B39151-B4867-Z710 [TDK]

SAW Filter, 1 Function(s), 154.08MHz, CERAMIC, QCC-10;
B39151-B4867-Z710
型号: B39151-B4867-Z710
厂家: TDK ELECTRONICS    TDK ELECTRONICS
描述:

SAW Filter, 1 Function(s), 154.08MHz, CERAMIC, QCC-10

LTE
文件: 总8页 (文件大小:120K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
SAW Components  
Data Sheet B4867  
SAW Components  
B4867  
Low Loss Filter for Mobile Communication  
Data Sheet  
154,08 MHz  
Ceramic package QCC10B  
Features  
Low-loss IF filter for mobile telephone  
Channel selection in TDMA systems  
Filter surface passivated  
Balanced or unbalanced operation possible  
Package for Surface Mounted Technology (SMT)  
Terminals  
Ni, gold plated  
Dimensions in mm, approx. weight 0,23  
Pin configuration  
5
Input  
10  
Output  
4
9
Balanced input or input ground  
Balanced output or output ground  
Case ground  
1,3,6,8  
2,7  
Not connected  
Type  
Ordering code  
Marking and Package  
according to  
C61157-A7-A49  
Packing  
according to  
F61064-V8035-Z000  
B4867  
B39151-B4867-Z710  
Electrostatic Sensitive Device (ESD)  
Maximum ratings  
Operable temperature range T  
Storage temperature range Tstg  
– 30/+ 85  
– 40/+ 85  
13  
˚C  
˚C  
V
DC voltage  
VDC  
Ps  
Source power  
10  
dBm  
2
Jul 04, 2000  
SAW Components  
B4867  
Low Loss Filter for Mobile Communication  
154,08 MHz  
Data Sheet  
Characteristics  
Operating temperature range :  
Terminating source impedance:  
Terminating load impedance:  
T
= 0˚C to +50 ˚C  
ZS = 400 || 2000 nH  
ZL = 400 || 2000 nH  
min.  
typ.  
max.  
fN  
154,08  
MHz  
kHz  
Nominal frequency  
3 dB Bandwidth  
60  
Minimum insertion attenuation  
αmin  
4,4  
5,0 dB  
including losses in the matching netwok to 50 Ω  
Amplitude ripple (p-p)  
∆α  
fN - 11 kHz ... fN + 11 kHz  
0,4  
0,8  
3,0 dB  
Group delay ripple (p-p)  
∆τ  
fN - 10 kHz ... fN + 10 kHz  
7,5 µs  
Relative attenuation (relative to αmin  
)
αrel  
fN - 1000kHz  
fN - 900 kHz  
fN - 120 kHz  
fN - 65 kHz  
fN - 60 kHz 1)  
fN + 60 kHz 1)  
fN + 65 kHz  
fN + 120 kHz  
fN + 200 kHz  
fN + 900kHz  
...  
...  
fN - 900 kHz  
fN - 200 kHz  
68  
50  
40  
15  
12  
12  
15  
40  
50  
60  
75  
65  
49  
29  
25  
25  
29  
49  
65  
65  
dB  
dB  
dB  
dB  
dB  
dB  
dB  
dB  
dB  
dB  
...  
...  
fN + 900 kHz  
fN + 1000 kHz  
Impedance within the passband  
Input: ZIN = RIN || CIN  
Output: ZOUT = ROUT || COUT  
400 || 0,6  
400 || 0,6  
|| pF  
|| pF  
Temperature coefficient of frequency 2)  
Turnover temperature  
TCf  
T0  
– 0,036  
30  
ppm/K2  
˚C  
1) Attenuation at T = 25 ˚C : 13 dB, min.  
2) Temperature dependence of fc: fc(T) = fc(T0)(1 + TCf(T T0)2)  
3
Jul 04, 2000  
SAW Components  
B4867  
Low Loss Filter for Mobile Communication  
Data Sheet  
154,08 MHz  
Characteristics  
Operating temperature range :  
Terminating source impedance:  
Terminating load impedance:  
T
= -30˚C to +85 ˚C  
ZS = 400 || 2000 nH  
ZL = 400 || 2000 nH  
min.  
typ.  
max.  
fN  
154,08  
MHz  
kHz  
Nominal frequency  
3 dB Bandwidth  
60  
Minimum insertion attenuation  
αmin  
4,4  
5,3 dB  
including losses in the matching netwok to 50 Ω  
Amplitude ripple (p-p)  
∆α  
fN - 11 kHz ... fN + 11 kHz  
0,4  
0,8  
5,0 dB  
Group delay ripple (p-p)  
∆τ  
fN - 10 kHz ... fN + 10 kHz  
7,5 µs  
Relative attenuation (relative to αmin  
)
αrel  
fN - 1000kHz  
fN - 900 kHz  
fN - 120 kHz  
fN - 65 kHz  
fN- 60 kHz 1)  
fN + 60 kHz1)  
fN + 65 kHz  
fN + 120 kHz  
fN + 200 kHz  
fN + 900kHz  
...  
...  
fN - 900 kHz  
fN - 200 kHz  
68  
50  
40  
10  
8
75  
65  
49  
29  
25  
25  
29  
49  
65  
65  
dB  
dB  
dB  
dB  
dB  
dB  
dB  
dB  
dB  
dB  
8
10  
40  
50  
60  
...  
...  
fN + 900 kHz  
fN + 1000 kHz  
Impedance within the passband  
Input: ZIN = RIN || CIN  
Output: ZOUT = ROUT || COUT  
400 || 0,6  
400 || 0,6  
|| pF  
|| pF  
Temperature coefficient of frequency 2)  
Turnover temperature  
TCf  
T0  
– 0,036  
30  
ppm/K2  
˚C  
1) Attenuation at T = 25 ˚C : 13 dB, min.  
2) Temperature dependence of fc: fc(T) = fc(T0)(1 + TCf(T T0)2)  
4
Jul 04, 2000  
SAW Components  
B4867  
Low Loss Filter for Mobile Communication  
Data Sheet  
154,08 MHz  
Recommended pin configurations / test matching networks:  
a) single-ended 50/ single-ended 50Ω  
Input : Pin 10  
Output : Pin 5  
Ls1 = 150 nH  
Cp2 = 3,3 pF  
Cp3 = 3,3 pF  
Ls4 = 150 nH  
b) balanced 50/ balanced 50Ω  
Input : Pins 10, 4  
Output : Pins 5, 9  
Ls1 = 47 nH  
Cp2 = 6,8 pF  
Cp3 = 6,8 pF  
Ls4 = 47 nH  
Note :  
The level of ultimate suppression may be limited by electromagnetic feedthrough depending on  
the layout of the pcb and the arrangement of the matching components.  
The above mentioned characteristics can be realized either in balanced or in unbalanced mode  
of operation.  
For more details see S+M’s application note PCB Layout for Highly Selective IF Filters.  
5
Jul 04, 2000  
SAW Components  
B4867  
Low Loss Filter for Mobile Communication  
Data Sheet  
154,08 MHz  
Normalized transfer function passband (single ended - single ended)  
Normalized transfer function wideband (single ended - single ended)  
6
Jul 04, 2000  
SAW Components  
B4867  
Low Loss Filter for Mobile Communication  
Data Sheet  
154,08 MHz  
Normalized transfer function passband (balanced - balanced)  
Normalized transfer function wideband (balanced - balanced)  
7
Jul 04, 2000  
SAW Components  
B4867  
Low Loss Filter for Mobile Communication  
Data Sheet  
154,08 MHz  
Published by EPCOS AG  
Surface Acoustic Wave Components Division, OFW E MF  
P.O. Box 80 17 09, D-81617 München  
EPCOS AG 1999. All Rights Reserved.  
As far as patents or other rights of third parties are concerned, liability is only assumed for compo-  
nents per se, not for applications, processes and circuits implemented within components or  
assemblies.  
The information describes the type of component and shall not be considered as assured  
characteristics.  
Terms of delivery and rights to change design reserved.  
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.  
8
Jul 04, 2000  

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