ACMD-7606 [BOARDCOM]

UMTS Band 8 Duplexer;
ACMD-7606
型号: ACMD-7606
厂家: Broadcom Corporation.    Broadcom Corporation.
描述:

UMTS Band 8 Duplexer

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ACMD-7606  
UMTS Band 8 Duplexer  
Data Sheet  
Description  
Features  
The Avago ACMD-7606 is a highly miniaturized duplexer  
designed for use in UMTS Band 8 (880 – 915 MHz UL, 925 –  
960 MHz DL) handsets and mobile data terminals.  
ꢀꢁ Miniature Size  
– 2.0 x 2.5 mm Max size  
– 0.95 mm Max Height  
– Standard 2 x 2.5 mm PCB footprint  
Low Insertion Loss in the Tx channel minimizes current  
drain from the power amplifier, while low Rx channel  
Insertion Loss improves receiver sensitivity.  
ꢀꢁ High Power Rating  
– 31 dBm Abs Max Tx Power  
ꢀꢁ Environmental  
– RoHS Compliant  
– Halogen free  
– TBBPA Free  
The ACMD-7606 enhances the sensitivity and dynamic  
range of handset receivers by providing high isolation of  
the transmitted signal from the receiver input and high  
rejection of transmit-generated noise in the receive band.  
The ACMD-7606 is designed with Avago Technologies’  
innovative Film Bulk Acoustic Resonator (FBAR) tech-  
nology, which makes possible ultra-small, high-Q filters at  
a fraction of their usual size. The excellent power handling  
capability of FBAR bulk-mode resonators supports the  
high output power levels used in mobile communications  
applications, while adding virtually no distortion.  
Specifications  
ꢀꢁ Rx Band Performance, –20 to +85°C  
– Insertion Loss: 3.0 dB Max  
– Rx Noise Blocking: 50 dB Min  
ꢀꢁ Tx Band Performance, –20 to +85°C  
– Insertion Loss: 2.7 dB Max  
– Tx Interferer Blocking: 55 dB Min  
The ACMD-7606 also utilizes Avago Technologies’  
advanced Microcap bonded-wafer, chip scale packaging  
technology. This process allows the filters to be assembled  
into a molded chip-on-board module with an overall  
maximum size of 2.0 x 2.5 mm and maximum height of  
0.95 mm. The ACMD-7606 is compatible with standard 2.0  
x 2.5 mm duplexer PCB footprints.  
Applications  
Handsets or data terminals operating in the Band 8  
frequency range.  
Functional Block Diagram  
Ant  
Port 3  
Rx  
Port 2  
Tx  
Port 1  
[2]  
[1]  
ACMD-7606 Electrical Specifications , Z =50 , T as indicated  
0
C
–20°C  
Units Min  
+25°C  
Min  
+85°C  
Min  
[3]  
[3]  
[3]  
Symbol Parameter  
Antenna Port to Receive Port  
Typ  
Max  
Typ  
Max  
Typ  
Max  
S23  
S22  
S23  
Insertion Loss in Receive Channels [4]  
(927.4 – 957.6 MHz)  
dB  
dB  
dB  
3.0  
2.2  
10  
3.0  
3.0  
Return Loss (SWR) of Receive Port in  
Receive Band  
8.5  
45  
(2.2)  
8.5  
45  
(2.2)  
8.5  
45  
(2.2)  
(1.9)  
Attenuation in Transmit Band  
(880 – 915 MHz)  
55  
S23  
S23  
S23  
S23  
Attenuation, 0 – 835 MHz  
Attenuation, 835 – 870 MHz  
Attenuation, 1805 – 1875 MHz  
dB  
dB  
dB  
dB  
28  
30  
35  
30  
28  
30  
35  
30  
32  
32  
37  
40  
28  
30  
35  
30  
Attenuation in Bluetooth Band  
(2400 – 2483.5 MHz)  
S23  
Attenuation, 2685 – 2790 MHz  
dB  
22  
22  
27  
22  
Transmit Port to Antenna Port  
S31  
S11  
S31  
Insertion Loss in Transmit Channels [4]  
(882.4 – 912.6 MHz)  
dB  
dB  
dB  
2.7  
2.2  
2.7  
2.7  
Return Loss (SWR) of Transmit Port in  
Transmit Band  
8.5  
44  
(2.2)  
8.5  
44  
10  
(1.9)  
(2.2)  
8.5  
44  
(2.2)  
Attenuation in Receive Band  
(925 – 960 MHz)  
56  
S31  
S31  
Attenuation, 0 – 820 MHz  
dB  
dB  
32  
27  
32  
27  
39  
30  
32  
27  
Attenuation in GPS Rx Band  
(1574.42 – 1576.42 MHz)  
S31  
Attenuation in Transmit  
2
dB  
25  
25  
30  
25  
nd Harmonic Band  
(1760 – 1830 MHz)  
S31  
S31  
Attenuation in Bluetooth Band  
(2400 – 2483.5 MHz)  
dB  
dB  
27  
22  
27  
22  
30  
30  
27  
22  
Attenuation, 2640 – 2745 MHz  
Antenna Port  
S33  
S33  
Return Loss (SWR) of Ant Port in Rx  
Band (925 – 960 MHz)  
dB  
8.5  
8.5  
(2.2)  
(2.2)  
8.5  
8.5  
10  
(1.9)  
Return Loss (SWR) of Ant Port in Tx Band dB  
(880 – 915 MHz)  
10  
(1.9)  
Isolation Transmit Port to Receive Port  
S21  
S21  
Tx-Rx Isolation in Receive Band  
(925 – 960 MHz)  
dB  
dB  
50  
52  
50  
52  
55  
60  
Tx-Rx Isolation in Transmit Band  
(880 – 915 MHz)  
Notes:  
1.  
T is the case temperature and is defined as the temperature of the underside of the Duplexer where it makes contact with the circuit board.  
C
2. Min/Max specifications are guaranteed at the indicated temperature with the input power to the Tx port equal to or less than +29 dBm over all Tx  
frequencies unless otherwise noted.  
3. Typical data is the average value of the parameter over the indicated band at the specified temperature. Typical values may vary over time.  
4. Integrated Insertion Loss over any 3.84 MHz channel within the band.  
2
[1]  
Absolute Maximum Ratings  
Parameter  
Unit  
°C  
Value  
Storage temperature  
–65 to +125  
+31  
Maximum RF Input Power to Tx Port  
dBm  
[2]  
Maximum Recommended Operating Conditions  
Parameter  
Unit  
°C  
Value  
Operating temperature, TC [3], Tx Power ≤ 29 dBm  
Operating temperature, TC [3], Tx Power ≤ 30 dBm  
Notes:  
–40 to +100  
–40 to +85  
°C  
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 duplexer where it makes contact  
C
with the circuit board.  
3
ACMD-7606 Typical Performance at Tc = 25°C  
0.0  
-0.5  
-1.0  
-1.5  
-2.0  
-2.5  
-3.0  
0.0  
-0.5  
-1.0  
-1.5  
-2.0  
-2.5  
-3.0  
880  
885  
890  
895  
900  
905  
910  
915  
925  
930  
935  
940  
945  
950  
955  
960  
Frequency (MHz)  
Frequency (MHz)  
Figure1. Tx–Ant Insertion Loss  
Figure 2. Ant–Rx Insertion Loss  
0
-10  
-20  
-30  
-40  
-50  
-60  
-30  
-35  
-40  
-45  
-50  
-55  
-60  
-65  
-70  
-75  
-70  
-80  
850  
900  
950  
1000  
850  
900  
950  
1000  
Frequency (MHz)  
Frequency (MHz)  
Figure 3. Tx Rejection in Rx Band and Rx Rejection in Tx Band  
Figure 4. Tx–Rx Isolation  
0
-5  
0
-5  
-10  
-15  
-20  
-25  
-10  
-15  
-20  
-25  
850  
900  
950  
1000  
850  
900  
950  
1000  
Frequency (MHz)  
Frequency (MHz)  
Figure 5. Tx and Rx Port Return Loss  
Figure 6. Antenna Port Return Loss  
4
ACMD-7606 Typical Performance at Tc = 25°C  
0
-10  
-20  
-30  
-40  
-50  
-60  
-70  
-30  
-31  
-32  
-33  
-34  
-35  
-36  
-37  
-38  
-39  
-40  
1000  
2000  
3000  
4000  
5000  
1574  
1575  
1576  
1577  
Frequency (MHz)  
Frequency (MHz)  
Figure 7. Tx–Ant and Ant–Rx Wideband Insertion Loss  
Figure 8. Tx–Ant Rejection in GPS Band  
-20  
-30  
-40  
-50  
-60  
-70  
-80  
-20  
-30  
-40  
-50  
-60  
-70  
-80  
200  
400  
600  
800  
200  
400  
Frequency (MHz)  
600  
800  
Frequency (MHz)  
Figure 9. Tx–Ant Low Frequency Rejection, 1 – 820 MHz  
Figure 10. Ant–Rx Low Frequency Rejection, 1 – 835 MHz  
-30  
-32  
-34  
-36  
-38  
-40  
-42  
-44  
-46  
-48  
-50  
-30  
-32  
-34  
-36  
-38  
-40  
-42  
-44  
-46  
-48  
-50  
2400  
2420  
2440  
2460  
2480  
2400  
2420  
2440  
2460  
2480  
Frequency (MHz)  
Frequency (MHz)  
Figure 11. Tx–Ant Rejection in Bluetooth Band  
Figure 12. Ant–Rx Rejection in Bluetooth Band  
5
ACMD-7606 Typical Performance at Tc = 25°C  
-26  
-28  
-30  
-32  
-34  
-36  
-38  
-40  
-20  
-25  
-30  
-35  
-40  
-45  
-50  
1760  
1770  
1780  
1790  
1800  
1810  
1820  
2640  
2660  
2680  
2700  
2720  
2740  
Frequency (MHz)  
Frequency (MHz)  
Figure 13. Tx–Ant Rejection at Tx Second Harmonic  
Figure 14. Tx–Ant Rejection, 2640 – 2745 MHz  
-40  
-42  
-44  
-46  
-48  
-50  
-52  
-54  
-56  
-58  
-60  
-50  
-52  
-54  
-56  
-58  
-60  
-62  
-64  
-66  
-68  
-70  
835  
840  
845  
850  
855  
860  
865  
870  
1810 1820 1830 1840 1850 1860 1870  
Frequency (MHz)  
Frequency (MHz)  
Figure 15. Ant–Rx Rejection, 835 –870 MHz  
Figure 16. Ant–Rx Rejection, 1805 –1875 MHz  
-20  
-22  
-24  
-26  
-28  
-30  
-32  
-34  
-36  
-38  
-40  
2700  
2720  
2740  
2760  
2780  
Frequency (MHz)  
Figure 17. Ant–Rx Rejection, 2685 –2790 MHz  
6
ACMD-7606 Typical Performance at Tc = 25°C  
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 0.81 1.5 2 3 4 5 102050  
0.2 0.4 0.6 0.81 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  
-0.8  
-1  
-1  
Figure 18. Tx Port Impedance in Tx Band  
Figure 19. Rx Port Impedance in Rx Band  
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 0.81 1.5 2 3 4 5 102050  
0.2 0.4 0.6 0.81 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  
-0.8  
-1  
-1  
Figure 20. Ant Port Impedance in Tx Band  
Figure 21. Ant Port Impedance in Rx Band  
7
2.30  
2.5  
MAX  
0.95  
MAX  
1.15  
(6)  
ANT  
(5)  
(7)  
GND  
OPT  
RX  
GND  
GND  
TX  
2.0  
MAX  
(8)  
(GND)  
(9)  
(4)  
GND  
0.40  
ORIENTATION  
MARK  
(3)  
(2)  
(1)  
0.90  
TOP VIEW  
SIDE VIEW  
BOTTOM VIEW  
Notes:  
Pin Connections:  
1. Dimensions in millimeters  
Tolerance: X.X 0.1 mm  
X.XX 0.05 mm  
2. Dimensions nominal unless otherwise noted  
3. Angles 45° nominal  
1
Rx  
Gnd  
Tx  
2, 4, 5, 7, 9  
3
6
8
Ant  
Optional: Gnd, NC or Rx(–)  
4. I/O Pads (3 ea)  
Size: 0.40 X 0.40 mm  
Spacing to ground metal: 0.30 mm  
5. Contact areas are gold plated  
Figure 22. Package Outline Drawing  
0.90  
(REF)  
0.05 X 45°  
0.15 X 45°  
0.1  
0.40  
I/O PADS (3 PLS)  
CENTER GROUND PAD  
Figure 23. Pad Detail  
8
3 X 0.20  
50-OHM LINE  
6 X 0.25 TYP  
(ADJUST FOR 50 OHMS)  
Ant  
3 X 0.50 X 0.50  
LAND PAD  
3 X 0.90 X .095, CHAMFER 0.12 X 45°  
GROUND PLANE OPENING FOR LAND PAD  
Rx  
Tx  
0.95  
Notes:  
1. Dimensions in mm  
2. Top view  
1.90  
Figure 24. Suggested PCB Layout  
A PCB layout using the principles illustrated in the figure  
above is recommended to optimize performance of the  
ACMD-7606.  
High isolation is achieved by: (1) maintaining a continuous  
ground plane around the I/O connections and duplexer  
mounting area, and (2) surrounding the I/O ports with  
sufficient ground vias to enclose the connections in a  
“Faraday cage.”  
The transmission line dimensions shown are designed to  
achieve an impedance of 50 ohms for an 80m thick PCB  
layer with a dielectric constant of 3.4. If other PCB materials The ground vias under the ACMD-7606 mounting area  
or thicknesses are used, the 0.25 mm gap spacing may  
need to be adjusted to retain a Zo of 50 ohms.  
are also needed to provide adequate heat sinking for the  
device.  
It is important to maximize isolation between the Tx and  
Rx ports.  
9
2 X 0.17  
141 X Ø 0.10 VIA  
VIA ARRAY 1  
VIA ARRAY 2  
Notes:  
1. Dimensions in mm  
2. Top view  
3. Via arrays: horiz pitch = 0.25, vert pitch = 0.25  
VIA ARRAY 3  
2X 0.12  
Figure 25. PCB Layout, Via Detail  
Note:  
1. Top view  
Figure 26. ACMD-7606 Superposed on PCB Layout  
8 X 0.40 X 0.40  
0.30 X 0.80  
CHAMFER 0.12 X 45°  
2.30  
Notes:  
Notes:  
1. Dimensions in mm  
1. Top view  
2. Top view  
3. Chamfer or radius all corners 0.05 mm min  
2. Peripheral clearance of stencil aperture for center device pad is  
0.05 mm. All other apertures match device pad 1:1  
Figure 27. Recommended Solder Stencil  
Figure 28. Solder Stencil Superposed on ACMD-7606  
10  
2.30  
8 X 0.40 X 0.40  
0.15 X 45°  
> 0.30 TYP  
0.90  
Notes:  
Notes:  
1. Dimensions in mm  
2. Top view  
1. Top view  
2. Mask apertures match device pads 1:1  
Figure 29. Recommended Solder Mask  
Figure 30. Solder Mask Superposed on ACMD-7606  
ORIENTATION  
MARK  
TX  
RX  
F
FI  
Y
= ACMD-7606  
= Mfg Information  
= Year  
AVAGO  
FFIYWW  
DDXXXX  
WW = Work Week  
DD = Date Code  
XXXX = Assembly Lot  
ANT  
Figure 31. Product Marking and Pin Orientation  
11  
ø 1.50 + 0.10  
4.0 0.10  
4.0 0.10  
2.00 0.05  
1.75 0.10  
+
+
+
+
3.50 0.05  
+0.30  
0.10  
8.00  
+0.05  
0.10  
ø 8.00  
Figure 32. SMD Tape Packing  
PACKAGE PIN 1  
ORIENTATION  
SPROCKET HOLES  
TAPE  
WIDTH  
POCKET  
CAVITY  
Figure 33. Unit Orientation in SMT Tape  
12  
FRONT VIEW  
NOTES:  
1. Reel shall be labeled with the following  
information (as a minimum).  
a. manufacturers name or symbol  
b. Avago Technologies part number  
c. purchase order number  
d. date code  
e. quantity of units  
2. A certificate of compliance (c of c) shall  
be issued and accompany each shipment  
of product.  
1.5 min.  
3. Reel must not be made with or contain  
ozone depleting materials.  
4. All dimensions in millimeters (mm)  
13.0 0.2  
21.0 0.8  
BACK VIEW  
Shading indicates  
thru slots  
18.4 max.  
+0.4  
178  
-0.2  
50 min.  
25  
min wide (ref)  
Slot for carrier tape  
insertion for attachment  
to reel hub (2 places 180° apart)  
+2.0  
12.4  
-0.0  
Figure 34. SMT Reel Drawing  
13  
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 35. Verified SMT Solder Profile  
Ordering Information  
Part Number  
No. of Devices  
Container  
ACMD-7606-BLK  
ACMD-7606-TR1  
100  
Anti-static Bag  
7-inch 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 © 2005-2010 Avago Technologies. All rights reserved.  
AV02-2362EN - February 25, 2010  

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