B39311-B3766-Z810 [EPCOS]

SAW Components Low-loss Filter 312,20 MHz; 声表面波元件低损耗滤波器312,20兆赫
B39311-B3766-Z810
型号: B39311-B3766-Z810
厂家: EPCOS    EPCOS
描述:

SAW Components Low-loss Filter 312,20 MHz
声表面波元件低损耗滤波器312,20兆赫

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SAW Components  
Data Sheet B3766  
SAW Components  
Low-loss Filter  
Data Sheet  
B3766  
312,20 MHz  
Ceramic package QCC8B  
Features  
RF low-loss filter for remote control receivers  
Package for Surface Mounted Technology  
(SMT)  
Balanced and unbalanced operation possible  
Passivation layer: Elpas  
Terminals  
Ni, gold plated  
typ. dimensions in mm, approx. weight 0,07 g  
Pin configuration1)  
1
2
5
6
4,8  
3,7  
Input Ground (recommended) or Input  
Input (recommended) or Input Ground  
Output (recommended) or Output Ground  
Output Ground (recommended) or Output  
Case - Ground  
to be grounded  
Type  
B3766  
Ordering code  
Marking and package  
according to  
C61157-A7-A46  
Packing  
according to  
B39311-B3766-Z810  
F61074-V8167-Z000  
Electrostactic Sensitive Device (ESD)  
Maximum ratings  
Operable temperature range TA  
Storage temperature range Tstg  
–45/+120  
˚C  
˚C  
–45/+120  
DC voltage  
VDC  
PS  
6
V
Source power  
10  
dBm  
source impedance 50 Ω  
1) The recommended pin configuration usually offers best suppression of electrical crosstalk.The  
filter characteristics refer to this configuration.  
2
Jul 05, 2004  
SAW Components  
Low-loss Filter  
Data Sheet  
B3766  
312,20 MHz  
Characteristics  
Reference temperature:  
TA = –45 ... +95˚C  
Terminating source impedance:  
Terminating load impedance:  
ZS = 50 and matching network  
ZL = 50 and matching network  
min.  
typ.  
max.  
fC  
312,20  
MHz  
dB  
Center frequency  
(center frequency between 3 dB points)  
Minimum insertion attenuation  
αmin  
(including losses in matching network)  
312,05 ... 312,35 MHz  
1,9  
2,9  
Pass band (relative to αmin  
)
312,05 ... 312,35 MHz  
312,02 ... 312,38 MHz  
311,98 ... 312,42 MHz  
0,5  
0,7  
1,0  
2,0  
3,0  
6,0  
dB  
dB  
dB  
Pass bandwidth  
αrel≤ 3 dB  
0,54  
0,59  
0,64  
MHz  
Relative attenuation (relative to αmin  
)
αrel  
10,00 ... 291,70 MHz  
291,70 ... 301,70 MHz  
301,70 ... 310,00 MHz  
310,00 ... 310,40 MHz  
310,40 ... 311,50 MHz  
48  
45  
25  
33  
13  
53  
50  
30  
40  
18  
dB  
dB  
dB  
dB  
dB  
312,90 ... 320,20 MHz  
320,20 ... 335,00 MHz  
335,00 ... 600,00 MHz  
600,00 ...1000,00 MHz  
13  
38  
43  
60  
17  
45  
48  
70  
dB  
dB  
dB  
dB  
Impedance for pass band matching 1)  
Input: ZIN = RIN || CIN  
Output: ZOUT = ROUT || COUT  
340 || 2,6  
340 || 2,6  
|| pF  
|| pF  
1) Impedance for passband matching bases on an ideal, perfect matching of the SAW filter to  
source- and to load impedance (here 50 Ohm). After the SAW filter is removed and input imped-  
ance into the input matching / output matching network is calculated.  
The conjugate complex value of these characteristic impedances are the input and output imped-  
ances for flat passband. For more details, we refer to EPCOS application note #4.  
3
Jul 05, 2004  
SAW Components  
Low-loss Filter  
Data Sheet  
B3766  
312,20 MHz  
Matching network to 50 (element values depend on pcb layout and equivalent circuit)  
Ls1 = 56 nH  
Ls2 = 56 nH  
Minimising the crosstalk  
For a good ultimate rejection a low crosstalk is necessary. Low crosstalk can be realised with  
a good RF layout. The major crosstalk mechanism is caused by the “ground-loop” problem.  
Grounding loops are created if input-and output transducer GND are connected on the top-side  
of the PCB and fed to the system grounding plane by a common via hole. To avoid the common  
ground path, the ground pin of the input- and output transducer are fed to the system ground  
plane (bottom PCB plane) by their own via hole. The transducers’ grounding pins should be  
isolated from the upper grounding plane.  
A common GND inductivity of 0.5nH degrades the ultimate rejection (crosstalk) by 20dB.  
The optimised PCB layout, including matching network for transformation to 50 Ohm, is shown  
here. In this PCB layout the grounding loops are minimised to realise good ultimate rejection.  
Optimised PCB layout for SAW filters in QCC8B package, pinning 2,5 (top side, scale 1:1)  
The bottom side is a copper plane (system ground area). The input and output grounding pins  
are isolated and connected to the common ground by separated via holes.  
For good contact of the upper grounding area with the lower side it is necessary to place  
enough via holes.  
4
Jul 05, 2004  
SAW Components  
Low-loss Filter  
Data Sheet  
B3766  
312,20 MHz  
Frequency response  
Frequency response (wideband)  
5
Jul 05, 2004  
SAW Components  
Low-loss Filter  
Data Sheet  
B3766  
312,20 MHz  
Frequency response (ultimate rejection)  
Published by EPCOS AG  
Surface Acoustic Wave Components Division, SAW CE AE PD  
P.O. Box 80 17 09, D-81617 München  
EPCOS AG 2004. All Rights Reserved. Reproduction, publication and dissemination of this bro-  
chure and the information contained therein without EPCOS’ prior express consent is prohibited.  
The information contained in this brochure describes the type of component and shall not be con-  
sidered as guaranteed characteristics. Purchase orders are subject to the General Conditions for  
the Supply of Products and Services of the Electrical and Electronics Industry recommended by the  
ZVEI (German Electrical and Electronic Manufacturers’ Association), unless otherwise agreed.  
This brochure replaces the previous edition.  
For questions on technology, prices and delivery please contact the Sales Offices of EPCOS AG or  
the international Representatives.  
Due to technical requirements components may contain dangerous substances. For information on  
the type in question please also contact one of our Sales Offices.  
6
Jul 05, 2004  

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