ZMR330Q Digital Point-of-Load Regulator: Features, Applications & Specifications
The ZMR330Q is a fully digital Point-of-Load (PoL) DC-DC voltage regulator module designed for high-performance, automotive and industrial power systems. Unlike traditional analog voltage regulators, the ZMR330Q offers digital configuration, monitoring, and control, making it ideal for modern embedded and processor-based designs.
What is ZMR330Q?
The ZMR330Q is a non-isolated synchronous buck regulator module that integrates the controller, power MOSFETs, inductor, and compensation circuitry into a compact package. It is optimized to deliver high current at low output voltages with excellent efficiency, accuracy, and reliability.
The “Q” suffix indicates AEC-Q100 qualification, making it suitable for automotive electronics.
Key Features of ZMR330Q
✅ Digital Power Control
- Fully configurable via PMBus / I²C
- Software-controlled output voltage, sequencing, and margins
✅ High Output Current Capability
- Supports high current PoL applications
- Ideal for CPUs, FPGAs, ASICs, and DSPs
✅ Wide Input Voltage Range
- Designed for intermediate bus architectures
- Compatible with 5 V, 8 V, and 12 V rails
✅ High Efficiency Synchronous Buck Design
- Integrated high-side and low-side MOSFETs
- Reduced power losses and thermal stress
✅ Precision Output Regulation
- Tight output voltage accuracy
- Excellent load and line regulation
✅ Integrated Protection Features
- Over-current protection (OCP)
- Over-voltage protection (OVP)
- Under-voltage lockout (UVLO)
- Over-temperature protection (OTP)
✅ Telemetry & Monitoring
- Real-time monitoring of:
- Output voltage
- Output current
- Temperature
- Fault status
✅ Automotive-Grade Reliability
- AEC-Q100 compliant
- Operates over wide temperature range
Applications of ZMR330Q
The ZMR330Q is widely used in high-density digital power systems, including:
1. Automotive Electronics
- ADAS systems
- Infotainment processors
- Automotive compute modules
2. FPGA & Processor Power Rails
- Core voltage supplies
- Memory and I/O rails
3. Industrial Automation
- PLCs
- Industrial controllers
- Edge computing systems
4. Networking & Telecom Equipment
- Routers
- Switches
- Base stations
5. Embedded & High-Reliability Systems
- Medical equipment
- Aerospace-grade electronics
ZMR330Q Electrical Specifications (Typical)
| Parameter | Value |
| Regulator Type | Digital Synchronous Buck PoL |
| Input Voltage Range | Typically 4.5 V – 14 V |
| Output Voltage Range | Programmable (≈ 0.6 V – 5 V) |
| Maximum Output Current | Up to 30 A |
| Control Interface | PMBus / I²C |
| Efficiency | >90% (application dependent) |
| Output Voltage Accuracy | ±1% or better |
| Switching Frequency | Programmable |
| Operating Temperature | −40°C to +125°C |
| Qualification | AEC-Q100 |
| Package Type | Power module (integrated inductor) |
⚠️ Exact limits depend on configuration and variant. Refer to the official datasheet for guaranteed specifications.
How ZMR330Q is Different from Normal Voltage Regulators
ZMR330Q vs Traditional Analog Voltage Regulators
| Feature | ZMR330Q | Normal Voltage Regulator |
| Control Type | Digital (PMBus) | Analog |
| Configuration | Software-programmable | Fixed resistors |
| Output Voltage Change | Dynamic, in real time | Static |
| Monitoring | Voltage, current, temperature | Usually none |
| Fault Reporting | Digital fault flags | Limited or none |
| Efficiency | Very high (synchronous) | Moderate |
| Integration | Controller + MOSFETs + Inductor | Usually controller only |
| Scalability | Excellent for multi-rail systems | Limited |
| Diagnostics | Advanced telemetry | Minimal |
Key Differences Explained
- Digital vs Analog Control:
Traditional regulators rely on resistor dividers and analog feedback loops, while the ZMR330Q uses digital control algorithms for better accuracy and adaptability. - Telemetry & Diagnostics:
Normal regulators cannot report internal parameters, but ZMR330Q provides real-time monitoring, crucial for system reliability. - Dynamic Voltage Scaling:
ZMR330Q supports on-the-fly voltage adjustment, essential for modern processors that change power states dynamically. - System-Level Power Management:
ZMR330Q simplifies multi-rail power sequencing and margin testing, which is difficult with analog regulators.
Advantages of Using ZMR330Q
- Reduced design complexity
- Faster time-to-market
- Improved power efficiency
- Better system reliability and diagnostics
- Automotive-grade robustness
Final Summary
The ZMR330Q is not just a voltage regulator—it is a smart digital power module designed for high-current, high-reliability applications. With features such as PMBus control, telemetry, dynamic voltage scaling, and integrated protection, it represents a significant advancement over conventional voltage regulators.
If your design involves processors, FPGAs, or automotive electronics, the ZMR330Q offers unmatched control, efficiency, and system-level intelligence.
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