Low-Power Over-voltage Protection Module to handle Over-voltage operation (up to 3.63 V) while using standard process 1.8 V devices
Dolphin Design provides a Power Management IPs platform, toward three objectives: To standardize and ease Power Regulation Networ…
Overview
To standardize and ease Power Regulation Network integration
To enable diverse optimizations
To reduce Time-to-Market
To avoid expensive solutions, such as additional mask layer or external regulators, the library features a cost effective alternative with a set of Over-voltage Protection Modules (OPM). These companions for regulators enable over-voltage operation while using standard process 1.8 V devices.
The OPM-Angel-AR-LP is optimized to be used for retention mode in low power applications.
Key features
- Over-voltage protection biasing for embedded regulators
- Avoids expensive solutions while enabling direct battery connection.
- Built-in over-voltage protection (up to 3.63 V) using 1.8 V transistors
- Fixed 1.8 V regulated output voltage with 10% accuracy
- Low-leakage for SoC retention mode
Files
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Silicon Options
| Foundry | Node | Process | Maturity |
|---|---|---|---|
| GlobalFoundries | 22nm | FDX | Silicon Proven |
Specifications
Identity
Provider
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Frequently asked questions about ESD Protection Library IP cores
What is Low-Power Over-voltage Protection Module to handle Over-voltage operation (up to 3.63 V) while using standard process 1.8 V devices?
Low-Power Over-voltage Protection Module to handle Over-voltage operation (up to 3.63 V) while using standard process 1.8 V devices is a ESD Protection IP core from Dolphin Semiconductor listed on Semi IP Hub. It is listed with support for globalfoundries Silicon Proven.
How should engineers evaluate this ESD Protection?
Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this ESD Protection IP.
Can this semiconductor IP be compared with similar products?
Yes. Buyers can compare this product with similar semiconductor IP cores or IP families based on category, provider, process options, and structured technical specifications.