• Part: AP561
  • Description: 2.3-2.9 GHz WiMAX 8W Power Amplifier
  • Manufacturer: TriQuint Semiconductor
  • Size: 596.71 KB
Download AP561 Datasheet PDF
TriQuint Semiconductor
AP561
AP561 is 2.3-2.9 GHz WiMAX 8W Power Amplifier manufactured by TriQuint Semiconductor.
Product Features - 2.3 - 2.9 GHz - +39 d Bm P1d B .. - 13.8 d B Gain 2.3-2.9 GHz Wi MAX 8W Power Amplifier Product Description The AP561 is a high dynamic range broadband power amplifier in a surface mount package. The single-stage amplifier has 13.8 d B gain, while being able to achieve high performance for 2.3- 2.9 GHz Wi MAX applications with up to 39 d Bm of pressed 1d B power. Functional Diagram - 1.4% EVM @ 30 d Bm Pout - +12 V Supply Voltage The AP561 uses a high reliability +12V In Ga P/Ga As HBT process technology. The device incorporates proprietary - Lead-free/green/Ro HS-pliant bias circuitry to pensate for variations in linearity and 5x6 mm power DFN package current draw over temperature. The device does not require any negative bias voltage; an internal active bias allows the AP561 to operate directly off a monly used +12V Applications supply and has the added feature of a +5V power down control pin. Ro HS-pliant 5x6mm DFN package is - Wi MAX CPE/BTS surface mountable to allow for low manufacturing costs to - Wi Bro CPE/BTS the end user. The AP561 is targeted for use in a balanced or single ended configuration for Wi MAX or Wi Bro applications where high linearity and high power is required. Function RFIN RFOUT IREF VBIAS NC Pin No. 4,5,6 9,10,11 14 1 2,3,7,8,12,13 Specifications Parameter Operational Bandwidth Test Frequency Output Channel Power Power Gain Input Return Loss Output Return Loss Error Vector Magnitude Operating Current, Icc Collector Efficiency RF Switching Speed Output P1d B Quiescent Current, Icq Vpd(4) Vcc Typical Performance Units Min GHz GHz d Bm d B d B d B % m A % ns d Bm m A V V 2.3 2.6 +30 13.8 11 6.9 1.4 480 16.8 50 39 300 +5 +12 Typ Max Parameter Test Frequency Channel Power Power Gain Input Return Loss Output Return Loss Error Vector Magnitude Operating Current, Icc Collector Efficiency Output P1d B Quiescent Current, Icq Vpd Vcc Units GHz d Bm d B d B d B % m A % d Bm m A V V 2.5 +30 14 11 6.2 2.2 510...