Data Sheet. ACPF-8040 Bandpass Filter for 3GPP Band 40. Features. Description. Functional Block Diagram. Specifications (Typ, 25 C) Applications

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1 ACPF-84 Bandpass Filter for 3GPP Band 4 Data Sheet Description The Avago ACPF-84 is a miniaturized Bandpass Filter designed for use in 3GPP Band 4 wireless applications (23 24 MHz DL, MHz UL). The ACPF-84 is designed to enable concurrent operation of 3GPP Band 4 with applications in adjacent frequency spectrum, such as ISM 2.4 GHz band (WLAN, Bluetooth). The ACPF-84 uses Avago Technologies innovative Film Bulk Acoustic Resonator (FBAR) technology, which makes possible ultra-small, high-q filters at a fraction of their usual size. The ACPF-84 is compatible with high volume, lead-free SMT soldering processes and can be direct surface mounted to a PCB or a transfer molded module. Functional Block Diagram TX Port 1 (Pin 1) ANT Port 2 (Pin 2) Features 5 Input/Output No external matching required Low Insertion Loss, High Interference Rejection Miniature Size 1.6 x 2. mm size.95 mm Max Height High Power Rating +3 dbm Abs Max Input Power Environmental RoHS 6 Compliant Halogen free TBBPA Free Specifications (Typ, 25 C) Insertion Loss: 2. db Rejection IEEE b/g/n signals: 35 db Typ 3GPP Band 7 and Band 38: 35 db Typ Applications 3GPP Band 4 applications in handsets, mobile and portable communications devices. Optimum performance MHz, usable MHz.

2 ACPF-84 Electrical Specifications [2], Z = 5, T C [1] Symbol Parameter Units Insertion Loss 3GPP Band 4 (2 MHz channel average [4] ) MHz MHz Insertion Loss 3GPP Band 4, (Single tone) MHz 2 MHz Channel Flatness (p-p) MHz Attenuation in Cell Rx Band MHz Attenuation in GPS Band MHz Attenuation in PCS Rx Band MHz Attenuation in WLAN/ISM 2.4GHz Band (Averaged per channel using 82.11b spectrum mask) MHz (Channel 1) MHz (Channel 2) MHz (Channel 3) MHz (Channels 4 to 14) Attenuation in 3GPP Band 7, Band MHz Attenuation, MHz Attenuation in Band 4 2 nd Harmonic MHz S11 Return Loss (SWR) at Ant (Port 1) MHz S22 Return Loss (SWR) at Tx/Rx (Port 2) MHz db C +15 to +35 C -3 to +85 C Typ [3] Min Max Min Max db db.6 1. db db db db db db 11.4 db db 17 (1.3) db 18 (1.3) 1. T C is the case temperature and is defined as the temperature of the underside of the Filter where it makes contact with the circuit board. 2. Min/Max specifications are guaranteed at the indicated temperature (unless otherwise noted). 3. Typical data is the average value (arithmetic mean) of the parameter over the indicated band at the specified temperature. Typical values may vary over time. 4. Channel average Insertion Loss is obtained by averaging over 2 MHz channels and converting to db values. ACPF-84 Absolute Maximum Ratings [1] Parameter Unit Value Storage temperature C -4 to +125 Maximum RF Input Power, MHz dbm +3 Maximum Recommended Operating Conditions [2] Parameter Unit Value Operating temperature, Tc [3] C -3 to Operation in excess of any one of these conditions may result in permanent damage to the device. 2. The device will function over the recommended range without degradation in reliability or permanent change in performance, but is not guaranteed to meet electrical specifications. 3. T C is defined as case temperature, the temperature of the underside of the Filter where it makes contact with the circuit board. 9 (2.1) 9 (2.1) 9 (2.1) 9 (2.1) 2

3 ACPF-84 Typical Performance at Tc = 25 C Figure 1. Insertion Loss, 3GPP Band 4 Figure 2. Return Loss, 3GPP Band 4 Return Loss (db) Figure 3. Wideband Attenuation, 5 85 MHz Figure 4. Attenuation, Cellular Rx Band Figure 5. Attenuation, GPS Band Figure 6. Attenuation, PCS Rx Band 3

4 ACPF-84 Typical Performance at Tc = 25 C Figure 7. Attenuation, WLAN/2.5 GHz ISM Band Figure 8. Attenuation, Band 7, Band Figure 9. Attenuation, GHz Figure 1. S11, 3GPP Band 4 Figure 11. S22, 3GPP Band 4 4

5 ACPF-84 TX (Pin 1) PRODUCT ID & PIN 1 MARK.9 (.95 MAX).8 TX (Pin 1) (1) 45 x.2 A B 2. (2.1 MAX) (GND) C D (2) (1.7 MAX) ANT (Pin 2) ANT (Pin 2) TOP VIEW SIDE VIEW BOTTOM VIEW 1. Dimensions in millimeters 2. Tolerance: X.XX ±.5 X.XXX ± Dimensions nominal unless otherwise noted 4. Contact areas are gold plated 5. TX should be connected to Pin 1, ANT to Pin 2 for optimum performance Figure 12. Package Outline Drawing and Marking I/O PAD DETAIL + A C B D + = Product Identification (ACPF-84 and Package Orientation Mark (Pin 1) A = Work Week B = Date Code C, D = Manufacturing Lot Number Figure 13. Package Marking 5

6 ACPF Dimensions in mm 2. Top view Figure 14. Suggested PCB Layout (top view) A PCB layout using the principles illustrated in the figure above is recommended to optimize performance of the ACPF-84. Note: This filter is not completely symmetrical. Optimum performance is obtained with the Tx block connected to Pin 1 and the system Antenna connected to Pin 2. It is important to maximize isolation between the Input and Output ports to maintain out-of-band rejection. High isolation is achieved by: (1) maintaining a continuous ground plane around the I/O connections, and (2) surrounding the I/O ports with sufficient ground vias to enclose the connections in a Faraday cage. 6

7 ACPF Dimensions in mm 2. Top view 3. Chamfer or radius all corners.5 mm min Figure 15. ACPF-84 Superposed on PCB Layout (top view) Figure 16. Recommended Solder Stencil (top view) Figure 17. Evaluation board (SMA connectors) for ACPF-84 (top view) Figure 18. Evaluation board (SMA connectors) for ACPF-84 (bottom view) 7

8 ACPF-84 Figure 19. SMD Tape Packing Pin 1 Position User Feed Direction Empty Leader : 125 Pocket 1 Leader : 125 Pocket 1 + A C B D + A C B D + A C B D Figure 2. Orientation in Tape TOP VIEW END VIEW 8

9 ACPF-84 SEE DETAIL "X" SLOT HOLE "b" SLOT HOLE (2x) 18 APART mm EMBOSSED LETTERS LETTERING THICKNESS: 1.6 mm 6 PS RECYCLE LOGO PS 6 FRONT VIEW SLOT HOLE "a" Ø 178. ±.5 FRONT BACK SLOT HOLE "a": 3. ±.5 mm (1x) SLOT HOLE "b": 2.5 ±.5 mm (1x) No. Color Surface Resistivity 1. Pantone 285U Dark Blue Antistatic Coated per square 2. Black Conductive <1 6 per square 3. White Antistatic Impregnated per square 4. Pantone 3295C Dark Green 5. Pantone 186C Dark Red 6. Pantone 278C Light Blue Antistatic Coated per square Antistatic Coated per square Antistatic Coated per square 7. White Antistatic Coated per square 8. Natural Antistatic Coated per square 9. Pantone 298C 299C Dull Light Blue Antistatic Coated per square Note: X in Part Numbering donotes colour code R * MIN. +.5 Ø Ø 2.2 MIN. 12 R5.2 FRONT BACK DETAIL "X" 45 Ø 55. ±.5 Ø 178. ± DETAIL "Y" (Slot Hole) 1. UNLESS OTHERWISE SPECIFIED. DIMENSIONS ARE IN MILLIMETERS EMBOSSED RIBS RAISED:.25 mm, WIDTH: 1.25 mm BACK VIEW Ø 178. ±.5 Ø 51.2 ±.3 SEE DETAIL "Y" 18.* MAX. TOLERANCES: DECIMALS ANGLES.X = ±.25 ±.5.XX = ±.13.XXX = DO NOT SCALE DRAWING MATERIAL: HIPS 1. Measured at HUB area. 2. All flange edges to be rounded. 3. Marked "Made in Malaysia" outside all carton boxes. 4. Cref Old P/D: H-JE8-1 & H-JE12-1 Figure 21. SMT Reel Drawing 9

10 ACPF-84 Package Moisture Sensitivity Feature Test Method Performance Moisture Sensitivity Level (MSL) at 26 C JESD22-A113D Level Temperature, C Tested profile shown Time, seconds PROFILE.GRF PROFILE. WMF 6 February 23 R. Waugh Figure 22. Verified SMT Solder Profile Ordering Information Part Number No. of Devices Container ACPF-84-BLK 1 Tape Strip or Anti-static Bag ACPF-84-TR mm (7-inch) Reel For product information and a complete list of distributors, please go to our web site: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries. Data subject to change. Copyright 2512 Avago Technologies. All rights reserved. AV2-3746EN - October 9, 212

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