RFUV1703 QORVO | Alldatasheet

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Technical content

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 1 of 13 www.qorvo.com Package: QFN, 32 Pin, 5 mm x 5 mm x 0.95 mm Product Features

  • RF Frequency: 21 GHz to 26.5 GHz
  • LO Frequency (LSB): 10.5 GHz to 15.2 GHz
  • LO Frequency (USB): 8.5 GHz to 13.25 GHz
  • IF Frequency: DC to 4 GHz
  • Conversion Gain (Max): 21 dB
  • Conversion Gain (Min): -10 dB
  • NF (Max. Gain): 12 dB
  • OIP3 (Max. Gain): +27 dBm
  • Image Rejection: 15 dBc Performance is typical across frequency. Please reference electrical specification table and data plots for more details. General Description Qorvo's RFUV1703 is a 21 GHz to 26.5 GHz GaAs pHEMT upconverter, incorporating an integrated doubler, LO buffer amplifier, a balanced single sideband (image rejection) mixer followed by Variable Gain Amplifier, DC decoupling capacitors. The combination of high performance part and low-cost packaging makes the RFUV1703 a cost effective solution, ideally suited to both current and next generation point-to-point and VSAT applications. RFUV1703 is packaged in a 5 mm x 5 mm QFN to simplify both system level board design and volume assembly. Lead-free and RoHS compliant Functional Block Diagram 32 30 2729 25 10 11 141312 15 16 PACKAGE GND VLPA12 N/C N/C N/C N/C GND RFOUT GND N/C GND LOIN GND N/C N/C N/C N/C N/C GND I N/C GND Q N/C Vg1 VLOA1 VLOA2 N/C N/C Vc1 Vc2 Vg2 VMPA

Ordering Information

RFUV1703S2 2-Piece Sample Bag RFUV1703SB 5-Piece Bag RFUV1703SQ 25-Piece Bag RFUV1703SR 100 Pieces on 7” reel RFUV1703TR7 750 Pieces on 7” reel RFUV1703PCBA-410 Evaluation Board

Applications

  • Point-to-Point
  • VSAT

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 2 of 13 www.qorvo.com Absolute Maximum Ratings Parameter Rating Unit LPA Drain Voltage VD 6 V LOA Drain Voltage 6 V IF Input Power 15 dBm LO Input Power 15 dBm Storage Temperature -65 to +150 °C Exceeding any one or a combination of the Absolute Maximum Rating conditions may cause permanent damage to the device. Extended application of Absolute Maximum Rating conditions to the device may reduce device reliability. Nominal Operating Parameters Parameter Specification Units Condition Min Typical Max RF Frequency 21 26.5 GHz LO Frequency: LSB 10.5 15.25 GHz LO Frequency: USB 8.5 13.25 GHz IF Frequency DC 2.5 4.0 GHz LO input Drive 0 dBm Conversion Gain (Max.) (USB) 19 21 dB LO = 9.95 GHz & 11.5 GHz Conversion Gain (Min.) (USB) -5.5 -5 dB LO = 9.95 GHz & 11.5 GHz OIP3 (Max. Gain) (USB) 23.5 29 dBm LO = 9.95 GHz OIP3 (-5 dB Gain) (USB) 0.5 6.5 dBm LO = 9.95 GHz OIP3 (Max. Gain) (USB) 20.5 27 dBm LO = 11.5 GHz OIP3 (-5 dB Gain) (USB) 4 9 dBm LO = 11.5 GHz Image Rejection (Max. Gain) (USB) 15 20 dBc LO = 9.95 GHz Image Rejection (Max. Gain) (USB) 14 20 dBc LO = 11.5 GHz LO Leakage @ RF-Port (Max. Gain) (USB) -10 5 dBm LO = 9.95 GHz LO Leakage @ RF-Port (Max. Gain) (USB) 1 7.5 dBm LO = 11.5 GHz NF (Max. Gain) 12 dB LO Return Loss 10 dB RF Return Loss 10 dB VLOA 4 V VLPA 3.5 V VMOA 4.5 V ILOA 205 mA ILOA1,2 120 mA IMPA 120 mA ITOTAL 445 mA VC1, VC2 -4 0 V Operating Temperature -55 25 85 °C

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 3 of 13 www.qorvo.com Performance Plots – USB Conversion Measurements performed with I and Q (IF) ports connected to an external 90° Hybrid Test conditions unless otherwise noted: LO Power = 0 dBm and IF = 2.5 GHz, -10 dBm VLOA1 = VLOA2 = 4 V, ILOA1,2 = 205 mA; VLPA12 = 3.5 V, Adjust VG1 around -0.4 V to get ILPA12 = 120 mA VMPA = 4.5 V, Adjust VG2 to get IMPA = 120 mA, ITOTAL = 445 mA, VC1 = VC2 = -4 V VMPA = 4.5 V, Adjust VG2 to get IMPA = 120 mA, ITOTAL = 445 mA, VC1 = VC2 = -4 V

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 4 of 13 www.qorvo.com Performance Plots – USB LO Leakage & Over Temperature Measurements performed with I and Q (IF) ports connected to an external 90° Hybrid Test conditions unless otherwise noted: LO Power = 0 dBm and IF = 2.5 GHz, -10 dBm VLOA1 = VLOA2 = 4 V, ILOA1,2 = 205 mA; VLPA12 = 3.5 V, Adjust VG1 around -0.4 V to get ILPA12 = 120 mA VMPA = 4.5 V, Adjust VG2 to get IMPA = 120 mA, ITOTAL = 445 mA, VC1 = VC2 = -4 V VMPA = 4.5 V, Adjust VG2 to get IMPA = 120 mA, ITOTAL = 445 mA, VC1 = VC2 = -4 V

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 5 of 13 www.qorvo.com Performance Plots – LSB Conversion & LO Leakage Measurements performed with I and Q (IF) ports connected to an external 90° Hybrid Test conditions unless otherwise noted: LO Power = 0 dBm and IF = 2.5 GHz, -10 dBm VLOA1 = VLOA2 = 4 V, ILOA1,2 = 205 mA; VLPA12 = 3.5 V, Adjust VG1 around -0.4 V to get ILPA12 = 120 mA VMPA = 4.5 V, Adjust VG2 to get IMPA = 120 mA, ITOTAL = 445 mA, VC1 = VC2 = -4 V VMPA = 4.5 V, Adjust VG2 to get IMPA = 120 mA, ITOTAL = 445 mA, VC1 = VC2 = -4 V

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 6 of 13 www.qorvo.com Performance Plots – USB: Without IQ Bias Measurements performed with I and Q (IF) ports connected to an external 90° Hybrid Test conditions unless otherwise noted: LO Power = 0 dBm and IF = 2.5 GHz, -10 dBm VMPA = 4.5 V, VLPA12 = 3.5 V, VLOA1 = VLOA2 = 4 V, ITOTAL = 445 mA, VG1 = VG2 = -0.4 V VC1 and VC2 are connected together off chip and changes over (-4 V to 0 V): Single Control Bias VMPA = 4.5 V, Adjust VG2 to get IMPA = 120 mA, ITOTAL = 445 mA, VC1 = VC2 = -4 V VMPA = 4.5 V, VLPA12 = 3.5 V, VLOA1 = VLOA2 = 4 V, ITOTAL = 445 mA, VG1 = VG2 = -0.4 V VC1 and VC2 are separated controlled and changes over (-4 V to 0 V): Double Control Bias

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 7 of 13 www.qorvo.com Performance Plots – USB: Without IQ Bias (continued) Measurements performed with I and Q (IF) ports connected to an external 90° Hybrid Test conditions unless otherwise noted: LO Power = 0 dBm and IF = 2.5 GHz, -10 dBm VMPA = 4.5 V, VLPA12 = 3.5 V, VLOA1 = VLOA2 = 4 V, VC1 = VC2 = -4 V VG1 and VG2 are connected together off chip and changes over (-0.3 V to -1 V): Single Control on VG1 = VG2 ): Single Control Bias VMPA = 4.5 V, Adjust VG2 to get IMPA = 120 mA, ITOTAL = 445 mA, VC1 = VC2 = -4 V

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 8 of 13 www.qorvo.com 2*LO - IF = RF (LSB), LO = 10.5 to 15.25 GHz 2*LO + IF = RF (USB), LO = 8.5 GHz to 13.25 GHz Notes: 1. External components for IQ biases are required. 2. External hybrid coupler is required. Application Circuit Block Diagram 32 29 11 12 PACKAGE GND 31 28 PACKAGE GND PACKAGE GND VLOA2 1uF 100nF 100pF VC1 1uF 100nF 100pF LO IN Vc2 100pF 100nF 1uF VLPA1,2 IF IN I bias 2630 200pF 100 nH Q bias 200pF 100 nH 10VLOA1 1uF 100nF 100pF 14 15 Vg2 100pF 100nF 1uF VMPA 1uF100nF100pF RFOUT 1uF100nF100pF Vg1 1uF100nF100pF 2527

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 9 of 13 www.qorvo.com Test Conditions and Bias Sequence Measurements performed with I and Q (IF) ports connected to an external 90° Hybrid, LO Power = 0 dBm and IF = 2.5 GHz, -10 dBm, unless otherwise stated. VLOA1 = VLOA2 = 4 V, ILOA1,2 = 205 mA; VLPA12 = 3.5 V, Adjust VG1 around -0.4 V to get ILPA12 = 120 mA VMPA = 4.5 V, Adjust VG2 to get IMPA = 120 mA, ITOTAL = 445 mA, VC1 = VC2 = -4 V. Typical Bias Sequence GMAX GMIN VC1 (V) -4 -2 -1 0 0 0 0 More dynamic range can be achieved using VG2 over (-0.4 to -1 V) and VG1 over (-0.4 to -1 V) Evaluation Board Layout Sub-Band Frequency Ranges Band Frequency Range 23 GHz 21.2 GHz to 23.6 GHz 26 GHz 24.5 GHz to 26.5 GHz

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 10 of 13 www.qorvo.com Pin Names and Description Pin Number Label Description

1 N/C Not Connected

2 GND Ground

3 LO Local Oscillator Input. AC Coupled and Matched to 50 Ω

4 GND Ground

5 N/C Not Connected

6 N/C Not Connected

7 N/C Not Connected

8 N/C Not Connected

9 VLOA1 LOA Stage1 Drain Bias

10 VLOA2 LOA Stage2 Drain Bias

11 N/C Not Connected

12 N/C Not Connected

13 VC1 Control Line Number 1 (See Bias Sequence Description)

14 VC2 Control Line Number 2 (See Bias Sequence Description)

15 VG2 MPA Gate Bias

16 VMPA MPA Drain Bias

17 N/C Not Connected

18 GND Ground

19 RFOUT RF Output. AC Coupled and Matched to 50 Ω

20 GND Ground

21 N/C Not Connected

22 N/C Not Connected

23 N/C Not Connected

24 VLPA1, VLPA2 LPA Stage 1, 2 Drain Bias

25 VG1 LPA Stage 1, 2 Gate Bias

26 N/C Not Connected

27 Q IF Q Input

28 GND Ground

29 N/C Not Connected

30 I IF I Input

31 GND Ground

32 N/C Not Connected

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 11 of 13 www.qorvo.com Package Marking and Dimensions All dimensions are in millimeters Marking: RFUV1703: Part number YY: Part Assembly year WW: Part Assembly week

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 12 of 13 www.qorvo.com Recommended Soldering Profile Assembly Notes Compatible with lead-free soldering processes with 260°C peak reflow temperature. This package is air-cavity and non-hermetic, and therefore cannot be subjected to aqueous washing. The use of no -clean solder to avoid washing after soldering is highly recommended. Contact plating: Ni-Au. Solder rework not recommended.

21 GHz to 26.5 GHz GaAs MMIC IQ Upconverter Data Sheet Rev. G, June 2020 | Subject to change without notice 13 of 13 www.qorvo.com Handling Precautions Parameter Rating Standard Caution! ESD-Sensitive Device ESD – Human Body Model (HBM) Class 1A JESD22-A114 ESD – Charged Device Model (CDM) Class C2 JESDE22-C101C MSL – Convection Reflow 260 °C Level 2 JEDEC standard IPC/JEDEC J-STD-020 RoHS Compliance This part is compliant with 2011/65/EU RoHS directive (Restrictions on the Use of Certain Hazardous Substances in Electrical and Electronic Equipment) as amended by Directive 2015/863/EU. This product also has the following attributes:

  • Lead Free
  • Antimony Free
  • TBBP-A (C15H12Br402) Free
  • PFOS Free
  • SVHC Free Contact Information For the latest specifications, additional product information, worldwide sales and distribution locations: Web: www.qorvo.com Tel: 1-844-890-8163 Email: customer.support@qorvo.com Important Notice The information contained herein is believed to be reliable; however, Qorvo makes no warranties regarding the information contained herein and assumes no responsibility or liability whatsoever for the use of the information contained herein. All information contained herein is subject to change without notice. Customers should obtain and verify the latest relevant information before placing orders for Qorvo 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. THIS INFORMATION DOES NOT CONSTITUTE A WARRANTY WITH RESPECT TO TH E PRODUCTS DESCRIBED HEREIN, AND QORVO HEREBY DISCLAIMS ANY AND ALL WARRANTIES WITH RESPECT TO SUCH PRODUCTS WHETHER EXPRESS OR IMPLIED BY LAW, COURSE OF DEALING, COURSE OF PERFORMANCE, USAGE OF TRADE OR OTHERWISE, INCLUDING THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. Without limiting the generality of the foregoing, Qorvo products are not warranted or authorized for use as critical components in medical, life -saving, or life-sustaining applications, or other application s where a failure would reasonably be expected to cause severe personal injury or death. Copyright 2020 © Qorvo, Inc. | Qorvo is a registered trademark of Qorvo, Inc.