AVA-0233LN+ MINI | Alldatasheet

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50Ω 2 to 30 GHz AVA-0233LN+

APPLICATIONS

y 5G MIMO and Back Haul Radio Systems y Satellite Ka-Band Communications y T est and Measurement Equipment y Radar, EW, and ECM Defense Systems REV. A ECO-016377 AVA-0233LN+ MCL NY 230109 THE BIG DEAL y Wide Bandwidth, 2 to 30 GHz y Flat Gain Response, Typ. 16.3 dB ± 1 dB y Noise Figure, Typ. 2.4 dB y 5x5mm 32-Lead SMT Package y Gain Control, Typ. 30 dB Features Advantages Wideband response with adjustable Gain: 2-30 GHz, Typ. Gain 16.3 dB, 30 dB dynamic range General purpose wideband amplifier with adjustable gain vs. control voltage is suitable for wide variety of applications. Noise Figure: 2 dB Typ. 6-20 GHz 4 dB Typ. 2-30 GHz Usable as first or second stage amplifier. OIP3: +26 dBm Typ. 2-20 GHz +23 dBm Typ. 20-30 GHz Easy to integrate into signal chain. Return Loss 15 dB Typ. 2-20 GHz 10 dB Typ. 20-30 GHz 5 x 5mm 32-Lead QFN-style package Small footprint saves space in dense layouts while providing low inductance, repeatable transitions, and excellent thermal contact to the PCB. KEY FEATURES PRODUCT OVERVIEW The AVA-0233LN+ is a GaAs pHEMT MMIC Distributed Amplifier that operates from 2 to 30 GHz. The amplifier provides solid performance of 16.3 dB gain, 2.4 dB noise figure, +13.6 dB P1dB, and +25.7 dBm OIP3 from a self-biased single +5V supply drawing only 65 mA. The control voltage bias input VC enables the gain to be varied by over 30 dB across the operating band. The AVA-0233LN+ MMIC amplifier is housed in an industry standard 5x5mm QFN-style package, with RF ports internally matched to 50Ω, facilitating easy integration into microwave system PC boards. Wideband LNA Generic photo used for illustration purposes only CASE STYLE: DG1677-4

50Ω 2 to 30 GHz AVA-0233LN+ ELECTRICAL SPECIFICATIONS 1 AT 25°C, Zo=50Ω, VDD=+5V, VC = OPEN, UNLESS NOTED OTHERWISE. 5. Permanent damage may occur if any of those limits are exceeded. Electrical maximum ratings are not intended for continuous normal operation. Wideband LNA 1. Measured on Mini-Circuits Characterization T est Board TB-AVA-0233LNC+. See Characterization and Application Circuit (Fig.1). 2. Device Current Variation vs. T emperature = (Current in mA at +85°C – Current in mA at -45°C)/+130°C 4. Gain is nominal when VC = Open. When VC is left floating, there is a measured voltage of +2V on the pin. T o reduce gain, add a negative bias. Parameter Ratings Operating Case Temperature -45°C to +85°C Storage Temperature -65°C to +150°C Total Power Dissipation 1.55W Junction Temperature +150°C RF Input Power (CW) +20 dBm DC Voltage at VDD +8V DC Voltage at VC -2.5V to +3V Current IDD 140mA Current IC 5mA DC Voltage on RF-IN and RF-OUT +18V MAXIMUM RATINGS5 Parameter Condition (GHz) Min. Typ. Max. Units Frequency Range 2 30 GHz Gain 2 16.9 17.2 17.8 dB 10 15.8 16.7 17.4 20 15.2 16.3 17.3 28 12.9 14.7 16.5 30 12.7 15.5 17.5 Input Return Loss 2 20.0 dB 10 14.8 20 12.5 28 8.9 30 17.2 Output Return Loss 2 11.5 dB 10 19.3 20 13.1 28 6.5 30 11.4 Reverse Isolation 2-30 37.0 dB Output Power @ 1 dB Compression 2 +16.4 dBm 10 +15.1 20 +13.6 28 +11.5 30 +11.5 Output Third-Order Intercept Pout = 0 dBm/Tone 2 +28.4 dBm 10 +27.0 20 +25.7 28 +22.5 30 +20.6 Noise Figure 2 4.2 dB 10 1.5 20 2.4 28 4.5 30 4.8 Device Operating Voltage (VDD) +4.75 +5 +5.25 V Device Operating Current (IDD) 65 92 mA Device Control Voltage (VC) -1.2 Open +2.4 V Gain Variation over Control Voltage (VC)4 over -1.2V to 0V 2-30 30 dB Gain Variation over Control Voltage (VC)4 over 0V to +2.4V 2-30 1 dB Device Current (IDD) Variation vs. Temperature2 -10 µA/°C Device Current (IDD) Variation vs. Voltage3 0.0128 mA/mV Thermal Resistance, Junction-to-Ground-Lead (ΘJC) 14.7 °C/W

50Ω 2 to 30 GHz AVA-0233LN+ black body model family designation index over pin 1 Marking may contain other features or characters for internal lot control PRODUCT MARKING MCL 0233L Wideband LNA Function Pad Number Description (Refer to Figure 1) RF-IN 6 RF-Input Pad connects to RF-Input through an integrated shunt resistor for ESD protection and DC blocking capacitor. RF-OUT 20 RF-Output Pad connects to RF-Output through an integrated shunt resistor for ESD protection and DC blocking capacitor. VDD 29 DC Input Pad connects to the voltage input of the device and passes through C2 and an integrated capacitor. VC 31 Control Voltage Bias Pad connects to the control voltage input of the device and passes through C1 and an integrated capacitor. Contact Mini-Circuits Applications for more information on VC usage. Ground 1, 8, 9, 16, 17, 24, 25, 32 Connects to ground. No Connection 21 - 23, 26 - 28, 30 Not used internally. Connected to ground on test board. Component Size Value Manufacturer P/N C1, C2 0402 0.1uF Murata GRM155R71C104KA88D RF-IN 6 32 & Paddle VDD RF-OUT20 VC DUT TB-AVA-0233LNC+ RF-IN 6 1, 8, 9, 16, 17, 24, 25, 32, & Paddle VDD RF-OUT20 VC DUT Fig 1. Characterization and Application Circuit Note: This block diagram is used for characterization (DUT is soldered on Mini- Circuits T est Board TB-AVA-0233LNC+). Gain, Return Loss, Output Power at 1dB Compression (P1dB), Output IP3 (OIP3) and Noise Figure measured using Keysight PNA-X N5247B Microwave Network Analyzer. Conditions: 1. VDD = +5V, VC = Open 2. Gain and Return Loss PIN = -25 dBm 3. Output IP3 (OIP3): Two T ones, spaced 1 MHz apart, 0 dBm/T one at output. SIMPLIFIED SCHEMATIC AND PAD DESCRIPTION CHARACTERIZATION TEST & APPLICATION CIRCUIT 9 10 11 12 13 14 15 16 2526272829303132 NC NC NC GND NC RF-IN NC NC NC NC GND GND VC NC VDD NC NC NC GND GND NC NC RF-OUT NC NC GND GNDNCNCNCNCGND TOP VIEW 241

50Ω 2 to 30 GHz AVA-0233LN+ MMIC Amplifier AVA-0233LN+ Typical Performance Curves 2000 6000 10000 14000 18000 22000 26000 30000 GAIN (dB) FREQUENCY (MHz) GAIN vs. FREQUENCY & TEMPERATURE @ VDD = +5.00V -45°C +25°C +85°C 2000 6000 10000 14000 18000 22000 26000 30000 REVERSE ISOLATION (dB) FREQUENCY (MHz) REVERSE ISOLATION vs. FREQUENCY & TEMPERATURE @ VDD = +5.00V -45°C +25°C +85°C -30 -25 -20 -15 -10 2000 6000 10000 14000 18000 22000 26000 30000 INPUT RETURN LOSS (dB) FREQUENCY (MHz) INPUT RETURN LOSS vs. FREQ. & TEMP. @ VDD = +5.00V -45°C +25°C +85°C -30 -25 -20 -15 -10 2000 6000 10000 14000 18000 22000 26000 30000 INPUT RETURN LOSS (dB) FREQUENCY (MHz) INPUT RETURN LOSS vs. FREQ. & DEVICE VOLTAGE @ Temperature = +25°C 4.75V 5.00V 5.25V -45 -40 -35 -30 -25 -20 -15 -10 2000 6000 10000 14000 18000 22000 26000 30000 OUTPUT RETURN LOSS (dB) FREQUENCY (MHz) OUTPUT RETURN LOSS vs. FREQ. & TEMP. @ VDD = +5.00V -45°C +25°C +85°C -45 -40 -35 -30 -25 -20 -15 -10 2000 6000 10000 14000 18000 22000 26000 30000 OUTPUT RETURN LOSS (dB) FREQUENCY (MHz) OUTPUT RETURN LOSS vs. FREQ. & DEVICE VOLTAGE @ Temperature = +25°C 4.75V 5.00V 5.25V 2000 6000 10000 14000 18000 22000 26000 30000 REVERSE ISOLATION (dB) FREQUENCY (MHz) REVERSE ISOLATION vs. FREQUENCY & DEVICE VOLTAGE @ Temperature = +25°C 4.75V 5.00V 5.25V 2000 6000 10000 14000 18000 22000 26000 30000 GAIN (dB) FREQUENCY (MHz) GAIN vs. FREQUENCY & DEVICE VOLTAGE @ Temperature = +25°C 4.75V 5.00V 5.25V REV. OR AVA-0233LN+ 12/6/2022 Page 1 of 3 TYPICAL PERFORMANCE CURVES Wideband LNA

50Ω 2 to 30 GHz AVA-0233LN+ MMIC Amplifier AVA-0233LN+ Typical Performance Curves 2000 6000 10000 14000 18000 22000 26000 30000 P1dB (dBm) FREQUENCY (MHz) P1dB vs. FREQUENCY & TEMPERATURE @ VDD = +5.00V -45°C +25°C +85°C 2000 6000 10000 14000 18000 22000 26000 30000 P1dB (dBm) FREQUENCY (MHz) P1dB vs. FREQUENCY & DEVICE VOLTAGE @ Temperature = +25°C 4.75V 5.00V 5.25V 2000 6000 10000 14000 18000 22000 26000 30000 NOISE FIGURE (dB) FREQUENCY (MHz) NOISE FIGURE vs. FREQUENCY & TEMPERATURE @ VDD = +5.00 V -45°C +25°C +85°C 2000 6000 10000 14000 18000 22000 26000 30000 NOISE FIGURE (dB) FREQUENCY (MHz) NOISE FIGURE vs. FREQUENCY & DEVICE VOLTAGE @ Temperature = +25°C 4.75V 5.00V 5.25V 2000 6000 10000 14000 18000 22000 26000 30000 OUTPUT IP3 (dBm) FREQUENCY (MHz) OUTPUT IP3 vs. FREQUENCY & TEMPERATURE @ VDD = +5.00V -45°C +25°C +85°C 2000 6000 10000 14000 18000 22000 26000 30000 OUTPUT IP3 (dBm) FREQUENCY (MHz) OUTPUT IP3 vs. FREQUENCY & DEVICE VOLTAGE @ Temperature = +25°C 4.75V 5.00V 5.25V REV. OR AVA-0233LN+ 12/6/2022 Page 2 of 3 TYPICAL PERFORMANCE CURVES Wideband LNA

50Ω 2 to 30 GHz AVA-0233LN+ VC CONTROL VS. GAIN, FREQUENCY, & CONTROL CURRENT MMIC Amplifier AVA-0233LN+ Typical Performance Curves 1. Gain is nominal when VC = Open. When VC is left floating, there is a measured voltage of +2V on the pin. For gain at different VC levels, please see visit the View Data and View Graph pages. -60 -50 -40 -30 -20 -10 2000 6000 10000 14000 18000 22000 26000 30000 GAIN (dB) FREQUENCY (MHz) GAIN vs. VC1 & FREQUENCY @ VDD = +5.00 V VC = -1.2V VC = -0.8V VC = -0.6V VC = -0.4V VC = -0.2V VC = 0V 14.0 14.5 15.0 15.5 16.0 16.5 17.0 17.5 18.0 2000 6000 10000 14000 18000 22000 26000 30000 GAIN (dB) FREQUENCY (MHz) GAIN vs. VC1 & FREQUENCY @ VDD = +5.00 V VC = +0.4V VC = +0.8V VC = +1.2V VC = +1.6V VC = +2V VC = +2.4V IDD (mA) VC (V) IDD vs. VC @ VDD = +5.00 V IDD (mA) REV. OR AVA-0233LN+ 12/6/2022 Page 3 of 3 Wideband LNA

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard T erms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the standard terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/terms/viewterm.html MMIC SURFACE MOUNT 50Ω 2 to 30 GHz AVA-0233LN+Wideband LNA ADDITIONAL DETAILED TECHNICAL INFORMATION IS AVAILABLE ON OUR DASHBOARD. TO ACCESS CLICK HERE ESD RATING Human Body Model (HBM): Class 1A (250V) in accordance with ANSI/ESDA/JEDEC JS-001-2017 Charged Device Model (CDM): Class C3 (1000V) in accordance with JESD22-C101F MSL RATING Moisture Sensitivity: MSL3 in accordance with IPC/JEDEC J-STD-020E and IPC/JEDEC J-STD-033C. Performance Data Data Table Swept Graphs S-Parameter (S2P Files) Data Set (.zip file) Case Style DG1677-4 QFN-style package, exposed paddle, lead finish: PPF Tape & Reel Standard quantities available on reel F66 7” reels with 20, 50, 100, 200, 500 or 1000 devices Suggested Layout for PCB Design PL-741 Evaluation Board TB-AVA-0233LNC+ Environmental Ratings ENV08T10 Product Handling The use of no-clean solder is recommended. This package cannot be subjected to aqueous wash.