Intel Celeron N4100 processor 1.1 GHz 4 MBSKU: FH8068003067408
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Description :Intel® Celeron® N4100 Processor
(4M Cache, up to 2.40 GHz)
Intel Celeron N4100. Processor family: Intel® Celeron®, Processor socket: BGA 1090, Processor lithography: 14 nm. Memory channels: Dual-channel, Maximum internal memory supported by processor: 8 GB, Memory types supported by processor: DDR4-SDRAM,LPDDR4-SDRAM. On-board graphics adapter model: Intel® UHD Graphics 600, Maximum on-board graphics adapter memory: 8 GB, On-board graphics adapter outputs supported: Embedded DisplayPort (eDP),DisplayPort,HDMI,MIPI-DSI. Market segment: Mobile, PCI Express configurations: 1x4+1x2,4x1,2x1+1x2+1x2, Supported instruction sets: SSE4.2. USB version: 2.0/3.2 Gen 1 (3.1 Gen 1)
Intel® Identity Protection Technology is a built-in security token technology that helps provide a simple, tamper-resistant method for protecting access to your online customer and business data from threats and fraud. Intel® IPT provides a hardware-based proof of a unique user’s PC to websites, financial institutions, and network services; providing verification that it is not malware attempting to login. Intel® IPT can be a key component in two-factor authentication solutions to protect your information at websites and business log-ins.
Thermal Monitoring Technologies protect the processor package and the system from thermal failure through several thermal management features. An on-die Digital Thermal Sensor (DTS) detects the core's temperature, and the thermal management features reduce package power consumption and thereby temperature when required in order to remain within normal operating limits.
Enhanced Intel SpeedStep® Technology is an advanced means of enabling high performance while meeting the power-conservation needs of mobile systems. Conventional Intel SpeedStep® Technology switches both voltage and frequency in tandem between high and low levels in response to processor load. Enhanced Intel SpeedStep® Technology builds upon that architecture using design strategies such as Separation between Voltage and Frequency Changes, and Clock Partitioning and Recovery.
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