ROM Series, Single Board Computers (SBCs)

Results:
25
Manufacturer
Series
Expansion Site/Bus
Core Processor
Video Outputs
USB
Power (Watts)
Form Factor
Storage Interface
Speed
RAM Capacity/Installed
Ethernet
Size / Dimension
Number of Cores
Operating Temperature
Cooling Type
Digital I/O Lines
RS-232 (422, 485)
Analog Input
Contents
Watchdog Timer
Results remaining25
Applied Filters:
ROM
Select
ImageProduct DetailPriceAvailabilityECAD ModelOperating TemperatureCooling TypeDigital I/O LinesWatchdog TimerContentsPower (Watts)SeriesCore ProcessorSpeedNumber of CoresRAM Capacity/InstalledStorage InterfaceUSBRS-232 (422, 485)EthernetAnalog InputSize / DimensionForm FactorExpansion Site/BusVideo Outputs
ROM-5720WQ-OEA1E
I.MX 8M QUAD CORE, 2GB LPDDR4, 1
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Quantity
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PCB Symbol, Footprint & 3D Model
-40°C ~ 85°C
Heat Sink
-
Yes
-
5.3W
ROM
ARM® Cortex®-A53
1.5GHz
4
-/2GB
eMMC, SATA
USB 2.0 (4), USB 3.0 (2)
-
10/100/1000 Mbps (2), GbE (2)
Output:-
3.228" x 1.969" (81.99mm x 50.01mm)
SMARC v2.0, SMARC v2.1
Audio, I2C, LAN, MIPI, PCIe, SATA, SD, SPI, UART
HDMI, LVDS, MIPI-DSI, OpenCL, OpenGL, VGA
ROM-7420WQ-MEA1E
I.MX6 QC QSEVEN MODULE (-40 TO 8
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Quantity
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PCB Symbol, Footprint & 3D Model
-40°C ~ 85°C
-
-
Yes
-
3.16W
ROM
ARM® Cortex®-A9
1GHz
4
-/1GB
eMMC, NAND - Flash, NOR-Flash, SATA
USB 2.0 (1), USB 2.0 OTG (1)
-
10/100/1000 Mbps (1), GbE
Output:-
2.756" x 2.756" (70.00mm x 70.00mm)
Qseven 1.2
Audio, CAN, I2C, LAN, PCIe, SATA, SD, SPI, UART
HDMI, LVDS, OpenGL, VGA
ROM-7510CD-PEA1E
TI SITARA. AM5728 CORTEX -A15 1.
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Quantity
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PCB Symbol, Footprint & 3D Model
0°C ~ 60°C
Heat Sink
-
Yes
-
-
ROM
ARM® Cortex®-A15 Sitara AM5728
1.5GHz
2
-/2GB
eMMC, NAND - Flash, NOR-Flash, SATA
USB 2.0 (4), USB 2.0 OTG (1), USB 3.0 (1)
-
10/100/1000 Mbps (1), GbE
Output:-
2.756" x 2.756" (70.00mm x 70.00mm)
QSeven
CAN, LAN, PCIe, SATA, SPI, UART
HDMI, LVDS
ROM-7510WD-PEA1E
TI SITARA. AM5728 CORTEX -A15 1.
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Quantity
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PCB Symbol, Footprint & 3D Model
-40°C ~ 85°C
Heat Sink
-
Yes
-
-
ROM
ARM® Cortex®-A15 Sitara AM5728
1.5GHz
2
-/2GB
eMMC, NAND - Flash, NOR-Flash, SATA
USB 2.0 (4), USB 2.0 OTG (1), USB 3.0 (1)
-
10/100/1000 Mbps (1), GbE
Output:-
2.756" x 2.756" (70.00mm x 70.00mm)
QSeven
CAN, LAN, PCIe, SATA, SPI, UART
HDMI, LVDS
ROM-7720WO-QFA1E
NXP I.MX8 QUAD MAX, 4GB LPDDR4,
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Quantity
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PCB Symbol, Footprint & 3D Model
-40°C ~ 85°C
Fan
-
Yes
-
-
ROM
ARM® Cortex®-A72
1.6GHz
4
-/4GB
eMMC, NAND - Flash
USB 3.0 (3), USB OTG (1)
-
10/100/1000 Mbps (1), GbE
Output:-
2.756" x 2.756" (70.00mm x 70.00mm)
Qseven 2.1
CAN, I2C, LAN, MIPI, PCIe, SATA, SD, SPI, UART
HDMI, LVDS, OpenGL

About  Single Board Computers (SBCs)

Single Board Computers (SBCs) are compact electronic devices that contain all the necessary components of a computer on a single board. These devices typically include a microprocessor, memory, input/output interfaces, and expansion sites. The microprocessor is the core component of the SBC, responsible for performing numerical and logical processing tasks. The speed, number of cores, power consumption, and cooling type are important characteristics of the microprocessor, as they determine the overall performance and efficiency of the SBC. SBCs can be equipped with a variety of different microprocessors, including those produced by companies such as Advantech, AMD (including their core, G-series, Geode, and GX lines), ARMADA, ARM Cortex, Atom, Celeron, ColdFire, Core 2, Intel (including their Atom, Celeron, Core, LGA, Quark, Apollo, and Pentium lines), Pentium, Rabbit, RK3288, Rochchip, TI Sitara, ULV Celeron, VIA Eden, Vortex, and Z180. In addition to the microprocessor, SBCs also contain memory, which is used to store data and software instructions. The amount and type of memory present on an SBC can impact its performance and compatibility with different software applications. Input/output interfaces allow the SBC to communicate with other devices and peripherals, such as displays, keyboards, and sensors. Expansion sites provide the ability to add additional functionality or customize the SBC to specific application requirements. Overall, SBCs offer a compact and versatile solution for incorporating computing power into a wide range of devices and equipment. By selecting the appropriate microprocessor, memory, and expansion options, developers can create customized SBC solutions tailored to their unique needs.