| Overall Usable Frequency Range Small Signal Gain Maximum CW Output Power Maximum Pulsed Output Power Total CW Efficiency Pulsed Efficiency Input Power OFF Isolation Second Harmonic Suppression Third Harmonic Suppression Input VSWR Output Load VSWR | 800 29.5 31 32.5 30 31.5 33 45 47 0 10:1 | 902 30 30.5 32 33.5 29.3 31 33 34 51 53 +2 -25 45 >60 | 960 31.5 34 35 32 34.5 35.5 +6 <2:1 | MHz dB dBm dBm dBm dBm % % dBm dBm dBc dBc | T=250C, Vcc=2.5V, VPC=2.2V, Freq=902MHz, PIN=2dBm Supply Voltage=2.5V Supply Voltage=3.OV Supply Voltage=3.5V Supply Voltage=2.OV Supply Voltage=2.5V, 12.5 % duty cycle Supply Voltage=3.0V, 12.5% duty cycle Supply Voltage =3.5V, 12.5 % duty cycle 12.5% duty cycle VPC=OV,lnput Power=+6dBm With a 50 I source impedance No damage. |
| AMPS Application #1 Frequency Maximum Output Power Efficiency @ Maximum Output Power ldle Current Second Harmonic Suppression Current Total | 30 5 | 824 t0 849 50 195 -45 760 | 250 | MHz dBm % mA dBc mA | T=250C, Vcc=3.4V, VPC=1.8V, Freq=836MHz, PIN=+3dBm |
| AMPS Application #2 Frequency Maximum Output Power Efficiency @ Maximum Output Power ldle Current IPC @ Maximum Output Power | 29 5 30 8 32 50 | 824 t0 849 30.5 31.5 33 55 120 20 | | MHz dBm dBm dBm % mA mA | T=250C, Vcc=3.5V, VPC=1.6V, Freq=836MHz, PIN=+8dBm (see AMPS application schematic) Vcc=2.7V Vcc=3.OV Vcc=3.5V |