ACPF-7024-BLK [AVAGO]

2441.5MHz, BAND PASS FILTER, ROHS COMPLIANT, HALOGEN FREE, MINIATURE, SMD, 3 PIN;
ACPF-7024-BLK
型号: ACPF-7024-BLK
厂家: AVAGO TECHNOLOGIES LIMITED    AVAGO TECHNOLOGIES LIMITED
描述:

2441.5MHz, BAND PASS FILTER, ROHS COMPLIANT, HALOGEN FREE, MINIATURE, SMD, 3 PIN

LTE
文件: 总9页 (文件大小:490K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
ACPF-7024  
ISM Bandpass Filter (2401 – 2482 MHz)  
Data Sheet  
Features  
Description  
 50 Input/Output  
The Avago ACPF-7024 is a miniaturized Bandpass Filter  
designed for use in the 2.4 GHz Industrial, Scientific and  
Medical (ISM) band.  
 No external matching required  
 Low Insertion Loss, High Interference Rejection  
TheACPF-7024isdesignedtoenableconcurrentoperation  
of Wireless LAN and Bluetooth applications which coexist  
with other wireless standards, such as 2.5 GHz WiMAX,  
PCS, and LTE Bands 7 and 40, without performance degra-  
dations due to interference.  
 Miniature Size  
– 1.6 x 2.0 mm size  
– 0.95 mm Max Height  
 High Power Rating  
– +27 dBm Abs Max Input Power  
The ACPF-7024 is designed with Avago Technologies’ in-  
novative Film Bulk Acoustic Resonator (FBAR) technol-  
ogy, which makes possible ultra-small, high-Q filters at a  
fraction of their usual size.  
 Environmental  
– RoHS 6 Compliant  
– Halogen free  
– TBBPA Free  
The ACPF-7024 also utilizes AvagoTechnologies’advanced  
Microcap bonded-wafer technology. This chip scale min-  
iaturization process results in a package footprint of only  
1.6 x 2.0 mm with a maximum height of 0.95 mm  
Specifications  
 Performance guaranteed -30° to +85°C  
 Low Insertion Loss  
The ACPF-7024 is compatible with high volume, lead-free  
SMT soldering processes and can be direct surface  
mounted to a PCB or a transfer molded module.  
Applications  
802.11 b/g/n WLAN or Bluetooth datacom in handsets,  
mobile and portable communications devices.  
Functional Block Diagram  
Port 1  
Port 2  
[2]  
[1]  
ACPF-7024 Electrical Specifications , Z = 50 , T  
-30° C to +85° C unless otherwise specified  
0
C
[3]  
Symbol  
Parameter  
Units  
Min  
Typ  
Max  
S21  
Insertion Loss  
dB  
2401 – 2473 MHz  
2401 – 2480 MHz  
2480 – 2482 MHz (+25° C to +85° C)  
2480 – 2482 MHz (-30° C to +25° C)  
1.1  
1.2  
2.6  
2.0  
2.5  
3.5  
5.0  
3.0  
S21  
S21  
S21  
S21  
S21  
S21  
Amplitude Ripple (p-p), 2401 – 2473 MHz  
Attenuation, 800 – 2000 MHz  
dB  
dB  
dB  
dB  
dB  
dB  
0.8  
33  
42  
45  
37  
2.0  
30  
30  
Attenuation, 2000 – 2300 MHz  
Attenuation in LTE Band 40, 2300 – 2370 MHz  
Attenuation in LTE Band 40, 2370 – 2380 MHz  
Attenuation[4], 2496 – 2502 MHz (WiMAX)  
+25° C to +85° C  
30  
20  
-30° C to +25° C  
S21  
S21  
Attenuation, 2500 – 2502 MHz (LTE Band 7, WiMAX)  
+25° C to +85° C  
0° C to +25° C  
-30° C to +25° C  
Attenuation [4], 2500 – 2510 MHz (LTE Band 7, low channel)  
dB  
dB  
30  
15  
10  
45  
40  
30  
+25°C to +85°C  
–30°C to +25°C  
50  
45  
S21  
Attenuation, 2502 – 2690 MHz (LTE Band 7, WiMAX)  
Attenuation, 2690 – 5000 MHz  
dB  
dB  
dB  
35  
28  
9
51  
38  
S21  
S11, S22  
Notes:  
Return Loss (SWR), 2401 – 2482 MHz  
12 (1.7)  
(2.1)  
1.  
T is the case temperature and is defined as the temperature of the underside of the Filter where it makes contact with the circuit board.  
C
2. Min/Max specifications are guaranteed at the indicated temperature (unless otherwise noted). Ports 1 and 2 are interchangeable (Filter is  
symmetrical).  
3. Typical data is the average value (arithmetic mean) of the parameter over the indicated band at the specified temperature range.  
4. Average insertion Loss with constant weighting over indicated frequency range.  
[1]  
Absolute Maximum Ratings  
Parameter  
Unit  
°C  
Value  
Storage temperature  
-40 to +125  
+27  
Maximum RF Input Power to Port 1 or Port 2  
dBm  
[2]  
Maximum Recommended Operating Conditions  
Parameter  
Unit  
Value  
[3]  
Operating temperature, TC  
,
°C  
-30 to +85  
Notes:  
1. 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 is defined as case temperature, the temperature of the underside of the Filter where it makes contact with the circuit board.  
C
2
ACPF-7024 Typical Performance at TC = 25°C  
0.0  
-0.5  
-1.0  
-1.5  
-2.0  
-2.5  
0.0  
-0.5  
-1.0  
-1.5  
-2.0  
-2.5  
-3.0  
-3.0  
2410 2420 2430 2440 2450 2460 2470  
Frequency (MHz)  
2420  
2440  
Frequency (MHz)  
2460  
2480  
Figure 1. Insertion Loss, 2401 – 2473 MHz  
Figure 2. Insertion Loss, 2401 – 2482 MHz  
0
-10  
-20  
-30  
-40  
-50  
-60  
0
-10  
-20  
-30  
-40  
-50  
-60  
2350  
2400  
2450  
Frequency (MHz)  
2500  
2550  
2000  
4000  
Frequency (MHz)  
6000  
Figure 3. Attenuation, 2350 – 2550 MHz  
Figure 4. Wideband Attenuation, 0.05 – 8000 MHz  
0
-10  
-20  
-30  
-40  
-50  
-60  
0
-10  
-20  
-30  
-40  
-50  
-60  
800  
1000  
1200  
1400  
1600  
1800  
2000  
2300  
2320  
2340  
2360  
2380  
Frequency (MHz)  
Frequency (MHz)  
Figure 5. Attenuation, 800 – 2100 MHz  
Figure 6. Rejection in LTE Band 40 (2300 – 2380 MHz)  
3
ACPF-7024 Typical Performance at TC = 25°C  
0
-10  
-20  
-30  
-40  
-50  
-60  
-70  
-80  
0
-10  
-20  
-30  
-40  
-50  
-60  
-70  
-80  
2496  
2497  
2498  
2499  
2500  
2501  
2502  
2500  
2550  
2600  
2650  
Frequency (MHz)  
Frequency (MHz)  
Figure 7. Attenuation, 2496 – 2502 MHz  
Figure 8. Rejection in 2.5 GHz WiMAX and LTE Band 7 (2500 – 2690 MHz)  
0
-10  
-20  
-30  
-40  
-50  
-60  
-70  
-80  
0
-5  
-10  
-15  
-20  
-25  
-30  
3000  
3500  
4000  
4500  
5000  
2400  
2420  
2440  
2460  
2480  
Frequency (MHz)  
Frequency (MHz)  
Figure 9. Attenuation, 2690 – 5000 MHz  
Figure 10. Input, Output Port Return Loss, 2400 – 2482 MHz  
1
1
0.8  
0.8  
1.5  
1.5  
0.6  
0.6  
2
2
0.4  
0.4  
3
3
4
5
4
5
10  
20  
10  
20  
50  
50  
0.2 0.4 0.6 0.8 1 1.5  
2
3
4 5 102050  
0.2 0.4 0.6 0.8 1 1.5  
2
3
4 5 102050  
-50  
-20  
-10  
-50  
-20  
-10  
-5  
-4  
-5  
-4  
-3  
-3  
-0.4  
-0.4  
-2  
-2  
-0.6  
-0.6  
-1.5  
-1.5  
-0.8  
-1  
-0.8  
-1  
Figure 11. Input Port Impedance, 2400 – 2482 MHz  
Figure 12. Output Port Impedance, 2400 – 2482 MHz  
4
ACPF-7024  
1.80  
0.90  
2.0  
0.35  
2
1.20  
0.35  
0.80  
0.80  
0.35  
1.6  
1.40  
3
1
1.20  
0.35  
0.20 x 45°  
Pin 1 Marking  
TOP VIEW  
SIDE VIEW  
BOTTOM VIEW  
Notes  
Pin Connections  
1 Input/Output  
2 Output/Input  
3 Ground  
1. Dimensions in mm  
Tolerance: X.X 0.1 mm  
X.XX 0.05 mm  
2. Dimensions nominal unless otherwise noted  
3. Angles 45° nominal  
4. Contact areas are gold plated  
5. Marking:  
A = Work Week  
B = Date Code  
C, D = Lot Number  
Figure 13. Package Outline Drawing and Marking  
Notes:  
1. Dimensions in mm  
2. Top view  
Figure 14. Suggested PCB Layout (top view)  
5
ACPF-7024  
A PCB layout using the principles illustrated in the figure  
above is recommended to optimize performance of the  
ACPF-7024.  
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 continu-  
ous 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.”  
Note: This filter is symmetrical; either port can be used for  
either the Input or Output.  
Figure 15. ACPF-7024 Superposed on PCB Layout (top view)  
Notes:  
1. Dimensions in mm  
2. Top view  
3. Chamfer or radius all corners 0.05 mm min  
Figure 16. Recommended Solder Stencil (top view)  
6
Figure 17. Evaluation board (SMA connectors) for ACPF-7024, top view  
Figure 18. Evaluation board (SMA connectors) for ACPF-7024, bottom view  
ACPF-7024  
Figure 19. SMD Tape Packing  
Figure 20. Orientation in Tape  
7
ACPF-7024  
6.25mm EMBOSSED LETTERS  
LETTERINGTHICKNESS: 1.6mm  
SLOT HOLE "a"  
SEE DETAIL "X"  
SLOT HOLE "b"  
Ø178.0 0.5  
No. Color  
Surface Resistivity  
1.  
2.  
3.  
4.  
5.  
6.  
7.  
8.  
9.  
Pantone 285U  
Antistatic Coated  
6
11  
Dark Blue  
10 –10 per square  
FRONT  
BACK  
Black  
Conductive  
6
<10 per square  
White  
Antistatic Impregnated  
6
11  
10 –10 per square  
Pantone 3295C Antistatic Coated  
Dark Green  
6
11  
10 –10 per square  
Pantone 186C  
Dark Red  
Antistatic Coated  
6
11  
10 –10 per square  
Pantone 278C  
Light Blue  
Antistatic Coated  
6
6
11  
10 –10 per square  
PS  
White  
Antistatic Coated  
6
11  
10 –10 per square  
Natural  
Antistatic Coated  
6
11  
10 –10 per square  
Pantone  
298C–299C  
Dull Light Blue  
Antistatic Coated  
SLOT HOLE(2x)  
180° APART.  
6
11  
10 –10 per square  
Note: X in Part Numbering donotes colour code  
6
PS  
SLOT HOLE "a": 3.0 0.5mm(1x)  
SLOT HOLE "b": 2.5 0.5mm(1x)  
FRONT VIEW  
RECYCLE LOGO  
1.5 MIN.  
+1.5*  
12.4  
+0.5  
-0.2  
Ø13.0  
-0.0  
R10.65  
R5.2  
Ø20.2 MIN.  
FRONT  
BACK  
DETAIL "X"  
3.5  
DETAIL "Y"  
(Slot Hole)  
UNLESS OTHERWISE SPECIFIED.  
DIMENSIONS ARE IN MILLIMETERS  
TOLERANCES:  
DECIMALS  
ANGLES  
0.5°  
.X  
.XX  
=
=
0.25  
0.13  
.XXX =  
DO NOT SCALE DRAWING  
MATERIAL: HIPS  
Ø178.0 0.5  
Ø51.2 0.3  
EMBOSSED RIBS  
RAISED: 0.25mm, WIDTH: 1.25mm  
18.0*  
MAX.  
SEE DETAIL "Y"  
BACK VIEW  
Notes:  
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-JE0008-01 & H-JE0012-01  
Figure 21. SMT Reel Drawing  
8
Package Moisture Sensitivity  
Feature  
Test Method  
Performance  
Moisture Sensitivity Level (MSL) at 260° C  
JESD22-A113D  
Level 3  
300  
250  
200  
150  
100  
50  
Tested profile shown.  
0
0
50  
100  
150  
200  
250  
300  
PROFILE.GRF  
PROFILE. WMF  
6 February 2003  
R. Waugh  
Time, seconds  
Figure 22. Verified SMT Solder Profile  
Ordering Information  
Part Number  
No. of Devices  
Container  
ACPF-7024-BLK  
ACPF-7024-TR1  
100  
Tape strip or Gel-Pack  
7-inch (178 mm) Reel  
3000  
For product information and a complete list of distributors, please go to our web site: www.avagotech.com  
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries.  
Data subject to change. Copyright © 2005-2011 Avago Technologies. All rights reserved.  
AV02-2603EN - July 27, 2011  

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