2 Introduction
2.5 Features
DBUG375-1.0E
7(40)
The development board generates 3.3v, 2.5v, 1.8v, 1.5v, 1.2v, 1.0v,
0.75v and the power needed by LCD interface and MIPI interface.
4. Clock system
50MHz crystal oscillator input
5. Memory Device
2Gbit DDR3 SDRAM
64Mbit FLASH
6. Ethernet interface
Two Ethernet interfaces
Uses B50610KML chip from Broadcom and supports RGMII
(10/100/1000) interface.
RJ45 connector integrating transformer
7. LVDS interfaces
Two LVDS interfaces for receiving, including ten pairs of differential
signals.
Two LVDS interface for sending, including ten pairs of differential
signals.
I/O voltage is adjustable when used as GPIO, supporting 3.3v, 2.5v
and 1.8v.
Note!
J13 needs to be set to 2.5V when LVDS is used.
8. MIPI DSI Interface
The interface includes 5 pairs of differential signals, among which
one for clock and four for data.
The stacked board connector with 30 contacts, 0.4mm pitch is
used.
Five lane DSI signals are simultaneously channeled to 20pin
double row of pins with 2.00mm pitch.
9. MIPI CSI Interface
MIPI interface includes 3 pairs of differential signals, among which
one for clock and four for data.
15pin FPC connector with 1mm pitch is used.
Differential signals of three lanes are simultaneously channeled to
the double row pin of 20 pin and 2.00mm pitch.
10. SD card slot
Eight contacts, push-push type
Card detection
11. RTC
NXP PCF8563 externally connected to 32.768KHz quartz crystal is
used.
Dual power supply design can be used to develop board power