B39451-B3558-U310

B39451-B3558-U310

  • 厂商:

    EPCOS

  • 封装:

  • 描述:

    B39451-B3558-U310 - SAW Components Low-loss Filter - EPCOS

  • 详情介绍
  • 数据手册
  • 价格&库存
B39451-B3558-U310 数据手册
SAW Components Data Sheet B3558 SAW Components Low-loss Filter Data Sheet B3558 449,10 MHz Ceramic package QCC8C Features s RF low-loss filter for remote control receivers s Package for Surface Mounted Technology (SMT) s Balanced and unbalanced operation possible Terminals s Ni, gold plated typ. dimensions in mm, approx. weight 0,1 g Pin configuration 1 2 5 6 4,8 3,7 Input Ground Input Output Output Ground Case - Ground to be grounded Type B3558 Ordering code B39451-B3558-U310 Marking and package according to C61157-A7-A56 Packing according to F61074-V8070-Z000 Electrostactic Sensitive Device (ESD) Maximum ratings Operable temperature range TA Storage temperature range DC voltage Source power –30/+85 –45/+90 0 10 ˚C ˚C V dBm Tstg VDC PS source impedance 50 Ω 2 May 09, 2001 SAW Components Low-loss Filter Data Sheet Characteristics Reference temperature: Terminating source impedance: Terminating load impedance: B3558 449,10 MHz TA = 25 ˚C ZS = 50 Ω and matching network ZL = 50 Ω and matching network min. typ. 449,14 max. — MHz Center frequency (center frequency between 3 dB points) fC — Minimum insertion attenuation αmin 449,00 ... 449,28 MHz Pass band (relative to αmin) 448,965 ... 449,315 MHz 448,930 ... 449,350 MHz Relative attenuation (relative to αmin) 10,00 ... 428,00 428,00 ... 439,00 439,00 ... 448,10 450,10 ... 459,00 459,00 ... 550,00 550,00 ... 1000,00 αrel MHz MHz MHz MHz MHz MHz — 2,2 3,2 dB — — 0,8 1,5 3,0 6,0 dB dB 45 40 15 15 40 45 50 45 25 25 45 50 — — — — — — dB dB dB dB dB dB Impedance for pass band matching 2) Input: ZIN = RIN || CIN Output: ZOUT = ROUT || COUT Temperature coefficient of frequency 1) Frequency inversion point 1)Temperature 2) — — 210 || 2,70 210 || 2,70 –0,03 — — — — 40 Ω || pF Ω || pF ppm/K2 °C TCf T0 — 20 dependence of fC: fC(TA) = fC(T0) (1 + TCf(TA – T0)2) Impedance for passband matching bases on an ideal, perfect matching of the SAW filter to source- and to load impedance (here 50 Ohm). After the SAW filter is removed and input impedance into the input matching / output matching 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 #4. 3 May 09, 2001 SAW Components Low-loss Filter Data Sheet Characteristics Reference temperature: Terminating source impedance: Terminating load impedance: B3558 449,10 MHz TA = –30 ... 85 ˚C ZS = 50 Ω and matching network ZL = 50 Ω and matching network min. typ. 449,10 max. — MHz Center frequency (center frequency between 3 dB points) fC — Minimum insertion attenuation αmin 449,00 ... 449,28 MHz Pass band (relative to αmin) 448,965 ... 449,235 MHz 448,930 ... 449,270 MHz Relative attenuation (relative to αmin) 10,00 ... 428,00 428,00 ... 439,00 439,00 ... 448,02 450,10 ... 459,00 459,00 ... 550,00 550,00 ... 1000,00 αrel MHz MHz MHz MHz MHz MHz — 2,2 3,4 dB — — 0,5 1,5 3,0 6,0 dB dB 45 40 15 15 40 45 50 45 25 25 45 50 — — — — — — dB dB dB dB dB dB Impedance for pass band matching 2) Input: ZIN = RIN || CIN Output: ZOUT = ROUT || COUT 2) — — 210 || 2,70 210 || 2,70 — — Ω || pF Ω || 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 the SAW filter is removed and input impedance into the input matching / output matching 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 #4. 4 May 09, 2001 SAW Components Low-loss Filter Data Sheet Matching network to 50 Ω (element values depend on pcb layout and equivalent circuit) Cp1 = 1,8 pF Ls2 = 33 nH Ls3 = 33 nH Cp4 = 1,8 pF B3558 449,10 MHz Minimising the crosstalk For a good ultimate rejection a low crosstalk is necessary. Low crosstalk can be realised with a good RF layout. The major crosstalk mechanism is caused by the “ground-loop” problem. Grounding loops are created if input-and output transducer GND are connected on the top-side of the PCB and fed to the system grounding plane by a common via hole. To avoid the common ground path, the ground pin of the input- and output transducer are fed to the system ground plane (bottom PCB plane) by their own via hole. The transducers’ grounding pins should be isolated from the upper grounding plane. A common GND inductivity of 0.5nH degrades the ultimate rejection (crosstalk) by 20dB. The optimised PCB layout, including matching network for transformation to 50 Ohm, is shown here. In this PCB layout the grounding loops are minimised to realise good ultimate rejection. Optimised PCB layout for SAW filters in QCC8C package, pinning 2,5 (top side, scale 1:1) The bottom side is a copper plane (system ground area). The input and output grounding pins are isolated and connected to the common ground by separated via holes. For good contact of the upper grounding area with the lower side it is necessary to place enough via holes. 5 May 09, 2001 SAW Components Low-loss Filter Data Sheet Normalized frequency response B3558 449,10 MHz Normalized frequency response (wideband) 6 May 09, 2001 SAW Components Low-loss Filter Data Sheet B3558 449,10 MHz Published by EPCOS AG Surface Acoustic Wave Components Division, SAW CE AE PD P.O. Box 80 17 09, D-81617 München © EPCOS AG 2001. All Rights Reserved. As far as patents or other rights of third parties are concerned, liability is only assumed for components per se, not for applications, processes and circuits implemented within components or assemblies. The information describes the type of component and shall not be considered as assured characteristics. Terms of delivery and rights to change design reserved. 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. 7 May 09, 2001
B39451-B3558-U310
1. 物料型号: - 型号:B3558 - 订购代码:B39451-B3558-U310

2. 器件简介: - B3558是一款低损耗滤波器,中心频率为449.10 MHz,用于远程控制接收器,采用陶瓷封装QCC8C,适用于表面贴装技术(SMT)。该器件可以平衡和非平衡操作,端子为I Ni,镀金。

3. 引脚分配: - 1号引脚:输入地(Input Ground) - 2号引脚:输入(Input) - 3号引脚:需接地(to be grounded) - 4号引脚:外壳-地(Case - Ground) - 5号引脚:输出(Output) - 6号引脚:输出地(Output Ground) - 7号引脚:需接地(to be grounded)

4. 参数特性: - 工作温度范围:-30°C至+85°C - 存储温度范围:-45°C至+90°C - 直流电压:0V - 源功率:10 dBm,源阻抗50欧姆

5. 功能详解: - 该滤波器在参考温度TA=25°C时,中心频率fc为449.14 MHz。在449.00至449.28 MHz频段内,最小插入损耗为2.2至3.2 dB。通带内相对Cmin的损耗在448.965至449.315 MHz范围内为0.8至3.0 dB,在448.930至449.350 MHz范围内为1.5至6.0 dB。

6. 应用信息: - 该滤波器适用于需要低损耗和良好选择性的射频应用场合,特别是在远程控制接收器中。为了实现最佳的交叉通话性能,需要良好的射频布局,避免“地环”问题。

7. 封装信息: - 封装类型:QCC8C - 典型尺寸(单位:毫米)和重量大约为0.1克。
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