B39431B3533A410 [TDK]

SAW Components SAW Diplexer;
B39431B3533A410
型号: B39431B3533A410
厂家: TDK ELECTRONICS    TDK ELECTRONICS
描述:

SAW Components SAW Diplexer

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SAW Components  
SAW Diplexer  
Short range devices  
Series/type:  
B3533  
Ordering code:  
B39431B3533A410  
Date:  
Version:  
December 20, 2012  
2.1  
EPCOS AG 2015. Reproduction, publication and dissemination of this publication, enclosures hereto and the information  
contained therein without EPCOS' prior express consent is prohibited.  
EPCOS AG is a TDK Group Company.  
SAW Components  
SAW Diplexer  
Data sheet  
B3533  
433.20 / 434.64 MHz  
Application  
Diplexer for remote control receivers  
Channel 2 with pass band at 434.64 MHz  
Channel 3 with pass band at 433.20 MHz  
Features  
1.5  
Package size 3.8 x 3.8 x 1.3 mm3  
Package code QCC8G  
3
5
1
RoHS compatible  
8
Approximate weight 0.06g  
Package for Surface Mount Technology  
(SMT)  
7
1.27  
2.54  
Ni, gold-plated terminals  
Lead free soldering compatible with J - STD20C  
Passivation layer Elpas  
AEC-Q200 qualified component family  
Electrostatic Sensitive Device (ESD)  
3.8  
Pin configuration1)  
7
1  
2  
7  
3  
5  
6  
4,8  
Input  
Input ground  
1
2
Output [Channel 2]  
Output ground [Channel 2]  
Output [Channel 3]  
Output ground [Channel 3]  
Case - grounded  
3
6
5
1) The recommended pin configuration usually offers best  
suppression of electrical crosstalk. The filter characteris-  
tics refer to this configuration.  
,
4 8  
Please read cautions and warnings and  
important notes at the end of this document.  
2
December 20, 2012  
SAW Components  
SAW Diplexer  
Data sheet  
B3533  
433.20 / 434.64 MHz  
Characteristics Channel 2  
Temperature range for specification:  
Terminating source impedance:  
Terminating load impedance:  
T
ZS  
ZL  
= –40 ˚C to +85 ˚C  
=
=
50 and matching network  
50 and matching network  
min.  
typ.  
max.  
@ 25 ˚C  
434.64  
Center frequency  
fC  
αmin  
MHz  
Minimum insertion attenuation  
incl. loss in matching elements (QL = 42)  
excl. loss in matching elements  
2.4  
2.0  
3.1  
2.7  
dB  
dB  
Pass band (relative to αmin  
)
434.58 ... 434.70 MHz  
434.55 ... 434.73 MHz  
0.5  
1.0  
1.5  
3.0  
dB  
dB  
Relative attenuation (relative to αmin  
)
αrel  
10.00 ... 390.00 MHz  
390.00 ... 414.00 MHz  
414.00 ... 429.00 MHz  
429.00 ... 431.00 MHz  
431.00 ... 433.60 MHz  
433.60 ... 434.02 MHz  
52  
46  
40  
28  
19  
12  
58  
52  
46  
34  
25  
18  
dB  
dB  
dB  
dB  
dB  
dB  
435.40 ... 436.00 MHz  
436.00 ... 443.50 MHz  
443.50 ... 600.00 MHz  
600.00 ... 900.00 MHz  
900.00 ... 2500.00 MHz  
19  
28  
38  
44  
52  
25  
34  
44  
50  
58  
dB  
dB  
dB  
dB  
dB  
Impedance for pass band matching1)  
Input: ZIN = RIN || CIN  
460 || 2.1  
490 || 1.3  
|| pF  
|| pF  
Output: ZOUT = ROUT || COUT  
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 removal of the SAW filter the input impedance of the input and output match-  
ing network is calculated. The conjugate complex value of these characteristic impedances are the input and  
output impedances for flat passband. For more details we refer to EPCOS application note #4.  
Please read cautions and warnings and  
important notes at the end of this document.  
3
December 20, 2012  
SAW Components  
SAW Diplexer  
Data sheet  
B3533  
433.20 / 434.64 MHz  
Characteristics Channel 3  
Temperature range for specification:  
Terminating source impedance:  
Terminating load impedance:  
T
ZS  
ZL  
= –40 ˚C to +85 ˚C  
=
=
50 and matching network  
50 and matching network  
min.  
typ.  
max.  
@ 25 ˚C  
433.20  
Center frequency  
fC  
αmin  
MHz  
Minimum insertion attenuation  
incl. loss in matching elements (QL = 42)  
excl. loss in matching elements  
2.3  
2.0  
3.0  
2.7  
dB  
dB  
Pass band (relative to αmin  
)
433.14 ... 433.26 MHz  
433.11 ... 433.29 MHz  
0.5  
1.0  
1.5  
3.0  
dB  
dB  
Relative attenuation (relative to αmin  
)
αrel  
10.00 ... 410.00 MHz  
410.00 ... 427.00 MHz  
427.00 ... 431.40 MHz  
431.40 ... 432.30 MHz  
52  
45  
25  
15  
58  
51  
31  
21  
dB  
dB  
dB  
dB  
433.80 ... 434.50 MHz  
434.50 ... 443.00 MHz  
443.00 ... 500.00 MHz  
500.00 ... 2500.00 MHz  
10  
27  
42  
52  
16  
33  
48  
58  
dB  
dB  
dB  
dB  
Impedance for pass band matching1)  
Input: ZIN = RIN || CIN  
460 || 2.1  
490 || 1.3  
|| pF  
|| pF  
Output: ZOUT = ROUT || COUT  
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 removal of the SAW filter the input impedance of the input and output match-  
ing network is calculated. The conjugate complex value of these characteristic impedances are the input and  
output impedances for flat passband. For more details we refer to EPCOS application note #4.  
Please read cautions and warnings and  
important notes at the end of this document.  
4
December 20, 2012  
SAW Components  
SAW Diplexer  
Data sheet  
B3533  
433.20 / 434.64 MHz  
Maximum ratings  
Operable temperature range T  
Storage temperature range Tstg  
–45/+125 ˚C  
–45/+125 ˚C  
DC voltage  
VDC  
PS  
6
V
Source power  
10  
dBm  
source impedance 50 Ω  
Please read cautions and warnings and  
important notes at the end of this document.  
5
December 20, 2012  
SAW Components  
SAW Diplexer  
Data sheet  
B3533  
433.20 / 434.64 MHz  
Matching network to 50 (element values depend on pcb layout and equivalent circuit)  
Lp1 = 27 nH  
Ls2 = 33 nH  
L
s4  
s6  
Channel 2  
L
s2  
Cp3 = 0.2 pF  
Ls4 = 56 nH  
C
C
p3  
L
p1  
L
Channel 3  
p5  
Cp5 = 0.3 pF  
Ls6 = 51 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 QCC8G package, pinning 1 - 5,7 (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.  
Please read cautions and warnings and  
important notes at the end of this document.  
6
December 20, 2012  
SAW Components  
SAW Diplexer  
Data sheet  
B3533  
433.20 / 434.64 MHz  
ESD protection of SAW filters  
SAW filters are Electro Static Discharge sensitive devices. To reduce the probability of damages  
caused by ESD, special matching topologies have to be applied.  
In general, “ESD matching” has to be ensured at that filter port, where electrostatic discharge is  
expected.  
Electrostatic discharges predominantly appear at the antenna input of RF receivers. Therefore  
only the input matching of the SAW filter has to be designed to short circuit or to block the ESD  
pulse.  
Below two figures show recommended “ESD matching” topologies.  
Depending on the input impedance of the SAW filter and the source impedance, the needed  
component values have to be determined from case to case.  
Ls3  
Ls3  
to output  
matching  
to output  
matching  
Dp1  
Lp2  
Lp2  
Fig. 1 MLC varistor plus ESD matching  
Fig. 2 Suppressor diode plus ESD matching  
In cases where minor ESD occur, following simplified “ESD matching” topologies can be used  
alternatively.  
Cs1  
Ls2  
to output  
matching  
to output  
matching  
Lp1  
Lp2  
Fig. 3 shunt L – series L matching  
Fig. 4 series C – shunt L matching  
Effectiveness of the applied ESD protection has to be checked according to relevant industry  
standards or customer specific requirements.  
For further information, please refer to EPCOS Application report:  
ESD protection for SAW filters”. This report can be found under www.epcos.com/rke. Click on  
“data sheets” and then “Applications” under category “Further information”.  
Please read cautions and warnings and  
important notes at the end of this document.  
7
December 20, 2012  
SAW Components  
SAW Diplexer  
Data sheet  
B3533  
433.20 / 434.64 MHz  
Transfer function Channel 2  
Transfer function Channel 2 (wideband)  
Please read cautions and warnings and  
important notes at the end of this document.  
8
December 20, 2012  
SAW Components  
SAW Diplexer  
Data sheet  
B3533  
433.20 / 434.64 MHz  
Transfer function Channel 3  
Transfer function Channel 3 (wideband)  
Please read cautions and warnings and  
important notes at the end of this document.  
9
December 20, 2012  
SAW Components  
SAW Diplexer  
Data sheet  
B3533  
433.20 / 434.64 MHz  
References  
Type  
B3533  
Ordering code  
Marking and package  
Packaging  
B39431B3533A410  
C61157-A7-A176  
F61074-V8229-Z000  
L_1126  
Date codes  
B3533_NB.s3p, B3533_WB.s3p  
S-parameters  
See file header for port/pin assignment table.  
Soldering profile  
RoHS compatible  
S_6001  
RoHS-compatible means that products are compatible with the  
requirements according to Art. 4 (substance restrictions) of Di-  
rective 2011/65/EU of the European Parliament and of the  
Council of June 8th, 2011, on the restriction of the use of certain  
hazardous substances in electrical and electronic equipment  
("Directive") with due regard to the application of exemptions as  
per Annex III of the Directive in certain cases.  
Matching coils  
See Inductor pdf-catalog  
http://www.tdk.co.jp/tefe02/coil.htm#aname1  
and Data Library for circuit simulation  
http://www.tdk.co.jp/etvcl/index.htm  
For further information please contact your local EPCOS sales office or visit our webpage at  
www.epcos.com .  
Published by EPCOS AG  
Systems, Acoustics, Waves Business Group  
P.O. Box 80 17 09, 81617 Munich, GERMANY  
EPCOS AG 2012. 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.  
Please read cautions and warnings and  
important notes at the end of this document.  
10 December 20, 2012  
Important notes  
The following applies to all products named in this publication:  
1. Some parts of this publication contain statements about the suitability of our products for  
certain areas of application. These statements are based on our knowledge of typical  
requirements that are often placed on our products in the areas of application concerned. We  
nevertheless expressly point out that such statements cannot be regarded as binding  
statements about the suitability of our products for a particular customer application.  
As a rule, EPCOS is either unfamiliar with individual customer applications or less familiar  
with them than the customers themselves. For these reasons, it is always ultimately  
incumbent on the customer to check and decide whether an EPCOS product with the  
properties described in the product specification is suitable for use in a particular customer  
application.  
2. We also point out that in individual cases, a malfunction of electronic components or  
failure before the end of their usual service life cannot be completely ruled out in the  
current state of the art, even if they are operated as specified. In customer applications  
requiring a very high level of operational safety and especially in customer applications in  
which the malfunction or failure of an electronic component could endanger human life or  
health (e.g. in accident prevention or life-saving systems), it must therefore be ensured by  
means of suitable design of the customer application or other action taken by the customer  
(e.g. installation of protective circuitry or redundancy) that no injury or damage is sustained  
by third parties in the event of malfunction or failure of an electronic component.  
3. The warnings, cautions and product-specific notes must be observed.  
4. In order to satisfy certain technical requirements, some of the products described in this  
publication may contain substances subject to restrictions in certain jurisdictions (e.g.  
because they are classed as hazardous). Useful information on this will be found in our  
Material Data Sheets on the Internet (www.epcos.com/material). Should you have any more  
detailed questions, please contact our sales offices.  
5. We constantly strive to improve our products. Consequently, the products described in this  
publication may change from time to time. The same is true of the corresponding product  
specifications. Please check therefore to what extent product descriptions and specifications  
contained in this publication are still applicable before or when you place an order.  
We also reserve the right to discontinue production and delivery of products. Conse-  
quently, we cannot guarantee that all products named in this publication will always be  
available. The aforementioned does not apply in the case of individual agreements deviating  
from the foregoing for customer-specific products.  
6. Unless otherwise agreed in individual contracts, all orders are subject to the current  
version of the “General Terms of Delivery for Products and Services in the Electrical  
Industry” published by the German Electrical and Electronics Industry Association  
(ZVEI).  
7. The trade names EPCOS, BAOKE, Alu-X, CeraDiode, CeraLink, CSMP, CSSP, CTVS,  
DeltaCap, DigiSiMic, DSSP, FilterCap, FormFit, MiniBlue, MiniCell, MKD, MKK, MLSC,  
MotorCap, PCC, PhaseCap, PhaseCube, PhaseMod, PhiCap, SIFERRIT, SIFI, SIKOREL,  
SilverCap, SIMDAD, SiMic, SIMID, SineFormer, SIOV, SIP5D, SIP5K, ThermoFuse, WindCap  
are trademarks registered or pending in Europe and in other countries. Further information  
will be found on the Internet at www.epcos.com/trademarks.  
11 December 20, 2012  

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