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Data Sheet Rev I, June 2020 | Subject to change without notice 1 of 25 www.qorvo.com Product Description The QORVO TGC4510-SM is a K -Band image reject upconverter mixer with integrated x2 LO buffer amplifier and output variable gain amplifier. The TGC4510 -SM outputs an RF frequency from 17.7 to 26.5 GHz using IF inputs fr om DC to 4.0 GHz and a corresponding LO frequency. It is designed using QORVO’s pHEMT production process. The TGC4510-SM typically provides 32 dBm of output TOI at –10 dBm input power per tone and has a conversion gain of 13 dB. Optional nulling of the L O can improve LO Isolation by 30 dB. The TGC4510 -SM is available in a low -cost, surface mount 28 lead 5x5mm QFN package and is ideally suited for Point -to-Point Radio, and K -Band VSAT Ground Terminal. Lead-free and RoHS compliant. 28-pin 5x5 mm QFN package Product Features
- RF Frequency Range: 17.7 – 26.5 GHz
- IF Frequency: DC – 4.0 GHz
- LO Frequency: 6.85 – 15.25 GHz
- LO Input Power: 2 to 10 dBm
- Conversion Gain: 13 dB
- OTOI: 32 dBm at max gain
- Attenuation Range: 30 dB typical
- Bias 5.0 V, 360 mA, 3.3 V, 180 mA
- Package Dimensions: 5.0 x 5.0 x 1.3 mm Performance is typical across frequency. Please reference electrical specification table and data plots for more details.
Ordering Information
Part No. Description TGC4510-SM Ku-Band Upconverter
1119047 Shipping Tray, Qty 50
1098636 Tape and Reel, Qty 500
TGC4510-SMEVBLL TGC4510-SM EVB LSB, Low IF Band, 1.3 to 2.45 GHz TGC4510-SMEVBLH TGC4510-SM EVB LSB, High IF Band, 2.5 to 4.0 GH TGC4510-SMEVBUL TGC4510-SM EVB USB, Low IF Band, 1.3 to 2.45 GHz TGC4510-SMEVBUH TGC4510-SM EVB USB, High IF Band, 2.5 to 4.0 GHz Function Block Diagram
Applications
- VSAT Ground Terminal
- Point-to-Point Radio
- Millimeter Wave Communications
Data Sheet Rev I, June 2020 | Subject to change without notice 2 of 25 www.qorvo.com Absolute Maximum Ratings Parameter Rating Parameter Rating VDRF, VDLO1, VDLO23 + 6 V LO Nulling DC Voltage at IF1, IF2 -2 to +2 V IDRF 390 mA Input Power at LO Port, 50Ω, T = 25C 15 dBm IDLO1 190 mA Input Power at IF Port, 50Ω, T = 25C 18 dBm IDLO23 300 mA Power Dissipation, Pdiss 2 W VGRF, VGLO, VGX -3 to +1.5 V Channel Temperature, Tch 200 C VCTRL1, VCTRL2 + 3 to 0 V Storage Temperature -65 to 125C These are stress ratings only, functional operation of the device at these conditions is not implied. Extended application of Absolute Maximum Rating conditions may reduce device reliability. Operation of this device outside the parameter ranges given above may cause permanent damage. Recommended Operating Conditions Parameter 1 Min Typ Max Units Parameter 1 Min Typ. Max Units Operating Temp. Range -40 +25 +85 C VGLO 3 -0.7 V VDRF 5 V VCTRL1, VCTRL2 (max gain) 4 -2 0 V VGRF 2 -0.75 V VCTRL1, VCTRL2 (min gain) 4 0 -2 V IDRF 360 mA Vi, Vq 5 -1 1 V VDLO1, VDLO23 3.3 V VGX -1.2 V IDLO1 + IDLO23 140 180 200 mA LO Input Power 3 6 9 dBm 1 Electrical specification are measured at specified test conditions. Specifications are not guaranteed over all recommended operating conditions. 2 VGRF value is typical, can be adjusted to get required IDRF. 3 VGLO value is typical, can be adjusted to get required IDLO1+IDLO23. 4 VCTRL1 and VCTRL2 can be adjusted to achieve required conversion gain. 5 Vi and Vq can be adjusted to achieve required LO isolations, optional.
Data Sheet Rev I, June 2020 | Subject to change without notice 3 of 25 www.qorvo.com Electrical Specifications Test conditions unless otherwise noted: VDLO1, VDLO23 = + 3.3 V, VGLO = -0.7 V, IDLO1 + IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = -1.2 V, T = 25 °C Parameter Conditions Min Typ Max Units RF Frequency Range 17.7 26.5 GHz LO Frequency Range 6.85 15.25 GHz IF Frequency Range 0 4 GHz Conversion Gain 1/ 17.7 GHz to 26.5 GHz 13 dB Conversion Gain 1/ 17.7 GHz to 23.6 GHz 9.5 13 17.5 dB Attenuation Range 2/ 34 dB SSB Noise Figure 15 dB OIP3 17.7 GHz to 26.5 GHz 27.5 32 dBm OIP3 17.7 GHz to 23.6 GHz 27.5 32 dBm IIP3 at Minimum Gain 13 dBm Image Rejection 15 dB LO Isolation at RF Port 3/ Without external LO nulling voltage -5 dB LO Isolation at RF Port 3/ With external LO nulling voltage 25 dB LO Return Loss 12 dB RF Return Loss 11 dB Notes: 1/ At Maximum gain. 2/ Maximum gain at VCTL1 = -2 V, VCTL2 = 0 V; Minimum gain at VCTL1 = 0 V, VCTL2 = -2 V 3/ LO Isolation = (Input Power at LO Port at LO Frequency) – (Output Power at RF port at 2xLO frequency) Frequency Mapping Lower Side Band Frequency Ranges IF Freq GHz LO Freq GHz RF Freq GHz 0.5 9-14 17.5-27.5 1.0 9-14 17-27 2.0 9-14 16-26 3.0 10-15 17-27 4.0 10-16 16-28 Upper Side Band Frequency Ranges IF Freq GHz LO Freq GHz RF Freq GHz 0.5 8-14 16.5-28.5 1.0 8-13 17-28 2.0 7-13 16-28 3.0 6.5-12 16-27 4.0 6.5-11 17-26 State VCTRL1 V VCTRL2 V Max Gain -2 0 Reduced Gain -1.0 -1.0 Min Gain 0 -2
Data Sheet Rev I, June 2020 | Subject to change without notice 4 of 25 www.qorvo.com Thermal and Reliability Information Parameter Conditions Rating Thermal Resistance, θJC, measured to back of package Tbase = 85 °C θJC = 19.6 °C/W Channel Temperature (Tch), and Median Lifetime (Tm) Tbase = 85 °C, VDLO = 3.0 V, IDLO=260 mA, VDRF = 5.0 V, IDRF=360 mA, Pdiss = 2.6 W Tch = 136 °C Tm = 5.2 E+06 Hours
Data Sheet Rev I, June 2020 | Subject to change without notice 5 of 25 www.qorvo.com 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) LSB Conversion Gain vs. RF vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) USB Conversion Gain vs. RF vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm -10 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) LSB Conversion Gain vs. RF vs. IF and LO Power State: Reduced Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm -10 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) USB Conversion Gain vs. RF vs. IF and LO Power State: Reduced Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm -30 -28 -26 -24 -22 -20 -18 -16 -14 -12 -10 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) LSB Conversion Gain vs. RF vs. IF and LO Power State: Min Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm -30 -28 -26 -24 -22 -20 -18 -16 -14 -12 -10 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) USB Conversion Gain vs. RF vs. IF and LO Power State: Min Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm Performance Plots Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied
Data Sheet Rev I, June 2020 | Subject to change without notice 6 of 25 www.qorvo.com 17 18 19 20 21 22 23 24 25 26 27 Attenuation (dB) RF Frequency (GHz) LSB Attenuation vs. RF vs. IF and LO Power Min to Max Gain State IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Attenuation (dB) RF Frequency (GHz) USB Attenuation vs. RF vs. IF and LO Power Min to Max Gain State IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) LSB Image Rejection vs. RF vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) USB Image Rejection vs. RF vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) LSB Image Rejection vs. RF vs. IF and LO Power State: Reduced Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) USB Image Rejection vs. RF vs. IF and LO Power State: Reduced Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm Performance Plots Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied.
Data Sheet Rev I, June 2020 | Subject to change without notice 7 of 25 www.qorvo.com 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) LSB Image Rejection vs. RF vs. IF and LO Power State: Min Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) USB Image Rejection vs. RF vs. IF and LO Power State: Min Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Output 1dB Compression (dBm) RF Frequency (GHz) LSB Output P1dB vs. RF vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Output 1dB Compression (dBm) RF Frequency (GHz) USB Output P1dB vs. RF vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) LSB Output IP3 vs. RF vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) USB Output IP3 vs. RF vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm Performance Plots Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied.
Data Sheet Rev I, June 2020 | Subject to change without notice 8 of 25 www.qorvo.com Performance Plots IF Input Power = -10 dBm, VDLO = 5 V, IDLO = 60 mA, VDRF = 5 V, IDRF = 240 mA, VGX = -1.2 V, VREF = 2 V. Data taken with external IF hybrid and LO nulling applied. Performance Plots Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied. 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) LSB Output IP3 vs. RF vs. IF and LO Power State: Reduced Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) USB Output IP3 vs. RF vs. IF and LO Power State: Reduced Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm -25 -20 -15 -10 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) LSB Output IP3 vs. RF vs. IF and LO Power State: Min Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm -25 -20 -15 -10 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) USB Output IP3 vs. RF vs. IF and LO Power State: Min Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm
Data Sheet Rev I, June 2020 | Subject to change without notice 9 of 25 www.qorvo.com Performance Plots Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied. -10 100 9 10 11 12 13 14 15 16 Isolation (dB) LO Frequency (GHz) LSB LO-to-RF Isolation vs. LO Freq vs. LO Power and State Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm 100 6 7 8 9 10 11 12 13 14 Isolation (dB) LO Frequency (GHz) USB LO-to-RF Isolation vs. LO Freq vs. LO Power and State Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm 100 9 10 11 12 13 14 15 16 Isolation (dB) LO Frequency (GHz) LSB LO-to-IF Isolation vs. LO Freq vs. LO Power and State Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm 100 6 7 8 9 10 11 12 13 14 Isolation (dB) LO Frequency (GHz) USB LO-to-IF Isolation vs. LO Freq vs. LO Power and State Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm 100 9 10 11 12 13 14 15 16 Isolation (dB) LO Frequency (GHz) LSB IF-to-RF Isolation vs. LO Freq vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 100 6 7 8 9 10 11 12 13 14 Isolation (dB) LO Frequency (GHz) USB IF-to-RF Isolation vs. LO Freq vs. IF and LO Power State: Max Gain IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm
Data Sheet Rev I, June 2020 | Subject to change without notice 10 of 25 www.qorvo.com Performance Plots Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied. -80 -70 -60 -50 -40 -30 -20 -10 9 10 11 12 13 14 15 16 2LO-to-RF Leakage (dBm) LO Frequency (GHz) LSB 2LO-to-RF Leakage vs. LO Freq vs. LO Power and State Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm -80 -70 -60 -50 -40 -30 -20 -10 6 7 8 9 10 11 12 13 14 2LO-to-RF Leakage (dBm) LO Frequency (GHz) USB 2LO-to-RF Leakage vs. LO Freq vs. LO Power and State Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm -80 -70 -60 -50 -40 -30 -20 -10 9 10 11 12 13 14 15 16 2LO-to-IF Leakage (dBm) LO Frequency (GHz) LSB 2LO-to-IF Leakage vs. LO Freq vs. LO Power and State Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm -80 -70 -60 -50 -40 -30 -20 -10 6 7 8 9 10 11 12 13 14 2LO-to-IF Leakage (dBm) LO Frequency (GHz) USB 2LO-to-IF Leakage vs. LO Freq vs. LO Power and State Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm 100 17 18 19 20 21 22 23 24 25 26 27 RF-to-IF Isolation (dB) RF Frequency (GHz) RF-to-IF Isolation vs. RF Freq vs. LO Power and State IF1 port, without external IF Hybrid Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm 100 17 18 19 20 21 22 23 24 25 26 27 RF-to-IF Isolation (dB) RF Frequency (GHz) RF-to-IF Isolation vs. RF Freq vs. LO Power and State IF2 port, without external IF Hybrid Max Gain Reduced Gain Min Gain LO 3 dBm LO 6 dBm LO 9 dBm
Data Sheet Rev I, June 2020 | Subject to change without notice 11 of 25 www.qorvo.com Performance Plots – Return Loss Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C 17 18 19 20 21 22 23 24 25 26 27 RF Frequency (GHz) Return Loss (dB) State: Max Gain LSB RF Return Loss vs. IF and LO Power IF Freq 0.5 GHz IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 RF Frequency (GHz) Return Loss (dB) State: Max Gain USB RF Return Loss vs. RF vs. IF and LO Power IF Freq 0.5 GHz IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 RF Frequency (GHz) Return Loss (dB) State: Min Gain LSB RF Return Loss vs. RF vs. IF and LO Power IF Freq 0.5 GHz IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 17 18 19 20 21 22 23 24 25 26 27 RF Frequency (GHz) Return Loss (dB) State: Min Gain USB RF Return Loss vs. RF vs. IF and LO Power IF Freq 0.5 GHz IF Freq 1.0 GHz IF Freq 2.0 GHz IF Freq 3.3 GHz IF Freq 4.0 GHz LO 3 dBm LO 6 dBm LO 9 dBm 6 8 10 12 14 16 LO 3 dBm LO 6 dBm LO 9 dBm LO Return Loss vs. Frequency and LO Power Return Loss (dB) LO Frequency (GHz)
Data Sheet Rev I, June 2020 | Subject to change without notice 12 of 25 www.qorvo.com Performance Plots - External LO Nulling Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. -30 -20 -10 12 14 16 18 20 22 24 26 28 30 2×LO to RF Leakage (dBm) 2×LO Frequency (GHz) 2×LO to RF Leakage WITHOUT External LO Nulling Voltages State: Max Gain LO = 2.0 dBm LO = 9.0 dBm -70 -65 -60 -55 -50 -45 -40 -35 -30 -25 -20 12 14 16 18 20 22 24 26 28 30 2×LO to RF Leakage (dBm) 2×LO Frequency (GHz) 2×LO to RF Leakage WITH External LO Nulling Voltages State: Max Gain LO = 2.0 dBm LO = 9.0 dBm -1.5 -0.5 0.5 1.5 9 10 11 12 13 14 15 16 Voltage (V) LO Frequency (GHz) LSB LO Nulling Voltage vs. LO Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz Vi @ -40°C Vi @ +25°C Vi @ +85°C Vq @ -40°C Vq @ +25°C Vq @ +85°C -1.5 -0.5 0.5 1.5 6 7 8 9 10 11 12 13 14 Voltage (V) LO Frequency (GHz) USB LO Nulling Voltage vs. LO Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz Vi @ -40°C Vi @ +25°C Vi @ +85°C Vq @ -40°C Vq @ +25°C Vq @ +85°C -15 -10 9 10 11 12 13 14 15 16 Current (mA) LO Frequency (GHz) LSB Current for LO Nulling Voltage vs. LO Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz Ii @ -40°C Ii @ +25°C Ii @ +85°C Iq @ -40°C Iq @ +25°C Iq @ +85°C -15 -10 6 7 8 9 10 11 12 13 14 Current (mA) LO Frequency (GHz) USB Current for LO Nulling Voltage vs. LO Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz Ii @ -40°C Ii @ +25°C Ii @ +85°C Iq @ -40°C Iq @ +25°C Iq @ +85°C
Data Sheet Rev I, June 2020 | Subject to change without notice 13 of 25 www.qorvo.com Performance Plots – Conversion Gain vs. Temperature Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied. 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) LSB Conversion Gain vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 1 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) LSB Conversion Gain vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 2 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) USB Conversion Gain vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 2 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) LSB Conversion Gain vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) USB Conversion Gain vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Conversion Gain (dB) RF Frequency (GHz) USB Conversion Gain vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 1 GHz -40°C +25°C +85°C
Data Sheet Rev I, June 2020 | Subject to change without notice 14 of 25 www.qorvo.com Performance Plots – Image Rejection vs. Temperature Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) LSB Image Rejection vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 1 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) USB Image Rejection vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 1 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Image Rejection(dB) RF Frequency (GHz) LSB Image Rejection vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 2 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) USB Image Rejection vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 2 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Image Rejection(dB) RF Frequency (GHz) LSB Image Rejection vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Image Rejection (dB) RF Frequency (GHz) USB Image Rejection vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz -40°C +25°C +85°C
Data Sheet Rev I, June 2020 | Subject to change without notice 15 of 25 www.qorvo.com Performance Plots – 1dB Compression vs. Temperature Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied. 17 18 19 20 21 22 23 24 25 26 27 Output 1dB Compression (dBm) RF Frequency (GHz) LSB Output P1dB vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 2 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output 1dB Compression (dBm) RF Frequency (GHz) USB Output P1dB vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 2 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output 1dB Compression (dBm) RF Frequency (GHz) LSB Output P1dB vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output 1dB Compression (dBm) RF Frequency (GHz) USB Output P1dB vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output 1dB Compression (dBm) RF Frequency (GHz) LSB Output P1dB vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 1 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output 1dB Compression (dBm) RF Frequency (GHz) USB Output P1dB vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 1 GHz -40°C +25°C +85°C
Data Sheet Rev I, June 2020 | Subject to change without notice 16 of 25 www.qorvo.com Performance Plots – Output IP3 vs. Temperature Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.5 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied. 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) LSB Output IP3 vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 1 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) USB Output IP3 vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 1 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) LSB Output IP3 vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 2 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) USB Output IP3 vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 2 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) LSB Output IP3 vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz -40°C +25°C +85°C 17 18 19 20 21 22 23 24 25 26 27 Output IP3 (dBm) RF Frequency (GHz) USB Output IP3 vs. RF Frequency vs. Temperature State: Max Gain; LO power = 6 dBm, IF = 3.3 GHz -40°C +25°C +85°C
Data Sheet Rev I, June 2020 | Subject to change without notice 17 of 25 www.qorvo.com M x N Spurious Outputs for LSB Spur tables are N fIF – M fLO mixer spurious products. RF frequency is at 2 x LO – IF. All values are in dBc below the RF output power level. IF input power = -10 dBm, LO Power = 3 to 9 dBm. If = 2.0 GHz, LO = 9.0 GHz to 13.0 GHz M x fLO 0 1 2 3 4 5 N x fIF -5 -- 86 79 70 60 63 -4 -- 85 76 74 63 61 -3 -- 84 77 70 59 60 -2 -- 82 74 66 64 61 -1 -- 81 0 63 58 61 0 -- 12 19 4 33 53 1 89 75 12 63 57 60 2 83 75 73 61 61 57 3 82 74 67 60 60 -- 4 79 76 69 63 60 -- 5 84 77 67 59 58 -- IF = 3.3 GHz, LO = 10.0 GHz to 15.0 GHz M x fLO 0 1 2 3 4 5 N x fIF -5 -- 84 80 73 64 62 -4 -- 86 79 68 61 64 -3 -- 87 78 70 64 61 -2 -- 83 71 63 61 66 -1 -- 49 0 38 63 65 0 -- -3 20 27 37 53 1 75 37 11 61 62 -- 2 84 77 64 63 63 -- 3 83 75 62 60 58 -- 4 79 74 59 60 -- -- 5 76 69 62 64 -- -- M x N Spurious Outputs for USB Spur tables are N fIF – M fLO mixer spurious products. RF frequency is at 2 x LO + IF. All values are in dBc below the RF output power level. IF input power = -10 dBm, LO Power = 3 to 9 dBm. If = 2.0 GHz, LO = 8.0 GHz to 12.0 GHz M x fLO 0 1 2 3 4 5 N x fIF -5 -- 89 77 76 65 62 -4 -- 88 76 78 65 62 -3 -- 88 79 73 64 64 -2 -- 84 68 72 61 62 -1 -- 76 14 53 54 65 0 -- 26 -13 6 32 55 1 69 59 0 42 61 63 2 88 77 66 61 63 64 3 85 79 74 64 59 66 4 85 79 71 66 65 65 5 85 79 69 62 63 61 IF = 3.3 GHz, LO = 11.0 GHz to 15.5 GHz M x fLO 0 1 2 3 4 5 N x fIF -5 -- 84 87 77 74 61 -4 -- 85 82 77 74 66 -3 -- 88 79 79 69 63 -2 -- 86 72 74 55 63 -1 -- 78 10 43 21 51 0 -- 25 -14 1 -24 49 1 59 52 0 35 33 63 2 86 77 60 64 63 62 3 85 78 69 63 61 62 4 80 78 68 61 61 61 5 77 71 62 60 63 60 Mixing Products Test conditions unless otherwise noted: VDLO1, VDLO23 = 3.3 V, VGLO = - 0.7 V, IDLO1+IDLO23 = 140 to 200 mA, VDRF = 5.0 V, VGRF = - 0.75 V, IDRF = 340 to 380 mA, VGX = - 1.2 V, 25 °C. Data taken with external IF hybrid and LO nulling applied, 25 °C.
Data Sheet Rev I, June 2020 | Subject to change without notice 18 of 25 www.qorvo.com Pin Configuration and Description Pin No. Label Description 22, 27, 28 GND Internal grounding; must be grounded on PCB. 2 RF OUT RF Output matched to 50 ohms, AC Coupled. 3, 11, 19, 20, 24 NC No internal connection; must be grounded on PCB.
4 VCTRL2 Variable gain control for RF amplifier
5 VCTRL1 Variable gain control for RF amplifier
6 VGRF Gate voltage for RF amplifier
10 IF2 IF input for upconverter
12 IF1 IF input for upconverter
16 LO IN LO input for upconverter.
17 VDLO1 Drain voltage for the first stage of the LO doubler
18 VGLO Gate bias for VDLO1 and VDLO23.
23 VDLO23 Drain voltage for stages 2 and 3 of LO doubler
25 VGX Mixer bias voltage
26 VDRF Drain voltage for the RF amplifier
29 GND Backside Paddle
Data Sheet Rev I, June 2020 | Subject to change without notice 19 of 25 www.qorvo.com Evaluation Board (EVB) Assembly Layout
Data Sheet Rev I, June 2020 | Subject to change without notice 20 of 25 www.qorvo.com Applications Circuit Bias-up Procedure Bias-down Procedure Set VGX = -1.2 V, VCTRL1 = - 2.0 V, VCTRL2 = 0 V, Set VDRF = 5.0 V, limit 390 mA, VDLO1 and VDLO23 = 3.3 V. Set VDLO1 limit to 150 mA and VDLO23 limit to 200 mA or VDLO1+VDLO23 = 350 mA Set VDLO1, VDLO23 to 0 V. Adjust VGLO to get IDLO1+IDLO23 to 180 mA. Set VDRF to 0 V. Adjust VGRF to get RF amplifier current (VDRF) of 360 mA. Set Vi, Vq to 0 V if used LO nulling. Apply LO and IF signals. Set VGLO, VGRF, VGX to 0 V. If using external control for LO nulling, adjust Vi and Vq for optimum LO suppression, adjust VCTRl1 and VCTRL2 to get required conversion gain. Set VCTRL1, VCTRL2 to 0 V.
Data Sheet Rev I, June 2020 | Subject to change without notice 21 of 25 www.qorvo.com Note: Due to bandwidth limitations of IF quad coupler, two versions of coupler were used on EVBs, users need to choose low or high band of IF to be used, in addition to LSB and USB selection. Refer to ordering information section for details. Application Circuit Components Bill of Material Ref Des Value Description Manufacturer Part Number C1 – C9, C13 100 pF Cap, 0603, 25 V, +/- 5%, NPO various C10 – C12, C14 – C18 1 µF Cap, 0603, 25 V, 10%, X7R various L1 – L2 27 nH Ind, 0603, 2%, 0.6A, SMD various R5 0 Ω Res, 0402, 1/10 W, 5%, SMD various Q1 Ku-Band Up-Converter QORVO TGC4510-SM LSB Configuration Ref Des Value Description Manufacturer Part Number X1 (For Low IF) IF Quad Coupler, 1.35 to 2.45 GHz Mini-Circuits QCN-25+ X1 (For High IF) IF Quad Coupler, 2.5 to 4.0 GHz Mini-Circuits QCN-45+ R1 0 Ω Res, 0402, 1/10 W, 5%, SMD various R4 50 Ω Res, 0402, 1/8 W, 1%, SMD various R2, R3 DNP USB Configuration Ref Des Value Description Manufacturer Part Number X1 (For Low IF) IF Quad Coupler, 1.35 to 2.45 GHz Mini-Circuits QCN-25+ X1 (For High IF) IF Quad Coupler, 2.5 to 4.0 GHz Mini-Circuits QCN-45+ R3 0 Ω Res, 0402, 1/10 W, 5%, SMD various R2 50 Ω Res, 0402, 1/8 W, 1%, SMD various R1, R4 DNP
Data Sheet Rev I, June 2020 | Subject to change without notice 22 of 25 www.qorvo.com Package Marking and Dimensions All dimensions are in millimeters. Top marking: “YY” represents the last two digits of the year the part was manufactured, the “WW” is the work week, CCCC is country code and the “XXXX” is batch ID. This package is lead-free/RoHS-compliant with a copper alloy base (CDA194), and the plating material on the leads is NiPdAu. It is compatible with a lead-free (maximum 260 °C reflow temperature) soldering process. PCB Mounting Pattern Notes: 1. The pad pattern shown has been developed and tested for optimized assembly at Qorvo. The PCB land pattern has been developed to accommodate lead and package tolerances. Since surface mount processes vary from company to company, careful process development is recommended. 2. Ground / thermal vias are critical for the proper performance of this device. Vias should use a .35mm diameter drill and have a final plated thru diameter of .25 mm.
Data Sheet Rev I, June 2020 | Subject to change without notice 23 of 25 www.qorvo.com Tape and Reel Information Standard T/R size = 500 pieces on a 7” reel. Tape and reel specifications for this part are also available on the QORVO website in the “Application Notes” section. Carrier and Cover Tape Dimensions: Part Feature Symbol Size (in) Size (mm) Cavity Length A0 0.209 5.3 Width B0 0.209 5.3 Depth K0 0.064 1.65 Pitch P1 0.315 8.00 Cover Tape Width C 0.362 9.2 Carrier Tape Width W 0.472 12.00
Data Sheet Rev I, June 2020 | Subject to change without notice 24 of 25 www.qorvo.com Recommended Soldering Temperature 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-Pd-Au. Solder rework not recommended.
Data Sheet Rev I, June 2020 | Subject to change without notice 25 of 25 www.qorvo.com Handling Precautions Parameter Rating Standard Caution! ESD-Sensitive Device ESD – Human Body Model (HBM) Class 1A ESDA / JEDEC JS-001-2012 MSL – Moisture Sensitivity Level Level 1 IPC/JEDEC J-STD-020 RoHS Compliance This product is compliant with the 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
- Halogen Free (Chlorine, Bromine)
- Antimony Free
- TBBP-A (C15H12Br402) Free
- PFOS Free
- SVHC Free Contact Information For the latest specifications, additional product information, worldwide sales and distribution locations: Tel: 1-844-890-8163 Web: www.qorvo.com 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 liabi lity 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 informat ion 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 T HE 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 PER FORMANCE, 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 applications 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.