MHW916
MHW916 is 16 WATT 925-960 MHz RF POWER AMPLIFIER manufactured by Motorola Semiconductor.
MOTOROLA
The RF Line
SEMICONDUCTOR TECHNICAL DATA
Order this document by MHW916/D
UHF Silicon FET Power Amplifier
Designed specifically for the European Digital Extended Group Special Mobile (GSM) Base Station applications in the 925- 960 MHz frequency range. MHW916 operates from a 26 Volt supply and requires 15.5 d Bm of RF input power.
- Specified 26 Volt Characteristics RF Input Power: 15.5 d Bm Max RF Output Power: 16 Watts at 1.0 d B pression Point Minimum Gain: 26.5 d B Harmonics:
- 35 d Bc Max at 2Fo
- 50 Ω Input/Output System
- Meet GSM Linearity Specification for Base Station up to 12.5 Watts
16 WATT 925- 960 MHz RF POWER AMPLIFIER
CASE 301AB- 02, STYLE 1
MAXIMUM RATINGS
Parameter DC Supply Voltage DC Bias Voltage RF Input Power RF Output Power Operating Case Temperature Range Storage Temperature Range Standby Current (Pin Removed, Istdby = IS1 + IS2) Symbol VS VB Pin Pout TC Tstg Istdby Value 28 16 19 25
- 5.0 to +85
- 30 to +100 400 Unit Vdc Vdc d Bm W °C °C m A
ELECTRICAL CHARACTERISTICS (TC = 25°C, VS1 = VS2 = 26 Vdc, Vbias = 15 Vdc, 50 ohm system)
Characteristic Frequency Range Quiescent Current (Pin = 0 m W) Power Gain (Pout = 16 W) (1) Output Power at 1.0 d B pression Efficiency (1.0 d B pression Power) Efficiency (Pout = 16 W) (1) Input VSWR (Pout = 16 W) (1) Harmonic 2 fo (Pout = 16 W) (1) Harmonic 3 fo (Pout = 16 W) (1) Ripple (Pout = 16 W) (1) Load Mismatch Stress (Pout = 16 W) Load VSWR = 5:1, All Phase Angles Stability (Pout = 10 m W to 16 W) Load VSWR = 3:1, All Phase Angles (Except Harmonics) Stability (Pout =
- 5.0 d Bm to 42 d Bm, f = 925 to 960 MHz) Load VSWR = 2:1, All Phase Angles (1) Adjust Pin for Specified Pout. Symbol BW Idq1 + Idq2 Gp P1d B η1 η2 VSWRin H2 H3 Rp Ψ
- - Min 925
- 26.5 16 37 33
- -
- - Typ
- 400 30
- 44 39
- - 40
- 60 1.0 Max 960
- 32.5
- -
- 2:1
- 35
- 45
- Unit MHz m A d B W % %
- d Bc d Bc d B
No Degradation in Output Power All Spurious Outputs More Than 60 d B Below Desired Signal All Spurious Outputs Lower Than
- 46 d Bm or
- 85...