Mikromedia 5 for Kinetis CAPACITIVE

Mikromedia 5 for Kinetis CAPACITIVE
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  • MIKROE-3831
  • 3831
BUILD GREAT GUI IN NO TIME Rich with peripherals Mikromedia 5 for Kinetis... more
Product information "Mikromedia 5 for Kinetis CAPACITIVE"

BUILD GREAT GUI IN NO TIME

mikromedia 5 back side

Rich with peripherals

Mikromedia 5 for Kinetis CAPACITIVE is not limited to multimedia-based applications only. USB, Ethernet, WiFi and RF connectivity options, digital motion sensor, battery charging functionality, piezo-buzzer, SD card reader, RTC, and much more expands its use beyond the multimedia.

Two standardized 1x26 pin headers expose the available MCU pins to the user, adding another layer of expandability. By using mikromedia 5 shield, connectivity can be further expanded with several mikroBUS™ sockets, additional connectors, peripherals, and so on.

mikromedia 5 display graphic

Awesome graphics on MCU driven TFT

Mikromedia 5 for Kinetis CAPACITIVE is a compact development board designed as a complete solution for the rapid development of multimedia and GUI-centric applications. By featuring a 5" TFT display with capacitive touch screen driven by the powerful graphics controller that can display the 24-bit color palette (16.7 million colors), along with a DSP-powered embedded sound CODEC IC, represents a perfect solution for any type of multimedia application.

mikromedia 5 audio

Develop-on & build-in the same board

Mikromedia 5 for Kinetis CAPACITIVE is designed as the complete solution which can be implemented directly into any project, with no additional hardware modifications required. At its core, there is a powerful 32-bit MK66FX1M0VLQ18 microcontroller, produced by NXP Semiconductors, which provides sufficient processing power for the most demanding tasks. Four mounting holes at all four corners allow simple installation with mounting screws. For most applications, a nice stylish casing is all that is needed to turn the Mikromedia 5 for Kinetis CAPACITIVE development board into a fully functional, high-performance, feature-rich device.

WHAT'S ON BOARD - BACK SIDE

mikromedia 5 audio, prog/debug, wifi

Sound, connectivity & expandibility

A very popular WiFi module labeled as CC3100 enables WiFi connectivity. This module is the complete WiFi solution on a chip: it is a powerful WiFi network processor with the power management subsystem, offering the TCP/IP stack, powerful crypto engine with 256-bit AES support, WPA2 security, SmartConfig™ technology, and much more.

Resource-demanding and complex audio processing tasks can be offloaded from the host MCU by utilizing a dedicated audio CODEC IC, labeled as VS1053B. This IC supports many different audio formats, commonly found on various digital audio devices.

The host MCU can be programmed and debugged over the JTAG/SWD compatible 2x5-pin header. A high-precision buffered voltage reference from Microchip is used to provide a very precise voltage reference with no drift, when required. The FXOS8700CQ, an advanced integrated 3-axis accelerometer and 3-axis magnetometer can detect many different motion-related events.

mikromedia 5

State of the art power supply, Display & Graphics controller

A high-quality 5" TFT true-color display with a capacitive touch panel is the most distinctive feature of the mikromedia 5. The display has a resolution of 800 by 480 pixels, and it can display up to 16.7M of colors. The display module is controlled by the SSD1963 graphics driver IC from Solomon Systech. This is a powerful graphics coprocessor, equipped with 1215KB of frame buffer memory. It also includes some advanced features such as the hardware accelerated display rotation, display mirroring, hardware windowing, dynamic backlight control, programmable color and brightness control, and more.

The Power Supply Unit (PSU) provides a clean and regulated power, necessary for a proper operation of the mikromedia 5 development board. It is equipped with four different power supply inputs, offering all the flexibility that mikromedia 5 needs.

mikromedia 5 12vdc

More connectivity

The microSD card slot allows storing large amounts of data externally, on a microSD memory card. The microSD card detection circuit is also provided on the board.

The host MCU is equipped with the USB peripheral module, allowing simple USB connectivity. Ethernet physical layer is provided by the LAN8720A, an RMII 10/100 Ethernet PHY IC from Microchip.

The RTC peripheral utilizes a separate power supply source, typically a battery. To allow continuous tracking of time, mikromedia 5 is equipped with a button cell battery that maintains RTC functionality even if the main power supply is off.

WHAT'S ON BOARD - FRONT SIDE

mikromedia 5 display left

Additional sensors and other miscellaneous peripherals

An ambient light sensor (ALS) can be used for dimming the screen intensity in low-light conditions, allowing for the lower power consumption. It can also be used to detect the proximity and turn on the screen or increase its brightness when the user approaches.

An infrared (IR) receiver with the integrated PIN diode and a demodulation section allows simple control over an IR remote controller to be implemented.

The MCP9700A, an integrated low-power linear active thermistor allows measurement of the ambient temperature.

A high-brightness RGB LED option can be used to provide visual feedback in a very simple way.

mikromedia 5 display center

Headers & On-Off switch

Most of the host MCU pins are routed to the two 1x26 pin headers, making them available for further connectivity. In addition to MCU pins, some additional peripheral pins are also routed to this header.

After a valid power supply source is connected mikromedia 5 can be powered ON. This can be done by a small switch at the right side of the board. A LED indicator labeled as PWR indicates that the mikromedia 5 is powered ON.

mikromedia 5 display right

Reset & connectors access

The board is equipped with the Reset button, which is located on the front side of the board. It is used to generate a LOW logic level on the microcontroller reset pin. The reset pin of the host MCU is also routed to the pin 1 of the 1x26 pin header, allowing an external signal to reset the device.

 
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