The SGM13001A is a low noise amplifier (LNA) for GLONASS, Galileo, Beidou and GPS applications. The device delivers 18.2dB gain at an extremely low noise figure of 0.9dB. It also features high gain and excellent linearity performance that operates from 1160MHz to 1300MHz and 1550MHz to 1615MHz.
The device requires 6.5mA from a single 1.6V to 3.6V supply, dropping to below 2.2μA in power down mode.
No external DC blocking capacitors are required on the RF paths as long as no external DC voltage is applied, which can save PCB area and cost.
The SGM13001A is available in a Green UTDFN-1.1×0.7-6L package.
- High Gain: - 19.2dB at 1176.45MHz - 18.6dB at 1227.6MHz - 18.2dB at 1575.42MHz 
- Low Noise Figure: - 0.78dB at 1176.45MHz - 0.89dB at 1227.6MHz - 0.90dB at 1575.42MHz 
- Low Operation Current: 6.5mA 
- Current Less than 2.2μA in Power Down Mode 
- Operating Frequency Range: - 1160MHz to 1300MHz - 1550MHz to 1615MHz 
- Single Supply Voltage Range: 1.6V to 3.6V 
- Low Cost BOM 
- Lead-Free and RoHS Compliant 
- Available in a Green UTDFN-1.1×0.7-6L Package 
Car Navigation
Personal Navigation Equipment
Mobile Phone with GPS
RF Front End Modules
Digital Video Camera, Digital Camera
| Part Number | Status | Package | Pins | Pd-Free | RoHS | REACH | Green | MSL Rating | Operating Temperature Range | Material Content | Reliability Report | Unit Resale Price* (Volume Range: in USD) | Lead Time** (Volume Range: Days) | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| SGM13001AYUEC6G/TR | Active | UTDFN-1.1×0.7-6L | 6 | Yes | Yes | Yes | Yes | MSL1 | -40℃ to +85℃ | View | View | 1-24 units : $0.14/unit 25-99 units : $0.12/unit 100-249 units : $0.1/unit 250-499 units : $0.08/unit 500-999 units : $0.07/unit 1000-9999 units : $0.052/unit | 3K-9K : 14 days 10K-99K : 35 days 100K-999K : 70 days 1000K and above : 91 days | 
* The unit resale price is for reference purposes only. Please contact our distributors for a formal quotation.
** The lead time provided is for reference purposes only and is subject to change based on different circumstances.
