Introducing the Thinvent Neo H Mini PC: The High Performance evolution of our bestselling Neo series, engineered as an unparalleled industrial workhorse. Meticulously 100% designed and made in India, this robust computing solution is encased in a solid, power-coated steel housing, built for peak reliability in the most demanding environments.
Uncompromising Performance
- At its core lies the formidable Intel Core i5-1250P processor, boasting 12 cores and bursting up to 4.4 GHz with a substantial 12 MB cache.
- Coupled with a massive 64GB DDR4 RAM, the Neo H delivers exceptional multitasking capabilities and lightning-fast data processing, ideal for critical industrial control and similar applications.
- A speedy 128GB SSD ensures rapid boot times and quick access to essential applications.
Extensive Connectivity for Industrial Demands
- Experience seamless integration with a comprehensive suite of connectivity options.
- Dual-band Wi-Fi 5 (802.11ac) and Gigabit Ethernet (1000 Mbps) ensure robust and reliable network access.
- A dedicated DB9 male RS232 serial port provides essential legacy support for industrial equipment.
- Expand your setup with two USB 3.2 ports, two USB 2.0 ports, HDMI, and VGA outputs for versatile display and peripheral connections.
- Audio needs are covered with a Speaker Out and Mic In port.
Engineered for Endurance
- The sturdy black steel housing, finished with power coating, ensures long-term durability.
- Certified by BIS, RoHS, and ISO, affirming its quality and environmental compliance.
- Designed for challenging conditions, it operates reliably within 0°C ~ 40°C and 20% ~ 80% RH non-condensing humidity.
- Powered by a robust 12V 7A adapter with a wide 100~275 Volts AC input range.
Flexible Deployment
- Shipped without an operating system, the Neo H offers the ultimate flexibility for custom software deployments, tailored precisely to your operational needs.
Compact Powerhouse
- Despite its power, its compact 210mm × 202mm × 80mm dimensions make it ideal for space-constrained installations without sacrificing performance or connectivity.