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200KP295CA

200KP295CA

  • 厂商:

    MICROSEMI(美高森美)

  • 封装:

  • 描述:

    200KP295CA - AIRCRAFT AC POWER BUS PROTECTION - Microsemi Corporation

  • 详情介绍
  • 数据手册
  • 价格&库存
200KP295CA 数据手册
200KP295CVCL and 200KP295CA AIRCRAFT AC POWER BUS PROTECTION SCOTTSDALE DIVISION DESCRIPTION Microsemi’s 200 kW bidirectional Transient Voltage Suppressor (TVS) protects 120 volt ac airborne electronic equipment from harsh lightning environments per RTCA/DO-160D Section 22 and is compatible with Section 16 for 180 volt ac 100 ms highline surges. Microsemi also offers a broad spectrum of other TVS products to meet your needs. IMPORTANT: For the most current data, consult MICROSEMI’s website: http://www.microsemi.com APPEARANCE W WW . Microsemi . C OM FEATURES • • • • • Symmetrical bidirectional TVS construction Available as either low clamp with “CVCL” suffix or normal clamping features with “CA” suffix. Suppresses transients up to 200 kW @ 10/40 us Fast response with less than 5 ns turn-on time. Optional 100% screening for avionics grade is available by adding MA prefix to part number for added 100% temperature cycle -55oC to +125oC (10X), surge (3X) in each direction, 24 hours HTRB in each direction, and post test (VZ and IR) Options for screening in accordance with MILPRF-19500 for JAN JANTX, JANTXV, and JANS are also available by adding MQ, MX, MV, or MSP prefixes respectively to part numbers Moisture classification is Level 1 with no dry pack required per IPC/JEDEC J-STD-020B • APPLICATIONS / BENEFITS Pin injection protection per RTCA/DO-160D up to Level 4 for Waveform 4 (6.4/69 µs) and Level 3 for Waveform 5A (40/120 μs) Compatible with “abnormal surge and variation from a controlled steady-state level” as described in 16.5.3.3 of RTCA/DO-160D. The 200KP295CVCL is designed for low clamping protection of 400V transistors, MOSFETs and IGBTs in off-line switching power supplies. The 200KP295CA normal clamp device is for use in less sensitive applications including RFI/EMI filters and general across-the-line protection. Secondary lightning protection per IEC61000-4-5 with 12 Ohms source impedance for Class 1,2, 3 and 4 Secondary lightning protection per IEC61000-4-5 with 2 Ohms source impedance for Class 2 and 3 • • • • • • • MAXIMUM RATINGS • • • • • • Steady-state power dissipation: 7 W @ TA = 25 C Peak Pulse Power at 25oC: 200 kW at 10/40 µs (linear derate to zero @ 150oC) Repetition rate: 0.01% max. Operating & storage temperatures: -55oC to +150oC Temperature coefficient of voltage: +0.100%/oC max o Solder Temperatures: 260 C for 10 s maximum o MECHANICAL & PACKAGING • • • • • • CASE: Inner Shell – Epoxy Encapsulated. Exterior Shell – Diallyl Phthallate, glass filled Meets UL 94V-0 flammability requirements FINISH: Tin-Lead plated readily solderable per MIL-STD-750, method 2026 Polarity: No band required for bidirectional MARKING: Manufacturers logo and part number Add prefix MA, MQ, MX, etc., for screened parts Package dimensions: See last page ELECTRICAL PARAMETERS @ 25oC Devices are Bi-directional 200KP295CVCL and 200KP295CA Working Standoff Voltage VWM V max Maximum Standby Current ID @ VWM μA Minimum Breakdown Voltage VBR @ I(BR) Volts Breakdown Current I(BR) mA Maximum Clamping Voltage VC @ IPP Volts Peak Pulse Current IPP @ 10/40 μs Amps MICROSEMI PART NUMBER 200KP295CVCL 200KP295CA 295 295 5 5 300 300 5 5 410 460 300 300 Copyright © 2004 8-08-2004 REV B Microsemi Scottsdale Division 8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503 Page 1 200KP295CVCL and 200KP295CA AIRCRAFT AC POWER BUS PROTECTION SCOTTSDALE DIVISION GRAPHS PPP Peak Pulse Power vs. Pulse Time – kW Non-Repetitive Pulse NOTE: This PPP vs. Time graph allows the designer to use these parts over a broad power spectrum using the guidelines illustrated in App Note 104 on Microsemi’s website. Aircraft transients are described with exponential decaying waveforms. For suppression of square waveforms, derate power and current to 66% of that for exponential decay. W WW . Microsemi . C OM Peak Pulse Power (PPP) or continuous o Power in % of 25 C rating tp – Pulse Time – sec. TL Lead Temperature oC FIGURE 1 Peak Pulse Power vs. Pulse Time To 50% of Exponentially Decaying Pulse FIGURE 2 DERATING CURVE Correct INSTALLATION TVS devices used across power lines are subject to relatively high magnitude surge currents and are more prone to adverse parasitic inductance effects in the mounting leads. Minimizing the shunt path of the lead inductance and their V= -Ldi/dt effects will optimize the TVS effectiveness. Examples of optimum installation and poor installation are illustrated in figures 3 through figure 6. Figure 3 illustrates minimal parasitic inductance with attachment at end of device. Inductive voltage drop is across input leads. Virtually no “overshoot” voltage results as illustrated with figure 4. The loss of effectiveness in protection caused by excessive parasitic inductance is illustrated in figures 5 and 6. Also see MicroNote 111 for further information on “Parasitic Lead Inductance in TVS”. Wrong FIGURE 3 FIGURE 5 200KP295CVCL and 200KP295CA FIGURE 4 FIGURE 6 Copyright © 2004 8-08-2004 REV B Microsemi Scottsdale Division 8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503 Page 2 200KP295CVCL and 200KP295CA AIRCRAFT AC POWER BUS PROTECTION SCOTTSDALE DIVISION W WW . Microsemi . C OM t t – time Note: frequency is 1MHz t – time t - Time FIGURE 7 – Waveform 3 FIGURE 8 – Waveform 4 FIGURE 9 – Waveform 5a NOTE: The 1MHz damped oscillatory waveform (3) has an effective pulse width of 4 μs. Equivalent peak pulse power for the 200KP295CVCL and 200KP295CA at each of the pulse widths represented in RTCA/DO-160D for wave forms 3, 4 and 5a (above) have been determined referencing Figure 1 herein as well as Application Notes 104 and 120 (found on Microsemi’s website) and are listed below. WAVEFORM NUMBER 3 4 5a PULSE WIDTH μs 4 6.4/69 40/120 PEAK POWER kW 500 150 120 Note: High current fast rise-time transients of 250 ns or less can more than triple the VC from parasitic inductance effects (V= -Ldi/dt) compared to the clamping voltage shown in the initial Electrical Characteristics on page 1 as also described in Figures 5 and 6 herein. DIMENSIONS 200KP295CVCL and 200KP295CA Copyright © 2004 8-08-2004 REV B Microsemi Scottsdale Division 8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503 Page 3
200KP295CA
1. 物料型号: - 200KP295CVCL - 200KP295CA

2. 器件简介: - 这两款器件是Microsemi生产的200千瓦双向瞬态电压抑制器(TVS),用于保护120伏交流航空电子设备免受严酷的雷电环境影响,符合RTCA/DO-160D第22节,并兼容第16节180伏交流100毫秒高压浪涌。 - 200KP295CVCL为低钳位保护,适用于400V晶体管、MOSFET和IGBT的离线开关电源。 - 200KP295CA为正常钳位设备,用于不太敏感的应用,包括RFI/EMI滤波器和一般跨线保护。

3. 引脚分配: - 由于是双向TVS,不需要带极性标识的带。

4. 参数特性: - 对称双向TVS结构。 - 低钳位型号带有“CVCL”后缀,正常钳位型号带有“CA”后缀。 - 能够抑制高达200千瓦@10/40微秒的瞬态。 - 快速响应时间少于5纳秒。 - 可选的100%筛选,适用于航空级,通过在零件编号前添加MA前缀。

5. 功能详解: - 符合RTCA/DO-160D第4节的引脚注入保护,达到4级波形4(6.4/69微秒)和3级波形5A(40/120微秒)。 - 兼容“异常浪涌和从受控稳态水平的变化”,如RTCA/DO-160D的16.5.3节所述。 - 符合IEC61000-4-5的二级雷电保护,具有12欧姆源阻抗,适用于1、2、3和4类,以及2欧姆源阻抗,适用于2和3类。

6. 应用信息: - 用于飞机交流电源总线的保护。

7. 封装信息: - 内部壳体-环氧树脂封装。外部壳体-邻苯二甲酸二烯丙酯,玻璃填充。 - 满足UL 94V-0阻燃要求。 - 镀锡铅,易于焊接,符合MIL-STD-750方法2026。 - 制造商标志和零件编号,对于筛选部件,添加前缀MA、MQ、MX等。 - 封装尺寸:见最后一页。
200KP295CA 价格&库存

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