SKY LF: 0.5 to 4.0 GHz High Linearity, Active Bias Low-Noise Amplifier

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1 DATA SHEET SKY LF: 0.5 to 4.0 GHz High Linearity, Active Bias Low-Noise Amplifier Applications LTE, GSM, WCDMA, HSDPA macro base stations Small cells Cellular repeaters, DAS, and RRH/RRUs 0.5 to 4.0 GHz low-noise receivers High-temperature receiver applications to +105 C Improved high-frequency performance and footprint compatible with several industry standard low-noise amplifiers RF_IN RF_OUT/VDD RFGND Active Bias FEEDBACK VIN S1942 Features High gain: 0.85 GHz 1.85 GHz 2.6 GHz 3.6 GHz Low noise figure: 0.85 GHz 1.85 GHz 2.6 GHz 3.6 GHz High IIP3 performance: GHz Return loss > 3.6 GHz Adjustable supply current and gain Flexible bias voltage: 3 to 5 V Adjustable supply current from 30 ma to 100 ma Temperature and process-stable active bias Miniature DFN (8-pin, 2 x 2 mm) package 260 C per JEDEC J-STD-020) Skyworks Green products are compliant with all applicable legislation and are halogen-free. For additional information, refer to Skyworks Definition of Green, document number SQ Description Figure 1. SKY LF Block Diagram The SKY LF low-noise amplifier (LNA) with an active bias offers excellent return loss, low noise, and high linearity performance. The internal active bias circuitry provides stable performance over temperature and process variation. The device offers the ability to externally adjust supply current and gain. Supply voltage is applied to the RFOUT/VDD pin through an RF choke inductor. Pin 4 (VIN) should be connected to RFOUT/VDD through an external resistor to control the supply current. The RFIN and RFOUT/VDD pins should be DC blocked to ensure proper operation. Pin 5 (FEEDBACK) is connected through an RC network to externally adjust the gain of the device without affecting the noise figure (NF) of the LNA. The SKY LF operates in the frequency range of 0.5 to 4.0 GHz with appropriate tuning. The SKY LF is an improved higher frequency version of the SKY LF. The SKY LF is pin-compatable with the SKY LF and SKY LF series of low-noise devices. The LNA is available in a compact, 2 x 2 mm, 8-pin Dual Flat No- Lead (DFN) package. A functional block diagram is shown in Figure 1. The pin configuration and package are shown in Figure 2. Signal pin assignments and functional pin descriptions are provided in Table A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

2 N/C 1 8 N/C RFIN 2 7 RFOUT/VDD RFGND 3 6 N/C VIN 4 5 FEEDBACK S1943 Figure 2. SKY LF Pinout 8-Pin DFN (Top View) Table 1. SKY LF Signal Descriptions Pin Name Description Pin Name Description 1 N/C No connection. May be connected to ground with no change in performance. 5 FEEDBACK LNA external gain control. Connect to RFOUT using a series RC network. 2 RFIN RF input. DC blocking capacitor required. 6 N/C No connection. May be connected to ground with no change in performance. 3 RFGND RF ground. Connect to ground through a capacitor. 7 RFOUT/VDD RF output. Apply VDD through RF choke inductor. DC blocking capacitor required. 4 VIN LNA supply current. Connect through series resistor to VDD. 8 N/C No connection. May be connected to ground with no change in performance. 2 June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

3 Electrical and Mechanical Specifications The absolute maximum ratings of the SKY LF are provided in Table 2. Thermal performance data are provided in Table 3. Typical performance characteristics of the SKY LF for broadband operation are illustrated in Figures 3 through 13. Electrical specifications for broadband operation are provided in Table 4. Electrical specifications for narrowband operation are provided in Tables 5, 6, and 7. Table 8 provides data for noise parameters versus frequency. Table 2. SKY LF Absolute Maximum Ratings (Note 1) Parameter Symbol Minimum Maximum Units Supply voltage Vdd 5.5 V Quiescent supply current Idq 120 ma RF input power Pin +21 m Storage temperature Tstg C Operating temperature TA C Electrostatic discharge: Charged Device Model (CDM), Class 4 Human Body Model (HBM), Class 1A Machine Model (MM), Class A Note 1: Performance is guaranteed only under the conditions listed in this table. ESD V V V CAUTION: Although this device is designed to be as robust as possible, electrostatic discharge (ESD) can damage this device. This device must be protected at all times from ESD. Static charges may easily produce potentials of several kilovolts on the human body or equipment, which can discharge without detection. Industry-standard ESD precautions should be used at all times. Table 3. SKY LF: Thermal Performance Data (Note 1) (VDD = 5 V, TA = +25 C, PIN = 25 m, Characteristic Impedance [ZO] = 50 Ω, Unless Otherwise Noted) Parameter Symbol Test Condition Min Typical Max Units Thermal resistance Θjc 45 C/W Channel +85 C reference (package heat slug) VDD = 5 V, IDQ = 70 ma, no RF applied, dissipated power = 0.35 W 101 C Note 1: Performance is guaranteed only under the conditions listed in this table A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

4 Table 4. SKY LF Electrical Specifications for Operation at 3.6 GHz (Note 1) (VDD = 5.0 V, IDD = 78 ma, TA = +25 C, PIN = 20 m, Characteristic Impedance [ZO] = 50 Ω, Unless Otherwise Noted) RF Specifications Parameter Symbol Test Condition Min Typical Max Units Noise figure (Note 2) GHz Small signal gain GHz Input return loss GHz Output return loss GHz Reverse isolation GHz 3 rd Order input intercept point 3.6 GHz, Δf = 1 MHz, PIN = 20 m/tone 3 rd Order output intercept point 3.6 GHz, Δf = 1 MHz, PIN = 20 m/tone m m 1 input compression point 3.6 GHz +1.9 m 1 output compression point 3.6 GHz m Stability μ1, μ2 Up to 18 GHz, 40 C to +105 C DC Specifications >1 Supply voltage VDD 5.0 V Supply current IDD Set with external resistor 78 ma Note 1: Performance is guaranteed only under the conditions listed in this table. Note 2: Loss from the input SMA connector and Evaluation Board up to component C1 has been de-embedded from the NF measurement by June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

5 Typical Performance Characteristics (VDD = 77 ma, PIN = 20 m, Characteristic Impedance [ZO] = 50 Ω, Unless Otherwise Noted) 0 S11 0 S C 40 C +85 C +105 C Return Loss () E E E E E E+10 Frequency (Hz) Figure 3. Broadband Input Return Loss vs Frequency and Temperature +25 C 40 C +85 C +105 C Y1002 Return Loss () E E E E E E+09 Frequency (Hz) Figure 4. Narrowband Input Return Loss vs Frequency and Temperature Y1003 Gain () S C 40 C +85 C +105 C E E E E E E+10 Frequency (Hz) Figure 5. Broadband Gain vs Frequency and Temperature Y1004 Gain () S C 40 C +85 C +105 C E E E E E E+09 Frequency (Hz) Figure 6. Narrowband Gain vs Frequency and Temperature Y1005 Reverse Isolation () S C 40 C +85 C +105 C Reverse Isolation () S C 40 C +85 C +105 C E E E E E E+10 Frequency (Hz) Figure 7. Broadband Reverse Isolation vs Frequency and Temperature Y E E E E E E+09 Frequency (Hz) Figure 8. Narrowband Reverse Isolation vs Frequency and Temperature Y A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

6 0 S22 0 S Return Loss () Return Loss () C 40 C +85 C +105 C E E E E E E+10 Frequency (Hz) Y C C +85 C +105 C E E E E E E+09 Frequency (Hz) Y10010 Figure 9. Broadband Output Return Loss vs Frequency and Temperature Figure 10. Narrowband Output Return Loss vs Frequency and Temperature K-Factor, B K_+25 C K_-40 C K_+85 C K_+105 C B1_+25 C B1_-40 C B1_+85 C B1_+105 C 0 0.0E E E E E E E+10 Frequency (GHz) Figure 11. Stability Factor K, B1 vs Frequency and Temperature Y1058 Mμ, Mμ E E E E E E E+10 Frequency (GHz) Figure 12. Stability Factor Mμ, Mμ1 vs Frequency and Temperature Mμ_+25 C Mμ_-40 C Mμ_+85 C Mμ_+105 C Mμ1_+25 C Mμ1_-40 C Mμ1_+85 C Mμ1_+105 C Y1057 Noise Figure () C C C C Frequency (GHz) Figure 13. Noise Figure vs Frequency and Temperature Y June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

7 Table 5. SKY LF Electrical Specifications for Operation at 850 MHz (Note 1) (VDD = 5.0 V, IDD = 78 ma, TA = +25 C, PIN = 20 m, Characteristic Impedance [ZO] = 50 Ω, Unless Otherwise Noted) Parameter Symbol Test Condition Min Typical Max Units Noise figure (Note 2) 850 MHz 0.50 Small signal gain 850 MHz 25.0 Input return loss 850 MHz 16.0 Output return loss 850 MHz 15.0 Reverse isolation 850 MHz 32.0 Input third order intercept point Output third order intercept point Input 1 compression point Output 1 compression point IIP3 OIP3 IP1 OP1 ΔF=1 MHz, PIN=-20 m/tone 850 MHz +7.5 m ΔF=1 MHz, PIN=-20 m/tone 850 MHz MHz Stability μ1, μ2, K, B >1 DC Specifications 5.0 m m Supply voltage VDD 5.0 V Quiescent supply current IDD Note 1: Performance is guaranteed only under the conditions listed in this table. Note 2: No correction for evaluation board and connector has been taken in the measurement ma A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

8 Table 6. SKY LF Electrical Specifications for Operation at 1.85 GHz (Note 1) (VDD = 5.0 V, IDD = 78 ma, TA = +25 C, PIN = 20 m, Characteristic Impedance [ZO] = 50 Ω, Unless Otherwise Noted) Parameter Symbol Test Condition Min Typical Max Units Noise figure (Note 2) 1.85 GHz 0.60 Small signal gain 1.85 GHz 20.0 Input return loss 1.85 GHz 16.0 Output return loss 1.85 GHz 15.0 Reverse isolation 1.85 GHz 28.0 Input third order intercept point Output third order intercept point Input 1 compression point Output 1 compression point IIP3 OIP3 ΔF=1 MHz, PIN=-20 m/tone 1850 MHz ΔF=1 MHz, PIN=-20 m/tone 1850 MHz m m 1.85 GHz +1.0 m 1.85 GHz m Stability μ1, μ2, K, B >1 - DC Specifications Supply voltage VDD 5.0 V Quiescent supply current IDD Note 1: Performance is guaranteed only under the conditions listed in this table. Note 2: No correction for evaluation board and connector has been taken in the measurement ma 8 June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

9 Table 7. SKY LF Electrical Specifications for Operation at 2.6 GHz (Note 1) (VDD = 5.0 V, IDD = 78 ma, TA = +25 C, PIN = 20 m, Characteristic Impedance [ZO] = 50 Ω, Unless Otherwise Noted) Parameter Symbol Test Condition Min Typical Max Units Noise figure (Note 2) 2.6 GHz 0.65 Small signal gain GHz Input return loss GHz Output return loss GHz Reverse isolation GHz Input third order intercept point Output third order intercept point Input 1 compression point Output 1 compression point IIP3 OIP3 IP1 OP ΔF=1 MHz, PIN=-20 m/tone 2600 MHz m ΔF=1 MHz, PIN=-20 m/tone 2600 MHz MHz Stability μ1, μ2, K, B >1 DC Specifications +1.6 m m Supply voltage VDD 5 V Quiescent supply current IDD Note 1: Performance is guaranteed only under the conditions listed in this table. Note 2: No correction for evaluation board and connector has been taken in the measurement. 76 ma A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

10 Table 8. Noise Parameters vs Frequency +25 C, 5 V, 78 ma) (1 of 3) Frequency (MHz) FMIN () Gamma opt (Mag) Gamma opt (Phase) Noise Resistance (RN) (Ω) Associated Gain () Maximum Gain (GMAX) () June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

11 Table 8. Noise Parameters vs Frequency +25 C, 5 V, 78 ma) (2 of 3) Frequency (MHz) FMIN () Gamma opt (Mag) Gamma opt (Phase) Noise Resistance (RN) (Ω) Associated Gain () Maximum Gain (GMAX) () A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

12 Table 8. Noise Parameters vs Frequency +25 C, 5 V, 78 ma) (3 of 3) Frequency (MHz) FMIN () Gamma opt (Mag) Gamma opt (Phase) Noise Resistance (RN) (Ω) Associated Gain () Maximum Gain (GMAX) () June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

13 Evaluation Board Description The SKY LF Evaluation Board is used to test the performance of the SKY LF LNA. An assembly drawing for the Evaluation Board is shown in Figure 14. An Evaluation Board schematic diagram is provided in Figure 15. Table 9 provides the Bill of Materials (BOM) list for Evaluation Board components at 3600 MHz. The test board uses a 10 mil Rogers 4350B substrate on a 50 mil FR4 supporting substrate. The Rogers 4350B material was selected for the RF circuit because of its low dielectric constant (εr) and low εr variation over temperature for the best possible noise performance. Package Dimensions The PCB layout footprint for the SKY LF is provided in Figure 16. Typical case markings are shown in Figure 17. Package dimensions for the 8-pin DFN are shown in Figure 18, and tape and reel dimensions are provided in Figure 19. Package and Handling Information Instructions on the shipping container label regarding exposure to moisture after the container seal is broken must be followed. Otherwise, problems related to moisture absorption may occur when the part is subjected to high temperature during solder assembly. The SKY LF is rated to Moisture Sensitivity Level 1 (MSL1) at 260 C. It can be used for lead or lead-free soldering. For additional information, refer to the Skyworks Application Note, Solder Reflow Information, document number Care must be taken when attaching this product, whether it is done manually or in a production solder reflow environment. Production quantities of this product are shipped in a standard tape and reel format. Y0613 Figure 14. SKY LF Evaluation Board Assembly Diagram A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

14 DATA SHEET SKY LF: HIGH LINEARITY, ACTIVE BIAS LNA M7 VDD M18 M17 M16 M6 M15 M14 RF Input M1 M2 M3 M5 M N/C RFIN RFGND VBIAS N/C RFOUT/VDD N/C FEEDBACK M11 M9 M8 M10 M12 M13 M20 RF Output Paddle Ground Y0614 Figure 15. SKY LF Evaluation Board Schematic Table 9. SKY LF Evaluation Board Bill of Materials (3 GHz to 4 GHz) Component Description Value Size Manufacturer Mfr Part Number M1 Capacitor 15 pf 0402 Murata GJM GJM1555C1H150JB01 M2 Capacitor 1 pf 0402 Murata GJM GJM1555C1H1R0CB01 M3 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M4 M5 Inductor 15 nh 0402 Coilcraft HP 0402HP-15N0XJL M6 Resistor 10.2k 0402 Kamaya RMC 1/16S RMC1/16SK1022FTH M7 Capacitor 1000 pf 0402 Murata GRM GRM155R71H102KA01 M8 M9 M10 Inductor 1 nh 0402 Coilcraft HP 0402HP-1N0XJL M11 Inductor 1 nh 0402 Coilcraft HP 0402HP-1N0XJL M12 M13 Capacitor 1.1 pf 0402 Murata GJM GJM1555C1H1R1CB01 M14 Capacitor 10 pf 0402 Murata GJM GJM1555C1H100JB01 M15 Capacitor 1000 pf 0402 Murata GRM GRM155R71H102KA01 M16 Resistor 0 Ohm 0402 Kamaya RMC 1/16S RMC1/16SJPTH M17 M18 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M19 M20 Resistor 5.1k 0402 Kamaya RMC 1/16S RMC1/16SK511FTH 14 June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

15 Table 10. SKY LF Evaluation Board Bill of Materials (850 MHz) Component Description Value Size Manufacturer Mfr Part Number M1 Inductor 2.2 nh 0402 Coilcraft 0402HP-2N2XJL M2 DNI M3 Capacitor 20 pf 0402 Murata GJM GJM1555C1H200JB01 M4 Capacitor 68 pf 0402 Murata GRM GRM1555C1H680JZ01 M5 Inductor 15 nh 0402 Coilcraft HP 0402HP-15N0XJL M6 Resistor 10.2k 0402 Kamaya RMC 1/16S RMC1/16SK1022FTH M7 Capacitor 1000 pf 0402 Murata GRM GRM155R71H102KA01 M8 M9 M10 Capacitor 100 pf 0402 Murata GJM GRM1555C1H101JZ01 M11 Inductor 8.2 nh 0402 Murata LQG15HS8N2J02 M12 Capacitor 1.8 pf 0402 Murata GJM GRM1555C1H1R8CB01 M14 Capacitor 100 pf 0402 Murata GJM GRM1555C1H101JZ01 M14 Capacitor 100 pf 0402 Murata GJM GRM1555C1H101JZ01 M15 Capacitor pf 0402 Murata GRM GRM155R71H103KA01 M16 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M17 M18 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M19 M20 Resistor 5.1k 0402 Kamaya RMC 1/16S RMC1/16SK511FTH A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

16 Table 11. SKY LF Evaluation Board Bill of Materials (1.85 GHz) Component Description Value Size Manufacturer Mfr Part Number M1 Capacitor 20 pf 0402 Murata GJM GJM1555C1H200JB01 M2 Capacitor 1 pf 0402 Murata GJM GJM1555C1H1R0CB01 M3 Inductor 2 nh 0402 Coilcraft HP 0402HP-2N0XJL M4 Capacitor 8.2 pf 0402 Murata GRM GJM1555C1H8R2DB01 M5 Inductor 10 nh 0402 Coilcraft HP 0402HP-10N0XJL M6 Resistor 10.2 K 0402 Kamaya RMC 1/16S RMC1/16SK1022FTH M7 Capacitor pf 0402 Murata GRM GRM155R71H103KA01 M8 M9 M10 Capacitor 3.6 pf 0402 Murata GJM GRM1555C1H3R6CB01 M11 Inductor 3.6 nh 0402 Murata LQG15HS3N6S02 M12 Resistor 2.0 K 0402 Kamaya RMC 1/16S RMC1/16S-202JTH M13 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M14 Capacitor 22 pf 0402 Murata GRM GRM1555C1H220JZ01 M15 Capacitor 1000 pf 0402 Murata GRM GRM155R71H102KA01 M16 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M17 M18 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M19 M20 Resistor 5.1k 0402 Kamaya RMC 1/16S RMC1/16SK511FTH 16 June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

17 Table 12. SKY LF Evaluation Board Bill of Materials (2.6 GHz) Component Description Value Size Manufacturer Mfr Part Number M1 Capacitor 20 pf 0402 Murata GJM GJM1555C1H200JB01 M2 Capacitor 1 pf 0402 Murata GJM GJM1555C1H1R0CB01 M3 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M4 Capacitor 56 pf 0402 Murata GRM GRM1555C1H560JZ01 M5 Inductor 12 nh 0402 Coilcraft HP 0402HP-12N0XJL M6 Resistor 10.2 K 0402 Kamaya RMC 1/16S RMC1/16SK1022FTH M7 Capacitor pf 0402 Murata GRM GRM155R71H103KA01 M8 M9 M10 Capacitor 3.9 pf 0402 Murata GJM GRM1555C1H3R9CZ01 M11 Inductor 2.7 nh 0402 Murata LQG15HS2N7S02 M12 Resistor 2.0 K 0402 Kamaya RMC 1/16S RMC1/16S-202JTH M13 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M14 Capacitor 22 pf 0402 Murata GRM GRM1555C1H220JZ01 M15 Capacitor 1000 pf 0402 Murata GRM GRM155R71H102KA01 M16 Resistor 0 Ohm 0402 Kamaya RMC 1/16S RMC1/16SJPTH M17 M18 Resistor 0 Ω 0402 Kamaya RMC 1/16S RMC1/16SJPTH M19 M20 Resistor 5.1k 0402 Kamaya RMC 1/16S RMC1/16SK511FTH A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

18 8X 0.70 R0.20 Pin 1 8X X Pitch X X 0.45 All dimensions are in millimeters Exposed Solder Areas (Typical) S1413 Figure 15. SKY LF PCB Layout Footprint (Top View) Pin 1 Indicator SKY 7103 Skyworks Part Number Y0626 Figure 16. Typical Case Markings (Top View) 18 June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

19 Pin 1 Indicator 2 A B C 0.20 Ref Seating Plane / / / 0.07 Exposed Pad Detail A 2X 0.15 C 2 8X C Detail B 2 Places Detail C -B / / X 0.15 C 0.75 ± C Top View Side View Bottom View R0.12 Typ 0.30 ± A- C L 0.5 R / M C A B 0.05 M C Detail C 8 Places Detail B Detail A All measurements are in millimeters. Dimensioning and tolerancing according to ASME Y14.5M Coplanarity applies to the exposed heat sink slug as well as the terminals.. Plating requirement per source control drawing (SCD) Dimension applies to metalized terminal and is measured between 0.15 mm and 0.30 mm from terminal tip. S1945 Figure 17. SKY LF 8-Pin DFN Package Dimensions A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

20 / ± 0.05 (T) Pin # ± (see Note 4) 2.00 ± ± 0.10 B 2.30 (Bo) A A 3.50 ± / (Ko) B B 2.30 (Ao) R0.30 Typ Min. Notes: 1. Carrier tape: black conductive polystyrene. 2. Cover tape material: transparent conductive HSA. 3. Cover tape size: 5.40 mm width. 4. Ten sprocket hole pitch cumulative tolerance = ±0.20 mm. 5. ESD surface resistivity is 1 x 10 8 Ohms/square per EIA, JEDEC tape and reel specification. 6. Ao and Bo measurement point to be 0.30 mm from bottom pocket. 7. All measurements are in millimeters. A S1601 Figure 18. SKY LF Tape and Reel Dimensions 20 June 26, 2014 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice A1

21 Ordering Information Model Name Manufacturing Part Number Evaluation Board Part Number SKY LF LNA SKY LF SKY LF-EVB Copyright 2014 Skyworks Solutions, Inc. All Rights Reserved. Information in this document is provided in connection with Skyworks Solutions, Inc. ( Skyworks ) products or services. These materials, including the information contained herein, are provided by Skyworks as a service to its customers and may be used for informational purposes only by the customer. Skyworks assumes no responsibility for errors or omissions in these materials or the information contained herein. Skyworks may change its documentation, products, services, specifications or product descriptions at any time, without notice. Skyworks makes no commitment to update the materials or information and shall have no responsibility whatsoever for conflicts, incompatibilities, or other difficulties arising from any future changes. No license, whether express, implied, by estoppel or otherwise, is granted to any intellectual property rights by this document. Skyworks assumes no liability for any materials, products or information provided hereunder, including the sale, distribution, reproduction or use of Skyworks products, information or materials, except as may be provided in Skyworks Terms and Conditions of Sale. THE MATERIALS, PRODUCTS AND INFORMATION ARE PROVIDED AS IS WITHOUT WARRANTY OF ANY KIND, WHETHER EXPRESS, IMPLIED, STATUTORY, OR OTHERWISE, INCLUDING FITNESS FOR A PARTICULAR PURPOSE OR USE, MERCHANTABILITY, PERFORMANCE, QUALITY OR NON-INFRINGEMENT OF ANY INTELLECTUAL PROPERTY RIGHT; ALL SUCH WARRANTIES ARE HEREBY EXPRESSLY DISCLAIMED. SKYWORKS DOES NOT WARRANT THE ACCURACY OR COMPLETENESS OF THE INFORMATION, TEXT, GRAPHICS OR OTHER ITEMS CONTAINED WITHIN THESE MATERIALS. SKYWORKS SHALL NOT BE LIABLE FOR ANY DAMAGES, INCLUDING BUT NOT LIMITED TO ANY SPECIAL, INDIRECT, INCIDENTAL, STATUTORY, OR CONSEQUENTIAL DAMAGES, INCLUDING WITHOUT LIMITATION, LOST REVENUES OR LOST PROFITS THAT MAY RESULT FROM THE USE OF THE MATERIALS OR INFORMATION, WHETHER OR NOT THE RECIPIENT OF MATERIALS HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. Skyworks products are not intended for use in medical, lifesaving or life-sustaining applications, or other equipment in which the failure of the Skyworks products could lead to personal injury, death, physical or environmental damage. Skyworks customers using or selling Skyworks products for use in such applications do so at their own risk and agree to fully indemnify Skyworks for any damages resulting from such improper use or sale. Customers are responsible for their products and applications using Skyworks products, which may deviate from published specifications as a result of design defects, errors, or operation of products outside of published parameters or design specifications. Customers should include design and operating safeguards to minimize these and other risks. Skyworks assumes no liability for applications assistance, customer product design, or damage to any equipment resulting from the use of Skyworks products outside of stated published specifications or parameters. Skyworks, the Skyworks symbol, and Breakthrough Simplicity are trademarks or registered trademarks of Skyworks Solutions, Inc., in the United States and other countries. Third-party brands and names are for identification purposes only, and are the property of their respective owners. Additional information, including relevant terms and conditions, posted at are incorporated by reference A1 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice June 26,

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