RD1-4320
DisplayPort 1.2a splitter
Reference board user guide
Rev. A
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This information shall not be shared or distributed outside the company and will be exchanged based on the
signed proprietary information exchange agreement. MegaChips reserves the right to make any change
herein at any time without prior notice. MegaChips does not assume any responsibility or liability arising out
of application or use of any product or service described herein except as explicitly agreed upon.
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RD1-4320
Contents
1.
Purpose and scope .................................................................................................................................... 4
2.
Description.................................................................................................................................................. 4
3.
Set up instructions ...................................................................................................................................... 4
4.
Diagnosis .................................................................................................................................................... 5
4.1.
5.
6.
In-System Programming ..................................................................................................................... 6
Board description ....................................................................................................................................... 7
5.1.
Principal components and functions ................................................................................................... 8
5.2.
Connector descriptions ....................................................................................................................... 9
Revision history ........................................................................................................................................ 11
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RD1-4320
List of tables
Table 1.
Principal components and functions................................................................................................ 8
Table 2.
Document revision history ............................................................................................................. 11
List of figures
Figure 1.
Connection diagram: Video hub application ................................................................................ 5
Figure 2.
RD1-4320 board picture .............................................................................................................. 7
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RD1-4320
1. Purpose and scope
This document provides a description and set up instructions for the STDP4320 reference board [RD1-4320
(400-657)] targeted for DisplayPort® Splitter applications.
2. Description
The STDP4320 is a high-speed DisplayPort dual mode splitter IC targeted for audio-video de-multiplexing
and routing in applications such as notebooks, docking stations, video hub, 4K2K TVs, daisy-chainable
monitors, digital signage and others.
The board consists of one dual mode input port and two dual mode output ports.
This board implements test points, jumpers, and potentiometers that are not required for the end customer
applications, these are intended for convenience of functional test and validation purpose only. This board
includes an SPI flash for storing firmware, an UART connector for debugging and In-System Programming
purposes (firmware download), two S/PDIF outputs, four I2C master interfaces and one I2C slave interface.
3. Set up instructions
The picture below [Figure 1] is a connection diagram showing the RD1-4320 board used for connecting a PC
to two monitors. This board uses the standard DisplayPort connector recommended in the DP 1.2a
specification to connect the DisplayPort input to the PC and standard DisplayPort connectors to DisplayPort
TV/monitors.
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RD1-4320
Figure 1.
Connection diagram: Video hub application
1. Connect the DisplayPort output from a PC/NB source to the DP input connector on RD1-4320 board
using a DP cable and connect the two DisplayPort outputs to two DisplayPort 1.1a or 1.2a monitors
using DP cables.
2. Connect a Micro-USB port on the board to PC or USB power adapter for powering the board.
3. Optional: An active speaker can be connected to the S/PDIF connector on the board for audio output
if needed.
4. Once the connection is established, power ON the PC, monitor, and RD1-4320 (DP Splitter) board.
An image should pop up on the screen within 2-3 seconds. Configure the displays either in clone
mode or extended mode through the Display settings on PC/NB.
4. Diagnosis
If the image does not come up, follow the steps below for diagnosis.
Note: The diagnosis requires the MegaChips GProbe software and hardware tool. Contact MegaChips for
the GProbe software and board.
1. Install the Megachips GProbe diagnostic tool on a computer and set the baud rate to 115,200.
2. Connect Megachips GProbe board (not supplied) to the serial port (or USB port if using USB
version) of the computer.
3. Connect the other end of the GProbe board to connector (CN501) on the RD1-4320 board using 4wire cable (part of the GProbe board).
Note: CHECK POLARITY while connecting the cable; Pin 1 is marked on the board. The 4-wire cable
connection from CN501 to GProbe board is 1 to 1.
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RD1-4320
4. Hit the Reset button on the board (RESET SW501). You will see the firmware version and date of
firmware in the GProbe window. This indicates the STDP4320 IC is functional. If the message does
not appear, reprogram the Flash using the ISP method described in the GProbe user guide.
5. Using an oscilloscope, check the video input and output from the STDP4320.
Note: Refer to the STDP4320 datasheet for more pin out descriptions.
4.1. In-System Programming
The STDP4320 RD board uses SPI Flash to store the firmware. For a new firmware upgrade, the following
method is recommended.
ISP through UART connector: Allows programming of the SPI Flash through the UART (RS232) connector.
The GProbe board (RS232 converter circuit) and GProbe software tool are required. Please contact
Megachips for latest software and binary file.
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5. Board description
Figure 2.
RD1-4320 board picture
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5.1. Principal components and functions
Below is a summary of all necessary connectors, switches, and other components. Please refer to the latest
board schematics for further details.
Table 1. Principal components and functions
Label
Description
RefDes
Power Input
(+5 V)
Input +5 V, down conversion to 3.3 V, and 1.2 V. This board uses two stepdown switch regulators to generate 3.3 V and 1.2 V.
STDP4320 is a VESA DP Standard Ver. 1.2a compliant device that
CN301
STDP4320
U601
supports advanced features such as MST, HBR2 and 3D formats
DP Input
DisplayPort input connector
CN401
DP Outputs
DPTX output connectors
CN901
CN801
Flash
The board includes an SPI Flash of 2 MB to hold the firmware. The SPI
Flash can be programmed (ISP) through UART interface
U1003
Analog S/PDIF
Outputs
Standard S/PDIF output connectors.
CN1001
CN1002
Host I2C
Interface
Host Interface (I2C): This board includes a provision to access the
STDP4320 device from an external host controller through the Host
Interface (I2C port) connection.
CN701
GProbe
GProbe Interface (+5 V logic): the board includes a GProbe connector that
connects to the STDP4320 UART port for communication with external PC
sources for debug and FW upgrade purposes.
CN501
Reset
Reset Button, when pressed, triggers a system master reset through the
internal reset circuitry.
SW501
LED
One LED for indicating +5 V input power-on status
D301
Crystal
An external crystal of 27 MHz
Y501
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RD1-4320
5.2. Connector descriptions
The RD1-4320 has the following connectors. The locations of these connectors are shown in the board
picture in Figure 2.
CN301 – +5 V Micro-USB female connector for supplying power to the board.
CN501 – GProbe Interface which connects to the UART port of the STDP4320. Use the MegaChips GProbe
board and interface cable for connecting the board to an external PC that has GProbe software running.
Pin 1
+5V
Pin 2
GPROBE_TX
Pin 3
GPROBE_RX
Pin 4
GND
CN401 – DisplayPort input connector. Pin out details are shown below.
Pin 1
ML_L3N
Pin 2
GND
Pin 3
ML_L3P
Pin 4
ML_L2N
Pin 5
GND
Pin 6
ML_L2P
Pin 7
ML_L1N
Pin 8
GND
Pin 9
ML_L1P
Pin 10
ML_L0N
Pin 11
GND
Pin 12
ML_L0P
Pin 13
CONFIG1
Pin 14
CONFIG2
Pin 15
AUX_P
Pin 16
GND
Pin 17
AUX_N
Pin 18
HPD_OUT
Pin 19
GND
Pin 20
+3V3_AVDD
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RD1-4320
CN901, CN801 – Standard DP output connectors. Pin out details are shown below.
Pin 1
ML_Lane 0(p)
Pin 2
GND
Pin 3
ML_Lane 0 (n)
Pin 4
ML_Lane 1 (p)
Pin 5
GND
Pin 6
ML_Lane 1 (n)
Pin 7
ML_Lane 2 (p)
Pin 8
GND
Pin 9
ML_Lane 2 (n)
Pin 10
ML_Lane 3 (p)
Pin 11
GND
Pin 12
ML_Lane 3 (n)
Pin 13
CONFIG1
Pin 14
CONFIG2
Pin 15
AUX_CH (p)
Pin 16
GND
Pin 17
AUX_CH (n)
Pin 18
Hot Plug Detect
Pin 19
Return (GND)
Pin 20
+3.3V
CN1001, CN1002 – S/PDIF Output connectors. The pin out description is shown below.
Pin 1
GND
Pin 2
I2S_0
Pin 3
GND
Pin 1
I2C_SCL
Pin 2
I2C SDA
Pin 3
IRQ_OUT
Pin 4
GND
CN701 – I2C Host Interface
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RD1-4320
6. Revision history
Table 2. Document revision history
Date
Revision
20-Jun-2014
A
Changes
Initial version.
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RD1-4320
Notice
Semiconductor products may possibly experience breakdown or malfunction. Adequate care should be taken with respect to the safety design of equipment in order
to prevent the occurrence of human injury, fire or social loss in the event of breakdown or malfunction of semiconductor products
The overview of operations and illustration of applications described in this document indicate the conceptual method of use of the semiconductor product and do not
guarantee operability in equipment in which the product is actually used.
The names of companies and trademarks stated in this document are registered trademarks of the relevant companies.
MegaChips Co. provides no guarantees nor grants any implementation rights with respect to industrial property rights, intellectual property rights and other such rights
belonging to third parties or/and MegaChips Co. in the use of products and of technical information including information on the overview of operations and the circuit
diagrams that are described in this document.
The product described in this document may possibly be considered goods or technology regulated by the Foreign Currency and Foreign Trade Control Law. In the
event such law applies, export license will be required under said law when exporting the product. This regulation shall be valid in Japan domestic.
In the event the intention is to use the product described in this document in applications that require an extremely high standard of reliability such as nuclear
systems, aerospace equipment or medical equipment for life support, please contact the sales department of MegaChips Co. in advance.
All information contained in this document is subject to change without notice.
Copyright © 2014 MegaChips Corporation All rights reserved
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