RFUV1703 RFMD | Alldatasheet
Document overview
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Technical content
Features
RF Frequency: 21GHz to 26.5GHz LO Frequency (LSB): 10.5GHz to 15.2GHz LO Frequency (USB): 8.5GHz to 13.25GHz IF Frequency: DC to 4GHz Conversion Gain (Max): 21dB Conversion Gain (Min): -10dB NF (Max. Gain): 12dB OIP3 (Max. Gain): +27dBm Image Rejection: 15dBc
Applications
Point-to-Point VSAT DS130313 Package: QFN, 32-Pin, 5mm x 5mm x 0.95mm RFUV1703 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
7628 Thorndike Road, Greensboro, NC 27409-9421 · For sales or technical
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. Nominal Operating Parameters Absolute Maximum Ratings Parameter Rating Unit LPA Drain Voltage V D 6 V LOA Drain Voltage 6 V IF Input Power 15 dBm LO Input Power 15 dBm TOPER -55 to +85 RC TSTOR -65 to +150 RC ESD Human Body Model Class 1A Parameter Specification Unit Condition Min. Typ. 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 4.0 GHz LO input Drive 0 dBm Conversion Gain (Max.) 21 dB Conversion Gain (Min.) -10 dB NF (Max. Gain) 12 dB OIP3 (Max. Gain) 27 dBm Image Rejection 15 dBc LO Leakage at RF-Port (Max. Gain) -5 dBm With IQ bias LO Return Loss 10 dB RF Return Loss 10 dB VLOA 4 V VLPA 3.5 V VMPA 4.5 V ILOA 205 mA ILPA12 120 mA IMPA 120 mA ITOTAL 445 mA VC1 ,V C2 -4 0 V Caution! ESD sensitive device. 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. Specified typical perfor- mance or functional operation of the device under Absolute Maximum Rating condi- tions is not implied. The information in this publication is believed to be accurate and reliable. However, no responsibility is assumed by RF Micro Devices, Inc. ("RFMD") for its use, nor for any infringement of patents, or other rights of third parties, resulting from its use. No license is granted by implication or otherwise under any patent or patent rights of RFMD. RFMD reserves the right to change component circuitry, recommended appli- cation circuitry and specifications at any time without prior notice. RFMD Green: RoHS compliant per EU Directive 2002/95/EC, halogen free per IEC 61249-2-21, < 1000ppm each of antimony trioxide in polymeric materials and red phosphorus as a flame retardant, and <2% antimony in solder.
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. Test Conditions and Bias Sequence Measurements performed with I and Q (IF) ports connected to an external 90° Hybrid, LO Power = 0dBm and IF = 2.5GHz, -10dBm, unless otherwise stated. V LOA1 = V LOA2 = 4V, I LOA1, 2 = 205mA; V LPA12 = 3.5V, Adjust V G1 around -0.4V to get I LPA12 = 120mA; VMPA = 4.5V, Adjust V G2 to get I MPA = 120mA; I TOTAL = 445mA, V C1 = V C2 = -4V Typical Electrical Performance Measurements performed with I and Q (IF) ports connected to an external 90° Hybrid, LO Power = 0dBm and IF = 2.5GHz, -10dBm, unless otherwise stated. USB Conversion Gain, Image Rejection and OIP3 VLOA1 = V LOA2 = 4V, I LOA1, 2 = 205mA; V LPA12 = 3.5V, Adjust V G1 around -0.4V to get I LPA12 = 120mA; VMPA = 4.5V, Adjust V G2 to get I MPA = 120mA; I TOTAL = 445mA, V C1 = V C2 = -4V Typical Bias Sequence GMAX GMIN VC1 (V) -4 -2 -1 0 0 0 0 More dynamic range can be achieved using V G2 over (-0.4 to -1V) and V G1 over (-0.4 to -1V) 21 22 23 24 25 26 27 ConversionRgcGainRgc(dB) RFRgcFrequencyRgc(GHz) USBRgcConversionRgcGainRgcversusRgcRFRgcFrequency 21 22 23 24 25 26 27 OIP3RgcatRgcGmaxRgc(dBm) RFRgcFrequencyRgc(GHz) USBRgcOIP3RgcatRgcGmaxRgcversusRgcRFRgcFrequency 21 22 23 24 25 26 27 ImageRgcRejectionRgc(dBc) RFRgcFrequencyRgc(GHz) USBRgcImageRgcRejectionRgcversusRgcRFRgcFrequency
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. USB OIP3 versus Conversion Gain VLOA1 = V LOA2 = 4V, I LOA1, 2 = 205mA; V LPA12 = 3.5V, Adjust V G1 around -0.4V to get I LPA12 = 120mA; VMPA = 4.5V, Adjust V G2 to get I MPA = 120mA; I TOTAL = 445mA, V C1 = V C2 = -4V Typical Bias Sequence GMAX GMIN VC1 (V) -4 -2 -1 0 0 0 0 More dynamic range can be achieved using V G2 over (-0.4 to -1V) /g88210 /g8825 0 5 10 15 20 25 OIP3rga(dBm) ConversionrgaGainrga(dB) OIP3rgaversusrgaConversionrgaGainrgaatrga25°C (USBrga26GHzrgaBand) 26.5GHz 25.5GHz 24.5GHz /g88210 /g8825 0 5 10 15 20 25 OIP3rga(dBm) ConversionrgaGainrga(dB) OIP3rgaversusrgaConversionrgaGainrgaatrga25°C (USBrga23GHzrgaBand) 23.6GHz 22.4GHz 21.2GHz
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. USB LO Leakage VLOA1 = V LOA2 = 4V, I LOA1, 2 = 205mA; V LPA12 = 3.5V, Adjust V G1 around -0.4V to get I LPA12 = 120mA; VMPA = 4.5V, Adjust V G2 to get I MPA = 120mA; I TOTAL = 445mA, V C1 = V C2 = -4V /g88215 /g88210 /g8825 22 22.5 23 23.5 24 x2)guLO)guLeakage)guat)guGmax)gu(dBm) x2)guLO)guFrequency)gu(GHz) USB)gux2)guLO)guat)guGmax)guversus)gux2)guLO)guFrequency)gu (26GHz)guBand) /g88215 /g88210 /g8825 18.5 19 19.5 20 20.5 21 21.5 x2)guLO)guLeakage)guat)guGmax)gu(dBm) x2)guLO)guFrequency)gu(GHz) USB)gux2)guLO)guat)guGmax)guversus)gux2)guLO)guFrequency)gu (23GHz)guBand)
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. Over Temperature Performance (USB) VLOA1 = V LOA2 = 4V, I LOA1, 2 = 205mA; V LPA12 = 3.5V, Adjust V G1 around -0.4V to get I LPA12 = 120mA; VMPA = 4.5V, Adjust V G2 to get I MPA = 120mA; I TOTAL = 445mA 21 22 23 24 25 26 27 ConversionRgcGainRgc(dB) RFRgcFrequencyRgc(GHz) MaxRgcConversionRgcGainRgcversusRgcRFRgcFrequency OverRgcTemperatureRgc(USB) 25°C /g88240°C 85°C Vc1=/g8824V Vc2=/g8824V 21 22 23 24 25 26 27 OIP3RgcRgc(dBm) RFRgcFrequencyRgc(GHz) OIP3RgcatRgcGmaxRgcversusRgcRFRgcFrequency OverRgcTemperatureRgc(USB) 25°C /g88240°C 85°C Vc1=/g8824V Vc2=/g8824V /g88210 /g8828 /g8826 /g8824 /g8822 21 22 23 24 25 26 27 ConversionRgcGainRgc(dB) RFRgcFrequencyRgc(GHz) 25°C /g88240°C 85°C Vc1=0V Vc2=0V ConversionRgcGainRgcversusRgcRFRgcFrequency OverRgcTemperatureRgcatRgcRgxxu5dBRgcCGRgcsetRgcpointRgc(USB) 21 22 23 24 25 26 27 OIP3RgcRgc(dBm) RFRgcFrequencyRgc(GHz) OIP3RgcatRgcRgxxu5dBRgcCGRgcversusRgcRFRgcFrequency OverRgcTemperatureRgc(USB) 25°C /g88240°C 85°C Vc1=0V Vc2=0V
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. LSB Conversion Gain, Image Rejection, and OIP3 VLOA1 = V LOA2 = 4V, I LOA1, 2 = 205mA; V LPA12 = 3.5V, Adjust V G1 around -0.4V to get I LPA12 = 120mA; VMPA = 4.5V, Adjust V G2 to get I MPA = 120mA; I TOTAL = 445mA, V C1 = V C2 = -4V 21 22 23 24 25 26 27 ConversionRgcGainRgc(dB) RFRgcFrequencyRgc(GHz) LSBRgcConversionRgcGainRgcversusRgcRFRgcFrequency 21 22 23 24 25 26 27 OIP3RgcatRgcGmaxRgc(dBm) RFRgcFrequencyRgc(GHz) LSBRgcOIP3RgcatRgcGmaxRgcversusRgcRFRgcFrequency 21 22 23 24 25 26 27 ImageRgcRejectionRgc(dBc) RFRgcFrequencyRgc(GHz) LSBRgcImageRgcRejectionRgcversusRgcRFRgcFrequency
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. LSB LO Leakage VLOA1 = V LOA2 = 4V, I LOA1, 2 = 205mA; V LPA12 = 3.5V, Adjust V G1 around -0.4V to get I LPA12 = 120mA; VMPA = 4.5V, Adjust V G2 to get I MPA = 120mA; I TOTAL = 445mA, V C1 = V C2 = -4V I BIAS = -42mV Q BIAS = 0mV I BIAS = -56mV Q BIAS = 0mV /g88225 /g88220 /g88215 /g88210 /g8825 27 27.5 28 28.5 29 x2)guLO)guLeakage)guat)guGmax)gu(dBm) x2)guLO)guFrequency)gu(GHz) LSB)gux2)guLO)guat)guGmax)guversus)gux2)guLO)guFrequency)gu (26GHz)guBand) /g88225 /g88220 /g88215 /g88210 /g8825 23.5 24 24.5 25 25.5 26 26.5 x2)guLO)guLeakage)guat)guGmax)gu(dBm) x2)guLO)guFrequency)gu(GHz) LSB)gux2)guLO)guat)guGmax)guversus)gux2)guLO)guFrequency)gu (23GHz)guBand)
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. Performance Using Single Control Line (without IQ bias)_1 VMPA = 4.5V, V LPA12 = 3.5V, V LOA1 = V LOA2 = 4V, I total = 445mA, V G1 = V G2 = -0.4V VC1 and V C2 are connected together off chip and changes over (-4V to 0V) Performance Using Double Control Line (without IQ bias)_2 VMPA = 4.5V, V LPA12 = 3.5V, V LOA1 = V LOA2 = 4V, I total = 445mA, V G1 = V G2 = -0.4V VC1 and V C2 are separately controlled and changes over (-4V to 0V) vgBBs5 vgBBs4vgivgBBsvgivgBBs4 vgBBs3vgivgBBsvgivgBBs3 vgBBs2.5vgivgBBsvgivgBBs2.5 vgBBs2vgivgBBsvgivgBBs2 vgBBs1.5vgivgBBsvgivgBBs1.5 vgBBs1vgivgBBsvgivgBBs1 vgBBs0.8vgivgBBsvgivgBBs0.8 vgBBs0.6vgivgBBsvgivgBBs0.6 vgBBs0.4vgivgBBsvgivgBBs0.4 vgBBs0.2vgivgBBsvgivgBBs0.2 0vgivgBBsvgi0 ConversionvgivgiGainvgi(dB) RFvgiFrequencyvgi(GHz) USBvgiConversionvgiGainvgiversusvgiFrequency VC1vgivgBBsVC2vgivgivgivgi(V) vgBBs4vgivgBBsvgivgBBs4 vgBBs3vgivgBBsvgivgBBs3 vgBBs2.5vgivgBBsvgivgBBs2.5 vgBBs2vgivgBBsvgivgBBs2 vgBBs1.5vgivgBBsvgivgBBs1.5 vgBBs1vgivgBBsvgivgBBs1 vgBBs0.8vgivgBBsvgivgBBs0.8 vgBBs0.6vgivgBBsvgivgBBs0.6 vgBBs0.4vgivgBBsvgivgBBs0.4 vgBBs0.2vgivgBBsvgivgBBs0.2 0vgivgBBsvgi0 RFvgiFrequencyvgi(GHz) OIP3vgi(dBm) USBvgiOIP3vgiversusvgiFrequencyvgi VC1vgivgBBsVC2vgivgivgivgi(V) vgBBs5.0 0.0 5.0 10.0 15.0 20.0 25.0 vgBBs4vgivgBBsvgivgBBs4 vgBBs3vgivgBBsvgivgBBs4 vgBBs2vgivgBBsvgivgBBs4 vgBBs1vgivgBBsvgivgBBs4 vgBBs1vgivgBBsvgivgBBs3 vgBBs1vgivgBBsvgivgBBs2 vgBBs1vgivgBBsvgivgBBs1 vgBBs1vgivgBBsvgivgBBs0.3 vgBBs1vgivgBBsvgi0 0vgivgBBsvgivgBBs4 0vgivgBBsvgivgBBs3 0vgivgBBsvgivgBBs2 0vgivgBBsvgivgBBs1 0vgivgBBsvgi0 USBvgiConversionvgiGainvgiversusvgiFrequency ConversionvgivgiGainvgi(dB) RFvgiFrequencyvgi(GHz) VC1vgi , VC2vgivgivgi(V) 0.0 5.0 10.0 15.0 20.0 25.0 30.0 35.0 vgBBs4vgivgBBsvgivgBBs4 vgBBs3vgivgBBsvgivgBBs4 vgBBs2vgivgBBsvgivgBBs4 vgBBs1vgivgBBsvgivgBBs4 vgBBs1vgivgBBsvgivgBBs3 vgBBs1vgivgBBsvgivgBBs2 vgBBs1vgivgBBsvgivgBBs1 vgBBs1vgivgBBsvgivgBBs0.3 vgBBs1vgivgBBsvgi0 0vgivgBBsvgivgBBs4 0vgivgBBsvgivgBBs3 0vgivgBBsvgivgBBs2 0vgivgBBsvgivgBBs1 0vgivgBBsvgi0 OIP3vgi(dBm) RFvgiFrequencyvgi(GHz) USBvgiOIP3vgiversusvgiFrequencyvgi VC1vgi ,VC2vgivgivgi(V)
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. Performance Using Single Control on V G1 = V G2 (without IQ bias)_3 VMPA = 4.5V, V LPA12 = 3.5V, V LOA1 = V LOA2 = 4V, V C1 = V C2 = -4V VG1 and V G2 are connected together off chip and changes over (-0.3V to -1V) /gGGn20.0 /gGGn15.0 /gGGn10.0 /gGGn5.0 0.0 5.0 10.0 15.0 20.0 25.0 30.0 218 226 239 253 270 290 309 331 352 375 399 424 448 473 499 RFCgiFrequencyCgi(GHz) ConversionCgiGainCgi(dB) USB/gvConversion/gvGain/gvversus/gvRF Frequency With/gv(V G1/gv +/gvV G2 )/gvVariation I_Total/gv/gv/gv(mA) /gGGn15.0 /gGGn10.0 /gGGn5.0 0.0 5.0 10.0 15.0 20.0 25.0 30.0 35.0 40.0 218 226 239 253 270 290 309 331 352 375 399 424 448 473 499 RFCgiFrequencyCgi(GHz) OIP3Cgi(dBm) USB/gvOIP3/gv/gvversus/gvRF Frequency/gv With/gv(V G1 +/gvV G2 )/gvVariation I_Total/gv/gv/gv(mA) /gGGn40 /gGGn35 /gGGn30 /gGGn25 /gGGn20 /gGGn15 /gGGn10 /gGGn5 218 226 239 253 270 290 309 331 352 375 399 424 448 473 499 X2LOFrequencyCgi(GHz) LOCgiLeakageCgi(dBm) USB/gvX2/gvLO Leakage versus/gvX2 LO/gvFrequency With/gv(V G1 +/gvV G2 )/gvVariation/gv/gvNo/gvIQ/gvBIAS I_Total/gv/gv/gv(mA)
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. Package Outline Drawing QFN, 32-Pin, 5mm x 5mm x 0.95mm 5.000±0.150 3.500±0.100 4.400±0.100 0.320±0.100 0.300±0.100 0.500±.050 0.130 3.500±0.100 4.400±0.100
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. Pin Names and Description Pin Name Description
1 N/C Not Connected
2 GND Ground
3 LO Local Oscillator Input. AC Coupled and Matched to 50 :
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 :
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
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. Application Circuit Block Diagram 2*LO - IF = RF (LSB), LO = 10.5 to 15.25GHz 2*LO + IF = RF (USB), LO = 8.5GHz to 13.25GHz Notes: 1. External components for IQ biases are required. 2. External hybrid coupler is required. PACKAGE GND 32 31 30 29 28 27 26 25 9 10 11 12 13 14 15 16 IF IN 200pF Q bias 200pF I bias 100 nH 100 nH 100pF 100nF Vg1 1uF RF OUT 100pF 100nF 1uF 100pF 100nF 1uF 100pF 100nF 1uF VLOA2 100pF 100nF 1uF 100pF 100nF 1uF 100pF 100nF 1uF VC1 VC2 Vg2 LO IN 100pF 100nF 1uF VLOA1
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com. Evaluation Board Layout Sub-Band Frequency Ranges Band Frequency Range 23GHz 21.2GHz to 23.6GHz 26GHz 24.5GHz to 26.5GHz VLOA1 VLOA2 VC1 VC2 VG2 VMPA NC GND GND GND VG1 VLPA2