Model: MY-IMX6-CB200-6U7C
NXP® i.MX6Dualite
ARM Cortex-A9
1GB DDR3, up to 2G
4G EMMC, up to 64G
Industrial grade
-40°C to 85°C Temp
Memory can be custom-made
Main Features:
4x ARM Cortex-A9 up to 1GHz per core at work
200 Mtri/s 1000Mpxl/s, OpenGL ES 2.0&Halti, CL EP
1MB L2cache
GPU 2D(Vector Graphics)
32KB instruction and data cache
Vivante GC355 300Mpxl/s, Open VG1.1
NEON SIMDmedia accelerator
GPU 2D(Composition)
GPU 3D
Vivante GC320 600Mpxl/s, BLIT
Vivante GC2000
Video Decode:1080p 60h.264
Hardware BCH(up to 20 corrections)
Video Encode:1080p30H. 264BP 2x720p encode
Camera Interface
Types: 1x 20-bit parallel, MIPI-CSI-2(2 lanes), three simultaneous inputs
Memory:
DDR:2x32-bit LP-DDR2,1x64-bit DDR3/LV-DDR3
NAND:SLC/MLC, 40-bit ECC, ONFI2.2, DDR
Connectivity
1x HS OTG + PHY
1x Host + PHY
2x Host USB HSIC
Ethernet 1 Gbps + IEEE 1588
Expansion Ports
3xSD/MMC4.4, 1xSDXC, 5xSPI, 5xUART, 3xI2C
MIPI-HSI
PCIe 2.0(1 lane)
Display 2x4xGA(2048x1536) or 2x[1080p+WXGA(1280x720)]
Advanced power management
Leads all the features of I.MX6
OS Support:
Linux 3.0.35/Linux 3.14.52/Linux-4.1.15, Android4.4.2/Android5.1, QT4.8.5/QT5, Ubuntu12.04/Ubuntu16.04
Instruction of detailed function of pins
Pin | CPU Ball Name | Pin Name | function selection | module affiliated | function description | voltage |
23 | G20 | EIM_D20 | 0 | weim | WEIM_D[20] | 3.3V |
1 | ecspi4 | SS0 | ||||
2 | ipu1 | DI0_PIN16 | ||||
3 | ipu2 | CSI1_D[15] | ||||
4 | uart1 | RTS | ||||
5 | gpio3 | GPIO[20] | ||||
6 | epit2 | EPITO | ||||
25 | K20 | CSPI2_CS0 | 0 | weim | WEIM_RW | 3.3V |
1 | ipu1 | DI1_PIN8 | ||||
2 | ecspi2 | SS0 | ||||
4 | mipi_core | DPHY_TEST_OUT[27] | ||||
5 | gpio2 | GPIO[26] | ||||
6 | tpsmp | HDATA[10] | ||||
7 | src | BT_CFG[29] | ||||
27 | H19 | CSPI2_RDY | 0 | weim | WEIM_A[25] | 3.3V |
1 | ecspi4 | SS1 | ||||
2 | ecspi2 | RDY | ||||
3 | ipu1 | DI1_PIN12 | ||||
4 | ipu1 | DI0_D1_CS | ||||
5 | gpio5 | GPIO[2] | ||||
6 | hdmi_tx | CEC_LINE | ||||
7 | pl301_mx6q_per1 | HBURST[0] | ||||
29 | J23 | CSPI2_MOSI | 0 | weim | WEIM_CS[1] | 3.3V |
1 | ipu1 | DI1_PIN6 | ||||
2 | ecspi2 | MOSI | ||||
4 | mipi_core | DPHY_TEST_OUT[25] | ||||
5 | gpio2 | GPIO[24] | ||||
6 | tpsmp | HDATA[8] | ||||
31 | H24 | CSPI2_CLK | 0 | weim | WEIM_CS[0] | 3.3V |
1 | ipu1 | DI1_PIN5 | ||||
2 | ecspi2 | SCLK | ||||
4 | mipi_core | DPHY_TEST_OUT[24] | ||||
5 | gpio2 | GPIO[23] | ||||
6 | tpsmp | HDATA[7] | ||||
33 | K22 | CSPI2_CS1 | 0 | weim | WEIM_LBA | 3.3V |
1 | ipu1 | DI1_PIN17 | ||||
2 | ecspi2 | SS1 | ||||
5 | gpio2 | GPIO[27] | ||||
6 | tpsmp | HDATA[11] | ||||
7 | src | BT_CFG[26] | ||||
35 | J24 | CSPI2_MISO | 0 | weim | WEIM_OE | 3.3V |
1 | ipu1 | DI1_PIN7 | ||||
2 | ecspi2 | MISO | ||||
4 | mipi_core | DPHY_TEST_OUT[26] | ||||
5 | gpio2 | GPIO[25] | ||||
6 | tpsmp | HDATA[9] | ||||
37 | D12 | MX6_ONOFF | MX6_ONOFF | ON/OFF | 3.3V | |
39 | NC | nRESET | nRESET | nRESET | 3.3V | |
41 | E22 | CSPI1_CS0 | 0 | weim | WEIM_EB[2] | 3.3V |
1 | ecspi1 | SS0 | ||||
2 | ccm | DI1_EXT_CLK | ||||
3 | ipu2 | CSI1_D[19] | ||||
4 | hdmi_tx | DDC_SCL | ||||
5 | gpio2 | GPIO[30] | ||||
6 | i2c2 | SCL | ||||
7 | src | BT_CFG[30] |
Application Area:
Medical & Health care
From hospital monitoring to home care, embedded computers are widely used in the field of medical devices. Do you want to get complex results from graphics that are easy to understand on the screen? Or, you need to compute the data from a variety of sensors. Either way, the MY-I.MX6 core module is designed and manufactured according to the principle of maximum reliability. Many of our industry-leading customers have successfully obtained 3C and CE products certification.
Medical gateway
Aviation
Embedded computers play an important role in aviation applications. They exist in a variety of airborne sensors and instruments. In some commercial areas, it also provides on-board entertainment and information services. MY-I.MX6 core modules are portable and compact, and system critical data is stored in non-volatile flash memory. Ensures that the system is almost impossible to fail. High performance, coupled with a wide variety of input and output capabilities. Our customers can use the MY-I.MX6 core module to achieve a variety of applications in and around the aircraft cabin, such as: airborne computers, instrumentation, collision detection, automatic emergency landing system. Video transmission, radar, cockpit control and entertainment information systems
Automotive & entertainment
MY-I.MX6 core modules can be widely used in the automotive field, such as fleet management, automotive rally car engine diagnosis, information entertainment
system and passenger information management, thanks to industrial temperature range. With anti-vibration hardware design, amazing video and 3D graphics processing capabilities, extremely high video output resolution, CAN interface. Achieve the full range of computer modules that appeal to all applications, whether you are producing high-end private cars or having to track and manage commercial fleets. The MY-I.MX6 core modules produced by MYZR have a large number of application examples. Through these examples, you can find the right computer module products to meet the intended use.
Laboratory equipment
From mass spectrometers to electronic scales. MY-I.MX6 core modules can be widely used in scientific laboratory instrumentation products of market leaders in their respective fields. Depending on the functionality, processing power, and interfaces you need for the device you are designing. Or the amount of memory may be an important feature of the modular product you choose. Do you need to output to a particular type of display or do the product receive data from different types of sensors? For each of these modules, you need to select a different feature. You may need a touch screen interface, a camera interface for USB hosts and clients, and multiple SD card interfaces. Internal solid state storage, etc. Please contact us, we will tell you which modules best meet your requirements.
Technical support and updating
Technical support scope
1.The company's products of software and hardware resources to provide consulting;
2.The company's products software, hardware manual use process encountered problems;
3.The company provides ODM ODM after-sales technical support;
4.Has purchased the company's product user's data to be lost, after the renewal obtains again;
5.The company's products fault judgment and after-sales maintenance services;
Technical discussion scope
1.Modification and understanding of source code;
2.How to transplant the operating system;
3.Software and hardware problems encountered by users in their own modification and development;
These are non-essential problems.