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RO3104C

产品描述Resonators 303.825 MHz +/-75kHz Single Port
产品类别无源元件    晶体/谐振器   
文件大小215KB,共2页
制造商Murata(村田)
官网地址https://www.murata.com
标准
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RO3104C概述

Resonators 303.825 MHz +/-75kHz Single Port

RO3104C规格参数

参数名称属性值
是否Rohs认证符合
厂商名称Murata(村田)
包装说明ROHS COMPLIANT, CERAMIC, CASE SM5050-8
Reach Compliance Codecompliant
Factory Lead Time20 weeks
其他特性TAPE AND REEL
晶体/谐振器类型1-PORT
频率容差 (MHz)0.075
插入损耗2 dB
安装特点SURFACE MOUNT
标称工作频率303.825 MHz
并联电容3.25 pF
物理尺寸L5.2XB5.2XH1.7 (mm)/L0.205XB0.205XH0.067 (inch)
表面贴装YES

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RFM products are now
Murata products.
RO3104C
Ideal for 303.825 MHz Remote Control and Security Transmitters
Very Low Series Resistance
Quartz Stability
Pb
Complies with Directive 2002/95/EC (RoHS)
The RO3104C is a true one-port, surface-acoustic-wave (SAW) resonator in a surface-mount ceramic case.
It provides reliable, fundamental-mode, quartz frequency stabilization of low power transmitters operating at
303.825 MHz. This SAW resonator is designed for transmitters used in remote control and wireless security
applications operating in the USA under FCC Part 15 and in Canada under DoC RSS-210.
303.825 MHz
SAW
Resonator
Absolute Maximum Ratings
Rating
Input Power Level
DC Voltage
Storage Temperature
Soldering Temperature (10 seconds / 5 cycles maximum)
Value
0
12
-40 to +85
260
Units
dBm
VDC
°C
°C
SM5050-8 Case
5X5
Typical
Maximum
303.900
±75
1.3
9800
1300
10
25
f
C
0.032
10
1.0
15.6
79.7
3.4
3.3
83.9
688 // YWWS
500 Pieces / Reel
3000 Pieces / Reel
ppm/°C
2
ppm/yr
M
µH
fF
pF
nH
40
°C
2.0
Electrical Characteristics
Characteristic
Frequency, +25 °C
Insertion Loss
Quality Factor
Temperature Stability
Unloaded Q
50
Loaded Q
Turnover Temperature
Turnover Frequency
Frequency Temperature Coefficient
Frequency Aging
RF Equivalent RLC Model
Absolute Value during the First Year
Motional Resistance
Motional Inductance
Motional Capacitance
Shunt Static Capacitance
Test Fixture Shunt Inductance
Lid Symbolization
Standard Reel Quantity
Reel Size 7 Inch
Reel Size 13 Inch
DC Insulation Resistance between Any Two Terminals
R
M
L
M
C
M
C
O
L
TEST
5, 6, 9
2, 7
5, 7, 9
Absolute Frequency
Tolerance from 303.825 MHz
Sym
f
C
f
C
IL
Q
U
Q
L
T
O
f
O
FTC
|f
A
|
Notes
2, 3, 4, 5
2, 5, 6
Minimum
303.750
Units
MHz
kHz
dB
6, 7, 8
1, 6
5
CAUTION: Electrostatic Sensitive Device. Observe precautions for handling.
NOTES:
1.
Frequency aging is the change in f
C
with time and is specified at +65 °C or
less. Aging may exceed the specification for prolonged temperatures
above +65 °C. Typically, aging is greatest the first year after manufacture,
decreasing in subsequent years.
The center frequency, f
C
, is measured at the minimum insertion loss point,
IL
MIN
, with the resonator in the 50
test system (VSWR
1.2:1). The
shunt inductance, L
TEST
, is tuned for parallel resonance with C
O
at f
C
.
Typically, f
OSCILLATOR
or f
TRANSMITTER
is approximately equal to the
resonator f
C
.
One or more of the following United States patents apply: 4,454,488 and
4,616,197.
Typically, equipment utilizing this device requires emissions testing and
government approval, which is the responsibility of the equipment
manufacturer.
Unless noted otherwise, case temperature T
C
= +25 ± 2 °C.
6.
7.
8.
The design, manufacturing process, and specifications of this device are
subject to change without notice.
Derived mathematically from one or more of the following directly
measured parameters: f
C
, IL, 3 dB bandwidth, f
C
versus T
C
, and C
O
.
Turnover temperature, T
O
, is the temperature of maximum (or turnover)
frequency, f
O
. The nominal frequency at any case temperature, T
C
, may be
calculated from: f = f
O
[1 - FTC (T
O
-T
C
)
2
]. Typically
oscillator
T
O
is
approximately equal to the specified
resonator
T
O
.
This equivalent RLC model approximates resonator performance near the
resonant frequency and is provided for reference only. The capacitance C
O
is the static (nonmotional) capacitance between the two terminals
measured at low frequency (10 MHz) with a capacitance meter. The
measurement includes parasitic capacitance with "NC” pads unconnected.
Case parasitic capacitance is approximately 0.05 pF. Transducer parallel
capacitance can by calculated as: C
P
C
O
- 0.05 pF.
2.
3.
4.
5.
9.
©2010-2014
© Murata
Electronics N.A., Inc.
Ltd. All Rights Reserved 2007
Copyright
by Murata
Manufacturing Co.,
RO3104C (R) 4/8/14
Page 1 of 2
www.murata.com

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