AM3089 Filter Bank. Description. Functional Diagram. Features. Characteristic Performance. Analog Tunable 2.0 to 18.0 GHz Bandpass

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Insertion Loss (db) AM3089 Filter Bank Description AM3089 is an analog voltage-tunable bandpass filter bank covering the 2.0 to 18.0 GHz frequency range. Six bandpass filters with SP6T switches on the input and output are contained in the multi-chip module (MCM). Separate low-pass and high-pass tuning voltages provide independent control of both center frequency and bandwidth. AM3089 provides an excellent filtering solution for receiver or transceiver requiring flexible center frequency and bandwidth, high dynamic range, and small size, weight, and power consumption. Features Analog Tuning Independent LP and HP control +25 dbm Typical P1dB +37 dbm Typical IIP3 8 db Typical Insertion Loss +3.3V to +5V Supply +3V to +5V Control +0.5V to +10V Tuning Voltage Range 10mm QFN Package Rotationally Symmetric -40C to +85C Operation Functional Diagram HP LP 2.0 3.2 2.5 4.5 3.5 6.5 S S P P RF 1 RF 2 6 6 5.5 9.0 T T 8.0 13.5 12.0 19.0 Logic Decoding Characteristic Performance A B C +VDD 0 Adjustable Center Frequency -10-20 -30-40 -50-60 1 10 Frequency (GHz) 30 1

Table of Contents Description... 1 Features... 1 Functional Diagram... 1 Characteristic Performance... 1 Revision History... 2 Pin Layout and Definitions... 3 Specifications... 4 Absolute Maximum Ratings... 4 Handling Information... 4 Recommended Operating Conditions... 4 Thermal Information... 4 DC Electrical Characteristics... 5 RF Performance... 5 Timing Characteristics... 5 State Table... 5 Typical Performance... 6 Typical Application... 10 Alternate Application... 11 Package Details... 12 Evaluation PC Board... 13 Related Parts... 13 Component Compliance Information... 14 Revision History Date Revision Number Notes March 14, 2018 0 Preliminary Release June 4, 2018 1 Initial Release 2

Pin Layout and Definitions 1 SWA 2 SWB 3 SWC 4 5 6 7 8 RF 1 9 RF 1 10 11 12 13 14 15 16 VDD 17 18 VLP VHP 72 71 70 69 68 67 66 65 64 63 62 61 60 59 58 57 56 55 Bottom Side Pad (GND) 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 VHP VLP NOTE: All Non-Named Pins Are GND Pin Number Pin Name Pin Function 1 GND Ground 2 SWA Switch Control A 3 SWB Switch Control B 4 SWC Switch Control C 5-8 GND Ground 9,10 RF 1 RF 1 50 Ohms DC Coupled, External Blocking Cap Needed 11-16 GND Ground 17 VDD DC Power Input 18-26 GND Ground 27 VHP High Pass DC Voltage Control 28 VLP Low Pass DC Voltage Control 29-37 GND Ground 38 SWA Switch Control A 39 SWB Switch Control B 40 SWC Switch Control C 41-44 GND Ground 45,46 RF 2 RF 2 50 Ohms DC Coupled, External Blocking Cap Needed 47-52 GND Ground 53 VDD DC Power Input 54-62 GND Ground 63 VHP High Pass DC Voltage Control 64 VLP Low Pass DC Voltage Control 65-72 GND Ground Case GND GND Ground 54 53 52 51 50 49 48 47 46 45 44 43 42 41 40 39 38 37 VDD RF 2 RF 2 SWC SWB SWA 3

Specifications Absolute Maximum Ratings Minimum Maximum Supply Voltage -0.3 V +10.0 V DC Control Voltage 0.0 V +12.0 V RF Input Power +27 dbm Operating Junction Temperature -40 C +150 C Storage Temperature Range -50 C +150 C Note: Any device operation beyond the Absolute Maximum Ratings may result in permanent damage to the device. The values listed in this table are extremes and do not imply functional operation of the device at these or any other conditions beyond what is listed under Recommended Operating Conditions. Any part subjected to conditions outside of what is recommended for an extended amount of time may suffer from reliability concerns. Handling Information Minimum Maximum Storage Temperature Range (Recommended) -50 C +125 C Moisture Sensitivity Level MSL 3 Atlanta Micro products are electrostatic sensitive. Follow safe handling practices to avoid damage Recommended Operating Conditions Minimum Typical Maximum Supply Voltage +3.0 V +5.2 V Operating Case Temperature -40 C +85 C Operating Junction Temperature -40 C +125 C Thermal Information Thermal Resistance ( C / W) Junction to Case Thermal Resistance (θjc) 144 4

DC Electrical Characteristics (T = 25 C unless otherwise specified) Parameter Testing Conditions Minimum Typical Maximum DC Supply Voltage +3.0 V +5.2 V DC Supply Current V Supply = +5.0 V 20 ma Power Dissipated V Supply = +5.0 V 100 mw Logic Level Low 0.0 V +0.5 V Logic Level High +2.0 V +5.0 V DC Control Voltage +0.5 V +10.0 V DC Control Current < 1 ma RF Performance (T = 25 C, VDD = +5.0 V unless otherwise specified) Parameter Testing Conditions Minimum Typical Maximum Frequency Range 2.0 GHz 18.0 GHz Insertion Loss f = 2.0 GHz 7.3 db f = 7.0 GHz 7.2 db f = 13.0 GHz 7.8 db f = 18.0 GHz 10.5 db Return Loss f = 2.0 GHz 20.4 db f = 7.0 GHz 18.0 db f = 13.0 GHz 23.5 db f = 18.0 GHz 16.9 db Input IP3 +39 dbm Output P1dB +25 dbm Timing Characteristics Parameter Minimum Typical Maximum Switching Speed 850 ns 1μs State Table A B C State Low Low High Band 2 2.5-4.5 GHz Low High Low Band 3 3.5-6.5 GHz Low High High Band 5 8.0-13.5 GHz High Low Low Band 4 5.5-9.0 GHz High Low High Band 6 12.0-20.0 GHz High High Low Band 1 2.0-3.2 GHz 5

Insertion Loss (db) Insertion Loss (db) AM3089 Filter Bank Typical Performance (Note: Only some states shown for simplicity) 0 Band 1 Adjustable Bandwidth Center 0 Band 2 Adjustable Bandwidth Center -10-10 -20-20 -30-30 -40-40 -50-50 -60 1 10 Frequency (GHz) 30-60 1 10 Frequency (GHz) 30 6

Insertion Loss (db) Insertion Loss (db) AM3089 Filter Bank Typical Performance (continued) (Note: Only some states shown for simplicity) 0 Band 3 Adjustable Bandwidth Center 0 Band 4 Adjustable Bandwidth Center -10-10 -20-20 -30-30 -40-40 -50-50 -60 1 10 Frequency (GHz) 30-60 0 5 10 15 20 25 30 Frequency (GHz) 7

Insertion Loss (db) Insertion Loss (db) AM3089 Filter Bank Typical Performance (continued) (Note: Only some states shown for simplicity) 0 Band 5 Adjustable Bandwidth Center 0 Band 6 Adjustable Bandwidth Center -10-10 -20-20 -30-30 -40-40 -50-50 -60 0 5 10 15 20 25 30 Frequency (GHz) -60 0 5 10 15 20 25 30 Frequency (GHz) 8

Typical Performance (continued) (Note: Only some states shown for simplicity) 9

Typical Application Two Control Voltages Control Lines VTLP R1,R2 C3,C4 28,64 VTHP R3,R4 C5,C6 27,63 +V Supply C7,C8 FB1,FB2 17,53 RF1 50 ohms C1 9,10 C2 45,46 RF2 50 ohms 2,38 3,39 4,40 GND Pins and Base Pad SWA SWB SWC Control Lines Recommended Component List (or equivalent): Part Value Part Number Manufacturer C1,C2 0.1μF 0402BB104KW160 Passives Plus C3-C8 0.1μF C1005X7R1H104K050BB TDK FB1,FB2 MMZ1005A222E TDK R1,R2 100 Ω CRCW0402100RFKED Vishay Notes: 1. RC filtering on the control lines is recommended to prevent digital noise from coupling to the RF path. Select control line RC filter values based on desired logic source decoupling and switching speed. 10

Alternate Application Single Control Voltage Control Line +V Supply C3,C4 VCTRL 1k 1k FB1,FB2 28,64 27,63 17,53 RF1 50 ohms C1 9,10 C2 45,46 RF2 50 ohms 2,38 3,39 4,40 GND Pins and Base Pad SWA SWB SWC Control Lines Recommended Component List (or equivalent): Part Value Part Number Manufacturer C1,C2 0.1μF 0402BB104KW160 Passives Plus C3,C4 0.1μF C1005X7R1H104K050BB TDK FB1,FB2 MMZ1005A222E TDK Notes: 1. The resistive divider between pins 28/64 and 27/63 exists to normalize percentage bandwidth over the full +0.5V - +10V range. a. Tying pins 28/64 and 27/63 to the same control voltage without the divider is possible, but the bandwidth will be narrower with higher insertion loss over the tuning range 2. RC filtering on the control lines is recommended to prevent digital noise from coupling to the RF path. Select control line RC filter values based on desired logic source decoupling and switching speed. 11

10.0mm 10.0mm +/-0.1 8.2mm +/-0.05 AM3089 Filter Bank Package Details Package Drawing Top View Bottom View Pin 1 Marking Atlanta Micro Part Number Date Code 1 18 72 55 A M 3 0 8 9 YYWW 54 37 0.20mm 0.40mm Pin 1 0.50mm 19 36 10.0mm +/-0.1 8.2mm +/-0.05 1.14mm +/-0.1 Notes: 1. All dimensions shown are in mm 2. Lid material: Black Plastic BT 3. Lead finish: Ni, Pd, Au Recommended Footprint Pin 1 Side View 0.75mm 8PL Package Outline 0.50mm Pad and Spacing Detail 0.25mm 0.40mm 0.60mm Package Outline 0.50mm Recommend 0.08mm soldermask oversize beyond pad outlines Center Ground Pad 8.2mm x 8.2mm Ground Vias 10mil drill typical Apply solderpaste for approximately 2/3 coverage over ground pad to allow for flow 8.5mm 10.0mm 12

Evaluation PC Board VHP VLP RF 1 RF 2 +V Supply Related Parts Part Number AM3134 AM3135 AM3136 Description 2.0 4.5 GHz Analog Tunable Filter Bank 3.5 9.0 GHz Analog Tunable Filter Bank 8.0 19.0 GHz Analog Tunable Filter Bank 13

Component Compliance Information RoHS: Atlanta Micro, Inc. hereby certifies that all products comply with the EC Directive 2011/65/EC on the Restriction of Hazardous Substances, commonly known as RoHS II. All products supplied by Atlanta Micro shall be compliant with the European Directive 2011/65/EC based on the following substance list. Substance List Lead (Pb) Mercury (Hg) Cadmium (Cd) Hexavalent Chromium (CrVl) Polybrominated Biphenyls (PBB) Polybrominated Diphenyl ethers (PBDE) Decabromodiphenyl Deca BDE Allowable Maximum Concentration <1000 PPM (0.1% by weight) <1000 PPM (0.1% by weight) <75 PPM (0.0075% by weight) <1000 PPM (0.1% by weight) <1000 PPM (0.1% by weight) <1000 PPM (0.1% by weight) <1000 PPM (0.1% by weight) REACH: Atlanta Micro, Inc. neither uses nor intentionally adds any of the substances considered to be a Substance of Very High Concern (SVHC) as defined by the EU Regulation (EC) No. 1907-2006 on Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH). Conflict Materials: Atlanta Micro does not knowingly use materials that are sourced from the Democratic Republic of Congo (DRC) or any other known conflict regions. Atlanta Micro s supply chain is comprised of sources that are both environmentally and socially responsible. We periodically review this requirement with our vendors to ensure continued compliance. Atlanta Micro takes its responsibility as a global partner seriously and will use due diligence within our supply chain to ensure all standards are met to the best of our knowledge. 14