The ADM1192-1ARMZ-R7 is a sophisticated, integrated hot-swap controller and digital power monitor from Analog Devices Inc., designed to ensure safe and precise management of board-level power supply and distribution systems. This high-performance component is a critical solution for protecting sensitive electronic equipment from excessive current, voltage, and power conditions that could otherwise cause damage or system failure.
Key Features
- Integrated Hot-Swap Controller: Enables safe insertion and removal of boards from live backplanes, minimizing the risk of damaging the electrical components due to inrush currents.
- Current Monitoring: The device offers precise current monitoring capabilities, which help in real-time detection of overcurrent conditions, thus protecting the circuitry.
- Voltage Monitoring: Alongside current monitoring, the ADM1192-1ARMZ-R7 also monitors the supply voltage to ensure the system operates within safe voltage levels.
- Power Monitoring: This feature allows the device to measure the power being used by the board, enabling energy-efficient system designs and power management strategies.
- Digital I²C Interface: The component communicates with the host controller via the industry-standard I²C interface, allowing for easy integration and data retrieval.
- Compact Package: Housed in a compact MSOP-10 package, the ADM1192-1ARMZ-R7 is suitable for space-constrained applications.
Applications
The ADM1192-1ARMZ-R7 is ideal for a wide range of applications, including:
- Server and Telecom Power Supplies
- Networking Equipment
- Industrial Systems
- Data Storage Systems
- Blade Servers
Product Specifications
| Parameter |
Value |
| Manufacturer |
Analog Devices Inc. |
| Part Number |
ADM1192-1ARMZ-R7 |
| Package / Case |
MSOP-10 |
| Operating Temperature |
-40°C to +85°C |
| Interface Type |
I²C |
With its robust feature set and reliable performance, the ADM1192-1ARMZ-R7 from Analog Devices Inc. is an essential component for managing power in complex electronic systems, ensuring both safety and efficiency.