Edge AI ComputerAE Platform4000V Isolation

AE-3588BT: 58 TOPS Scalable Industrial Edge AI Computer (RK3588J)

High-performance, high-reliability, and highly expandable — engineered for industrial machine vision and AI inference in harsh environments.


Industrial RK3588J Edge AI Computer

AE-3588BT — 58 TOPS Scalable Industrial Edge AI Computer RK3588J 

Engineered for Energy Storage and Power Grid Infrastructure

The AE-3588BT is a scalable industrial Edge AI computer built on the Rockchip RK3588J platform, engineered specifically for Energy Storage Systems (ESS), BMS gateways, and Smart Power Grid applications requiring high AI performance with robust electrical protection.

Featuring 4000V optical isolation on all industrial interfaces (CAN, RS232, RS485, GPIO) and triple Gigabit Ethernet for network segmentation, the AE-3588BT protects mission-critical systems against surges, EMI, and ground loops in harsh field environments.

The fanless aluminum enclosure operates reliably from -40°C to +80°C, enabling 24/7 unattended deployment in outdoor ESS sites and substations with predictable 5–7 year lifecycle support.

Core Engineering Value Proposition


Scalable AI Inference Power

Built-in 6 TOPS NPU expandable to 58 TOPS via dual PCIe M.2 accelerator modules for complex machine vision and predictive modeling.


4000V Isolated Industrial I/O

2× CAN Bus, 4× RS232, 2× RS485, and 4-bit GPIO with 4000V optical isolation for harsh electrical environments.


Triple Gigabit Ethernet

3× Gigabit Ethernet ports enable network segmentation for camera, control, and uplink traffic.


Extreme Thermal Durability

Fanless unibody aluminum enclosure operates reliably from -40°C to +80°C with 15G shock resistance.


Developer-First Software

Native Android 12 with full root access. BSPs available for Ubuntu 20.04 and Debian 11 with kernel source.


Top-Tier Video & Data Communication

8K@60Hz output (HDMI 2.1) and 4K@60Hz input (HDMI 2.0). Built-in 5G/4G (eSIM), WiFi 6, and high-sensitivity GPS/BeiDou positioning.

Edge AI Applications in Energy Storage (ESS) & Smart Grids

The AE-3588BT is highly customized for heavy-industrial environments where electrical surges, lightning strikes, and harmonic interference are daily challenges.



Battery Energy Storage Systems (BESS) Gateway

Implements intelligent multi-channel BMS data aggregation via dual isolated CAN Bus, execution of local AI algorithms for battery aging (SOH) and thermal runaway anomalies.


Smart Substation Thermal Imaging & Inspection

Leverages up to 58 TOPS processing power alongside 4K HDMI input to decode real-time thermal camera feeds, instantly flagging hot-spots on transformers.


Power Grid Protocol Converter

Acts as a secure fieldbus-to-cloud bridge, handling edge preprocessing and protocol translation (Modbus RTU/TCP, IEC 60870-5-104 to MQTT) under continuous -40°C to +80°C exposure.


Power / ESS Site Gateway

Serve as a multi-protocol gateway for power stations and energy storage sites, enabling seamless Modbus, CANopen to MQTT/cloud conversion via 4× RS232, 2× RS485, and 3× Gigabit Ethernet.


Autonomous Mobile Robots (AMR)

Combine 5G connectivity, GPS/Beidou positioning, and high-performance NPU to drive visual navigation and obstacle avoidance algorithms in autonomous mobile robot platforms.

Scalable Edge AI Inference Capability

Built-in 6 TOPS NPU with dual PCIe M.2 expansion slots for up to 58 TOPS total AI performance.

AI Performance

Built-in NPU6 TOPS (INT8 / INT16 / FP16)
AI Expansion2× PCIe M.2 (M-Key) for NPU accelerators
Maximum PerformanceUp to 58 TOPS (6 + 26 + 26)
Supported FrameworksTensorFlow, TensorFlow Lite, ONNX, Caffe, MXNet, Darknet
AI ToolkitRKNN-Toolkit2 for model conversion and optimization

AI Performance Scaling

Built-in NPU

6 TOPS
+ 1× Module

32 TOPS
+ 2× Module

58 TOPS

Supported AI Frameworks

TensorFlowTensorFlow LiteONNXCaffeMXNetDarknet

Designed for stable, long-term inference in ESS monitoring and predictive maintenance.

4000V Optical Isolation for Harsh Field Environments

Integrated 4000V galvanic isolation eliminates ground loop currents and ensures physical-layer CAN bus stability in high-EMI substation environments.

Dual Isolated CAN bus for ESS Integration / RS485/RS232 Ports with 4000V Protection / Scalable NPU via PCIe M.2 Expansion

Isolated Industrial I/O

CAN Bus2× CAN 2.0B (4000V Isolated)
RS2324× RS232 (4000V Isolated)
RS4852× RS485 (4000V Isolated)
GPIO4-bit GPIO (4000V Isolated)
USB2× USB 3.2 Gen1, 2× USB 2.0

  


Protection Standards

  • 4000V galvanic isolation on CAN/RS232/RS485/GPIO
  • ±8kV Air / ±6kV Contact ESD Compliance ( IEC 61000-4-2)
  • EN 61000-6-2 industrial EMI immunity
  • Zero ground loop interference
AE-3588BT Isolated rk3588 Edge AI Computer can bus

AE-3588BT RK3588 Isolated Edge AI Computer

Display and Multi-Display Support

Comprehensive display connectivity including HDMI input for on-device video capture and processing. The built-in 48-megapixel MIPI camera interface makes it an ideal choice for high-end machine vision and semiconductor inspection applications.

Display Interfaces

HDMI Output1× HDMI 2.1 (8K@60Hz output)
HDMI Input1× HDMI 2.0 (4K@60Hz input)
Additional DisplaySupports eDP, LVDS, MIPI display interfaces
MIPI CameraBuilt-in 48MP MIPI camera interface for high-end machine vision
Multi-DisplayIndependent multi-display output supported


Display & Vision Capabilities

  • HDMI 2.1 output supports 8K@60Hz for high-resolution monitoring and inspection displays
  • HDMI 2.0 input captures 4K@60Hz video for AI-based visual inspection and analysis
  • 48MP MIPI camera interface enables high-precision machine vision for semiconductor wafer inspection
  • Independent multi-display output for control room and industrial HMI deployments

Embedded Android System & Unattended Operation

Designed for 24/7 unattended deployment with comprehensive remote management capabilities.


Open Root Access

Native Android 12 with full root access for deep system-level customization and proprietary driver integration.


OTA Fleet Updates

Custom bootloader and OTA protocols for remote system/application upgrades across distributed ESS sites.


5G/4G Connectivity

5G/4G LTE with eSIM support for reliable remote connectivity in distributed energy infrastructure.

System Reliability Features

Built-in watchdog (software + hardware)
RTC with backup battery and super capacitor
Scheduled power on/off support
Real-time remote monitoring with auto recovery

Product Photos (For Engineering Evaluation)

Real photos to verify ports, mounting, and enclosure design.

RK3588 Edge computing industrial pc

AE-3588BT — 58 TOPS Scalable Industrial Edge AI Computer RK3588J Front I/O

Edeg AI PC for Machine

AE-3588BT — 58 TOPS Scalable Industrial Edge AI Computer RK3588J Rear IO

RK3588 RK3588 edge box

AE-3588BT — 58 TOPS Scalable Industrial Edge AI Computer RK3588J  Mounting & Enclosure 

Request more photos (inside view / labels / packaging)

AE-3588BT Full Technical Specifications & Electrical Ratings

Core Processing System

ProcessorRK3588J Octa-core (4× A76 + 4× A55), up to 2.4GHz
AI Architecture6 TOPS (onboard) + 52 TOPS (expansion) = 58 TOPS total
Memory / Storage8GB LPDDR4 (options: 16G/32G) + 128GB eMMC (option: 256G)
PCIe ExpansionSupports PCIe M.2 SSD expansion

Software & System Support

Operating SystemAndroid 12 (native, full Root), Ubuntu 20.04, Debian 11
Development SupportCustom Bootloader, kernel source code, driver SDKs provided
Remote MaintenanceOTA remote system/app updates, hardware watchdog

Physical Characteristics & Interfaces

Video InterfacesHDMI 2.1 (8K Out), HDMI 2.0 (4K In), eDP, LVDS, MIPI Camera
Industrial Bus2× CAN Bus, 4× RS232, 2× RS485 (all 4000V isolated)
Network3× GbE LAN, 5G/4G LTE (SIM/eSIM slot), WiFi 6, BT5.2
Power InputDC 9V-36V wide-range input, Phoenix terminal
Dimensions225 × 145 × 65 mm, Weight: 1.3 kg

This overview highlights decision-level specifications. For full electrical and mechanical details, refer to the datasheet.

AE-3588BT vs AE-3588LBT — Engineering Comparison

CriterionAE-3588BTAE-3588LBT
AI ScalabilityUp to 58 TOPS with dual PCIe M.2 NPU expansionUp to 32 TOPS with single PCIe M.2 NPU expansion
Network Topology3× GbE LAN (camera / control / uplink separation)2× GbE LAN
Industrial Interface Isolation4000V optical isolation on all industrial I/OIndustrial interfaces are NOT electrically isolated
Deployment EnvironmentESS sites, substations, harsh field environmentsCabinet-level or controlled environments


Engineering Note

For ESS sites, substations, long cable runs, or environments with high EMI/ground loop risk, AE-3588BT with 4000V isolation is recommended. AE-3588LBT is suitable for clean cabinet installations where electrical isolation is handled externally.

OEM & System Customization Support

Designed for ESS integrators and energy OEMs who require platform customization and long-term supply chain stability for power grid infrastructure projects.

OS customization (Android / Linux / Ubuntu / Debian)
Fieldbus and I/O configuration customization
AI framework and deployment support
Suitable for series production and OEM integration
BOM freeze and controlled revision management

Typical OEM Project Timeline

1

Requirements Alignment

1-2 weeks

I/O, OS, and integration scope definition

2

Sample Evaluation

2-4 weeks

Hardware validation and software integration

3

Customization Development

4-8 weeks

BSP, drivers, and system configuration

4

Production Ramp-Up

2-4 weeks

Quality validation and volume production

Why Choose BITECH for Industrial Integration?

BITECH is a China-based industrial computing manufacturer with over 15 years of experience in designing and producing rugged embedded systems for global OEM and system integrators. Every AE-3588BT unit undergoes a mandatory 18-hour full-load burn-in test—beyond standard AQL inspections—to ensure zero-defect performance in mission-critical energy and power grid deployments.

Our engineering team provides full support for custom bootloader development, OTA (Over-The-Air) remote system and application updates, and deep integration with CAN Bus, RS485, and Modbus fieldbus protocols. With native Android 12 root access and comprehensive BSPs for Ubuntu 20.04 and Debian 11—including kernel source code and driver SDKs—engineers gain complete control over system-level customization without vendor restrictions.

BITECH guarantees a 10 year lifecycle commitment for mainboard, modules, enclosure, and key ICs, with formal PCN (Product Change Notification) issued 6 months before any component revision. This predictable supply chain ensures long-term project stability for ESS gateways, BMS controllers, and distributed energy infrastructure requiring multi-year deployment cycles.

Professional lifetime technical support covers operating system configuration, BIOS and firmware updates, and debugging assistance for CAN, RS485, and PLC fieldbus integration—enabling faster time-to-market and reduced engineering risk for industrial automation and energy storage projects worldwide.

Related BITECH Solutions & Engineering Resources

Dive deeper into industry use cases and engineering guides relevant to this platform.


Industry Application Solutions


Embedded Computing Engineering Articles

Adjacent Models for Platform Comparison

Compare adjacent models to validate your selection.


AE-3588LBT

Best for: Cabinet-level AI with fieldbus integration

Non-isolated I/O for controlled environments

View Product

AE-3588NBT

Best for: Open-source robotics and AMR platforms

HDMI input and native root access for robotics

View Product

Technical FAQ

AE-3588BT engineering questions

Is the 4000V isolation rated for continuous working voltage or just a momentary test pulse?
The 4000V figure is the isolation withstand rating across the barrier on CAN, RS232, RS485 and GPIO — it defines surge and transient survival, not continuous working voltage. The values that matter for your deployment are the working isolation voltage and the surge immunity level; the AE-3588BT is tested to IEC 61000-4-2 ESD (±8kV air / ±6kV contact) and EN 61000-6-2 industrial immunity. Request the isolation test report for the exact figures.
Can the AE-3588BT be installed inside a substation, and does it meet IEC 61850-3 / IEEE 1613?
The AE-3588BT is built for line-side and ESS/BESS gateway roles — BMS aggregation, protocol conversion, thermal inspection — where its 4000V isolation, EN 61000-6-2 immunity and -40°C to +80°C operation qualify it for harsh field and cabinet deployment. Installation inside the substation control house raises the bar to IEC 61850-3 / IEEE 1613 type testing, which this standard model does not yet carry. Talk to engineering before committing to an in-station role.
The 58 TOPS comes from 6 + 26 + 26 across three engines — can a single model use all of it?
No, and this matters for sizing. The 6 TOPS onboard NPU (RKNN runtime) and the two M.2 accelerators are separate heterogeneous engines, each with its own toolchain. A single model runs on one engine; 58 TOPS is the combined platform headroom across all three, used by partitioning workloads — for example detection on one accelerator, a second model or stream on another, and pre/post-processing on the RKNN NPU.Our team provides the model-partitioning reference for your pipeline.
How does the dual isolated CAN handle a BMS network with 120Ω termination across long battery racks?
Both CAN 2.0B channels are independently 4000V isolated, so each can sit on a separate battery-rack segment without ground-potential differences coupling between them. For bus integrity across long ESS racks: terminate each physical segment with 120Ω at both ends (measure ~60Ω across CAN_H/CAN_L with power off to confirm), keep stubs short, and use the isolated ground per segment rather than a shared chassis return. The isolation is what lets you bridge racks that don't share a ground plane — the exact condition that destroys non-isolated controllers.
What protocols does it convert out of the box — Modbus, IEC 60870-5-104, CANopen, DNP3?
The platform serves as a fieldbus-to-cloud bridge with edge preprocessing. Modbus RTU/TCP, CANopen, and IEC 60870-5-104 to MQTT conversion are supported application-side on the open-root Android/Linux stack.Because the BSP is open-root with kernel source, you can also implement or port proprietary protocol stacks at the system level.
How does it survive a sudden DC bus collapse without corrupting the eMMC?
The unit monitors the 9–36V input rail; on collapse, a hardware supervisor signals the SoC and the BSP flushes caches and unmounts cleanly before power is lost. The RTC's backup battery and supercapacitor preserve timekeeping and allow scheduled recovery. For ESS sites with frequent power events, request the power-loss validation report.
When should I choose this over the AE-3588LBT — purely a cost question?
No, it's an electrical-environment question. Choose the AE-3588BT when field I/O crosses ground domains: long cable runs, high-EMI substations, ESS racks without a shared ground, or surge-prone outdoor sites — the 4000V isolation contains faults at the interface. Choose the non-isolated AE-3588LBT only for clean cabinet installations with a unified ground plane, where you trade isolation for lower latency and lower cost. If you're unsure, send us your grounding topology and we'll tell you honestly which one fits.
Does the burn-in and lifecycle support match mission-critical energy deployments?
Every unit undergoes a mandatory 18-hour full-load burn-in beyond standard AQL inspection, with per-unit serial traceability. The platform carries a 10-year lifecycle commitment with formal PCN issued 6 months before any component change — sized for multi-year ESS and grid infrastructure cycles.
Can you customize the isolated I/O mix — e.g. more CAN channels, fewer serial ports — for our OEM design?
Yes. As a PCB-level OEM/ODM manufacturer, BITECH adjusts the isolated I/O population (CAN/RS485/RS232/GPIO count and isolation), enclosure, and connector layout to your application, typically in 1–3 months from requirements to first articles. Isolation is engineered where your deployment needs it — we don't carry cost for protection a given interface doesn't require. Send your I/O map and grounding constraints for a configuration proposal.
What's the real power consumption for solar / off-grid remote sites?
3W idle and 6W under inference load (NPU engaged); with scheduled power cycles, this sizes the panel and battery for unattended remote ESS or grid-edge sites. We publish measured figures, not nameplate maximums — request the power profile for your configuration.

Evaluate the AE-3588BT

Built for the bus your platform can’t isolate externally.

Substations, ESS sites, long cable runs, high-EMI fields — where ground loops and surges reach the bus, the AE-3588BT puts 4000V isolation on every CAN, RS232, RS485 and GPIO line. Send us your fieldbus map, NPU target, and environment, and an engineer returns a configuration and sample terms — not a brochure.

  • 4000V isolated I/O matched to your CAN/RS485 BMS or SCADA topology
  • NPU scaling plan: 6 TOPS onboard to 58 TOPS via dual M.2
  • Open-root BSP, sample units, and 18-hour burn-in on every unit
An engineer — not a sales bot — replies within 24 hours

Talk to engineering

Isolation, NPU sizing, and sample requests for the AE-3588BT.

Discuss your configuration Download datasheet

MOQ & volume pricing on request
Sample units available for evaluation

Cabinet-mounted with a unified ground plane? You may not need isolation — the AE-3588LBT gives lower-latency I/O at lower cost for controlled environments.

Compare with AE-3588LBT
Engineering Guide

Not sure which RK3588 model to choose?

Two decisions matter more than the chip itself: whether your I/O is galvanically isolated, and how much AI compute you scale to. This practical guide maps the AE-3588NBT, AE-3588LBT, and AE-3588BT to real plant-floor environments — so you size isolation and TOPS to your deployment, not the datasheet.

Read the RK3588 selection guide
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