Model: PEC3-40-2G6G-15LM-SFF-HS  

PMI Model No. PEC3-2G6G-15LM-SFF-HS is a 1.85 to 6.25GHz limiting amplifier.  This model operates with an input power range of -15 to +17dBm and maintains a limited output of +15dBm minimum.  The unit is supplied in a hermetically sealed housing[Other frequency ranges and limited output levels available.]


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Product Feature

Test Report

Unit Data

PL9652 PL11886 PL13479
PL9653 PL11887 PL13480
PL9654 PL11888 PL13481
PL9655 PL11889 PL13482
PL9656 PL11890  
PL9657 PL13478  

 

Specifications:

Frequency Range 1.85 to 6.25 GHz
Noise Figure:

5.5 dB max. @ +25C - Measured 4.09 dB

6.0 dB max. @ +85C - Measured 4.40 dB

Gain: 35 dB min. - Measured 41.17 dB min.
Gain Variation Over Temperature:

±4.0 dB max. (-55C to +85C) - Measured ±0.2 dB

Gain Flatness:

(over operating temperature)

±2.5 dB max. - Full Frequency Range - Measured ±0.35 dB

±2.0 dB max. - Over any 500 MHz - Measured ±0.1 dB

VSWR: 2.0:1 max. - Measured 1.58:1
Saturated Output Power: +15 dBm min. - Measured +17.17 dBm
Input Power Range: -15 to +17 dBm
Saturated Power Flatness:

±1.5 dB max. - At any operating temperature - Measured ±0.75 dB

±0.5 dB max. - Over any 500MHz - Measured ±0.25 dB

Saturated Power Variation Over Temperature: ±1.25 dB max. - At any single frequency - Measured ±0.815 dB
Harmonic Content: -15 dBm min. - Measured -16.53 dBc
Reverse isolation: 50 dB min. - Measured 64.37 dB

Pulse Response

 
   Overshoot: 0.2 dB max. - Measured ‹0.2 dB
   Settling Time: 10 ns max.
   Recovery Time: 50 ns max.
Maximum Input Power: (No Damage)

+20 dBm CW

+30 dBm, .005 Duty Cycle, 1 usec

DC Voltage Supply +10.8 to +13.2 VDC
DC Current Draw 350 mA max.
Connectors SMA(F)
Sealing: Hermetic
Size 1.91" x 0.78" x 0.36"

Environmental Ratings:

Temperature:  -55ºC to +85 ºC Operating
 -65ºC to +125ºC Non-Operating
 Humidity:  MIL-STD-202F, Method 103B Cond. B
 Shock:  MIL-STD-202F, Method 213B Cond. B
 Vibration:  MIL-STD-202F, Method 204D Cond. B
 Altitude:  MIL-STD-202F, Method 105C Cond. B
 Temperature Cycle:  MIL-STD-202F, Method 107D Cond. A