Features: · RF Power Amplifier Control in ThinSOTTM Package· Internal Schottky Diode Detector with >45dB Range· Wide Input Frequency Range: 800MHz to 2.7GHz (LTC4400-1) 800MHz to 2GHz (LTC4400-2)· Autozero Loop Cancels Offset Errors and Temperature Dependent Offsets· Wide VCC Range: 2.7V to 6V·...
LTC4400: Features: · RF Power Amplifier Control in ThinSOTTM Package· Internal Schottky Diode Detector with >45dB Range· Wide Input Frequency Range: 800MHz to 2.7GHz (LTC4400-1) 800MHz to 2GHz (LTC4400-2)...
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· RF Power Amplifier Control in ThinSOTTM Package
· Internal Schottky Diode Detector with >45dB Range
· Wide Input Frequency Range:
800MHz to 2.7GHz (LTC4400-1)
800MHz to 2GHz (LTC4400-2)
· Autozero Loop Cancels Offset Errors and Temperature Dependent Offsets
· Wide VCC Range: 2.7V to 6V
· Automatic Bandwidth Control Improves Low Power Ramp Response
· Allows Direct Connection to Battery
· RF Output Power Set by External DAC
· Internal Frequency Compensation
· Rail-to-Rail Power Control Output
· Power Control Signal Overvoltage Protection
· Low Operating Current: 1mA
· Low Shutdown Current: 10mA
· Two Pole PCTL Input Filtering
· Low Profile (1mm) ThinSOT (LTC4400-1) and 8-Pin MSOP (LTC4400-2) Packages
· GSM/GPRS Cellular Telephones
· PCS Devices
· Wireless Data Modems
· U.S. TDMA Cellular Phones
VCC to GND ................................................ 0.3V to 6.5V
VPCA/B Voltage to GND .............................. 0.3V to 3.2V
PCTL Voltage to GND ..................... 0.3V to (VCC + 0.3V)
RF Voltage to GND .............................. (VCC 2.6V) to 7V
BSEL, SHDN Voltage to GND .......... 0.3V to (VCC + 0.3V)
IVPCA/B ..................................................................... 10mA
Operating Temperature Range (Note 2) .. 40°C to 85°C
Storage Temperature Range ................. 65°C to 150°C
Maximum Junction Temperature .............................. 125°C
Lead Temperature (Soldering, 10 sec)..................... 300°C
The LTC®4400-1 is a SOT-23 RF power controller for fast turn-on RF power amplifiers operating in the 800MHz to 2.7GHz range. Examples include the Hitachi PF08109B, PF08122B, PF08123B, PF08107B and RF Micro Devices RF3108. For slow turn-on RF power amplifiers refer to the LTC4401-1/LTC4401-2.
RF power of LTC4400 is controlled by driving the RF amplifier power control pin and sensing the resultant RF output power via a directional coupler or capacitive tap. The RF input voltage is peak detected using an on-chip Schottky diode. This detected voltage is compared to the DAC voltage at the PCTL pin to control the output power. The RF power amplifier is protected against high power control pin voltages.
Internal and external offsets of LTC4400 are cancelled over temperature by an autozero control loop, allowing accurate low power programming. The shutdown feature disables the part and reduces the supply current to <10A. A dual control channel version (LTC4400-2) is also available in an 8-pin MSOP package.