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2.4 GHz WLAN/BTLTE Co-Existence Filter

Data Sheet: Rev. F 10-26-15 - 1 of 8 - Disclaimer: Subject to change without notice ©2015 TriQuint www.triquint.com RFMD + TriQuint = Qorvo Note: 1. Pin 1 must be used for input. The large signal performance of this filter (power handling and nonlinear response) is not symmetric

Applications

 Automotive Telematics and Infotainment  2.4 GHz ISM Applications & Smart Energy  WiFi bandpass filter that enables the coexistence of 3G/4G/LTE/TD-LTE & WiFi signals  WLAN systems (Higher power applications)  WiFi in Outdoor Small Cells and Access Points Product Features  Qualified for automotive applications based on AEC–Q200 standard  Best in class rejection in LTE B7/B41 bands  Industry leading small size: 1.4 x 1.2 x 0.46 mm  Performance over −40 °C to +95 ºC  Ceramic chip-scale Package (CSP)  Hermetically sealed  RoHS compliant, Pb-free  Low Loss in WLAN CH1-Ch13  Single-ended operation CSP-5CT package: 1.4 x 1.2 x 0.46 mm Functional Block Diagram 1Input Output Gnd Gnd Gnd Top View Top View General Description 885071–A is a high -performance, high -power Bulk Acoustic Wave (BAW) ban dpass filter with extremely steep skirts, simultaneously exhibiting low loss in the WiFi band & high near-in rejection. 885071 – A is specifically designed to enable coexistence of WiFi and LTE signals within the same device or in close proximity to one another. Its unique power handling capability allows for implementation into access points, small cell base stations, an d other high power ISM band applications. 885071 – A uses advanced packaging techniques to achieve an industry -leading 1.4 x 1.2 x 0.46 mm package. The filter has met stringent automotive requirements derived from AEC-Q200 standard and is suitable for u se in infotainment and telematics applications. Pin Configuration Pin No. Label

1 Input

4 Output

2,3,5 Ground

Ordering Information

Part No. Description 885071-A Packaged Part 885071-A-EVB Evaluation board Standard T/R size = 15,000 units/reel Pb bb b P bv P b

Data Sheet: Rev. F 10-26-15 - 2 of 8 - Disclaimer: Subject to change without notice ©2015 TriQuint www.triquint.com RFMD + TriQuint = Qorvo Absolute Maximum Ratings Absolute Maximum Ratings (1) Conditions unless otherwise noted: Device Temperature = 0°C to +70°C. Parameter (2) Conditions Min Typ (+25°C) Max Units Insertion Loss (3) 2402.5 – 2421.5 MHz (WiFi Ch.1) 2407.5 – 2426.5 MHz (WiFi Ch.2) 2412.5 – 2471.5 MHz (WiFi Ch.3-11) 2457.5 – 2476.5 MHz (WiFi Ch.12) 2462.5 – 2481.5 MHz (WiFi Ch.13) 1.6 1.3 1.5 1.7 1.9 1.9 1.7 2.0 2.2 2.6 dB Passband Ripple 2402.5 – 2421.5 MHz (WiFi Ch.1) 2407.5 – 2426.5 MHz (WiFi Ch.2) 2412.5 – 2471.5 MHz (WiFi Ch.3-11) 2457.5 – 2476.5 MHz (WiFi Ch.12) 2462.5 – 2481.5 MHz (WiFi Ch.13) 1.0 1.0 0.8 0.8 1.7 1.3 1.2 1.0 2.3 4.3 dB Input/Output VSWR 2402.5 – 2476.5 MHz (WiFi Ch.1-12) 2462.5 – 2481.5 MHz (WiFi Ch.13) – 1.9 1.8 2.1 3.0 – Impulse Response Length (4) 2401 – 2483 MHz – 160 200 ns Attenuation 100 – 2300 MHz 2300 – 2370 MHz (5) 2496 – 2501 MHz (+25 to +70˚C) (5) 2496 – 2501 MHz (0˚C to +25˚C) (5) 2500 – 2505 MHz (+25 to +70˚C) (5) 2500 – 2505 MHz (0˚C to +25˚C) (5) 2505 – 2570 MHz(5) 2570 – 2620 MHz (5) 2620 – 2690 MHz (5) 4800 – 5000 MHz 7200 – 7500 MHz – dB 2nd Harmonics CW Tone = 2442 MHz @ 22.5 dBm – 60 – dBc 3rd Harmonics CW Tone = 2442 MHz @ 22.5 dBm – 138 – dBc Notes: 1. In production, devices will be tested at room temperature to a guard-banded specification to ensure electrical compliance over temperature. 2. Electrical margin has been built into the design to account for the variations due to temperature drift and manufacturing tolerances. 3. Data is the integrated value of the linear s-parameter over the indicated band at the specified temperature. 4. Duration in ns between the maxima and the point 40 dB below the maxima. 5. Data is the integrated value of the linear s-parameter over 5 MHz range at the specified temperature. 6. An external impedance matching network with ±2 % tolerance will be necessary to achieve the stated specifications. This is the optimum impedance in order to achieve the performance shown. 1. Operation of this device outside the parameter ranges given may cause permanent damage. Parameter Rating Storage Temperature (1) − 55 °C to + 125 °C Operable Temperature − 40 °C to + 95 °C Electrical Specifications (1) Conditions unless otherwise noted: Device Temperature = −30 °C to +85 °C. Parameter (2) Conditions Min Typ (+25 °C) Max Units Insertion Loss (3) 2402.5 – 2421.5 MHz (WiFi Ch.1) 2407.5 – 2426.5 MHz (WiFi Ch.2) 2412.5 – 2471.5 MHz (WiFi Ch.3-11) 2457.5 – 2476.5 MHz (WiFi Ch.12) 2462.5 – 2481.5 MHz (WiFi Ch.13) 1.8 1.7 1.7 1.8 2.0 2.1 2.0 2.1 2.3 2.7 dB Amplitude Variation 2402.5 – 2421.5 MHz (WiFi Ch.1) 2407.5 – 2426.5 MHz (WiFi Ch.2) 2412.5 – 2471.5 MHz (WiFi Ch.3-11) 2457.5 – 2476.5 MHz (WiFi Ch.12) 2462.5 – 2481.5 MHz (WiFi Ch.13) 0.7 0.8 0.9 0.6 1.4 1.1 1.3 1.3 1.6 3.7 dB Input/Output VSWR 2402.5 – 2476.5 MHz (WiFi Ch.1-12) 2462.5 – 2481.5 MHz (WiFi Ch.13) – 1.9 1.8 2.4 2.3 – Impulse Response Length (4) 2401 – 2483 MHz – 160 TBD ns Attenuation 100 – 2300 MHz 2300 – 2370 MHz (5) 2496 – 2501 MHz (+25 °C to +85 ˚C) (5) 2496 – 2501 MHz (−30 °C to +25 ˚C) (5) 2500 – 2505 MHz (+25 °C to +85 ˚C) (5) 2500 – 2505 MHz (−30 °C to +25˚C) (5) 2505 – 2570 MHz (5) 2570 – 2620 MHz (5) 2620 – 2690 MHz (5) 4800 – 5000 MHz 7200 – 7500 MHz – dB 2nd Harmonics CW Tone = 2442 MHz at 22.5 dBm – 60 – dBc 3rd Harmonics CW Tone = 2442 MHz at 22.5 dBm – 138 – dBc Notes: 1. In production, devices will be tested at room temperature to a guard-banded specification to ensure electrical compliance over temperature. 2. Electrical margin has been built into the design to account for the variations due to temperature drift and manufacturing tolerances. 3. Data is the integrated value of the linear s-parameter over 19 MHz window in the indicated band at the specified temperature. 4. Duration in ns between the maxima and the point 40 dB below the maxima. 5. Data is the integrated value of the linear s-parameter over 5 MHz range at the specified temperature. 6. An external impedance matching network with ±3 % tolerance will be necessary to achieve the stated specifications. This is the optimum impedance in order to achieve the performance shown.

Data Sheet: Rev. F 10-26-15 - 3 of 8 - Disclaimer: Subject to change without notice ©2015 TriQuint www.triquint.com RFMD + TriQuint = Qorvo Electrical Specifications (1) Conditions unless otherwise noted: Device Temperature = −40 °C to +95 °C. Parameter (2) Conditions Min Typ (+25°C) Max Units Insertion Loss (3) 2402.5 – 2421.5 MHz (WiFi Ch.1) 2407.5 – 2426.5 MHz (WiFi Ch.2) 2412.5 – 2471.5 MHz (WiFi Ch.3-11) 2457.5 – 2476.5 MHz (WiFi Ch.12) 2462.5 – 2481.5 MHz (WiFi Ch.13) 1.8 1.7 1.7 1.8 2.0 2.1 2.0 2.1 2.3 2.8 dB Amplitude Variation 2402.5 – 2421.5 MHz (WiFi Ch.1) 2407.5 – 2426.5 MHz (WiFi Ch.2) 2412.5 – 2471.5 MHz (WiFi Ch.3-11) 2457.5 – 2476.5 MHz (WiFi Ch.12) 2462.5 – 2481.5 MHz (WiFi Ch.13) 0.7 0.8 0.9 0.6 1.4 1.1 1.4 1.3 1.7 4.3 dB Input/Output VSWR 2402.5 – 2476.5 MHz (WiFi Ch.1-12) 2462.5 – 2481.5 MHz (WiFi Ch.13) – 1.9 1.8 2.4 2.3 – Impulse Response Length (4) 2401 – 2483 MHz – 160 TBD ns Attenuation 100 – 2300 MHz 2300 – 2370 MHz (5) 2496 – 2501 MHz (+25 °C to +95 ˚C) (5) 2496 – 2501 MHz (−40 °C to +25˚C) (5) 2500 – 2505 MHz (+25 °C to +95 ˚C) (5) 2500 – 2505 MHz (−40 °C to +25 ˚C) (5) 2505 – 2570 MHz (5) 2570 – 2620 MHz (5) 2620 – 2690 MHz (5) 4800 – 5000 MHz 7200 – 7500 MHz – dB 2nd Harmonics CW Tone = 2442 MHz at 22.5 dBm – 60 – dBc 3rd Harmonics CW Tone = 2442 MHz at 22.5 dBm – 138 – dBc Notes: 1. In production, devices will be tested at room temperature to a guard-banded specification to ensure electrical compliance over temperature. 2. Electrical margin has been built into the design to account for the variations due to temperature drift and manufacturing tolerances. 3. Data is the integrated value of the linear s-parameter over 19 MHz window in the indicated band at the specified temperature. 4. Duration in ns between the maxima and the point 40 dB below the maxima. 5. Data is the integrated value of the linear s-parameter over 5 MHz range at the specified temperature. 6. An external impedance matching network with ±3 % tolerance will be necessary to achieve the stated specifications. This is the optimum impedance in order to achieve the performance shown.

Data Sheet: Rev. F 10-26-15 - 4 of 8 - Disclaimer: Subject to change without notice ©2015 TriQuint www.triquint.com RFMD + TriQuint = Qorvo Electrical Specifications (1) Conditions unless otherwise noted: Device Temperature = 0 °C to +70 °C. Parameter (2) Conditions Min Typ (+25°C) Max Units Insertion Loss (3) 2402.5 – 2421.5 MHz (WiFi Ch.1) 2407.5 – 2426.5 MHz (WiFi Ch.2) 2412.5 – 2471.5 MHz (WiFi Ch.3-11) 2457.5 – 2476.5 MHz (WiFi Ch.12) 2462.5 – 2481.5 MHz (WiFi Ch.13) 1.8 1.7 1.7 1.8 2.0 2.1 2.0 2.0 2.2 2.6 dB Amplitude Variation 2402.5 – 2421.5 MHz (WiFi Ch.1) 2407.5 – 2426.5 MHz (WiFi Ch.2) 2412.5 – 2471.5 MHz (WiFi Ch.3-11) 2457.5 – 2476.5 MHz (WiFi Ch.12) 2462.5 – 2481.5 MHz (WiFi Ch.13) 0.7 0.8 0.9 0.6 1.4 1.0 1.3 1.3 1.3 3.2 dB Input/Output VSWR 2402.5 – 2476.5 MHz (WiFi Ch.1-12) 2462.5 – 2481.5 MHz (WiFi Ch.13) – 1.9 1.8 2.4 2.3 – Impulse Response Length (4) 2401 – 2483 MHz – 160 TBD ns Attenuation 100 – 2300 MHz 2300 – 2370 MHz (5) 2496 – 2501 MHz (+25 °C to +70 ˚C) (5) 2496 – 2501 MHz (−0 °C to +25˚C) (5) 2500 – 2505 MHz (+25 °C to +70 ˚C) (5) 2500 – 2505 MHz (−0 °C to +25 ˚C) (5) 2505 – 2570 MHz (5) 2570 – 2620 MHz (5) 2620 – 2690 MHz (5) 4800 – 5000 MHz 7200 – 7500 MHz – dB 2nd Harmonics CW Tone = 2442 MHz at 22.5 dBm – 60 – dBc 3rd Harmonics CW Tone = 2442 MHz at 22.5 dBm – 138 – dBc Notes: 1. In production, devices will be tested at room temperature to a guard-banded specification to ensure electrical compliance over temperature. 2. Electrical margin has been built into the design to account for the variations due to temperature drift and manufacturing tolerances. 3. Data is the integrated value of the linear s-parameter over 19 MHz window in the indicated band at the specified temperature. 4. Duration in ns between the maxima and the point 40 dB below the maxima. 5. Data is the integrated value of the linear s-parameter over 5 MHz range at the specified temperature. 6. An external impedance matching network with ±3 % tolerance will be necessary to achieve the stated specifications. This is the optimum impedance in order to achieve the performance shown.

Data Sheet: Rev. F 10-26-15 - 5 of 8 - Disclaimer: Subject to change without notice ©2015 TriQuint www.triquint.com RFMD + TriQuint = Qorvo Evaluation Board Notes: 1. Matching component values shown are for the specified TriQuint evaluation board. Value adjustment may be required in end user product circuits depending on component manufacturer and PCB material. Layer. (dimensions are in inches) Bill of Material Reference Des. Value Description Manuf. Part Number L1 7.5 nH 0201 chip inductor ±3 % MuRata LQP03TN7N5H02 L2 8.2 nH 0201 chip inductor ±3 % MuRata LQP03TN8N2H02 SMA N/A SMA connector Radiall USA 9602-1111-018 PCB N/A 3-layer Multiple 960999

Data Sheet: Rev. F 10-26-15 - 6 of 8 - Disclaimer: Subject to change without notice ©2015 TriQuint www.triquint.com RFMD + TriQuint = Qorvo Performance Plots Test conditions unless otherwise noted: Temp.= +25 °C Frequency Response d B Frequency (MHz) -70 -60 -50 -40 -30 -20 -10 2200 2320 2440 2560 2680 Passband Response d B Frequency (MHz) 2370 2405 2440 2475 2510 Wideband Response d B Frequency (MHz) -70 -60 -50 -40 -30 -20 -10 500 1500 2500 3500 4500 5500 6500 7500 Input / Output VSWRL i n M a g L i n M a g Frequency (MHz) n s e c d e g 1.5 2.5 2370 2405 2440 2475 2510 1.5 2.5 2370 2405 2440 2475 2510 -0 .8 -0 .6 -0 .4 -0 .2 0.2 0.4 0.6 0.8 -1 -0 .5 0 0.5 1 Input Smith Chart -0 .8 -0 .6 -0 .4 -0 .2 0.2 0.4 0.6 0.8 -1 -0 .5 0 0.5 1 Output Smith Chart

Data Sheet: Rev. F 10-26-15 - 7 of 8 - Disclaimer: Subject to change without notice ©2015 TriQuint www.triquint.com RFMD + TriQuint = Qorvo PCB Mounting Pattern Notes: 1. All dimensions are in millimeters. Angles are in degrees. 2. This drawing specifies the mounting pattern used on the TriQuint evaluation board for this product. Some modification may be necessary to suit end user assembly materials and processes. Package Information, Marking and Dimensions 0.46 NOM. 0.50 MAX. 0.3251.20 0.25 0.50 1.25 1.40 0.25 0.90 MFG site B8 M WWY ID dot Date code code Marking Package Style: CSP-5CT Dimensions: 1.4 x 1.2 x 0.46 mm Body: Al2O3 ceramic Lid: Kovar or Alloy 42, Au over Ni plated Terminations: Au plating 0.5 - 1.0 μm, over a 2-6 μm Ni plating All dimensions shown are nominal in millimeters All tolerances are ±0.05 mm except overall length and width ±0.10 mm The date code consists of: WW = 2 digit week, Y = last digit of year, M = manufacturing site code Tape and Reel information 8.8 ID dot 2.0 Direction of travel Ø330 Ø20.2 Ø13.0 Ø102 2.7 1.75 3.5 8.0 A A2.0 4.0 4.0 Ø1.0 Ø1.5 1.73 0.65 0.3 Section A-A 1.47 Standard T/R size=15,000 units/reel. All dimensions are in millimeters.

Data Sheet: Rev. F 10-26-15 - 8 of 8 - Disclaimer: Subject to change without notice ©2015 TriQuint www.triquint.com RFMD + TriQuint = Qorvo Product Compliance Information ESD Sensitivity Ratings Caution! ESD-Sensitive Device ESD Rating: 1C Test: Human Body Model (HBM) Standard: ESDA/JEDEC JS-001 ESD Rating: C3 Test: Charge Device Model (CDM) Standard: ESDA/JEDEC JES-002 Solderability Compatible with the latest version of J-STD-020, lead free solder, 260°C Refer to Soldering Profile for recommended guidelines. RoHs Compliance This part is compliant with EU 2002/95/EC RoHS directive (Restrictions on the Use of Certain Hazardous Substances in Electrical and Electronic Equipment). This product also has the following attributes:  Halogen Free (Chlorine, Bromine)  Antimony Free  TBBP-A (C15H12Br402) Free  PFOS Free  SVHC Free MSL Rating Not applicable. Hermetic package. Contact Information For the latest specifications, additional product information, worldwide sales and distribution locations: Web: www.triquint.com Tel: Tel: 877-800-8584 Email: customer.support@qorvo.com For information about the merger of RFMD and TriQuint as Qorvo: Web: www.qorvo.com For technical questions and application information: Email: flapplication.engineering@tqs.com Important Notice The information contai ned herein is believed to be reliable. TriQuint makes no warranties regarding the information contained herein. TriQuint assumes no responsibility or liability whatsoever for any of the information contained herein. TriQuint assumes no responsibility or liability whatsoever for the use of the information contained herein. The information contained herein is provided "AS IS, WHERE IS" and with all faults, and the entire risk associated with such information is entirely with the user. All information con tained herein is subject to change without notice. Customers should obtain and verify the latest relevant information before placing orders for TriQuint products. The information contained herein or any use of such infor mation 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. TriQuint products are not warr anted 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.