Customized Large Screen Led Video Wall Processor High Definition CE ROHS Approval
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Product descriptions
1.1 Product functions overview High definition digital image processor(HDDIP) is a new device for coexistence of analog signals and digital signals, and the coexistence of high definition signals and standard signals.It can centrally handle analog and digital signals then convert them into a unified format.It can make intuitive,simple and convenient switching to various formats of input signals. High definition digital image processor(HDDIP) adopts modular design, plugging type structure, supporting hot plug.And it can be combined arbitrarily for customer’s selection. For different use needs,it can be selected the capacity from 4x4 to 72x72.The input signals support various formats such as DVI, HDMI, VGA, HD-SDI, Video. The output has the format of DVI-I, RJ45 and so on. High definition digital image processor is widely used in various places,like conference room command system, security monitoring system, digital city system, transfer management system and so on.
1.2 Product features u Modular design and plugging type structure, which can be assembled freely according to practical truth. uSupporting various formats such as DVI, HDMI, VGA, HD-SDI, Video. uThe maximum input and output resolution support 1920*1080 and other resolutions, such as 720P signals. uSignal processing and switching are all digitized. uHigh definition digital image processor(HDDIP) video input can realize 4 segmentation screens display. uIt can support the function of signal format conversion and frequency doubling line conversion. uIt has power loss memory function with power failure field protection uIt can support input signal status monitoring,and monitor and display whether current input channels are valid. uForced air cooling to ensure the stability of the system. uThe use of proprietary control software can be remotely controlled via Ethernet and RS232. And it can support multichannel switching, address setting, and other functions.
1.3 Technical parameter 1.3.1 Input module 1, VGA input signal Single mode input 4 way signal; Type RGB(simulate); Joint RGB:15 pin D-sub(DB15/DE-15F)(Female); Resolution 800x600,1024x768,1280x720, 1280x1024,1366x768,1400x1050,1440x900,1600x1200,1920x1080;refresh rate 60Hz; Bit depth 32 bit /pixel; Horizontal scanning rate 15KHz to 90KHz interlacing or non interlacing; Synchronous type RGB SOG, separation of composite synchronization or separation of horizontal vertical synchronization; 2,DVI input signal Single mode input 4 way DVI signal; Type DVI(digit); Joint DVI :24+5 pin/DVI-I/Female (only DVI-D signal); Resolution Below 1920x1080 adaptive,refresh rate 60Hz; 3, Video input signal Single mode input 16 way video signal; Joint composite video;BNC(Female); Type PAL format; 4, SDI video input signal Single mode input 4 way SDI signal; Type SD-SDI(SMPTE 259M),HD-SDI(SMPTE 292M); Joint BNC(Female); 5, HDMI input signal Single mode input 4 way HDMI signal; Resolution Below 1920x1080 adaptive Support agreement HDCP 1.3 Joint HDMI Type A Maximum data rate 4.95Gbps 1.3.2 Output module 1, DVI/VGA output signal Single mode output 4 way DVI-I signal; Type RGB(simulate)/DVI(digit) Resolution 800x600,1024x768,1280x720,1280x800,1280x1024,1360x768,1366x768,1440x900,1400x1050,1600x1200,1680x1050,1920x1080, refresh rate 60Hz; Bit depth 32 bit /pixel; Synchronous type separation of composite synchronization or separation of horizontal vertical synchronization; Maximum output distance 20 meters, in 1920 * 1080@60Hz Joint DVI :24+5针 DVI-I(Female); 2,twisted pair output signal Single mode output 4 way DVI / RGB signal; Type RGB(simulate)/DVI(digit) Resolution 800x600,1024x768,1280x720,1280x800,1280x1024,1360x768,1366x768,1440x900,1400x1050,1600x1200,1680x1050,1920x1080, refresh rate 60Hz; Bit depth 32 bit /pixel; Maximum output distance 50 meters, in 1920 * 1080@60Hz Joint RJ45/ Female;
2.Equipment installed connection 2. 1RS-232 communication interface descriptions HDDIP all provide 2 standard RS- communication interfaces and one RS-232 IN that connected to a computer or another image processor's RS-232 OUT.The RS232 interface of multiple image processors can be connected in series. Just a single computer's RS-232 interface then can be used to control and set up a number of image processors. RS-232 serial communication port has DB9/M and DB9/F these two kinds. DB9/M:
DB9/F:
welding method: RS-232 Female RS-232 Male 2 pin---------------------2 pin 3 pin---------------------3 pin 5 pin---------------------5 pin
2.2 Product appearance 8U back plate diagram
5U back plate diagram A.radiator fan B.input card C.output card D: control card E.Power 1. Operation instruction 3.1 Communication protocol 1,In order to increase its subsequent extensibility, the version V001 of the control protocol is the mainstream ASCII control mode. The follow-up needs to add protocols and add relevant protocols to the control board to support parsing.And version number (V002~V999) in the communication is the default of version number V001. When the serial port receives the ASCII code Change the Protocol to Version VXXX, where the semicolon is the end of the command (the sign must be input in English), XXX is actually used in the 3 bit digit.The following example is to use a 004 version protocol to communicate: Change the Protocol to Version V004; 2,The RS-232 communication uses the baud rate 9600, the data bit 8, the stop bit 1, and no checkout bit. 3. System instruction: (end with hexadecimal 3B.If you need to convert all hexadecimal, please see Appendix -I: Standard ASCII code)
Query the model of the image processor return: Matrix V004:stands for 5U processor(20 OUT) Matrix V005:stands for 8U processor(36 OUT)
Turn off the buzzer
Turn on the buzzer
Restore to factory settings Return OK!
Query software version Return Vxxx 4,Operation instruction(This instruction sets the default corrected operation to return to OK. If there is an error, return the error code, which can be easily debugged in the field)end with hexadecimal 2E(character ’.’).
Save the current preplan status as a [Y] storage unit,Y(0~200)
Call the preplan [Y] to the current connecting state,Y(0~200)
Query the current IP address of the processor
Change the IP address,如:SetIP192,168,1,1.
Turn on and off all input and output cards [x1]: 0-off 1-on return:OK or ERROR
Setting out the output resolution of the output board [x1]: Output board card number (1~8) [y1]: 1-- 1920 1080 60hz 2-- 1366 768 60Hz 3-- 1024 768 60hz return:OK or ERROR
polling,[x2]Later, it's all the scene number [x0]--The number of instructions to be sent in total [x1]--The number of the instruction
End polling
In seconds
2. Introduction of software functions 4.1 Basic functions of software The digital image processing control software is the software of the whole system for digital image processor equipment. This software can control the operation and automatically monitor the image processor. Through this software, users can control the image processor’s control system, and intelligently monitor related peripherals, and can automatically switch the system mode.The main interface is shown in Figure 4.1.
Figure 4.1 start interface 4.1.1The main functional features Device search, connection and configuration The configuration software has the functions of connecting equipment parameters, searching equipment, obtaining equipment information and splicing settings. It includes: searching devices through Ethernet and modifying device IP; connecting devices through serial ports or Ethernet; connecting devices; obtaining input and output information of devices; setting splicing parameters (including splicing quantity, output resolution and output correspondence).
Open windows and editors Through the functions of windows opening and editing, the position and size of display window can be controlled and edited on the output screen, at the same time, the layer of window can be edited, and provide some easy shuttles like delete and zooming.
Plan management and polling Saving and managing the plan, including saving the plan file, opening the plan file and invocating the plan and the preplan polling. Auxiliary functionThe functions of controlling and managing devices include the reading and displaying of EDID files, the device version, the device configuration information, the on-off power and the switch buzzer and the authorization verification. At the same time, it provides the communication and control of the splicing screen, such as the selection of the on-off power and the screen’s channel. 4.1.2 System requirements CPU :Above 1GHz processor Storage :Above 1G storage(2G is better) Display :VGA or higher resolution’s monitor( above 1024×768 is better ) HD :The available hard disk space above 100M Net card :10M/100M net card Operating system :Windows XP and higher version’s Windows system 4.2 Introduction of using software 4.2.1 The operation of the software First, using the compression tool to decompress the "image processor control system software.Zip" file,as shown in Figure 4.2;
Figure 4.2 software zip The image processor control system software.exe runs directly after the decompression and clicks twice the application’s file in the unzip directory, as shown in Figure 4.3
Figure 4.3 startup software Entering the software main interface, as shown in Figure 4.4, it is divided into 2 modules, device function and auxiliary tool.
Figure 4.4 software interface 4.2.2 The connection of the equipment Before connecting the device, please ensure that the machine has been connected to the image processor through the RS232 serial port line, or connected to the network of equipment or the network cable. Confirm the connection and click connect settings, as shown in Figure 4.5.
Figure 4.5 connection settings Open the connection setup interface. As shown in Figure 4.6, you can choose two connection ways NET and RS232 serial port. The choosing way is related to the way to connect the machine on the spot. If it is connected through Ethernet, the IP address of the device needs to be set, and the default IP address of the device is 192.168.1.2;If the serial port is connected, it is necessary to confirm the serial number and corrected connection. Ethernet search equipment and change IP When connecting the processor through Ethernet, you can open the connecting setup functional interface if the IP address of the processor is not determined,. Then search the device by the network search device below and get the basic information of the device, as shown in Figure 4.6.You can click change IP in the IP address box below. When the interface shows change IP success, restart the device to take effect! It means that the IP has changed successfully, the device can be reconnected after the power is restarted. And the new IP address can be taken into effect.
Figure 4.6 connect settings Ethernet connectSelect the Ethernet connect, the default IP address is 192.168.1.2, and the default port number is 5000 (or 5001 or 5002).After finding the device by searching, click the device searched or manually enter the IP address,then click the bottom to confirm. RS232 connectSelect serial port connect, select the serial port of the machine, the baud rate default is 9600 After setting up the connecting parameters, click OK. After the connection setting is completed, click the connecting device and automatically obtain the device’s information. As shown in Figure 4.7.
Figure 4.7 connect settings
4.2.3 The splicing of the equipment The splicing parameters need to be configured before controlling the processor's window function, such as the number of screens, the output resolution, and the screen grouping.
Figure 4.8 splicing settings Screen groupingClick screen grouping, as shown in Figure 4.8. The main setup of the processor is matched the output channel and the screen input channel. Select the left handler to output the channel number and drag to the right screen wall to complete the screen wall configuration, as shown in Figure 4.9.If you make a mistake, only double click on the right side of the screen wall can be restored, also can click to reset the current or reset all configuration.
Figure 4.9 screen grouping Splicing settingClick splicing setting, as shown in Figure 4.8. It mainly sets up the combination way of splicing wall, inputting the number of rows and columns of the current splicing wall. And select the output resolution according to the actual situation at the same time, as shown in Figure 4.10.
Figure 4.10 splicing settings As shown in Figure 4.11, display mode setting: advanced settings can change the parameters of the output screen. After adjusting, click the set button to take effect. If there is any confusion in the process, click restore to get the default value. When the configuration parameters are completed, please click save, and the device will save them.
Figure 4.11 advanced display timing settings 4.2.4 Window opening and edit After connecting the processor, it will automatically display the input signal source information in the signal source list. When the input signal source is connected to the signal, the icon corresponding to the input channel will show blue, otherwise it will display red, as shown in Figure 4.12.
Figure 4.12 signal source information Window openingSelect and click the valid signal source (access signal), then select the screen position to display. Hold on the left key of the frame, and then unclinch the left key to complete the window function, as shown in Figure 4.13.
Figure 4.13 window opening operation Signal switchingFirst, you can choose single or multiple opened target frames, then double-click the valid signal in the signal source’s list to complete the signal window switching. Window editing and layer operationThe size of the layer can be adjusted by dragging the window’s edge. The toolbar provides the operation of multiple windows and layers, such as the unit maximization, full screen display and restore of the window. At the same time, it also provides the top layer and the bottom of the operation to complete the switching between layers. And it can delete one or all the layers of the window. 4.2.5 Plan and polling Save planWhen the window’s position, size and input source are all adjusted, you can click save on the toolbar, then save the preplan number, the preplan name and the related information in the pre- window, as shown in Figure 4.14. And confirm the reservation of the plan.
Figure 4.14 save preplan Plan callingThe saved plan according to the above method will be displayed in the menu, and then is click on plan management on the interface. As shown in Figure 4.15, all the plan information is displayed. And double click one of the plans to complete the call of the plan. After choosing one or more of the plans, click the right mouse button to delete the preplan. After deletions, the preplan will be deleted from the device.
图4.15pre-arranged plan Plan polling The software can also poll the plan, click the poll button on the toolbar. And select the plan you want to poll in the plan list. As shown in Figure 4.17, set up the polling interval between each plan and click the start so that the plan polling can be completed.
图4.16plan polling In the process of plan polling, no operation can be done on the interface. We can stop the current process if we have to. As shown in Figure 4.16 and figure 4.17, we can stop the current polling by clicking stop polling.
图4.17Stop polling 4.2.6控屏模式This software can control the on-off of the splice screen and switch channels. Click the straight mode in the screen operating mode in the auxiliary tool, as shown in Figure 4.18.
图4.18Control screen mode Click on the communication settings as shown in Figure 4.18, and you can set the communication parameters on the splicing screen, as shown in Figure 4.19. Select the communication screen wall, then select the communication link "Ethernet" or "serial port", and set the corresponding parameters. At the same time select the command protocol corresponding to the screen, click OK to exit setting lastly.
图4.19Control screen parameter setting Attention: Different screens may need to choose different protocol commands. If the control doesn’t work, please contact the supplier. After completing the setup, you can click any one in the simulated splicing screen on the interface, then click the right mouse button to turn on-off the single screen or switch the input channel, as shown in Figure 4.20. You can also click turn on screen or turn off screen to complete switch function through the toolbar, as shown in Figure 4.18 Figure 4.20 virtual splicing screen 4.2.7 Auxiliary toolThe most commonly used tools in the auxiliary tools are the switch operation of the buzzer, the reading of the device version information and the authorization verification. Turn on-off the buzzerClick turn on the buzzer and turn off the buzzer on the toolbar.. Authentication authorityWhen the device exceeds the authorized time, it will not display the output information, while the authorization can be solved. First, click on the authentication authority on the toolbar, as shown in Figure 4.21.
Figure 4.21 registration of equipment First, export the serial number document, then the serial number document (suffix sltkey) is sent to the supplier, and the authorized document will be sent back from the supplier (the suffix is sltreg). Import this document completing the authorization, and the device can be used normally. Open the EDIDThe EDID file (*.sltEDID) saved through this software can be opened by this function and read the detailed information of the EDID file. VersionClick on the device version on the toolbar to display the version information of the device, including the version of the host, the version of the input and output card, and so on.
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| Control character | ASCII code (Hexadecimal) | Control character | ASCII code (Hexadecimal) | Control character | ASCII code (Hexadecimal) | Control character | ASCII code (Hexadecimal) |
| NUT | 0 | (space) | 20 | @ | 40 | , | 60 |
| SOH | 1 | ! | 21 | A | 41 | a | 61 |
| STX | 2 | " | 22 | B | 42 | b | 62 |
| ETX | 3 | # | 23 | C | 43 | c | 63 |
| EOT | 4 | $ | 24 | D | 44 | d | 64 |
| ENQ | 5 | % | 25 | E | 45 | e | 65 |
| ACK | 6 | & | 26 | F | 46 | f | 66 |
| BEL | 7 | ` | 27 | G | 47 | g | 67 |
| BS | 8 | ( | 28 | H | 48 | h | 68 |
| HT | 9 | ) | 29 | I | 49 | i | 69 |
| LF | 0A | * | 2A | J | 4A | j | 6A |
| VT | 0B | + | 2B | K | 4B | k | 6B |
| FF | 0C | , | 2C | L | 4C | l | 6C |
| CR | 0D | - | 2D | M | 4D | m | 6D |
| SO | 0E | . | 2E | N | 4E | n | 6E |
| SI | 0F | / | 2F | O | 4F | o | 6F |
| DLE | 10 | 0 | 30 | P | 50 | p | 70 |
| DCI | 11 | 1 | 31 | Q | 51 | q | 71 |
| DC2 | 12 | 2 | 32 | R | 52 | r | 72 |
| DC3 | 13 | 3 | 33 | S | 53 | s | 73 |
| DC4 | 14 | 4 | 34 | T | 54 | t | 74 |
| NAK | 15 | 5 | 35 | U | 55 | u | 75 |
| SYN | 16 | 6 | 36 | V | 56 | v | 76 |
| TB | 17 | 7 | 37 | W | 57 | w | 77 |
| CAN | 18 | 8 | 38 | X | 58 | x | 78 |
| EM | 19 | 9 | 39 | Y | 59 | y | 79 |
| SUB | 1A | : | 3A | Z | 5A | z | 7A |
| ESC | 1B | ; | 3B | [ | 5B | { | 7B |
| FS | 1C | < | 3C | 5C | | | 7C | |
| GS | 1D | = | 3D | ] | 5D | } | 7D |
| RS | 1E | > | 3E | ^ | 5E | ~ | 7E |
| US | 1F | ? | 3F | _ | 5F | DEL | 7F |
Disclaimer
The copyright of high digital image processor is owned by our company. Its property right is absolutely protected by national laws. Without authorization of the company, other companies, units, agents and individuals can not illegally use and copy. Otherwise, it will be severely punished by national laws.
If you need our company's products and related information, please contact us in time. We will sincerely welcome to your visit.
Our company reserves the right to revise this user's instructions without notice at any time.
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