2.5V 100MHz Oscillator Inline I/O Pad Set
The OSx_BI_032_12V oscillator is designed to generate an asynchronous on-chip clock signal with an appropriate external oscillato…
Overview
The OSx_BI_032_12V oscillator is designed to generate an asynchronous on-chip clock signal with an appropriate external oscillator crystal. The design has been optimized for low power (1.5 uW typical), stability and minimum jitter using a general purpose 32KHz crystal. The design has been characterized to allow a variation of 4pF to 18pF on each pin.
Key features
- Very low power (2.6 uW max)
- Bypass mode
- Power down (disable) mode
- Speed-up circuitry for fast startup
What’s Included?
- Physical abstract in LEF format (.lef)
- Timing models in Synopsys Liberty formats (.lib and .db)
- Calibre compatible LVS netlist in CDL format (.cdl)
- GDSII stream (.gds)
- Behavioral Verilog (.v)
- Layout Parasitic Extraction (LPE) SPICE netlist (.spice)
- Databook (.pdf)
- Library User Guide - ESD Guidelines (.pdf)
Silicon Options
| Foundry | Node | Process | Maturity |
|---|---|---|---|
| GlobalFoundries | 40nm | 40 400 nm | Silicon Proven |
Specifications
Identity
Files
Note: some files may require an NDA depending on provider policy.
Provider
Learn more about Oscillator IP core
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Aragio Solutions Offers Suite of High-Performance Mixed-Signal IP and I/O Libraries Targeted to Advanced Processes from Chartered
Frequently asked questions about Oscillator IP cores
What is 2.5V 100MHz Oscillator Inline I/O Pad Set?
2.5V 100MHz Oscillator Inline I/O Pad Set is a Oscillator IP core from Aragio Solutions listed on Semi IP Hub. It is listed with support for globalfoundries Silicon Proven.
How should engineers evaluate this Oscillator?
Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this Oscillator 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.