SC1111 - Raspberry Pi 5 4GB SBC 2.4GHz Cortex-A76 | Raspberry Pi | Desktop & Industrial
MPN: SC1111 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $68.56 | $68.56 |
| 5 | $68.56 | $342.80 |
| 10 | $68.56 | $685.60 |
| 20 | $68.56 | $1,371.20 |
| 50 | $68.56 | $3,428.00 |
Drop-in alternatives for SC1111 β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
SC1112
β Drop-In β οΈ εζ°εΎ ιͺθ―β In Stock
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View Datasheet βSC1113
β Drop-In β οΈ εζ°εΎ ιͺθ―β In Stock
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View Datasheet βORANGEPI5
β‘ Same Package β οΈ εζ°εΎ ιͺθ―π Reference alternative (not in catalog)
Raspberry Pi 4 Model B
β‘ Same Package β οΈ εζ°εΎ ιͺθ―π Reference alternative (not in catalog)
SC1111 Maximum Ratings & Electrical Characteristics
| Processor | 64-bit quad-core Arm Cortex-A76, 2.4 GHz (in-house developed silicon) |
| CPU Performance | 2-3x increase in CPU performance compared to Raspberry Pi 4 |
| Memory | 4GB |
| Form Factor | Full-size Raspberry Pi form factor |
| Product Series | Raspberry Pi 5 |
| Architecture | Armv8 64-bit |
| SoC Origin | Silicon developed in-house by Raspberry Pi |
SC1111 Pin Configuration
| Pin 1 | 3.3V β 3.3V power rail on the GPIO header |
| Pin 2 | 5V β 5V power rail on the GPIO header |
| Pin 3 | GPIO2 (SDA1) β I2C data line |
| Pin 5 | GPIO3 (SCL1) β I2C clock line |
| Pin 8 | GPIO14 (TXD) β UART transmit |
| Pin 10 | GPIO15 (RXD) β UART receive |
| Pin 19 | GPIO10 (MOSI) β SPI master-out data |
| Pin 21 | GPIO9 (MISO) β SPI master-in data |
| Pin 23 | GPIO11 (SCLK) β SPI clock |
| Pin 24 | GPIO8 (CE0) β SPI chip enable 0 |
| Pin 27 | ID_SD (ID_EEPROM) β HAT identification EEPROM data |
| Pin 6/9/14/... | GND β Ground pins distributed along the header |
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
SC1111 is suitable for 6 applications: Desktop Computing, Industrial Automation and Edge Control, Robotics, Edge AI Inference, Digital Signage and Media, Networked Server and IoT Gateway.
Desktop Computing
With a quad-core 2.4 GHz Arm Cortex-A76 delivering two to three times the CPU performance of Raspberry Pi 4, the SC1111 is viable as a compact desktop computer for web browsing, office productivity, and programming education. The 4GB memory configuration handles typical single-user desktop workloads, and the full-size Raspberry Pi form factor supports standard cases, keyboards, and displays from the established accessory ecosystem.
Recommended
Industrial Automation and Edge Control
The SC1111 serves as an edge controller in industrial settings, performing local data logging, protocol translation, and machine monitoring. Distributors such as KATY Electronic supply this part for industrial and military applications. The in-house silicon platform and mature Linux software stack make it straightforward to integrate custom control software, while the Raspberry Pi ecosystem of HATs provides industrial I/O expansion. Deployments should validate the operating environment against the official documentation.
Recommended
Robotics
Robotics platforms benefit from the SC1111's responsive quad-core Cortex-A76 for sensor fusion, navigation logic, and camera-based perception at the edge. The 4GB configuration supports ROS-style middleware and camera pipelines without memory pressure for small to medium robots, and the GPIO ecosystem connects motor drivers and sensors. Local processing avoids cloud latency loops, which is critical for closed-loop motion control.
Recommended
Edge AI Inference
The two to three times CPU performance uplift over Raspberry Pi 4 allows the SC1111 to run compact machine-learning models such as image classifiers and anomaly detection locally. The 4GB memory tier accommodates quantized models and pre- and post-processing pipelines. For applications where sending data to the cloud is impractical or latency-sensitive, on-device inference on this SBC keeps data local and responses immediate.
Recommended
Digital Signage and Media
The SC1111 drives signage players and kiosks where a compact, fanless-typical computer updates content over the network. Its performance headroom over Raspberry Pi 4 smooths high-resolution content playback and animation, and the established case and display ecosystem simplifies enclosure integration. Remote fleet management is handled through standard Linux tooling, making multi-site deployments maintainable.
Recommended
Networked Server and IoT Gateway
As a home or small-office server, the SC1111 hosts web services, network ad-blocking, home automation hubs, and file services. The 4GB RAM supports multiple lightweight services concurrently, and the generational CPU uplift improves container and database responsiveness versus Raspberry Pi 4. Its low idle power characteristics and compact form factor suit 24/7 always-on deployment in constrained spaces.
Recommended
Recommended Products Summary
Engineering reference data for SC1111 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | SC1112 | SC1113 | ORANGEPI5 |
|---|---|---|---|---|
| Package / Form Factor | Full-size Raspberry Pi form factor | Same full-size Raspberry Pi 5 form factor | Same full-size Raspberry Pi 5 form factor | Similar-size SBC, different connector layout |
| Brand | Raspberry Pi | Raspberry Pi | Raspberry Pi | Orange Pi |
| Processor | Quad-core Arm Cortex-A76, 2.4 GHz (64-bit) | Quad-core Arm Cortex-A76, 2.4 GHz | Quad-core Arm Cortex-A76, 2.4 GHz | RK3588S octa-core |
| RAM | 4GB | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] |
| Relative CPU Performance | 2-3x Raspberry Pi 4 | 2-3x Raspberry Pi 4 (same SoC) | 2-3x Raspberry Pi 4 (same SoC) | Baseline (1x) |
| Drop-in Interchangeability | - | Drop-in (same board, RAM only differs) | Drop-in (same board, RAM only differs) | Not drop-in (different pinout and ecosystem) |
| SoC Origin | Silicon developed in-house by Raspberry Pi | In-house Raspberry Pi silicon | In-house Raspberry Pi silicon | Rockchip commercial SoC |
| Software Ecosystem | Raspberry Pi OS / mature Pi ecosystem | Identical (same platform) | Identical (same platform) | Community OS builds, smaller ecosystem |
| Unit Price (USD, as of 2026-09-13) | 68.56 (PCBX quote) | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] |
Key Differentiators
- 2-3x CPU performance vs Raspberry Pi 4 (vs Raspberry Pi 4 Model B)
- In-house developed silicon (vs ORANGEPI5)
- Same-series drop-in memory variants (vs SC1112 / SC1113)
- Mature ecosystem trade-off vs competitor SBCs (vs ORANGEPI5)
Design Notes
Verify the power supply specification against the official Raspberry Pi 5 documentation before deployment. The Raspberry Pi 5 generation's power requirements differ from Raspberry Pi 4 due to the higher-performance 2.4 GHz Cortex-A76 processor; consulting the manufacturer's official product page (raspberrypi.com/products/raspberry-pi-5) for the exact supply rating avoids brownout-induced SD card corruption. Do not power production units from generic phone chargers without confirming they meet the documented specification.
When migrating enclosures, HATs, or cases from Raspberry Pi 4 to the SC1111, do not assume full mechanical compatibility. The Raspberry Pi 5 generation updated peripheral interfaces, so verify both connector placement and electrical signaling of existing accessories against the official Raspberry Pi 5 documentation. Same-series MPNs (SC1112, SC1113) share the identical board layout, so accessory compatibility carries over between memory variants within the series.
The SC1111's quad-core 2.4 GHz Cortex-A76 delivers 2-3x the CPU performance of Raspberry Pi 4, which also implies higher sustained heat output under load. For enclosed industrial deployments, plan airflow or heatsink solutions and validate sustained-load temperatures in the final enclosure. Refer to the official Raspberry Pi 5 documentation and any manufacturer cooling accessory guidance for thermal design input rather than assuming Pi 4 thermal behavior.
For procurement continuity, qualify at least two Raspberry Pi 5 series MPNs (e.g., SC1111 and SC1112) in your design. Because they share the same board and differ only in RAM, a shortage of one variant can be absorbed by the other with no hardware redesign - only the software memory footprint needs review. This mitigates the single-source risk inherent to Raspberry Pi's proprietary silicon platform.
Compliance Information
Compliance data (RoHS/REACH/CE/FCC/UKCA) not stated in the provided web data; refer to the official Raspberry Pi product documentation for current certification declarations.