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What is Mission Management Platform?
The Mission Management Platform (MMP) is an adaptable software solution engineered for deployment within a modular MSCCS architecture, without any limitations on the number of control working positions (CWP) it can support. Created by Nurjana, the NT MMP functions as a foundational system that facilitates flexible installation in a modular MSCCS framework, while similarly imposing no restrictions on control working positions. The extensive capabilities of the MMP software for MSCCS are categorized into two primary types of Software Modules, each containing a variety of standard NT components like libraries and building blocks: Mission Setup and Analysis Applications. Within this structure, the Scenario Definition and Pre-Mission Control Module empowers users to create a Range Abstraction Layer along with essential environmental data structures that accurately represent various entities engaged in a mission, including geographical terrain, sensors, projectiles, and environmental influences. This Range Abstraction Layer is vital for crafting precise mission scenarios, ensuring that users can effectively simulate and analyze diverse operational conditions. By streamlining the integration of these components, the MMP enhances overall mission planning and execution.
What is ACE?
The ACE features a compact and ingeniously crafted modular design that enhances the learning journey for users. It achieves an impressive equilibrium, being simple while maintaining a depth of functionality. Despite its efficient use of space, it offers remarkable versatility, and its intuitive nature does not detract from its power. The architecture of ACE allows users to seamlessly connect any output to any input, creating a strong synthesizer that caters to both beginners and seasoned musicians alike. By embracing the concept of "boxes and cables" typical of modular synthesizers, it empowers users to craft their personalized instruments. As you start connecting the sixteen modules within ACE, the joy of experimenting with diverse combinations and exchanging groundbreaking ideas showcases the vast potential of modular synthesis. The two VCOs act as the main sound sources, yet ACE skillfully merges audio with modulation signals, allowing full-range LFOs to function as audio frequency generators as well. Furthermore, ACE’s oscillators mimic analog circuitry, featuring natural instabilities and various nonlinear characteristics that contribute to a rich and textured sound palette. This environment for synthesis not only fosters creation but also invites exploration, transforming it into an exhilarating platform for sonic discovery. With each session, users are likely to uncover new dimensions of sound and creativity.
Integrations Supported
Additional information not provided
Integrations Supported
Additional information not provided
API Availability
Has API
API Availability
Has API
Pricing Information
Pricing not provided.
Free Trial Offered?
Free Version
Pricing Information
€69 one-time payment
Free Trial Offered?
Free Version
Supported Platforms
SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux
Supported Platforms
SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux
Customer Service / Support
Standard Support
24 Hour Support
Web-Based Support
Customer Service / Support
Standard Support
24 Hour Support
Web-Based Support
Training Options
Documentation Hub
Webinars
Online Training
On-Site Training
Training Options
Documentation Hub
Webinars
Online Training
On-Site Training
Company Facts
Organization Name
Nurjana Technologies
Company Location
Italy
Company Website
www.nurjanatech.com
Company Facts
Organization Name
u-he
Date Founded
2001
Company Location
Germany
Company Website
u-he.com/products/ace/
Categories and Features
Simulation
1D Simulation
3D Modeling
3D Simulation
Agent-Based Modeling
Continuous Modeling
Design Analysis
Direct Manipulation
Discrete Event Modeling
Dynamic Modeling
Graphical Modeling
Industry Specific Database
Monte Carlo Simulation
Motion Modeling
Presentation Tools
Stochastic Modeling
Turbulence Modeling