Connect Your Industrial Assets Anywhere via Satellite
Deliver standardized satellite coverage (3GPP NTN) to remote industrial products. Smart embedded software that anticipates satellite speed to guarantee instantaneous connections and protect battery lifespans for years.
Connect Your Industrial Assets Anywhere via Satellite
Global service continuity beyond terrestrial blind spots, optimized radio energy per burst, and accelerated time-to-market.
Beyond cellular reach (at sea, in deserts, or remote mountains), connecting to fast-moving satellites drains huge amounts of power. Without specialized software, field devices exhaust their batteries in days just searching for signal.
Our embedded software predicts satellite passes and fine-tunes the radio signal before transmitting, ensuring fast network attach and preserved battery life.
Why Communicating with Fast Satellites Exhausts Standard Field Devices
Exchanging data with a satellite traveling at 7.5 km/s requires overcoming three fundamental physical constraints:
The Doppler Effect: The Radio Frequency Is Constantly Shifting
Just like an ambulance siren shifts in pitch as it speeds past, a satellite's radio frequency drifts continuously. If the ground terminal fails to compensate for this offset with precise timing, the transmission is lost.
Battery Preservation: Zero Room for Power Waste
Every extra second spent hunting for a satellite signal burns precious battery life. To achieve multi-year maintenance-free field operations on standard batteries, devices must wake up, transmit promptly, and return to sleep immediately.
Microsecond Time Synchronization
Fast orbital passes leave very brief communication windows. Both the satellite and ground sensor must maintain microsecond-accurate clock alignment to transmit without causing radio interference.
How It Works: The Edge Pulsar Software Solution
We deliver proven, drop-in software modules that turn standard commercial cellular modems into ultra-frugal satellite terminals:
Standard 3GPP Universal Protocol
Built upon global 3GPP NTN standards, guaranteeing full interoperability with present and future satellite constellations without being locked into proprietary operators.
Intelligent Orbit Anticipation
The embedded software pre-calculates satellite trajectories and shifts the transmit frequency beforehand, ensuring signals reach the satellite receiver perfectly tuned on the first try.
Flash Transmission
The device knows exactly when a satellite will be directly overhead: it wakes up, transmits its payload in less than a second, and immediately re-enters ultra-deep sleep.
Resilient Clock
Continuous local clock synchronization even in challenging radio conditions, eliminating power-hungry network search cycles.
Why Choose Edge Pulsar Instead of Building From Scratch?
De-risk your satellite-connected product rollout:
12 Months Saved in R&D
Orbital mechanics and 3GPP radio protocols require specialized engineering talent. Our bench-validated foundation saves a full year of trial and error.
Total Independence & IP Retention
You retain 100% ownership of your hardware and business application data. We supply the critical communications layer without locking you into proprietary platforms.
Standard Commercial Silicon (BOM Optimization)
Runs on readily available commercial chipsets (such as Nordic Semiconductor) without requiring expensive, customized space-grade components.
Real-World Industrial Applications
Ocean Cargo & Fleet Logistics
Track transoceanic cargo containers and mobile machinery traversing remote wilderness thousands of kilometers from any cell tower.
Remote Energy & Mining Infrastructure
Autonomous monitoring of pipelines, offshore wind farms, and isolated extraction facilities with reliable bidirectional alerts.
NewSpace Satellite Payloads (CubeSats)
Software integration of communications payloads on nanosatellite constellations to communicate seamlessly with IoT ground nodes.
Related Engineering Services
Tailor, integrate, or maintain this architecture with our dedicated embedded engineering and lifecycle services.
3GPP NTN Protocol Stack Optimization
Adaptation and hardening of low-layer PHY/MAC/RRC stacks for non-terrestrial channel dynamics and LEO ephemeris integration.
Ultra-Low-Power Terminal Architecture
Power domain gating, clock domain budgeting, and synchronized deep sleep (PSM/eDRX) for multi-year autonomy.
LEO Constellation Ground Segment Gateway
High-throughput telemetry ingestion, orbit pass management, and sovereign cloud infrastructure.
Discuss your satellite terminal or space payload project with our systems architects
Deploy satellite connectivity on your products without sacrificing battery life.
