OEM electronics, SiP modules, LPWAN connectivity, telemetry, specialized datasets, and AI-powered computer vision solutions.
Six foundational engineering pillars designed for high-reliability, long-lifecycle OEM products and demanding industrial environments.
Design of electronic circuit boards for automation systems, control, analog and digital sensors, and specialized industrial equipment.
Design and integration of OEM modules and System-in-Package to reduce footprint, manufacturing complexity, and time-to-market.
Design of long-range, ultra-low power communication solutions for remote transmission under demanding field conditions.
Robust telemetry systems, remote supervisory control, real-time alarms, and continuous monitoring of critical assets and infrastructure.
Creation and structuring of engineering datasets built specifically for industrial applications, acoustic signatures, thermal events, and computer vision.
Design, training, optimization, and quantization of computer vision neural networks for ultra-fast on-device edge inference.
ZigbMax Technologies combines silicon bare dies, RF front-ends, embedded microcontrollers, and precision passives into unified System-in-Package (SiP) modules. Transform complex, multi-component PCB designs into single, pre-qualified OEM building blocks.
Silicon dies directly mounted without bulky discrete packaging. Integration of custom analog front-ends, power regulation dies, and specialized mixed-signal circuitry.
Historical SiP module developed by ZigbMax, integrating wireless CPU core, multi-band RF, and power management into a subminiature package.
From initial schematics and micro-pitch PCB layouts to RF simulation, industrial bus protocols, and full environmental qualification.
Define functional, environmental (temp, IP rating), electrical specs, regulatory targets (FCC/CE), and BOM targets.
ZigbMax Dev Platform Board
RF & Microcontroller Bringup
Multi-Relay Critical Telemetry PCB
Surface-Mount Assembly & Verification
Engineered for devices that demand ultra-low battery draw, long-range wireless link budgets, remote operation, autonomous telemetry, and continuous critical monitoring.
Mobile asset tracking, ATM security, fleet telematics, predictive maintenance with firmware streaming, and critical alarms.
“When the system matters, connectivity becomes mission-critical.”
Where zero packet loss, anti-sabotage security, and immediate failover are mandatory. ZigbMax Technologies delivers field-hardened telemetry hardware for high-risk assets.
One of the first dedicated M2M critical monitoring systems designed specifically for automated teller machines (ATMs) and banking infrastructure, completely eliminating the need for bulky legacy alarm panels.
Features proprietary ATMLogic firmware, multi-band GSM/GPRS fallback, and SMSControl encrypted command dispatching.
ATM-Alert Enclosure & Sensor
Precision PCB Sensor Hub
Vibration, pressure, motor health
Daycare & school panic alerts
Anti-theft, seismic shock, thermal
Transformers & grid telemetry
Wireless biosensors & pulse ox
“The quality of an AI model begins with the quality of its dataset.”
We don’t just train models on generic open-source imagery. ZigbMax Technologies acquires, structures, and annotates specialized physical data right at the hardware sensor and camera level for harsh industrial operating environments.
Custom vision neural networks engineered for tight inference budgets on Edge devices, Industrial PCs, NVIDIA Jetson, and embedded smart cameras.
Proven full-stack architectures combining hardware, low-level firmware, certified connectivity, and secure cloud pipelines.
Autonomous sensor endpoints transmitting periodic metrics via NB-IoT/LTE-M directly to cloud time-series engines with 10+ year battery endurance.
High-availability telemetry hubs designed for electrical substations, water treatment facilities, and banking networks with instant emergency trigger circuits.
Ruggedized edge gateways parsing Modbus/CAN bus machine diagnostics, aggregating local metrics, and relaying filtered trends to central ERP platforms.
On-device vision systems triggering instant localized relay shut-downs upon detecting hazardous operator proximity, missing PPE, or mechanical fire hazards.
The full turnkey trajectory: We design your electronic hardware, engineer the custom SiP module, write the bare-metal RTOS firmware, certify the RF carrier path, and deliver ready-to-sell connected devices under your own brand.
Each vertical presents distinct operational challenges. ZigbMax Technologies matches purpose-engineered hardware, radios, and AI models to solve exact sector requirements.
Authentic historical implementations and conceptual high-consequence reference architectures engineered by ZigbMax Technologies.
Financial institutions suffered repeated cash dispenser tampering, thermal cutting attacks, and jamming of legacy alarm panels in unstaffed kiosks.
Standalone hardware module (GMP12AT-V01) featuring 4 isolated multi-condition zones, 8 command relay outputs, and internal ATMWatchdog hardware reboot.
Quad-Band GSM/GPRS + SMSControl encrypted protocol, dual-SIM redundancy, and direct banking API telemetry without dependency on external panels.
Remote patient vital telemetry (glucose meters, pulse oximeters, fall-and-call panic) required seamless bridging between local sub-GHz radios and cloud health backoffices.
ZigbMax Wireless CPU SiP module (Texas Instruments chipset core) combining 433/815 MHz SimpliciTI RF transceiver with embedded touch keypad, SPI LCD, and I2C controllers.
Hybrid cellular (GSM/GPRS) + Wi-Fi gateway routing clinical readings to hospital central databases, physician portals, and pharmacy inventory systems.
High-pressure pipeline corridors spanning 200+ miles without grid power or consistent mobile tower coverage subject to undetected micro-fractures.
ATEX Zone 0 certified SiP architecture with piezoresistive pressure front-ends, acoustic emission wave sensors, and energy-harvesting thermal cells.
Edge anomaly detection FFT engine running locally on Cortex-M33, broadcasting only delta anomalies to conserve battery life past 12 years.
From the physical silicon die to enterprise cloud ingest and neural inference engines.
We are not a generic design agency or a reseller of commodity off-the-shelf boards. We are an advanced engineering partner solving the hardest physical layers of connected products.
No solamente diseñamos la tarjeta. Diseñamos la conectividad. Cada trazo de PCB se diseña en conjunto con las antenas y el enlace de radiofrecuencia.
El hardware se convierte en una fuente directa de datos limpios para inteligencia artificial, eliminando la brecha entre el silicio y el modelo neuronal.
Diseñamos pensando en producción masiva, rendimiento en ensamblaje automatizado SMT, optimización de lista de materiales (BOM) y escalabilidad global.
Más de una década y media protegiendo infraestructura bancaria, ATM, telemedicina y sistemas donde una falla de comunicación es inaceptable.
Desde la arquitectura inicial en papel y la selección de semiconductores, hasta el prototipado rápido, la certificación de transportistas y la producción seriada lista para comercializar.
Originally established as ZigbMax Communications Inc., our engineering team has been at the forefront of wireless M2M telemetry, System-in-Package packaging, and critical infrastructure monitoring since the early dawn of connected cloud devices.
From pioneering dedicated ATM anti-tamper communication modules (ATM-Alert GMP12AT) to developing multi-radio wireless telemedicine ecosystems (THE BOX / BoxCare platform) and custom SiP wireless CPUs, ZigbMax Technologies builds the physical and embedded intelligence that makes connected systems reliable.
“We don't just connect devices. We engineer the technology that makes them possible.”
From custom electronics and SiP technology to LPWAN telemetry, specialized AI datasets and computer vision — we engineer connected products for demanding environments.
Tell us what you need to build. Our engineering team will help define the architecture, technology and development path.
Direct review by hardware architects & systems engineers