Features: • Frequency Range: 32 - 37 GHz• 7dB Nominal Insertion Loss• 3.5deg RMS Phase Error @ 35GHz• 0.4dB RMS Amp. Error @ 35GHz• Negative Control Voltage• Single-Ended Logic• 0.25m pHEMT 3MI Technology• Chip dimensions:1.88 x 0.75 x 0.1 mm(0.074 x...
TGP2102-EPU: Features: • Frequency Range: 32 - 37 GHz• 7dB Nominal Insertion Loss• 3.5deg RMS Phase Error @ 35GHz• 0.4dB RMS Amp. Error @ 35GHz• Negative Control Voltage• Sing...
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Symbol | Parameter | Value | Notes |
VC ID |
Control Voltage Range Control Supply Current |
-8V to 0V 1 mA |
1/ 2/ 1/ 2/ |
PIN PD |
Input Continuous Wave Power Power Dissipation |
20 dBm 0.1 W |
1/ 2/ 1/ 2/ |
TCH | Operating Channel Temperature | 150 | 3/ |
TM | Mounting Temperature (30 Seconds) |
320 | |
TSTG | Storage Temperature | -65 to 150 |
1/ These ratings represent the maximum operable values for this device
2/ Combinations of supply voltage, supply current, input power, and output power
shall not exceed PD at a package base temperature of 70
3/ Junction operating temperature will directly affect the device median time to failure (MTTF). For maximum life, it is ecommended that junction temperatures be
maintained at the lowest possible levels.
The TriQuint TGP2102-EPU is a 5-bit digital phase shifter MMIC design using TriQuint's proven 0.25m power pHEMT process to support a variety of Ka-Band phased array applications including military radar.
The 5-bit design utilizes a compact topology that achieves a 1.41mm2 die area and high performance.
The TGP2102-EPU provides a 5-bit digital phase shift function with a nominal 7dB insertion loss and 5° RMS phase shift error over a bandwidth of 32-37GHz.
The TGP2102-EPU requires a minimum of off-chip components and operates with a -5V control voltage. Each device is RF tested on-wafer to ensure performance compliance. The device is available in chip form.