Intel® NUC 11 Pro Board NUC11TNBi5
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Intel® NUC Board with 11th Generation Intel® Core™ Processors
Products formerly Tiger Canyon
Supported Operating Systems
Windows 11 Home*, Windows 11 Pro*, Windows 10 Home, 64-bit*, Windows 10 IoT Enterprise*, Windows 10 Pro, 64-bit*, Red Hat Linux*, Ubuntu 20.04 LTS*
Board Form Factor
UCFF (4" x 4")
Internal Drive Form Factor
M.2 and 2.5" Drive
# of Internal Drives Supported
DC Input Voltage Supported
Intel® Core™ i5-1135G7 Processor (8M Cache, up to 4.20 GHz)
10 nm SuperFin
Max Turbo Frequency
# of USB Ports
Front: 2x USB 3.2
Rear: 2x USB 4 (type C), 1x USB 3.2, 1x USB 2.0
Internal: 1x USB 3.2 on m.2 22x42 (pins), 2x USB 2.0 (headers)
Total # of SATA Ports
Serial Port via Internal Header
Intel® Ethernet Controller i225-LM
Front_panel (PWR, RST, 5V, 5Vsby, 3.3Vsby); Internal 2x2 power connector
# of Thunderbolt™ Ports
1x Thunderbolt™ 4, 1x Thunderbolt™ 3
Security & Reliability
Ordering and Compliance
Drivers and Software
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Latest Drivers & Software
Intel® Wireless Technology-Based Driver for Windows® 10 & Windows* 11 for Intel® NUC Products
This download record installs the wireless driver for the Intel® Wireless Adapter in the Intel® NUC Kit for Windows® 10 & Windows 11*.View download options.
Intel® Aptio* V UEFI Firmware Integrator Tools
Provides Intel® Aptio* V UEFI Firmware Integrator Tools for Intel® NUC products.View download options.
BIOS Update [TNTGL357]
This download record contains options for updating the Intel® Aptio* V UEFI Firmware BIOS core for Intel® NUC Boards/Kits NUC11TN[x]i3, NUC11TN[x]i5, NUC11TN[x]i7.View download options.
Intel® Graphics DCH Driver for Windows®10 and Window 11* for the Intel® NUC11PA, NUC11PH, NUC11TN, NUC11EB, NUC11BTM/NUC11DB and NUC12DC/NUC12ED Products
This download installs the Intel® Graphics DCH Drivers for Windows® 10 and Windows 11* for the Intel® NUC11PA, NUC11PH, NUC11TN, NUC11EB, NUC11BTM/NUC11DB and NUC12DC/NUC12ED Products.View download options.
Intel® Ethernet (LAN) Network Connection Driver for Windows® 10 & Windows 11* for Intel® NUC
This package includes the Intel® Network (LAN) Adapters for Windows® 10 and Windows 11* for 7th through 11th Generation Intel® NUC Products.View download options.
USB Type C Power Delivery Controller for Windows® 10 & Windows 11* for Intel NUC11TN, NUC9QN and NUC8HN Products.
This download record installs the USB Type C Power Delivery Controller for Windows® 10 & Windows 11* for Intel NUC11TN, NUC9QN and NUC8HN Products.View download options.
Thunderbolt™ 3 and 4 DCH Driver for for Windows® 10 64-bit and Windows 11* for NUC11TN[X]
Installs the DCH-compliant Thunderbolt™ bus driver for the Intel® NUC11TN[X] products.View download options.
Intel® Chipset Device Software for Windows® 10 64-bit and Windows 11* for Intel® NUC Products
This download record installs the Intel® Chipset Device Software for Windows® 10 64-bit and Windows 11* for Intel® NUC ProductsView download options.
Intel® Serial IO Driver for Windows® 10 64-bit and Windows 11* for the 11th Generation Intel® NUC Products
Installs Intel® Serial IO Driver for the 11th Generation Intel® NUC Products.View download options.
Intel® GNA Scoring Accelerator Driver for Windows® 10 64-bit and Windows 11* for Intel® NUC Products
Installs the Intel® GNA Scoring Accelerator Driver for Windows® 10 64-bit and Windows 11* for Intel® NUC products.View download options.
Intel® Management Engine Driver for Consumer for Windows® 10 64-bit and Windows 11* for the Intel NUC11TN & NUC11PA
This download record installs Intel® Management Engine Driver for Consumer for Intel® NUC11TN & Intel® NUC11PAView download options.
The date the product was first introduced.
Expected Discontinuance is an estimate of when a product will begin the Product Discontinuance process. The Product Discontinuance Notification (PDN), published at the start of the discontinuance process, will include all EOL Key Milestone details. Some business units may communicate EOL timeline details before the PDN is published. Contact your Intel representative for information on EOL timelines and extended life options.
Thermal Design Power (TDP) represents the average power, in watts, the processor dissipates when operating at Base Frequency with all cores active under an Intel-defined, high-complexity workload. Refer to Datasheet for thermal solution requirements.
Cores is a hardware term that describes the number of independent central processing units in a single computing component (die or chip).
Where applicable, Intel® Hyper-Threading Technology is only available on Performance-cores.
Lithography refers to the semiconductor technology used to manufacture an integrated circuit, and is reported in nanometer (nm), indicative of the size of features built on the semiconductor.
Max Turbo Frequency
Max Turbo Frequency is the maximum single-core frequency at which the processor is capable of operating using Intel® Turbo Boost Technology and, if present, Intel® Turbo Boost Max Technology 3.0 and Intel® Thermal Velocity Boost. Frequency is typically measured in gigahertz (GHz), or billion cycles per second.
Embedded Options Available
Embedded Options Available indicates products that offer extended purchase availability for intelligent systems and embedded solutions. Product certification and use condition applications can be found in the Production Release Qualification (PRQ) report. See your Intel representative for details.
Max Memory Size (dependent on memory type)
Max memory size refers to the maximum memory capacity supported by the processor.
Intel® processors come in four different types: Single Channel, Dual Channel, Triple Channel, and Flex Mode. Maximum supported memory speed may be lower when populating multiple DIMMs per channel on products that support multiple memory channels.
Max # of Memory Channels
The number of memory channels refers to the bandwidth operation for real world application.
Max # of DIMMs
DIMM (Dual In-line Memory Module) is a series of DRAM (Dynamic Random-Access Memory) IC's mounted on a small printed circuit board.
ECC Memory Supported ‡
ECC Memory Supported indicates processor support for Error-Correcting Code memory. ECC memory is a type of system memory that can detect and correct common kinds of internal data corruption. Note that ECC memory support requires both processor and chipset support.
Integrated Graphics ‡
Integrated graphics allow for incredible visual quality, faster graphic performance and flexible display options without the need for a separate graphics card.
Graphics Output defines the interfaces available to communicate with display devices.
PCI Express Revision
PCI Express Revision is the supported version of the PCI Express standard. Peripheral Component Interconnect Express (or PCIe) is a high-speed serial computer expansion bus standard for attaching hardware devices to a computer. The different PCI Express versions support different data rates.
PCI Express Configurations ‡
PCI Express (PCIe) Configurations describe the available PCIe lane configurations that can be used to link to PCIe devices.
M.2 Card Slot (wireless)
M.2 Card Slot (wireless) indicates presence of an M.2 slot that's keyed for wireless expansion cards
M.2 Card Slot (storage)
M.2 Card Slot (storage) indicates presence of an M.2 slot that's keyed for storage expansion cards
Total # of SATA Ports
SATA (Serial Advanced Technology Attachment) is a high speed standard for connecting storage devices such as hard disk drives and optical drives to a motherboard.
Integrated LAN indicates the presence of an integrated Intel Ethernet MAC or presence of the LAN ports built into the system board.
Additional Headers indicates presence of additional interfaces such as NFC, auxiliary power, and others.
# of Thunderbolt™ Ports
Thunderbolt™ is a very high-speed, daisy-chainable interface that allows connection of multiple peripherals and displays to a computer. Thunderbolt™ 3 (40Gbps) uses a USB Type-C™ connector which combines PCI Express (PCIe Gen3), DisplayPort (DP 1.2), USB 3.1 Gen2 and provides up to 100W of DC power, all in one cable.
Intel® Optane™ Memory Supported ‡
Intel® Optane™ memory is a revolutionary new class of non-volatile memory that sits in between system memory and storage to accelerate system performance and responsiveness. When combined with the Intel® Rapid Storage Technology Driver, it seamlessly manages multiple tiers of storage while presenting one virtual drive to the OS, ensuring that data frequently used resides on the fastest tier of storage. Intel® Optane™ memory requires specific hardware and software configuration. Visit www.intel.com/OptaneMemory for configuration requirements.
Intel® Virtualization Technology for Directed I/O (VT-d) ‡
Intel® Virtualization Technology for Directed I/O (VT-d) continues from the existing support for IA-32 (VT-x) and Itanium® processor (VT-i) virtualization adding new support for I/O-device virtualization. Intel VT-d can help end users improve security and reliability of the systems and also improve performance of I/O devices in virtualized environments.
Intel® ME Firmware Version
Intel® Management Engine Firmware (Intel® ME FW) uses built-in platform capabilities and management and security applications to remotely manage networked computing assets out-of-band.
Intel® Virtualization Technology (VT-x) ‡
Intel® Virtualization Technology (VT-x) allows one hardware platform to function as multiple “virtual” platforms. It offers improved manageability by limiting downtime and maintaining productivity by isolating computing activities into separate partitions.
Intel® Platform Trust Technology (Intel® PTT)
Intel® Platform Trust Technology (Intel® PTT) is a platform functionality for credential storage and key management used by Windows 8* and Windows® 10. Intel® PTT supports BitLocker* for hard drive encryption and supports all Microsoft requirements for firmware Trusted Platform Module (fTPM) 2.0.
Intel® AES New Instructions
Intel® AES New Instructions (Intel® AES-NI) are a set of instructions that enable fast and secure data encryption and decryption. AES-NI are valuable for a wide range of cryptographic applications, for example: applications that perform bulk encryption/decryption, authentication, random number generation, and authenticated encryption.
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All information provided is subject to change at any time, without notice. Intel may make changes to manufacturing life cycle, specifications, and product descriptions at any time, without notice. The information herein is provided "as-is" and Intel does not make any representations or warranties whatsoever regarding accuracy of the information, nor on the product features, availability, functionality, or compatibility of the products listed. Please contact system vendor for more information on specific products or systems.
Intel classifications are for informational purposes only and consist of Export Control Classification Numbers (ECCN) and Harmonized Tariff Schedule (HTS) numbers. Any use made of Intel classifications are without recourse to Intel and shall not be construed as a representation or warranty regarding the proper ECCN or HTS. Your company as an importer and/or exporter is responsible for determining the correct classification of your transaction.
Refer to Datasheet for formal definitions of product properties and features.
‡ This feature may not be available on all computing systems. Please check with the system vendor to determine if your system delivers this feature, or reference the system specifications (motherboard, processor, chipset, power supply, HDD, graphics controller, memory, BIOS, drivers, virtual machine monitor-VMM, platform software, and/or operating system) for feature compatibility. Functionality, performance, and other benefits of this feature may vary depending on system configuration.
Some products can support AES New Instructions with a Processor Configuration update, in particular, i7-2630QM/i7-2635QM, i7-2670QM/i7-2675QM, i5-2430M/i5-2435M, i5-2410M/i5-2415M. Please contact OEM for the BIOS that includes the latest Processor configuration update.
“Announced” SKUs are not yet available. Please refer to the Launch Date for market availability.
System and Maximum TDP is based on worst case scenarios. Actual TDP may be lower if not all I/Os for chipsets are used.