SST13LP05
SST13LP05 is Dual-Band Power Amplifier Module manufactured by SST.
FEATURES
:
- High Gain:
- Typically 29 d B gain across 2.4-2.5 GHz
- Typically 29-26 d B gain across 4.9-5.8 GHz
- High linear output power:
- >25 d Bm P1d B (Pulsed single-tone signal) across 2.4-2.5 GHz
- Meets 802.11b OFDM ACPR requirement up to 23.5 d Bm across 2.4-2.5 GHz
- Meets 802.11g OFDM ACPR requirement up to 23 d Bm across 2.4-2.5 GHz
- Added EVM ~4% up to 19 d Bm for 54 Mbps 802.11g signal across 2.4-2.5 GHz
- >24 d Bm P1d B across 4.9-5.8 GHz
- Meets 802.11a OFDM ACPR requirement up to 22.5 d Bm across 4.9-5.8 GHz
- Added EVM ~4% up to 18 d Bm for 54 Mbps 802.11a signal across 4.9-5.8 GHz
- High power-added efficiency/Low operating current for 802.11a/b/g applications
- ~160 m A @ POUT = 19 d Bm for 802.11g
- ~235 m A @ POUT = 23.5 d Bm for 802.11b
- ~270 m A @ POUT = 18 d Bm for 802.11a
- Built-in Ultra-low IREF power-up/down control
- IREF < 2 m A
- High-speed power-up/down
- Turn on/off time (10%-90%) <100 ns
- Typical power-up/down delay with driver delay included <200 ns
- High temperature stability
- ~1 d B gain/power variation between 0°C to +85°C across 2.4-2.5 GHz
- ~3/1 d B gain/max linear power variation between 0°C to +85°C across 4.9-5.8 GHz
- ±0.5 d B detector variation between 0°C to +85°C
- Low shut-down current (< 2 µA)
- 20 d B dynamic range on-chip power detection
- Built-in input/output matching
- Packages available
- 16-contact LGA package (4mm x 4mm)
- All non-Pb (lead-free) devices are ROHS pliant.
APPLICATIONS:
- -
- -
- - WLAN (IEEE 802.11a/g/b) Japanese WLAN Hyper LAN2 Multimedia Home RF Cordless phones
PRODUCT DESCRIPTION
The SST13LP05 is a fully matched, dual-band power amplifier module (PAM) based on the highly-reliable In Ga P/ Ga As HBT technology. This PAM provides excellent RF performance, temperature-stable power detectors, and low-current analog on/off control interfaces. The SST13LP05 provides stable RF and power detector performance over a large VCC power supply variation, with an ultra-low shut-down current. With a near-zero Rest of Bill...