2.0-3.6V to 1.0-1.4V step down DC/DC converter
055UMC_DCDC_01 is high-efficiency step-down DC-DC switching buck converter targeted for operation from 2.0V to 3.6V input voltage.
Overview
055UMC_DCDC_01 is high-efficiency step-down DC-DC switching buck converter targeted for operation from 2.0V to 3.6V input voltage. It is able to supply circuits with 1.2V and up to 50 mA average output current. The DC-DC converter contains adjustment of output current limit, overload protection, and under voltage-lockout circuit. During startup time DC-DC converter works in the soft start mode, which provides the gradual increase of the output voltage.
Key features
- UMC 55nm eFlash CMOS technology
- Input Voltage Range: +2.0V to +3.6V
- Current limit detector
- Soft Start
- Undervoltage-lockout circuit
- Overload protection
Block Diagram
Applications
- Low-Voltage, High-Density Systems
- Broadband, Networking, and Optical Communications Infrastructure
What’s Included?
- Schematic or NetList
- Abstract model (.lef and .lib files)
- Layout view (optional)
- Behavioral model (Verilog)
- Extracted view (optional)
- GDSII
- DRC, LVS, antenna report
- Test bench with saved configurations (optional)
- Documentation
Silicon Options
| Foundry | Node | Process | Maturity |
|---|---|---|---|
| UMC | 55nm | 55nm 550 nm | Silicon Proven |
Specifications
Identity
Files
Note: some files may require an NDA depending on provider policy.
Provider
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Frequently asked questions about DC-DC Converter IP cores
What is 2.0-3.6V to 1.0-1.4V step down DC/DC converter?
2.0-3.6V to 1.0-1.4V step down DC/DC converter is a DC/DC Converter IP core from NTLab listed on Semi IP Hub. It is listed with support for umc Silicon Proven.
How should engineers evaluate this DC/DC Converter?
Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this DC/DC Converter 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.