Quantum Syncro

Description
⚡The 1080 Quantum Syncro takes digital resistance training to the next level by combining two synchronized 1080 Quantum units via advanced software
⚡This dual-cable setup enables highly complex, multi-planar, and bilateral training protocols, such as heavily loaded squats, multidirectional lunges, and rotational movements
⚡Coaches can choose to apply completely balanced bilateral resistance or deliberately program asymmetric loads to challenge an athlete’s stability and core engagement
⚡The system delivers comprehensive, simultaneous force-velocity profiling for both the left and right sides of the body, allowing practitioners to instantly identify and correct bilateral movement asymmetries, thereby reducing injury risks and enhancing overall athletic performance
⚙️ Hardware Specifications
  • 🔹 Line Length: Maximum cable travel of 5 m (16 ft).
  • 🔹 Concentric Resistance: 2–50 kg (4–110 lbs) continuous + bar/weights / 2–100 kg (4–220 lbs) with Gear 2.
  • 🔹 Eccentric Resistance: 2–60 kg (4–132 lbs) continuous + bar/weights / 2–120 kg (4–265 lbs) with Gear 2.
  • 🔹 Maximum Load (< 3s): 175 kg (386 lbs) / 325 kg (717 lbs) with Gear 2.
  • 🔹 Dimensions & Weight: Two 180 kg (400 lbs) columns, each 1.7 m (5.6 ft) tall.
  • 🔹 Velocity: Concentric 0.1–8 m/s; Eccentric 0.1–6 m/s (reduced in Gear 2).
  • 🔹 Data Sampling Rate: 333 Hz high-frequency capture for force, speed, and power.
  • 🔹 Power Requirements: 220–240V (US NEMA 6-15).
  • 🔹 Build: Single-station column system with floor anchor bolt installation.
✨ Loading Types & Eccentric Overload
  • 🔹 Normal: Standard weight stack mass and inertia simulation.
  • 🔹 Isotonic: Constant resistance independent of acceleration with zero slack.
  • 🔹 Ballistic (Variable Inertia): Load behaves during acceleration, stabilizes during deceleration for explosive output.
  • 🔹 Isokinetic: Low-velocity, force-matching resistance ideal for rehab.
  • 🔹 Vibration: 25 Hz neuromuscular stimulation mode.
  • 🔹 Eccentric Overload: Up to 3× eccentric-to-concentric load ratio for deceleration training.
✨ Use Cases
  • 🔹 Maximal Bilateral Lifts: Supramaximal squats, presses, and jump variations using integrated Smith system.
  • 🔹 Force Plate Simulation: Capture force-speed characteristics during jumps without external force plates.
  • 🔹 Accessories: Integrated touchscreen/laptop control, Smith machine, squat plate attachments.

1080 Motion Software Ecosystem Specifications

Note: Control App and Web App are premium paid subscriptions available on yearly or multi-year terms.

1. 1080 Machine App (Free On-Board Software)

✨ Features:
🔹 Built directly into the 7-inch touchscreens of the 1080 Sprint 2 and 1080 Cable.
🔹 Provides standalone training with large, touch-responsive buttons and high-resolution real-time data tracking for time, distance, speed, force, and power.
🔹 Modes: Quick-start specific apps for Reps, Assisted Sprint, Resisted Sprint, and Change of Direction (CoD).

👑 2. 1080 Control App (Paid Subscription)

✨ Features:
🔹 A robust Windows OS application that connects to hardware via Wi-Fi for advanced system capability.
🔹 Live Remote Tethering: Allows seamless remote control over the 1080 equipment during active sessions.
🔹 Group Training: Dedicated interface designed to quickly cycle and train multiple athletes in a single session without workflow interruption.
🔹 Advanced Load-Velocity Profiling: Automatically plots recorded reps/runs, builds individual regression curves, and accurately estimates 1RM without needing to test true maximums.
📊 Automatic Cloud Sync: Securely syncs and saves all generated profiles, metrics, and data points into the cloud instantly.

👑 3. 1080 Web App (Paid Subscription)

✨ Features:
🔹 A comprehensive, browser-based analytics dashboard ensuring coaches and medical professionals can view training data globally.
📈 Longitudinal Tracking: Designed for deep historical data comparisons, tracking athlete progression over extended periods.
📊 Multi-Profile Management: Create and manage an unlimited amount of athlete profiles, uncovering crucial trends in strength adaptations, velocity decrements, and rehabilitation asymmetry metrics.

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