
Led display receiving card A5 Model
- Payment Type:
- L/C, T/T, Paypal, Money Gram, Western Union
- Incoterm:
- FOB, CFR, CIF
- Delivery Time:
- 15-30 Days
- Transportation:
- Ocean, Land, Air
- Port:
- Shenzhen, Hongkong, China
Your message must be between 20 to 2000 characters
Contact NowPlace of Origin: | CHINA |
---|---|
Productivity: | 1500 square meter/month |
Supply Ability: | 1000 square meter/month |
Payment Type: | L/C,T/T,Paypal,Money Gram,Western Union |
Incoterm: | FOB,CFR,CIF |
Certificate: | CCC,CE,UL,RoHS,FCC |
HS Code: | 8528591090 |
Transportation: | Ocean,Land,Air |
Port: | Shenzhen,Hongkong,China |
Led display receiving card A5 Model
Product Feature:Led display receiving card
A5 Model
Features
Description
Supporting pixel level brightness
and chroma calibration
Working with NovaLCT and NovaCLB,
A5 supports brightness and chroma calibration on each pixel.
Supporting image rotation in 90° increments
(Calibration not supported after
rotation)
On NovaLCT, the image on the
screen can be set to rotate in the multiples of 90° (90°, 180°, 270° and 360°).
Supporting quick seam correction
Working with NovaLCT, A5 supports
quick adjustment of bright and dark lines, which can remove the seams between
modules and between cabinets.
Supporting 3D function
On NovaLCT or operation panel of
controllers which support 3D function, you can enable 3D function and set the
3D parameters to make the LED screen display 3D effects.
3.2 Improvement in Maintainability
Features
Description
Supporting the smart module
(Supported by dedicated firmware
program)
The smart module is composed of
Flash and MCU.
Flash could store calibration
coefficients and module information. MCU could communicate with the receiving
card to realize monitoring over temperature, voltage and wiring communication
status for the module. Working with the driver chip, A5 supports open circuit
detection on LED.
The smart module could make
monitoring unit smaller, requiring no independent monitoring card
Receiving Card A5
Features
Description
and saving cabinet space.
Supporting LVDS transmission
(Supported by dedicated firmware
program)
The transmission mode of
low-voltage differential signaling (LVDS) is used, which reduces the number
of data cables that connect the receiving card's HUB board to the module,
increases the transmission distance, improves the signal transmission
quality, and better stabilizes the image output.
Supporting auto module calibration
After the module has been
replaced, the receiving card can automatically read the new module ID and
calibration coefficient which could be saved to calibration system files.
Supporting Mapping function
Enable the Mapping function on
NovaLCT, then the target cabinet will display the cabinet number and Ethernet
port information, and the user could get the receiving card`s location and wiring route.
Supporting setting of images
pre-stored of the receiving card
On NovaLCT, the specified images
could be set as the screen startup image and images used when the Ethernet
cable is disconnected or no video source signal is available.
Supporting module Flash management
On NovaLCT, lamp panel Flash could
be managed.
Supporting monitoring voltage and
temperature of itself
The voltage and temperature of the
receiving card itself can be monitored without using other peripherals. The
monitoring data can be checked on NovaLCT.
Supporting LCD module
Supports NovaStar's general 5-pin
LCD module. The LCD module is connected to the HUB board to display
temperature, voltage, single operating time and total operating time of the
receiving card.
Support one-click application of calibration
coefficient in module Flash
In the event of network outage,
hold down the self- test button to read the calibration coefficient in module
Flash back to the receiving card.
3.3 Improvement in Hardware
Reliability
Features
Description
Supporting dual-card backup
In the high-reliability
environment, single HUB board could be populated with two A5 receiving cards.
In case that the main receiving card fails, the standby one will serve in a
timely manner to ensure normal operation of the display.
Supporting dual-power
Two power supplies could be
simultaneously
Receiving Card A5
Features
Description
backup detection
connected, and operating status of
the power supplies could be detected.
Supporting loop backup
HUB`s Ethernet port improves the
reliability for the serial connection of the receiving card through main and
standby redundant mechanism. Among the main and standby serial connection
lines, if one fails, the other will begin to work to ensure the normal
operation of the display.
3.4 Improvement in Software
Reliability
Features
Description
Supporting readback of firmware
version
On NovaLCT, the firmware versions
of the receiving card can be read back.
Supporting dual-backup and
restoring of the calibration coefficient
Calibration coefficients could be
saved to both the factory area and application area at the same time.
Calibration coefficients in the
factory area is default as the delivery value, while the calibration
coefficient in the application area could be modified or be restored to the
factory reset by the user on NovaLCT.
Supporting readback of
configuration file
Specifications 3
Features
Specifications 3
Features
Product Image |
Product Parameters |
Type |
Brand |
Material Code |
DDR3 |
/ |
/ |
Receptacle |
Tyco |
2-2013289-1 |
Receiving Card A5
Specifications 4
Hardware
Unit of the dimension chart is [mm". Ground connection is enabled for location hole (GND).
4.3 Indicators
Indicator |
Status |
Description |
Status indicator (green) |
Flashing every other 1s. |
The receiving card works normally, Ethernet cable connection is normal, and video source input is available. |
Flashing every other 3s. |
The receiving card works normally, while the Ethernet cable connection is abnormal. |
|
Rapidly flashing for 3 times every other 3s. |
The receiving card works normally, Ethernet cable connection is normal, while no video source input is available. |
|
Rapidly flashing every other 0.5s. |
Program loading fails in normal operating state, coming to the backup operating state. |
|
Rapidly flashing for 8 times every other 1s. |
The receiving card is in the Ethernet port backup status and the backup is effective. |
|
Power indicator (red) |
Always on |
It is always on after the power is on. |
Receiving Card A5
Specifications 4
Hardware
4.4 Definition of Data Interface ( Top ) 4.4.1 32-Group Parallel Data
J13A |
|||||||
Shield grounding |
Eth_Sheild |
1 |
2 |
Eth_Sheild |
Shield grounding |
||
Shield grounding |
Eth_S-heild |
3 |
4 |
Eth_Sheild |
Shield grounding |
||
Gigabit Ethernet port |
NC |
5 |
6 |
NC |
Gigabit Ethernet port |
||
NC |
7 |
8 |
NC |
||||
/ |
Port2_T0+ |
9 |
10 |
Port1_T0+ |
/ |
||
/ |
Port2_T0- |
11 |
12 |
Port1_T0- |
/ |
||
NC |
13 |
14 |
NC |
||||
/ |
Port2_T1+ |
15 |
16 |
Port1_T1+ |
/ |
||
/ |
Port2_T1- |
17 |
18 |
Port1_T1- |
/ |
||
NC |
19 |
20 |
NC |
||||
/ |
Port2_T2+ |
21 |
22 |
Port1_T2+ |
/ |
||
/ |
Port2_T2- |
23 |
24 |
Port1_T2- |
/ |
||
NC |
25 |
26 |
NC |
||||
/ |
Port2_T3+ |
27 |
28 |
Port1_T3+ |
/ |
||
/ |
Port2_T3- |
29 |
30 |
Port1_T3- |
/ |
||
NC |
31 |
32 |
NC |
Receiving Card A5
Specifications 4
Hardware
4.4.2 64-Group Serial Data
J13A |
||||
Shield grounding |
Eth_Sheild 1 2 Eth_Sheild |
Shield grounding |
||
Shield grounding |
Eth_Sheild 3 4 Eth_Sheild |
Shield grounding |
||
Gigabit Ethernet port |
NC 56 NC |
Gigabit Ethernet port |
||
NC 78 NC |
||||
/ |
Port2_T0+ 9 10 Port1_T0+ |
/ |
||
/ |
Port2_T0- 11 12 Port1_T0- |
/ |
||
NC 13 14 NC |
||||
/ |
Port2_T1+ 15 16 Port1_T1+ |
/ |
||
/ |
Port2_T1- 17 18 Port1_T1- |
/ |
||
NC 19 20 NC |
||||
/ |
Port2_T2+ 21 22 Port1_T2+ |
/ |
||
/ |
Port2_T2- 23 24 Port1_T2- |
/ |
||
GND 25 26 GND |
||||
/ |
Port2_T3+ 27 28 Port1_T3+ |
/ |
||
/ |
Port2_T3- 29 30 Port1_T3- |
/ |
||
NC 31 32 NC |
||||
NC 33 34 NC |
||||
GND 35 36 GND |
||||
LCD |
CS signal of LCD |
EXT_LCD_CS 37 38 NC |
Receiving Card A5 Specifications
4 Hardware
Note 4 Note 2
Note 3
RS signal of LCD Clock signal of LCD
Data signal of LCD Backlight signal 1 of LCD Backlight signal 2 of LCD
LCD control button /
/
Operating indicator Shift clock output in the first route Shift clock output in the second route Locking of the signal output Afterglow control signal
Display enabled Display enabled
/ / / / / / / /
/ / / / / /
EXT_LCD_RS EXT_LCD_SCL EXT_LCD_SDA
EXT_LCD_BL0
EXT_LCD_BL1
EXT_LCD_KEY RFU1 RFU2 GND STA_LED-
DCLK
DCLK_2
LAT
CTRL
OE_RED
OE_GREEN GND Data1 Data2 Data3 Data4 Data5 Data6 Data7 Data8 GND Data9 Data10 Data11 Data12 Data13 Data14
Data15 Data16 GND Data17 Data18 Data19 Data20 Data21 Data22 Data23 Data24 GND Data25 Data26 Data27
J13A
39 40 NC 41 42 NC 43 44 NC
45 46 NC
47 48 NC
49 50 NC 51 52 NC
55 56J13B
103 104 Data47 105 106 Data48 107 108 GND 109 110 Data49 111 112 Data50 113 114 Data51 115 116 Data52 117 118 Data53 119 120 Data54 121 122 Data55 123 124 Data56 125 126 GND 127 128 Data57 129 130 Data58 131 132 Data59
Auxiliary output applies 3.3V power.
4.4.3 Extended Functions Design
Expandable Interface
RFU1 RFU2
Recommended Smart Module Interface
Reserved Reserved
Recommended Module Flash Interface
Reserved Reserved
Description
Reserved pin connected to MCU Reserved pin connected to MCU
13
GND 143 144 GND NC 145 146 NC NC 147 148 NC NC 149 150 NC NC 151 152 NC NC 153 154 NC NC 155 156 NC NC 157 158 NC NC 159 160 NC GND 161 162 GND NC 163 164 NC NC 165 166 NC NC 167 168 NC NC 169 170 NC NC 171 172 NC NC 173 174 NC NC 175 176 NC NC 177 178 NC GND 179 180 GND
NC 197 198 NC VCC 199 200 VCC VCC 201 202 VCC VCC 203 204 VCC
Note2. Operatingindicatorthatmeetslowlevelisvalid.
Note 3. OE_RED, OE_GREEN and OE_BLUE are display enabled pins. In case
that OE_RGB are not controlled separately, OE_RED is applied. While PWM chip is used, GCLK signal is enabled.
Note 4. RFU1–18 are the reserved extended function interfaces. Please refer to [4.4.3 Extended Functions Design".
Extended Functions Description
Receiving Card A5
Specifications 4
Hardware
Extended Functions Description |
|||
RFU3 |
HUB_CODE0 |
HUB_CODE0 |
Flash control interface 1 |
RFU4 |
HUB_SPI_CLK |
HUB_SPI_CLK |
Clock signal of the serial interface |
RFU5 |
HUB_CODE1 |
HUB_CODE1 |
Flash control interface 2 |
RFU6 |
HUB_SPI_CS |
HUB_SPI_CS |
CS signal of the serial interface |
RFU7 |
HUB_CODE2 |
HUB_CODE2 |
Flash control interface 3 |
RFU8 |
/ |
HUB_SPI_MOSI |
Module Flash storage data input |
HUB_UART_TX |
/ |
TX signal of the smart module |
|
RFU9 |
HUB_CODE3 |
HUB_CODE3 |
Flash control interface 4 |
RFU10 |
/ |
HUB_SPI_MISO |
Flash storage data output of the lamp panel |
HUB_UART_RX |
/ |
RX signal of the smart module |
|
RFU11 |
HUB_H164_CSD |
HUB_H164_CSD |
74HC164 data signal |
RFU12 |
POWER_STA1 |
POWER_STA1 |
Dual-power detection signal 1 |
RFU13 |
HUB_H164_CLK |
HUB_H164_CLK |
74HC164 Clock signal |
RFU14 |
POWER_STA2 |
POWER_STA2 |
Dual-power detection signal 2 |
RFU15 |
MS_ID |
MS_ID |
Dual-card backup identification signal |
RFU16 |
/ |
/ |
/ |
RFU17 |
MS_DATA |
MS_DATA |
Dual-card backup connection signal |
RFU18 |
HUB_CODE4 |
HUB_CODE4 |
Flash control interface 5. |
Note: The RFU8 and RFU10 are signal multiplex extension interfaces. You can select only one interface from either the Recommended Smart Module Interface or the Recommended Module Flash Interface at the same time.
Package case |
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