MCIMX6D4AVT08AC-NXP
| Part Description |
ARM® Cortex®-A9 Microprocessor IC i.MX6D 2 Core, 32-Bit 852MHz 624-FCBGA (21x21) |
|---|---|
| Quantity | 927 Available (as of October 8, 2026) |
| Product Category | Microprocessors |
|---|---|
| Part Series | i.MX 6D |
| Manufacturer | NXP USA Inc. |
| Manufacturing Status | Active |
| Manufacturer Standard Lead Time | 1 Weeks |
| Datasheet |
Specifications & Environmental
| Co-Processors/DSP | Multimedia; NEON™ SIMD | Core Processor | ARM® Cortex®-A9 | Device Package | 624-FCBGA (21x21) | ||
|---|---|---|---|---|---|---|---|
| Display & Interface Controllers | HDMI, Keypad, LCD, LVDS, MIPI/CSI, MIPI/DSI | ECCN | 5A992 | Ethernet | 10/100/1000Mbps (1) | ||
| Graphics Acceleration | Yes | HTS Code | 8542.31.0001 | Moisture Sensitivity Level | 3 (168 Hours) | ||
| Mounting Method | Surface Mount | Mounting Type | Surface Mount | Number of Cores/Bus Width | 2 Core, 32-Bit | ||
| Operating Temperature | -40°C ~ 125°C (TJ) | Package / Case | 624-FBGA, FCBGA | RAM Controllers | DDR3, DDR3L, LPDDR2 | ||
| REACH Compliance | REACH Unaffected | RoHS Compliance | ROHS3 Compliant | SATA | SATA 3Gbps (1) | ||
| Security Features | ARM TZ, Boot Security, Cryptography, RTIC, Secure Fusebox, Secure JTAG, Secure Memory, Secure RTC, Tamper Detection | Speed | 852MHz | Supplier Device Package | 624-FCBGA (21×21) | ||
| USB | USB 2.0 + PHY (3), USB 2.0 OTG + PHY (1) | Voltage – I/O | 1.8V, 2.5V, 2.8V, 3.3V |
Overview of MCIMX6D4AVT08AC-NXP – I.MX 6 SERIES 32 BIT MPU, DUAL A
The MCIMX6D4AVT08AC-NXP is a dual-core ARM® Cortex®-A9 32-bit microprocessor from the i.MX 6D series, running at up to 852 MHz and supplied in a 624-FCBGA (21×21) surface-mount package. It targets industrial embedded systems that need combined compute performance, multimedia acceleration and extensive I/O integration.
With hardware multimedia support, multiple display controllers, a broad set of high-speed interfaces and industrial qualification, this device is suited for applications requiring connectivity, storage and secure operation across a wide operating temperature range.
Key Features
- Processing Dual ARM® Cortex®-A9 cores at 852 MHz provide 32-bit application processing capable of handling control and multimedia tasks.
- Multimedia & SIMD Multimedia co-processor and NEON™ SIMD acceleration enable efficient media and signal-processing workloads.
- Memory Controllers Integrated controllers for DDR3, DDR3L and LPDDR2 memory types offer flexibility for system memory design.
- Display Interfaces Multiple display controller support including HDMI, LCD, LVDS, MIPI/CSI and MIPI/DSI for rich HMI and camera interfacing options.
- Connectivity On-chip 10/100/1000 Mbps Ethernet (1), SATA 3 Gbps (1) and multiple USB 2.0 ports (3x USB 2.0 + PHY, 1x USB 2.0 OTG + PHY) deliver wired networking and peripheral connectivity.
- Fieldbus & Additional I/O CANbus support and keypad interfaces provide common industrial control and vehicle-area networking options.
- Security Built-in security features including ARM TrustZone, boot security, cryptography, secure fusebox, secure JTAG, secure memory, secure RTC and tamper detection support secure system designs.
- Graphics Acceleration Graphics acceleration is included to support UI and multimedia rendering tasks.
- Package & Mounting 624-FCBGA (21×21) package in a surface-mount form factor for compact board-level integration.
- Industrial Qualification & Temperature Industrial qualification and an operating temperature range of -40°C to 125°C for deployment in demanding environments.
- RoHS Compliance Device is RoHS compliant.
Typical Applications
- Industrial Automation Dual-core processing, CANbus and industrial temperature rating support controllers, gateways and operator interfaces in factory and process environments.
- Human-Machine Interfaces (HMI) Multiple display controllers and graphics acceleration enable rich touchscreen and display-driven interfaces for machines and appliances.
- Networking & Storage Appliances Integrated Gigabit Ethernet and SATA 3 Gbps provide the connectivity and local storage capability needed for embedded networking and edge appliances.
- Multimedia & Vision Devices NEON SIMD and multimedia co-processing plus MIPI/CSI and MIPI/DSI support camera input and multimedia processing in embedded imaging applications.
Unique Advantages
- Balanced dual-core performance: Two ARM® Cortex®-A9 cores at 852 MHz deliver a balance of application processing and media handling for embedded designs.
- Extensive on-chip I/O: HDMI, LVDS, MIPI, Gigabit Ethernet, SATA and multiple USB ports reduce external interface components and simplify system BOM.
- Industrial-ready operation: -40°C to 125°C operating range and industrial qualification enable deployment in harsh environments.
- Comprehensive security features: Hardware security primitives including TrustZone, secure JTAG and secure memory help protect boot and runtime assets.
- Memory flexibility: Support for DDR3, DDR3L and LPDDR2 gives designers options to optimize cost, power and performance.
- Compact package: 624-FCBGA (21×21) surface-mount package supports dense, space-conscious board layouts.
Why Choose MCIMX6D4AVT08AC-NXP?
The MCIMX6D4AVT08AC-NXP positions itself as a highly integrated dual-core embedded MPU combining Cortex-A9 processing, multimedia acceleration and a wide range of connectivity in a single industrial-qualified device. Its combination of display controllers, storage and networking interfaces, plus robust security capabilities, makes it suitable for designs that require multimedia, connectivity and secure operation in challenging environments.
Choose this i.MX 6D series part when your design requires a compact, interface-rich processor platform with industrial temperature capability and hardware security features to support long-term, reliable operation.
Request a quote or submit an inquiry to get pricing and availability for the MCIMX6D4AVT08AC-NXP.

Date Founded: 2006
Headquarters: Eindhoven, North Brabant, Netherlands
Employees: 38,000+
Revenue: $10.53 Billion
Certifications and Memberships: ISO9001:2015, IATF16949:2016