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B39321B3741H110

Signal Conditioning 315MHz 50ohms B3741 2.1dB 6V

器件类别:无源元件   

厂商名称:Qualcomm RF360

器件标准:

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器件参数
参数名称
属性值
Product Attribute
Attribute Value
制造商
Manufacturer
Qualcomm RF360
产品种类
Product Category
Signal Conditioning
RoHS
Details
产品
Product
SAW Filters
频率
Frequency
315 MHz
Frequency Range
314.85 MHz to 315.15 MHz
电压额定值
Voltage Rating
6 V
Impedance
50 Ohms
端接类型
Termination Style
SMD/SMT
封装 / 箱体
Package / Case
3 mm x 3 mm
最小工作温度
Minimum Operating Temperature
- 45 C
最大工作温度
Maximum Operating Temperature
+ 125 C
系列
Packaging
Cut Tape
系列
Packaging
MouseReel
系列
Packaging
Reel
Mounting
SMD/SMT
工作温度范围
Operating Temperature Range
- 45 C to + 125 C
类型
Type
SAW Component
Insertion Loss
2.1 dB
工厂包装数量
Factory Pack Quantity
9000
单位重量
Unit Weight
0.001305 oz
文档预览
®
RF360 Europe GmbH
A Qualcomm – TDK Joint Venture
SAW Components
SAW filter
Short range devices
Series/type:
Ordering code:
Date:
Version:
B3741
B39321B3741H110
January 08, 2013
2.3
RF360 products mentioned within this document are offered by RF360 Europe GmbH and other subsidiaries of
RF360 Holdings Singapore Pte. Ltd. (collectively, the “RF360 Subsidiaries”). RF360 Holdings Singapore Pte. Ltd.
is a joint venture of Qualcomm Global Trading Pte. Ltd. and EPCOS AG. References in this documentation to
EPCOS AG should properly reference, and shall be read to reference, the RF360 Subsidiaries.
RF360 Europe GmbH, Anzinger Str. 13, München, Germany
© 2016 RF360 Europe GmbH and/or its affiliated companies. All rights reserved.
These materials, including the information contained herein, may be used only for informational purposes by
the customer. The RF360 Subsidiaries assume no responsibility for errors or omissions in these materials or
the information contained herein. The RF360 Subsidiaries reserve the right to make changes to the product(s)
or information contained herein without notice. The materials and information are provided on an AS IS basis,
and the RF360 Subsidiaries assume no liability and make no warranty or representation, either expressed or
implied, with respect to the materials, or any output or results based on the use, application, or evaluation of
such materials, including, without limitation, with respect to the non-infringement of trademarks, patents,
copyrights or any other intellectual property rights or other rights of third parties.
No use of this documentation or any information contained herein grants any license, whether express, implied,
by estoppel or otherwise, to any intellectual property rights, including, without limitation, to any patents owned
by QUALCOMM Incorporated or any of its subsidiaries.
Not to be used, copied, reproduced, or modified in whole or in part, nor its contents revealed in any manner to
others without the express written permission of RF360 Europe GmbH.
Qualcomm and Qualcomm RF360 are trademarks of Qualcomm Incorporated, registered in the United States
and other countries. RF360 is a trademark of Qualcomm Incorporated. Other product and brand names may be
trademarks or registered trademarks of their respective owners.
This technical data may be subject to U.S. and international export, re-export, or transfer (“export”) laws.
Diversion contrary to U.S. and international law is strictly prohibited.
SAW Components
SAW filter
Short range devices
Series/type:
Ordering code:
Date:
Version:
B3741
B39321B3741H110
January 08, 2013
2.3
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 filter
Data sheet
Application
s
Low-loss RF filter for remote control receivers
s
Balanced and unbalanced operation possible
B3741
315.00 MHz
Features
s
s
s
s
s
s
s
s
s
s
Package size 3.0 x 3.0 x 1.0 mm
3
Package code DCC6E
RoHS compatible
Approximate weight 0.037 g
Package for
Surface Mount Technology
(SMT)
Ni, gold-plated terminals
Lead free soldering compatible with J - STD20C
Passivation layer Elpas
AEC-Q200 qualified component family
Electrostatic Sensitive Device
(ESD)
Pin configuration
1)
s
s
s
s
s
1
2
4
5
3,6
Input (recommended) or input ground
Input ground (recommended) or input
Output (recommended) or output ground
Output ground (recommended) or output
to be grounded
1) The recommended pin configuration usually offers best
suppression of electrical crosstalk. The filter characteris-
tics refer to this configuration.
Please read
cautions and warnings and
important notes
at the end of this document.
2
January 08, 2013
SAW Components
SAW filter
Data sheet
Characteristics
Temperature range for specification:
Terminating source impedance:
Terminating load impedance:
T = –45 ˚C to +95 ˚C
Z
S
= 50
and matching network
Z
L
= 50
and matching network
min.
Center frequency
Minimum insertion attenuation
incl. loss in matching elements (Q
L
= 42)
excl. loss in matching elements
Pass band (relative to
α
min
)
314.85 ... 315.15 MHz
314.82 ... 315.18 MHz
Relative attenuation (relative to
α
min
)
α
rel
10.00 ... 280.00 MHz
280.00 ... 308.00 MHz
308.00 ... 313.20 MHz
313.20 ... 314.10 MHz
315.90 ... 316.50 MHz
316.50 ... 325.00 MHz
325.00 ... 335.00 MHz
335.00 ... 380.00 MHz
380.00 ... 600.00 MHz
600.00 ... 1500.00 MHz
1500.00 ... 2500.00 MHz
Impedance
for pass band matching
1)
Input: Z
IN
= R
IN
|| C
IN
Output: Z
OUT
= R
OUT
|| C
OUT
1)
B3741
315.00 MHz
f
C
α
min
typ.
@ 25 ˚C
315.00
max.
MHz
2.1
1.2
2.8
1.9
dB
dB
0.5
0.8
2.0
3.0
dB
dB
50
45
34
16
16
25
36
43
50
60
50
55
49
39
20
20
30
40
48
55
65
55
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
490 || 2.8
490 || 2.8
|| pF
|| pF
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 #18.
Please read
cautions and warnings and
important notes
at the end of this document.
3
January 08, 2013
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