B39201-B3866-H510 [EPCOS]
SAW Components Low-Loss Filter 201,0 MHz; 声表面波元件低损耗滤波器201,0兆赫型号: | B39201-B3866-H510 |
厂家: | EPCOS |
描述: | SAW Components Low-Loss Filter 201,0 MHz |
文件: | 总7页 (文件大小:71K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
IF Filters for Basestations
The following products presented in this data sheet are being withdrawn.
Ordering Code
Substitute Product
Date of
Deadline Last
Orders
Last Shipments
2007-05-31
Withdrawal
B39201B3866H510
2006-12-01
2007-02-28
For further information please contact your nearest EPCOS sales office, which will also support
you in selecting a suitable substitute. The addresses of our worldwide sales network are
presented at www.epcos.com/sales.
SAW Components
Data Sheet B3866
SAW Components
Low-Loss Filter
Data Sheet
B3866
201,0 MHz
Ceramic package DCC12A
Features
7,62
1,0
● Low-loss IF filter for GSM / EDGE base station
● Channel selection in PCS, DCS systems
● Temperature stable
1
2
3
4
5
● Balanced and unbalanced operation possible
● Ceramic SMD package
bottom view
8
7
10
9
6
3,81
Terminals
● Gold plated
side view
top view
13,3
Dimensions in mm, approx. weight 0,4 g
Pin configuration
1, 10
5, 6
3, 8
Balanced input
Balanced output
Ground
2, 4, 7, 9
Case ground
Type
Ordering code
Marking and Package
Packing
according to
according to
F61074-V8163-Z000
B3866
B39201-B3866-H510
C61157-A7-A94
Electrostatic Sensitive Device (ESD)
Maximum ratings
Operable temperature range TA
Storage temperature range Tstg
–30 / +85
–30 / +85
˚C
˚C
DC voltage
VDC
5
0
V
V
between terminals 1 and 10
else
Source power
Ps
10
dBm
2
Aug 23, 2002
SAW Components
Low-Loss Filter
Data Sheet
B3866
201,0 MHz
Characteristics
Operating temperature range:
Terminating source impedance:
Terminating load impedance:
TA = 0 - 70 ˚C
ZS = 80 Ω || 30 nH
ZL = 90 Ω || 35 nH
min.
typ.
max.
fN
—
201,0
—
MHz
kHz
Nominal frequency
Minimum insertion attenuation
αmin
—
4,0
6,0 dB
(including matching network)
Passband width
B3,0dB
—
300
—
αrel ≤ 3 dB
Amplitude ripple in passband
∆αrel
fN ± 80 kHz
—
—
±0,2
±1,0 dB
µs
Absolute group delay (at fN)
τ
2,2
—
Group delay ripple (p-p)
fN ± 80 kHz
∆τ
—
0,7
1,5 µs
Relative attenuation (relative to αmin
)
αrel
fN ± 200
fN ± 300
fN ± 400
fN ± 700
kHz ... fN ± 300
kHz
kHz
kHz
kHz
kHz
kHz
3
13
20
27
30
33
40
8
20
30
40
45
55
55
—
dB
dB
dB
dB
dB
dB
dB
kHz ... fN ± 400
kHz ... fN ± 700
kHz ... fN ± 1600
—
—
—
—
—
—
fN ± 1600 kHz ... fN ± 3000
fN ± 3000 kHz ... fN ± 6000
fN ± 6000 kHz ... fN ± 35000 kHz
IM3 level (Input level -17 dBm)
fN ± 800 kHz
fN ±1600 kHz
—
—
—
—
-110
-110
dBm
dBm
Temperature coefficient of frequency1)
Turnover temperature
TCf
T0
—
—
– 0,036
35
—
—
ppm/K2
˚C
1) Temperature dependance of fc: fc(TA) = fc(T0)(1 + TCf(TA – T0)2)
3
Aug 23, 2002
SAW Components
Low-Loss Filter
Data Sheet
B3866
201,0 MHz
Matching network to 200 Ω
4:1 transformers are only required for measurement in a 50 Ω environment
(element values depend on PCB layout)
C
p1 = 6,8 pF
Lp5 = 33 nH
Ls6 = 27 nH
Ls7 = 27 nH
Cp8 = 5,6 pF
Ls2 = 27 nH
Ls3 = 27 nH
Lp4 = 33 nH
Lp5
Lp4
4
Aug 23, 2002
SAW Components
Low-Loss Filter
Data Sheet
B3866
201,0 MHz
Transfer function
Transfer function (pass band)
5
Aug 23, 2002
SAW Components
Low-Loss Filter
Data Sheet
B3866
201,0 MHz
Published by EPCOS AG
Surface Acoustic Wave Components Division, SAW MC IS
P.O. Box 80 17 09, 81617 Munich, GERMANY
EPCOS AG 2002. Reproduction, publication and dissemination of this brochure and the informa-
tion contained therein without EPCOS’ prior express consent is prohibited.
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
Aug 23, 2002
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