30W Solid State High Power Amplifier 2-6 GHz. Parameter Min. Typ. Max. Min. Typ. Max. Units

Similar documents
5W Ultra Wide Band Power Amplifier 2-18GHz. Parameter Min. Typ. Max. Min. Typ. Max. Units

4W Ultra Wide Band Power Amplifier 0.1GHz~22GHz

8W Wide Band Power Amplifier 1GHz~22GHz

Ultra Wide Band Low Noise Amplifier GHz. Electrical Specifications, TA = +25⁰C, With Vg= -5V, Vcc = +4V ~ +7V, 50 Ohm System

30W Wideband Solid State Power Amplifier 6-12GHz. Parameter Min. Typ. Max. Min. Typ. Max. Units

Parameter Min. Typ. Max. Min. Typ. Max. Units

100W Wide Band Power Amplifier 6GHz~18GHz. Parameter Min. Typ. Max. Min. Typ. Max. Units. Frequency Range GHz Gain db

20W Solid State Power Amplifier 26.2GHz~34GHz. Parameter Min. Typ. Max. Min. Typ. Max. Units. Frequency Range GHz.

DC-20 GHz Distributed Driver Amplifier. Parameter Min Typ Max Min Typ Max Units

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

2W Ultra Wide Band Power Amplifier 0.2GHz~35GHz. Parameter Min. Typ. Max. Min. Typ. Max. Min. Typ. Max. Units. Frequency Range

100W Power Amplifier 8GHz~11GHz

20W Solid State Power Amplifier 6-18GHz. Parameter Min. Typ. Max. Min. Typ. Max. Units

9W Power Amplifier 26.2GHz~34GHz

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

Parameter Min. Typ. Max. Min. Typ. Max. Units

dbm Supply Current (Idd) (Vdd=+36V)

Parameter Min. Typ. Max. Units. Frequency Range 8-11 GHz. Saturated Output Power (Psat) 52 dbm. Input Max Power (No Damage) Psat Gain dbm

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

150W Solid State Broadband EMC Benchtop Power Amplifier 6-18GHz. Parameter Min Typ Max Min Typ Max Units

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

Parameter Min Type Max Units Frequency Range GHz Small Signal Gain,S21 18 db. Input Return Loss,S11 10 db Output Return Loss,S22 7 db

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

Isolation db Input VSWR : 1 Output VSWR : 1 RF Input Power (Pulsed, 10% Duty Cycle, 20us pulse

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

RF-LAMBDA. ABSORPTIVE 2-4 GHz 6 Bits 64dB PIN DIODE ATTENUATOR. Absorptive Pin Diode Attenuator 6 Bits 64dB 2-4GHz RFDAT0204G6A.

RF-LAMBDA LEADER OF RF BROADBAND SOLUTIONS

Features. Gain Variation Over Temperature db/ C

Features. = +25 C, +Vdc = +6V, -Vdc = -5V

Features. The HMC-C072 is ideal for: Microwave Radio Military & Space Test Instrumentation VSAT. = +25 C, Vdc = +7V

Features. = +25 C, +Vdc = +6V, -Vdc = -5V

Features. = +25 C, Vdc = +7V

Features. = +25 C, Vs= +8V to +16V

Features. = +25 C, Vdc = +5V

Analog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED

Features. = +25 C, Vdd= 8V, Idd= 75 ma*

TGA2214-CP 2 18 GHz 4 W GaN Power Amplifier

Parameter Symbol Units MIN MAX. RF Input power (CW) Pin dbm +20

TGA2813-CP 3.1 to 3.6 GHz, 100W GaN Power Amplifier

Frequency Range: MHz. Efficiency: 80% Temperature Range: -20 to 65 C Max VSWR: 3:1. Class: Supply Voltage: 32.0V

Features = +5V. = +25 C, Vdd 1. = Vdd 2

TGA2578-CP 2 to 6 GHz, 30W GaN Power Amplifier

HMC659LC5 LINEAR & POWER AMPLIFIERS - SMT. GaAs PHEMT MMIC POWER AMPLIFIER, DC - 15 GHz. Features. Typical Applications. General Description

Features. Output Power for 1 db Compression (P1dB) dbm Saturated Output Power (Psat) dbm

TGA2583-SM 2.7 to 3.7 GHz, 10 W GaN Power Amplifier

Features. Gain: 17 db. OIP3: 25 dbm. = +25 C, Vdd 1, 2 = +3V

TGM2635-CP X-Band 100 W GaN Power Amplifier

Efficiency: 68% Temperature Range: +0 to 60 C Max VSWR: 5:1. Class: Supply Voltage:

Parameter Symbol Units MIN MAX. RF Input power (CW) Pin dbm +20. DC Current A 1.6

TGA2625-CP GHz 20 W GaN Power Amplifier

Features. = +25 C, Vdd= 5V. Parameter Min. Typ. Max. Min. Typ. Max. Min. Typ. Max. Units. Frequency Range GHz

QPA GHz 50 Watt GaN Amplifier

QPA GHz 50 Watt GaN Amplifier

TGA2622-CP 9 10 GHz 35 W GaN Power Amplifier

Features. = +25 C, Vdd= 8V, Vgg2= 3V, Idd= 290 ma [1]

Features. = +25 C, Vdd1, 2, 3 = 5V, Idd = 250 ma*

TGM2635-CP X-Band 100 W GaN Power Amplifier

TGA2578-CP 2 to 6 GHz, 30W GaN Power Amplifier

Features. = +25 C, Vdd= +12V, Vgg2= +5V, Idd= 400 ma*

MMA051PP45 Datasheet. DC 22 GHz 1W GaAs MMIC phemt Distributed Power Amplifier

TGA FL 2.5 to 6 GHz 40W GaN Power Amplifier

Features. = +25 C, Vdd = +4V, Idd = 90 ma [2]

Features. = +25 C, Vdd1 = Vdd2 = +3.5V, Idd = 80 ma [2]

TGA2814-CP 3.1 to 3.6 GHz, 80W GaN Power Amplifier

Features. = +25 C, Vdd1 = Vdd2 = +3.5V, Idd = 70 ma

Features. = +25 C, Vdd1 = Vdd2 = +3.5V, Idd = 45 ma

Features. = +25 C, Vdd = 5V

FMAM1035 DATA SHEET. 6 db NF Low Phase Noise Amplifier Operating From 3 GHz to 8 GHz with 11 db Gain, 14 dbm P1dB and SMA. Features: Applications:

Features. = +25 C, Vdd =+28V, Idd = 850 ma [1]

QPD W, 48 V GHz GaN RF Power Transistor. Product Description. Product Features. Functional Block Diagram.

QPM GHz Limiter/Low-Noise Amplifier. Product Description. Product Features. Functional Block Diagram. Ordering Information.

TGS2355 SM EVB GHz 100 Watt GaN Switch. Product Overview. Key Features. Applications. Functional Block Diagram. Ordering Information

HMC5805ALS6 AMPLIFIERS - LINEAR & POWER - SMT. Typical Applications. Features. Functional Diagram

Parameter Symbol Units MIN MAX. RF Input power (CW) Pin dbm +37

Features. = +25 C, Vdd = +15V, Vgg2 = +9.5V [1], Idq = 500 ma [2]

TGL2201-SM T/R. Wideband Dual Stage VPIN Limiter. Applications. Ordering Information. Part No. ECCN Description

FMAM4032 DATA SHEET. 10 MHz to 6 GHz, Medium Power Broadband Amplifier with 900 mw, 24 db Gain and SMA. Features: Applications:

it to 18 GHz, 2-W Amplifier

Parameter Symbol Units MIN MAX. RF Input power (CW) Pin dbm +20

Analog Devices Welcomes Hittite Microwave Corporation NO CONTENT ON THE ATTACHED DOCUMENT HAS CHANGED

Transcription:

7-3 RF-LAMBDA 30W Solid State High Power Amplifier 2-6 GHz Features Wideband Solid State Power Amplifier Psat: +45dBm Gain: 50dB Supply Voltage: +36V Electrical Specifications, T A = +25⁰C, Vcc = +36V Parameter Min. Typ. Max. Min. Typ. Max. Units Frequency Range 2 4 4 6 GHz Gain 52 48 db Gain Flatness ±10 ±10 db Gain Variation Over Temperature (-45⁰C ~ +85⁰C) ±3 ±3 db Input Return Loss 15 15 db Output Return Loss 5 5 db Saturated Output Power (Psat) 45 45 dbm Supply Current (+36 VDC) 600 3500 600 3500 ma Isolation S12 70 70 db Input Max Power (No Damage) Psat Gain Psat Gain dbm Weight NP Model / WP Model 375/1300 g Impedance 50 Ohms Input / Output Connectors Finish NP Model/WP Model Material Typical Applications Wireless Infrastructure Short Haul / High Capacity Links RF Microwave and Vsat Military & Aerospace Applications Test Instrumentation SMA - Female Gold Plated / Nickel Plated Aluminum / Copper Package Sealing Epoxy Sealed (Standard) Hermetically Sealed (Optional) * P1dB, P3dB and Psat power test signal: 200μs pulse width with 10% duty cycle. * For average CW power testing or increased duty cycle, a 5dB back off from Psat is required unless water/oil cooling system is applied.

Absolute Maximum Ratings Supply Voltage RF Input Power +36 VDC Psat Gain Note: Maximum RF input power is set to assure safety of amplifier. Input power may be increased at own risk to achieve full power of amplifier. Please reference gain and power curves. Environmental Specifications and Test Standards Parameter Standard Description Operational Temperature MIL-STD-39016 Biasing Up Procedure Connect input and output with 50 Ohm Step 1 source/load. (in band VSWR<1.9:1 or >10dB return loss) Step 2 Connect Ground Pin Step 3 Connect VDC Power OFF Procedure Step 1 Turn Off VDC Step 2 Remove RF Connection Step 3 Remove Ground -45 ~+55 (Case Temperature less than 85C) Storage Temperature -50 ~+125 Thermal Shock Random Vibration Electrical & Temperature Burn In Shock Altitude Hermetically Sealed (Optional) MIL-STD-883 1 Hour@ -45 1 Hour @ +85 (5 Cycles) Acceleration Spectral Density 6 (m/s) Total 92.6 RMS Temperature +85 for 72 Hours 1. Weight >20g, 50g half sine wave for 11ms, Speed variation 3.44m/s 2. Weight <=20g, 100g Half sine wave for 6ms, Speed variation 3.75m/s 3. Total 18 times (6 directions, 3 repetitions per direction). Standard: 30,000 Ft (Epoxy Sealed Controlled Environment) Optional: Hermetically Sealed (60,000 ft. 1.0 PSI min) MIL-STD-883 (For Hermetically Sealed Units) Note: The operating temperature for the unit is specified at the package base. It is the user s responsibility to ensure the part is in an environment capable of maintaining the temperature within the specified limits

Part No. Ordering Information Description 2GHz~6GHz Power Amplifier Amplifier Use Ensure that the amplifier input and output ports are safely terminated into a proper 50 ohm load before turning on the power. Never operate the amplifier without a load. A proper 50 ohm load is defined as a load with impedance less than 1.9:1 or return loss larger than 10dB relative to 50 Ohm within the specified operating band width. Power Supply Requirements Power supply must be able to provide adequate current for the amplifier. Power supply should be able to provide 1.5 times the typical current or 1.2 times the maximum current (whichever is greater). In most cases, RF - Lambda amplifiers will withstand severe mismatches without damage. However, operation with poor loads is discouraged. If prolonged operation with poor or unknown loads is expected, an external device such as an isolator or circulator should be used to protect the amplifier. Ensure that the power is off when connecting or disconnecting the input or output of the amp. Prevent overdriving the amplifier. Do not exceed the recommended input power level. Adequate heat-sinking required for RF amplifier modules. Please inquire. Amplifiers do not contain Thermal protection, Reverse DC polarity or Over voltage protection with the exception of a few models. Please inquire. Proper electrostatic discharge (ESD) precautions are recommended to avoid performance degradation or loss of functionality. What is not covered with warranty? Each RF - Lambda amplifier will go through power and temperature stress testing. Since the die, ICs or MMICs are fragile, these are not covered by warranty. Any damage to these will NOT be free to repair.

Gain vs. Frequency Isolation Input Return Loss Output Return Loss Note: Input / Output return loss measurements include attenuators to protect equipment

Gain vs. Output Power P7dB vs. Frequency 2nd Harmonic Wave Output Power 4th Harmonic Wave Output Power 3rd Harmonic Wave Output Power

Left IM3 vs. Pout Right IM3 vs. Pout Memory Effect vs. Pout

Outline Drawing (NP Version): All Dimensions in mm ***Heat Sink and cooling fan required during operation***

0 3 6.8 164 180 159.4 RF-LAMBDA Outline Drawing Heatsink (NP Version): All Dimensions in mm R2.75 85.5 101.5 15 15 15 15 ***Heat Sink and cooling fan required during operation*** 6 26

9 6.8 3 164 180 92 RF-LAMBDA Outline Drawing Heatsink Including Air Cooling (NP Version): All Dimensions in mm R2.75 45.15 85.5 101.5 ***Heat Sink and cooling fan required during operation*** 76 6 26

Outline Drawing (WP Version): All Dimensions in mm ***Heat Sink and cooling fan required during operation***

5 2 200 10 69 RF-LAMBDA Outline Drawing Heatsink (WP Version): All Dimensions in mm 44 260 32.5 54.8 ***Heat Sink and cooling fan required during operation***

48.61 95 200 69 10 15 RF-LAMBDA Outline Drawing Heatsink Including Air Cooling (WP Version): All Dimensions in mm 7 48.41 7 57.8 10 263 60.12 80 ***Heat Sink and cooling fan required during operation*** 46 Important Notice The information contained herein is believed to be reliable. RF-Lambda makes no warranties regarding the information contained herein. RF-Lambda assumes no responsibility or liability whatsoever for any of the information contained herein. RF-Lambda assumes no responsibility or liability whatsoever for the use of the information contained herein. The information contained herein is provided "AS IS, WHERE IS" and with all faults, and the entire risk associated with such information is entirely with the user. All information contained herein is subject to change without notice. Customers should obtain and verify the latest relevant information before placing orders for RF-Lambda products. The information contained herein or any use of such information does not grant, explicitly or implicitly, to any party any patent rights, licenses, or any other intellectual property rights, whether with regard to such information itself or anything described by such information. RF-Lambda products are not warranted or authorized for use as critical components in medical, life-saving, or life sustaining applications, or other applications where a failure would reasonably be expected to cause severe personal injury or death.