. The hardware is an Arduino OPTA RS485 with a Blues Wireless for OPTA cellular expansion (see §3 for the BOM); the wiring is strictly read-only, with no writes to start/stop or safety circuits. diff --git a/72-solar-array-string-level-performance-dashboard/README.md b/72-solar-array-string-level-performance-dashboard/README.md index 0b2ce4eb..470e45c2 100644 --- a/72-solar-array-string-level-performance-dashboard/README.md +++ b/72-solar-array-string-level-performance-dashboard/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Solar%20Array%20String-Level%20Performance%20Dashboard). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/solar_string_monitor/](firmware/solar_string_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is an [asset performance optimization](https://blues.com/solutions-asset-performance-optimization/) reference design that turns a solar array into a per-string, continuously-monitored asset. It catches soiling, shading, and bad modules from wherever the array happens to be, without WiFi, without site IT involvement, and without touching the existing inverter. diff --git a/74-returnable-container-tote-pool-tracker/README.md b/74-returnable-container-tote-pool-tracker/README.md index c09863db..9708ea80 100644 --- a/74-returnable-container-tote-pool-tracker/README.md +++ b/74-returnable-container-tote-pool-tracker/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Returnable%20Container%20%2F%20Tote%20Pool%20Tracker). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/tote_pool_tracker/](firmware/tote_pool_tracker/) — so it can learn how the device works and help you adapt it to your hardware. + This project is an [asset location tracking](https://blues.com/solutions-location-tracking/) solution for reusable container pools — plastic totes, pressurized kegs, and gas cylinders — that reports location on motion events and daily heartbeats using cellular connectivity and the [Notecard's](https://shop.blues.com/products/notecard-cellular?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) built-in accelerometer. Containers emit a motion event when they start or stop moving, and a daily confirmation when idle, all over LTE Cat-1 bis. The hardware is a [Notecarrier CX](https://shop.blues.com/products/notecarrier-cx?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) with a Notecard Cell+WiFi (see §4 for the BOM); operators tune heartbeat interval and motion sensitivity from the [Blues Notehub](https://blues.com/notehub/) cloud service without re-flashing. diff --git a/75-heavy-equipment-hours-of-use-utilization-tracker/README.md b/75-heavy-equipment-hours-of-use-utilization-tracker/README.md index 23bfb8b0..0a9f509a 100644 --- a/75-heavy-equipment-hours-of-use-utilization-tracker/README.md +++ b/75-heavy-equipment-hours-of-use-utilization-tracker/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Heavy%20Equipment%20Hours-of-Use%20%26%20Utilization%20Tracker). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/equipment_hours_tracker/](firmware/equipment_hours_tracker/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a retrofit [asset location tracking](https://blues.com/solutions-location-tracking/) solution for mobile heavy equipment — excavators, generators, compactors, light towers, and any machine a rental company or OEM needs to bill by the hour and maintain on schedule. A magnetically mounted, solar-trickle-charged enclosure uses a 3-axis accelerometer to detect engine-on/off transitions via vibration signature, accumulates a persistent software hour meter, and reports location and utilization back to the [Blues Notehub](https://blues.com/notehub/) cloud service over cellular or satellite, with no wiring harness, no equipment modification, and no dependency on a job-site network. [Skylo](https://www.skylo.tech/)-supported satellite fallback keeps the device reporting from remote pipeline corridors, open-pit mines, and wind-farm construction zones where terrestrial coverage runs thin. The hardware is a Notecarrier CX with a Notecard for Skylo and an external IMU (see §4 for the BOM). diff --git a/76-untethered-trailer-chassis-fleet-tracker/README.md b/76-untethered-trailer-chassis-fleet-tracker/README.md index 03fb6b89..68cd224d 100644 --- a/76-untethered-trailer-chassis-fleet-tracker/README.md +++ b/76-untethered-trailer-chassis-fleet-tracker/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Untethered%20Trailer%20%26%20Chassis%20Fleet%20Tracker). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/trailer_fleet_tracker_starnote/](firmware/trailer_fleet_tracker_starnote/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a solar-trickle-charged, tractor-independent GPS and motion tracker for [asset location tracking](https://blues.com/solutions-location-tracking/) on freight trailers and intermodal chassis. The device delivers cellular-first telemetry with truly global Iridium LEO satellite fallback, keeping the trailer or chassis visible across trans-oceanic container routes and polar corridors where geostationary satellite networks have no coverage at all. The hardware is a Blues Notecarrier XI with a Swan host, a cellular Notecard, and a Starnote for Iridium (see §4 for the BOM). diff --git a/78-rail-car-condition-interchange-tracker/README.md b/78-rail-car-condition-interchange-tracker/README.md index 0f6e445c..73f58e27 100644 --- a/78-rail-car-condition-interchange-tracker/README.md +++ b/78-rail-car-condition-interchange-tracker/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Rail%20Car%20Condition%20%26%20Interchange%20Tracker). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/rail_car_tracker/](firmware/rail_car_tracker/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [supply chain tracking](https://blues.com/solutions-supply-chain-tracking/) reference design for leased freight and tank rail cars. A solar-powered [Notecard for Skylo](https://shop.blues.com/products/notecard?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link), Blues' all-in-one cellular and satellite module, pairs with an embedded Cygnet STM32 host to monitor **car-level** conditions: location, shock/impact events, and coupler state. On TANK_CAR builds, the same device adds low-pressure vent-port fitting pressure via the Adafruit MPRLS (0–25 PSI absolute) and single-point lading temperature via a waterproof DS18B20 probe. diff --git a/79-utility-distribution-transformer-load-monitor/README.md b/79-utility-distribution-transformer-load-monitor/README.md index ea274b9d..00edc00d 100644 --- a/79-utility-distribution-transformer-load-monitor/README.md +++ b/79-utility-distribution-transformer-load-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Utility%20Distribution%20Transformer%20Load%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/transformer_load_monitor/](firmware/transformer_load_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is an [energy monitoring](https://blues.com/solutions-energy-monitoring/) solution that gives utilities real-time load visibility at the pole — where transformer failures actually happen. A [Notecarrier CX](https://shop.blues.com/products/notecarrier-cx?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) with three split-core current transformers on the secondary terminals and an I²C temperature sensor tracks per-phase loading, detects dangerous current imbalances, and correlates load with enclosure temperature as a thermal-stress proxy, all over cellular, with no site infrastructure required. diff --git a/80-ev-charger-session-utilization-monitor/README.md b/80-ev-charger-session-utilization-monitor/README.md index 78a0c222..857ffa5b 100644 --- a/80-ev-charger-session-utilization-monitor/README.md +++ b/80-ev-charger-session-utilization-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Level%202%20EV%20Charger%20Session%20%26%20Utilization%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/ev_charger_session_monitor/](firmware/ev_charger_session_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a cellular [energy monitoring](https://blues.com/solutions-energy-monitoring/) retrofit for Level 2 EV chargers: for fleet managers, facilities teams, and charging-network operators who need to know how their installed chargers are actually being used. The design clamps a DIN-rail energy meter onto each charger's AC feed and reports three streams to the [Blues Notehub](https://blues.com/notehub/) cloud service over cellular: per-session metered kWh and peak power, hourly utilization and availability, and mains-offline alerts. Energy is measured by a hardware-metered instrument; charger availability is tracked from the meter's V_rms register — when mains voltage is absent the circuit is definitively offline. No modification to the charger hardware, no OCPP enrollment, no site IT involvement required. The hardware is a Notecarrier CX with a Notecard Cell+WiFi and an EASTRON SDM120-Modbus energy meter (see §4 for the BOM). See [§10](#10-limitations-and-next-steps) for design boundaries and production expansion paths. diff --git a/81-commercial-tenant-sub-metering-bridge/README.md b/81-commercial-tenant-sub-metering-bridge/README.md index 9af1c9eb..fbbc14fc 100644 --- a/81-commercial-tenant-sub-metering-bridge/README.md +++ b/81-commercial-tenant-sub-metering-bridge/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Commercial%20Tenant%20Energy%20Monitoring%20Bridge). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/tenant_sub_meter/](firmware/tenant_sub_meter/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a cellular [energy monitoring](https://blues.com/solutions-energy-monitoring/) retrofit for multi-tenant commercial buildings. Four Rogowski coil sensors with per-channel active integrator circuits on a panel, a Blues Notecard Cell+WiFi, and a Notecarrier CX with its onboard Cygnet host, and a landlord gains per-tenant estimated interval energy (Wh), 15-minute blocked-average demand (W), and a per-channel fault bitmask every hour, on a data channel the tenants can neither see nor interfere with, without running a single network cable through the building. diff --git a/82-aerial-lift-rental-equipment-battery-health-monitor/README.md b/82-aerial-lift-rental-equipment-battery-health-monitor/README.md index b2143460..d2b976cc 100644 --- a/82-aerial-lift-rental-equipment-battery-health-monitor/README.md +++ b/82-aerial-lift-rental-equipment-battery-health-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Aerial%20Lift%20%2F%20Rental%20Equipment%20Battery%20Health%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/lift_battery_monitor/](firmware/lift_battery_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [battery management systems](https://blues.com/battery-management-systems/) reference design that turns the electric battery pack on a rental scissor lift, boom lift, or telehandler into a continuously-monitored asset, surfacing state of charge, depth of discharge, rolling state of health, and thermal status to the rental company's fleet management platform, over cellular with satellite fallback, wherever the lift happens to be sitting. diff --git a/83-off-grid-solar-battery-site-controller/README.md b/83-off-grid-solar-battery-site-controller/README.md index bcaaf43e..470dd7b0 100644 --- a/83-off-grid-solar-battery-site-controller/README.md +++ b/83-off-grid-solar-battery-site-controller/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Off-Grid%20Solar%20%2B%20Battery%20Bank%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/solar_battery_controller/](firmware/solar_battery_controller/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a bank-level solar and battery monitoring solution — a Blues [battery management systems](https://blues.com/battery-management-systems/) reference design — for remote off-grid sites powered by solar arrays and battery banks. A Blues Notecarrier CX reads two Victron VE.Direct devices — a SmartShunt for battery-bank metrics and a SmartSolar MPPT charge controller for solar-side metrics, and reports battery-bank-level state of charge (SoC), daily solar harvest, load draw, battery temperature, and charge state to the [Blues Notehub](https://blues.com/notehub/) cloud service every four hours, with immediate alerts before the site goes dark. Connectivity is provided by a Blues Notecard seated in the carrier's M.2 slot; two SKUs are supported with no firmware changes between them — [Notecard Cell+WiFi (NOTE-MBGLW)](https://dev.blues.io/datasheets/notecard-datasheet/note-mbglw/) for sites within terrestrial cellular range, and [Notecard for Skylo (NOTE-NBGLWX)](https://dev.blues.io/datasheets/notecard-datasheet/note-nbglwx/) for fallback satellite coverage for sites where cellular coverage is marginal or absent. diff --git a/84-remote-cabinet-backup-battery-sentinel/README.md b/84-remote-cabinet-backup-battery-sentinel/README.md index 97f23275..660fe74b 100644 --- a/84-remote-cabinet-backup-battery-sentinel/README.md +++ b/84-remote-cabinet-backup-battery-sentinel/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Remote%20Cabinet%20Backup%20Battery%20Sentinel%20%E2%80%94%20Pack-Level%2012%20V%20%2F%2024%20V%20Battery%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/cabinet_battery_sentinel/](firmware/cabinet_battery_sentinel/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a pack-level sentinel — a Blues [battery management systems](https://blues.com/battery-management-systems/) reference design — for the backup battery inside a **traffic-signal controller, roadside IoT gateway, industrial RTU, or equipment cabinet** running on a **12 V or 24 V positive-referenced DC bus**. A Blues [Notecard Cell+WiFi](https://shop.blues.com/products/notecard-cell-wifi?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) and [Notecarrier CX](https://shop.blues.com/products/notecarrier-cx?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link), paired with a precision current/voltage monitor and a surface-mounted thermistor, continuously measure pack voltage, bidirectional current, surface temperature, and state-of-charge — with proactive alerts on charger faults, elevated float current (a reliable early indicator of **VRLA** capacity degradation weeks before failure. See §8 for chemistry-specific caveats), mains power loss detected within one sample interval, and a low-SoC threshold trip. Over cellular, independent of every piece of equipment the battery is supposed to protect. diff --git a/85-cellular-medication-adherence-pillbox/README.md b/85-cellular-medication-adherence-pillbox/README.md index 38995877..7762adc9 100644 --- a/85-cellular-medication-adherence-pillbox/README.md +++ b/85-cellular-medication-adherence-pillbox/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Cellular%20Medication%20Adherence%20Pillbox). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/cellular_medication_adherence_pillbox/](firmware/cellular_medication_adherence_pillbox/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [remote patient monitoring](https://blues.com/remote-patient-monitoring/) device that catches missed doses before they become clinical events. A Blues Notecard Cell+WiFi riding on a Notecarrier CX wakes every 30 seconds, reads seven snap-action micro-switches inside a standard weekly pillbox, and uploads a cellular event to the [Blues Notehub](https://blues.com/notehub/) cloud service **each time a compartment lid is detected open during a scheduled 30-second poll**: no WiFi configuration, no smartphone, and nothing for the patient to set up. diff --git a/87-post-discharge-vitals-relay-hub/README.md b/87-post-discharge-vitals-relay-hub/README.md index e2f4071c..f5f71e05 100644 --- a/87-post-discharge-vitals-relay-hub/README.md +++ b/87-post-discharge-vitals-relay-hub/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Post-Discharge%20Vitals%20Relay%20Hub). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/post_discharge_vitals_hub/](firmware/post_discharge_vitals_hub/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [remote patient monitoring](https://blues.com/remote-patient-monitoring/) hub for 30–60-day post-discharge recovery programs. A Blues Notecard Cell+WiFi paired with an nRF52840 host that has native Bluetooth Low Energy scans for a patient's BLE-enabled medical devices (weight scale, blood pressure cuff, pulse oximeter, and activity band), relays each completed reading to the [Blues Notehub](https://blues.com/notehub/) cloud service over cellular, and immediately syncs readings that exceed configurable clinical thresholds so the care team is alerted without waiting for the next scheduled upload. No WiFi required, no app to configure, no network credentials to enter. Plug it in and it works. diff --git a/88-reefer-trailer-cold-chain-door-event-monitor/README.md b/88-reefer-trailer-cold-chain-door-event-monitor/README.md index 897e3cc4..e7daaf13 100644 --- a/88-reefer-trailer-cold-chain-door-event-monitor/README.md +++ b/88-reefer-trailer-cold-chain-door-event-monitor/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Reefer%20Trailer%20Cold-Chain%20%26%20Door-Event%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/reefer_cold_chain_monitor/](firmware/reefer_cold_chain_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a [loss prevention](https://blues.com/loss-prevention/) reference design that keeps continuous watch over refrigerated (**reefer**) trailers, catching temperature excursions before a load is spoiled and logging every door event before a pallet walks out the back. Two DS18B20 temperature probes and a magnetic door reed switch feed a Blues Notecarrier CX, which packages sensor events and hands them to a Notecard for [Skylo](https://www.skylo.tech/resources/geographical-coverage) for multi-network delivery: cellular when a tower is in range, Skylo satellite when it isn't. diff --git a/89-pallet-attached-cold-chain-logger/README.md b/89-pallet-attached-cold-chain-logger/README.md index 443a371d..06582e75 100644 --- a/89-pallet-attached-cold-chain-logger/README.md +++ b/89-pallet-attached-cold-chain-logger/README.md @@ -6,6 +6,8 @@ This reference application is intended to provide inspiration and help you get started quickly. It uses specific hardware choices that may not match your own implementation. Focus on the sections most relevant to your use case. If you'd like to discuss your project and whether it's a good fit for Blues, [feel free to reach out](https://blues.com/landing-pages/accelerators-contact-us/?accelerator=Shipper-Owned%20Cargo-Level%20Cold%20Chain%20Monitor). +**Building with an AI assistant?** Point it at this accelerator's firmware — [firmware/cargo_cold_chain_monitor/](firmware/cargo_cold_chain_monitor/) — so it can learn how the device works and help you adapt it to your hardware. + This project is a pallet-attached cold chain logger, a [supply chain tracking](https://blues.com/solutions-supply-chain-tracking/) reference design, for pharma and food shippers who cannot afford to trust the reefer unit's built-in telematics. A handful of sensors, a [Blues Notecard for Skylo](https://shop.blues.com/products/notecard?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link), and a [Notecarrier CX](https://shop.blues.com/products/notecarrier-cx?utm_source=dev-blues&utm_medium=web&utm_campaign=store-link) give you an independent, shipper-controlled condition record that travels with the cargo — through loading docks, over-the-road transit, port staging, and customs DCs, and dispatches an alert Note when a temperature, humidity, shock, tilt, or cargo-bay-opening threshold is crossed.