0.8 to 2.5GHz full wave rectifier with ESD protection
130GF_RECT_01 intended for use in Bluetooth Low Energy applications.
Overview
130GF_RECT_01 intended for use in Bluetooth Low Energy applications. IP derives power from an RF electromagnetic field, which is received and rectified. The rectified voltage can be used to power various units. At the output with the rectifier is a parallel DC Limiter, which drains (shunts to the ground) excess energy (in the form of current) in case BLE_RECT voltage exceeds limiter clamping voltage. An ESD protection block is located at the rectifier input.
Key features
- GF 130nm Embedded EEPROM technology process
- Input voltage limit with up to 20mA shunt capability
- Operation carrier frequency from 800MHz to 2.5GHz
- Input power range from 0dBm to +20dBm
- Reverse current protection
- Small area 0.048mm2
Block Diagram
Benefits
- Reverse current protection
- Small area 0.048mm2
Applications
- Access control systems
- RFID systems, smart cards
What’s Included?
- Datasheet
- Layout View (GDSII)
- Evaluation kit based on packaged IC
- Characterization Report
- Behavioral Model
- SPICE netlist (.cdl)
- Integration Support
Files
Note: some files may require an NDA depending on provider policy.
Silicon Options
| Foundry | Node | Process | Maturity |
|---|---|---|---|
| GlobalFoundries | 130nm | BCD | Pre-Silicon |
Specifications
Identity
Provider
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Frequently asked questions about ESD Protection Library IP cores
What is 0.8 to 2.5GHz full wave rectifier with ESD protection?
0.8 to 2.5GHz full wave rectifier with ESD protection is a ESD Protection IP core from NTLab listed on Semi IP Hub. It is listed with support for globalfoundries Pre-Silicon.
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.