Sylph

Sylph

Can my PC run Sylph

Find out whether your PC can run this game by reviewing the minimum and recommended requirements below.

RAM 16 GB+ Windows 10

Game Details

Languages
English، Languages With Full Audio Support
Genre
Simulation
Category
Single-player، Steam Achievements، Camera Comfort، Color Alternatives، Custom Volume Controls، Keyboard Only Option، Playable Without Timed Input، Steam Cloud، Family Sharing
Developer
Softmax Foundries
Publisher
Softmax Foundries

Minimum Requirements

CPU
Intel Core i5-8600 / 8600 / I5-8600 / 5-8600 / i5 8600
GPU
NVIDIA GeForce GTX 1070 / GTX 1070 / 1070
RAM
16 GB
Storage
OS
Windows 10

Recommended Requirements

CPU
GPU
RAM
Storage
OS

Game Description

Sylph is a first-person spaceflight simulation with realistic orbital mechanics, Newtonian physics, and ship systems management set in a star system orbiting a black hole. Explore one of the most detailed and accurate black hole simulations ever rendered in real time in interactive software. Schwarzchild geodesic ray tracing, gravity funnel, event horizon, and what lies beyond. Built on the Sylph engine, a bespoke engine built from the ground up with no boundaries or speed limits.  

CORE FEATURES:

  • Open world and scenarios.

  • Docking mechanics with capture envelope.

  • Instant time skip down to the minute. 

  • Realistic orbital mechanics. Sphere of influence transitions. Transfer planner and rendezvous solver.

  • Real time orbital telemetry computed from live state vectors. 

  • Momentum-based 6DOF flight model. Each thruster enacts real Newtonian force on the craft.

  • 10 holographic cockpit panels. Nothing is decorative. 

  • Ship systems management with startup sequences, electrical load management, pump and valve operation. All independently modeled and derived from real physics. Failures are cascading and emerge from the simulation state.

  • Fully modeled closed loop expander-cycle bipropellant combustion. Rotational inertia, turbopump characteristic curves with flow-dependent degradation, cavitation modeling, turbulent flow losses, boost pump to turbopump series staging, line charge/drain dynamics, heat soak, regenerative cooling.

  • Independent lower thrust system with forward and aft modes. 12 individual RCS thrusters with rotation and linear control.

  • 8 Autopilot programs operating through the physical thruster simulation. 

  • Electrical simulation with state-of-charge and voltage sag, two independent generators, circuit breakers, power draw, proportional load sharing, and overload trip.