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SFR868D

SFR868D

  • 厂商:

    HYWD(华远微电)

  • 封装:

    -

  • 描述:

    SAW声表面谐振器

  • 数据手册
  • 价格&库存
SFR868D 数据手册
APPROVAL SHEET Customer’s Approval Certificate Approval Specification TO: Checked & Approved by: Part No.: Date: Customer’s Part No.: Please return this copy as a certification of your approval Shenzhen Huayuan Micro Electronic Technology Co.Ltd. Tel: Fax: E-mail: +86-0755-29881155-8006 +86-0755-29881157 sfsaw_sales@163.com REACH QQ: 3037058772 Website: http://www.sfsaw.com http://www.szhywd.net Add: No.5 Zhuangcun Road, Xiner Community, Shajing Street, Baoan District,Shenzhen Part No. : SFR868D Pages : 5 Date : 2016/8/1 Revision : 2.0 SAW Resonator SFR868D CF:868.35MHz Features       1-port Resonator Ceramic Package for Surface Mounted Technology (SMT) RoHS compatible Package size 3.80x3.80x1.50mm3 Package Code DCC6 Electrostatic Sensitive Device(ESD) Application Typical Low-Power Transmitter Application Package Dimensions (DCC6) Typical Local Oscillator Application Pin Configuration 2 Input/Output 5 Input/Output 1,3,4,6 Please read notes at the end of this document. - 2 - Case Ground www. sfsaw.com 2016/8/1 SAW Resonator SFR868D CF:868.35MHz Marking SF R868D M6· SF Trademark R SAW Resonator 868D Part number Pin 1 ● Test Circuit Equivalent LC Model Performance Maximum Rating Item Value Unit VDC ±30 V T -40 ~ +85 ℃ Storage Temperature Tstg -40 ~ +85 ℃ RF Power Dissipation P 25 dBm DC Voltage Operation Temperature Electronic Characteristics Test Temperature: 25℃±2℃ Terminating source impedance: 50Ω Terminating load impedance: 50Ω Item Center Frequency Typical Maximum Unit fc 868.35 MHz △fc ±150 KHz IL 1.0 Unloaded Q QU 9400 50Ω Loaded Q QL 1500 Absolute Frequency Tolerance from868.35MHz Insertion Loss(min) Quality Factor Minimum Please read notes at the end of this document. - 3 - www. sfsaw.com 2.0 dB 2016/8/1 SAW Resonator SFR868D Frequency Aging |fA| Absolute Value during the First Year CF:868.35MHz DC Insulation Resistance between Any Two Pins RF Equivalent RLC Model ppm/yr ≤10 1.0 MΩ Motional Resistance RM 12.0 Motional Inductance LM 32.6 µH Motional Capacitance CM 1.03 fF Static Capacitance C0 2.1 2.4 22.0 Ω pF 2.7 Frequency Response Reliability(The SAW components shall remain electrical performance after tests) No. Test item 1 Temperature Storage 2 Humidity Test Test condition (1) Temperature: 85℃±2℃ , Duration: 250h , Recovery time: 2h±0.5h (2) Temperature: –40℃±3℃ , Duration: 250h ,Recovery time: 2h±0.5h Conditions: 60℃±2℃ , 90~95% RH Duration: 250h Heat cycle conditions: TA=-40℃ ±3℃ , TB=85℃±2℃, t1=t2=30min, Switch 3 Thermal Shock 4 Vibration Fatigue 5 Drop Test time: ≤3min , Cycle time: 100 times , Recovery time : 2h±0.5h. Frequency of vibration: 10~55Hz Amplitude:1.5mm Directions: X,Y and Z Duration: 2h Cycle time: 10 times Please read notes at the end of this document. - 4 - Height: 1.0m www. sfsaw.com 2016/8/1 SAW Resonator SFR868D Temperature: 245℃±5℃ 6 Solder Ability Test CF:868.35MHz Duration: 3.0s--5.0s Depth: DIP--2/3 , SMD--1/5 (1)Thickness of PCB:1mm , Solder condition: 260℃±5℃ , Duration: 10±1s 7 Resistance to Soldering Heat (2)Temperature of Soldering Iron: 350℃±10℃ , Duration: 3~4s , Recovery time : 2 ± 0.5h Recommended Reflow Soldering Diagram 280 Max peak 260+0/-5℃ 20-40sec 260 240 220 Temp (Deg ℃) 200 180 160 140 120 100 80 Pre-heating 50-180℃ heating 220℃ 60-90sec 50-80sec 60 40 20 0 20 40 60 80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 380 Time (Sec) Notes 1. As a result of the particularity of inner structure of SAW products, it easy to be breakdown by electrostatic, so we should pay attention to ESD protect in the test. 2. Static voltage between signal load and ground may cause deterioration and destruction of the component. Please avoid static voltage. 3. Ultrasonic cleaning may cause deterioration and destruction of the component. Please avoid ultrasonic cleaning. 4. Only leads of component may be soldered. Please avoid soldering another part of component. 5. There is a close relationship between the device's performance and matching network. The specifications of this device are based on the test circuit shown above. L and C values may change depending on board layout. Values shown are intended as a guide only. Please read notes at the end of this document. - 5 - www. sfsaw.com 2016/8/1
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