HR916.5A [HOPERF]

916.5MHz One-Port SAW Resonator For Wireless Remote Control; 916.5MHz单口SAW谐振器无线遥控器
HR916.5A
型号: HR916.5A
厂家: HOPERF    HOPERF
描述:

916.5MHz One-Port SAW Resonator For Wireless Remote Control
916.5MHz单口SAW谐振器无线遥控器

谐振器 遥控 无线 遥控器
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HR916.5A  
916.5MHz One-Port SAW Resonator For Wireless Remote Control  
Approved by:  
Checked by:  
Issued by:  
SPECIFICATION  
PRODUCT:  
MODEL:  
SAW RESONATOR  
HR916.5a QCC8C  
HOPE MICROELECTRONICS CO.,LIMITED  
Tel:+86-755-82973806 Fax:+86-755-82973550 E-mail: sales@hoperf.com http://www.hoperf.com  
Page 1 of  
1
SAW Resonator  
HR916.5A  
The HR916.5A is a true one-port, surface-acoustic-wave (SAW) resonator in a surface-mount  
ceramic QCC8C case. It provides reliable, fundamental-mode, quartz frequency stabilization i.e.  
in transmitters or local oscillators operating at 916.500 MHz.  
1.Package Dimension (QCC8C)  
Pin  
2
Configuration  
Terminal1  
Terminal2  
Case Ground  
Empty  
6
4,8  
1,3,5,7  
Sign  
A
Data (unit: mm)  
Sign  
Data (unit: mm)  
2.08  
0.6  
E
F
1.2  
1.35  
5.0  
B
C
1.27  
2.54  
G
H
D
5.0  
2.Marking  
3.Equivalent LC Model and Test Circuit  
HR916.5A  
Laser Marking  
4.Typical Application Circuits  
1) Low-Power Transmitter Application  
2) Local Oscillator Application  
5.Typical Frequency Response  
6.Temperature Characteristics  
Tel:+86-755-82973806 Fax:+86-755-82973550 E-mail: sales@hoperf.com http://www.hoperf.com  
SAW Resonator  
HR916.5A  
7.Performance  
7-1.Maximum Ratings  
Rating  
Value  
0
Unit  
dBm  
V
CW RF Power Dissipation  
P
DC Voltage Between Terminals  
Storage Temperature Range  
Operating Temperature Range  
VDC  
Tstg  
TA  
±30  
-40 to +85  
-10 to +60  
7-2.Electronic Characteristics  
Characteristic  
Sym  
Minimum  
Typical  
Maximum  
Unit  
Absolute Frequency  
fC  
916.350  
916.650  
MHz  
Center Frequency  
(+25)  
Tolerance from 916.500 MHz  
±150  
1.5  
kHz  
dB  
fC  
IL  
Insertion Loss  
Quality Factor  
2.2  
Unloaded Q  
QU  
QL  
T0  
10,020  
1,500  
50 Loaded Q  
Turnover Temperature  
Turnover Frequency  
25  
1.0  
1.8  
55  
kHz  
ppm/2  
ppm/yr  
MΩ  
Temperature  
Stability  
f0  
fC  
Frequency Temperature Coefficient  
Absolute Value during the First Year  
FTC  
|fA|  
0.032  
10  
Frequency Aging  
DC Insulation Resistance Between Any Two Terminals  
Motional Resistance  
RM  
LM  
CM  
C0  
19  
29  
Motional Inductance  
RF Equivalent  
RLC Model  
31.0132  
0.9734  
2.1  
µH  
Motional Capacitance  
fF  
Shunt Static Capacitance  
2.4  
pF  
LCAUTION: Electrostatic Sensitive Device. Observe precautions for handling!  
C 2003. All Rights Reserved.  
1. The center frequency, fC, is measured at the minimum IL point with the resonator in the 50Ω test system.  
2. Unless noted otherwise, case temperature TC = +25°C±2°C.  
3. Frequency aging is the change in fC 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.  
4. Turnover temperature, T0, is the temperature of maximum (or turnover) frequency, f0. The nominal frequency at  
any case temperature, TC, may be calculated from: f = f0 [1 - FTC (T0 - TC)2].  
5. This equivalent RLC model approximates resonator performance near the resonant frequency and is provided  
for reference only. The capacitance C0 is the measured static (nonmotional) capacitance between the two  
terminals. The measurement includes case parasitic capacitance.  
6. Derived mathematically from one or more of the following directly measured parameters: fC, IL, 3 dB bandwidth,  
fC versus TC, and C0.  
7. The specifications of this device are based on the test circuit shown above and subject to change or  
obsolescence without notice.  
8. Typically, equipment utilizing this device requires emissions testing and government approval, which is the  
responsibility of the equipment manufacturer.  
9. Our liability is only assumed for the Surface Acoustic Wave (SAW) component(s) per se, not for applications,  
processes and circuits implemented within components or assemblies.  
10. For questions on technology, prices and delivery, please contact our sales offices or e-mail sales@hoperf.com.  
Tel:+86-755-82973806 Fax:+86-755-82973550 E-mail: sales@hoperf.com http://www.hoperf.com  

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