Description
Detailed Parameter Table
Parameter name | Parameter value |
Product model | Motorola CPU3640 |
Manufacturer | Motorola |
Product category | ACE3600 RTU CPU Module |
Microprocessor | 32-bit Freescale PowerPC II MPC8270 |
Microprocessor clock | 200 MHz |
Memory configuration | Flash:16MB(3MB user-free); DRAM:32MB(10MB user-free); Optional SRAM:4MB |
Communication interfaces | 1×10/100Mbps Ethernet; 2×configurable RS232/RS485; 2×plug-in ports |
Physical dimensions | 56mm W×225mm H×180mm D (2.2″×8.7″×7.1″) |
Weight | Approx. 0.38 kg (0.84 lb) |
Operating voltage | 10.8-16 V DC |
Environmental requirements | Temp: -40°C to 70°C; Humidity: 5%-95% non-condensing |
Installation method | Rack-mount (ACE3600 RTU chassis compatible) |
Motorola CPU3640
Product Introduction
The **Motorola CPU3640** serves as the core processing unit of the Motorola ACE3600 Remote Telemetry Unit (RTU) series, engineered specifically for high-reliability remote monitoring and control in industrial environments. Built around the 32-bit Freescale PowerPC II MPC8270 microprocessor running at 200 MHz, the **Motorola CPU3640** delivers exceptional data processing capabilities, enabling efficient execution of complex control algorithms and real-time data acquisition tasks critical for industrial operations.
Equipped with versatile communication interfaces and flexible expansion options, the **Motorola CPU3640** seamlessly integrates with diverse field devices and supervisory systems. Its 10/100 Mbps Ethernet port and configurable RS232/RS485 serial ports ensure reliable connectivity, while two plug-in ports support customization with radio modems or additional communication modules. As the “brain” of the ACE3600 RTU, the **Motorola CPU3640** plays a pivotal role in ensuring stable operation of critical infrastructure, facilitating timely data transmission and informed decision-making.
Core Advantages and Technical Highlights
Powerful processing performance: The **Motorola CPU3640** leverages the 200 MHz PowerPC II MPC8270 processor with built-in DMA and floating-point calculation support, delivering fast execution of control logic and real-time data processing. This ensures minimal latency in time-sensitive applications such as pipeline monitoring and power distribution. The generous memory configuration—including 16 MB Flash and 32 MB DRAM with dedicated user space—supports large application programs and extensive data storage requirements.
Flexible communication architecture: The **Motorola CPU3640** features a comprehensive communication suite that adapts to diverse industrial network topologies. The 10/100 Mbps Ethernet port enables high-speed connection to SCADA systems, while the two configurable RS232/RS485 ports accommodate multi-drop sensor networks. The plug-in ports further enhance versatility, supporting radio modems for long-distance wireless communication or additional serial/Ethernet interfaces, making the **Motorola CPU3640** suitable for both wired and wireless deployment scenarios.
Reliable harsh-environment operation: Designed to meet rigorous industrial standards, the **Motorola CPU3640** operates within a wide temperature range of -40°C to 70°C and withstands 5%-95% non-condensing humidity. A 3V rechargeable lithium backup battery maintains the real-time clock (with max 2.5 sec/day drift) during power outages. Four diagnostic LEDs and port status indicators provide immediate visual feedback for quick troubleshooting, significantly improving system uptime and reducing maintenance costs.
Typical Application Scenarios
The **Motorola CPU3640** is a trusted solution for critical infrastructure monitoring and control across multiple industries. In the oil and gas sector, it serves as the core of ACE3600 RTUs deployed along pipelines, processing data from pressure, flow, and temperature sensors to enable real-time leak detection and operational optimization—even in remote, unstaffed locations. Its robust communication capabilities ensure seamless data transmission to central control centers, minimizing the risk of environmental incidents and production downtime.
In water and wastewater management, the **Motorola CPU3640** monitors pump stations, treatment facilities, and distribution networks. It processes inputs from level sensors, flow meters, and water quality analyzers, facilitating efficient resource allocation and regulatory compliance. For the power industry, the module integrates into distribution automation systems, enabling remote monitoring and control of substation equipment. By supporting real-time data exchange and remote operation, the **Motorola CPU3640** reduces the need for costly on-site interventions and enhances the reliability of electrical grids.
Motorola CPU3640
Related Model Recommendations
Motorola CPU3610: Discontinued predecessor to the **Motorola CPU3640** in the ACE3600 series, offering similar functionality with lower processing power; suitable for legacy system upgrades.
Motorola I/O3608: 8-channel analog input module compatible with ACE3600 RTUs, expands sensor input capabilities when paired with the **Motorola CPU3640**.
Motorola COMM3610: Serial communication expansion module that adds 4 extra RS485 ports to the **Motorola CPU3640** for large-scale sensor networks.
Motorola ETH3620: Redundant Ethernet plug-in module for the **Motorola CPU3640**, providing failover network connectivity for mission-critical applications.
Motorola PWR3605: 10-30V DC power supply module for ACE3600 chassis, ensuring stable power delivery to the **Motorola CPU3640** and other RTU components.
Motorola DI3616: 16-channel digital input module that works with the **Motorola CPU3640** to monitor discrete signals like switch statuses and alarm contacts.
Motorola DO3608: 8-channel digital output module, enabling the **Motorola CPU3640** to control relays, valves, and other actuators in industrial processes.
Installation, Commissioning and Maintenance Instructions
Installation preparation: Before installing the **Motorola CPU3640**, ensure the ACE3600 chassis is powered off and properly grounded to prevent electrostatic discharge (ESD) damage. Verify the input voltage matches the 10.8-16V DC requirement and gather necessary tools: Phillips screwdriver, ESD wrist strap, and cable management supplies. Align the module with the chassis rails, gently insert until fully seated, and secure with front-panel screws. Connect communication cables—ensuring correct RS485 A/B wiring—and power cables, double-checking connections before powering on.
Maintenance suggestions: Regularly inspect the **Motorola CPU3640**’s diagnostic LEDs; steady green indicates normal operation, while red/flashing LEDs signal faults requiring attention. Replace the 3V backup battery every 2-3 years to maintain RTC accuracy. Keep the module and chassis free of dust and ensure adequate ventilation to prevent overheating. For communication issues, verify cable continuity and protocol settings (baud rate, parity, stop bits) match system configurations. Avoid hot-swapping the **Motorola CPU3640** unless the chassis supports hot-swap functionality to prevent component damage.
Service and Guarantee Commitment
The **Motorola CPU3640** is backed by Motorola’s industry-leading quality assurance. It comes with a 1-year warranty from the purchase date, covering manufacturing defects and faulty components. Our global technical support team provides 24/7 assistance via email and online portals, offering installation guidance, firmware updates, and troubleshooting for the **Motorola CPU3640**. We maintain strategically located spare parts warehouses to ensure prompt delivery of replacement modules, minimizing downtime for critical applications.
For extended support needs, customizable maintenance contracts are available, including scheduled inspections and priority technical service. Motorola is committed to delivering reliable products and exceptional customer care, ensuring the **Motorola CPU3640** consistently meets the performance demands of your industrial automation systems for years to come.
Full 12-month warranty on all components
Dedicated after-sales support
Same-day dispatch on 1000s of parts
All units are fully tested
- 1. Email confirmation
You will get an email confirming that we have received your enquiry. - 2. Dedicated Account Manager
One of our team will be in touch to confirm your part(s) specification and condition. - 3. Your quote
You will receive a comprehensive quote tailored to your specific needs.