Overview
Description
ISL9003A is a high performance single low noise, high PSRR LDO that delivers a continuous 150mA of load current. It has a low standby current and is stable with 1µF of MLCC output capacitance with an ESR of up to 200mΩ. The ISL9003A has a very high PSRR of 90dB and output noise is 20µVRMS (typical). When coupled with a no load quiescent current of 31µA (typical), and 0. 5µA shutdown current, the ISL9003A is an ideal choice for portable wireless equipment. The ISL9003A comes in many fixed voltage options with ±1. 8% output voltage accuracy over temperature, line and load. Other output voltage options are available on request.
Features
- High Performance LDO with 150mA Continuous Output
- Excellent Transient Response to Large Current Steps
- Excellent Load Regulation: <0.1% voltage change across full range of load current
- Very High PSRR: >90dB at 1kHz
- Wide Input Voltage Capability: 2.3V to 6.5V
- Extremely Low Quiescent Current: 31µA
- Low Dropout Voltage: Typically 200mV at 150mA
- Low Output Noise: Typically 20µVRMS at 100µA (1.5V)
- Stable with 1µF to 4.7µF Ceramic Capacitors
- Shutdown Pin Turns Off LDO with 1µA (max) Standby Current
- Soft-start Limits Input Current Surge During Enable
- Current Limit and Overheat Protection
- ±1.8% Accuracy Over all Operating Conditions
- 5 Ld SC-70 Package or 6 Ld µTDFN Package
- -40°C to +85°C Operating Temperature Range
- Pb-Free (RoHS compliant)
Comparison
Applications
- PDAs, Cell Phones and Smart Phones
- Portable Instruments, MP3 Players
- Handheld Devices Including Medical Handhelds
Documentation
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Type | Title | Date |
Datasheet | PDF 629 KB | |
Product Advisory | PDF 414 KB | |
Product Change Notice | PDF 529 KB | |
Product Change Notice | PDF 205 KB | |
Application Note | PDF 509 KB | |
Application Note | PDF 397 KB | |
6 items
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Design & Development
Models
ECAD Models
Schematic symbols, PCB footprints, and 3D CAD models from SamacSys can be found by clicking on products in the Product Options table. If a symbol or model isn't available, it can be requested directly from the website.