0
登录后你可以
  • 下载海量资料
  • 学习在线课程
  • 观看技术视频
  • 写文章/发帖/加入社区
会员中心
创作中心
发布
  • 发文章

  • 发资料

  • 发帖

  • 提问

  • 发视频

创作活动
B59990C0120A050

B59990C0120A050

  • 厂商:

    TDK(东电化)

  • 封装:

    径向

  • 描述:

    PTC RESETTABLE 50MA 63V RAD

  • 详情介绍
  • 数据手册
  • 价格&库存
B59990C0120A050 数据手册
PTC thermistors for overcurrent protection Leaded disks, coated, 63 V Series/Type: B599*0 Date: September 2021 © TDK Electronics AG 2021. Reproduction, publication and dissemination of this publication, enclosures hereto and the information contained therein without TDK Electronics' prior express consent is prohibited. Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Applications Overcurrent protection Short circuit protection Dimensional drawing Features Lead-free terminals Wide range of rated currents: 30 mA up to 1 A Marking: Type, manufacturer's logo, reference temperature in °C and date code YYWW (no date code for types with wmax = 4 mm) UL approval for Tref = 120 °C and 130 °C to UL 1434 with Vmax = 65 V and VR = 63 V (file number E69802) UL approval for Tref = 80 °C to UL 1434 with Vmax = 63 V and VR = 50 V (file number E69802) VDE approval for selected types (license number 104843) IECQ certificate for selected types (file number 101-QA-2) RoHS-compatible Options Thermistors with diameter w ≤11.0 mm are also available on tape (to IEC 60286-2) Delivery mode Cardboard strips (standard) Cardboard tape reeled or in Ammo pack on request Please read Cautions and warnings and Important notes at the end of this document. Dimensions (mm) Type C910 C930 C930 C940 C950 C950 C950 C960 C960 C960 C970 C970 C970 C980 C980 C980 C990 C990 Page 2 of 16 Tref °C 130 120 130 120 80 120 130 80 120 130 80 120 130 80 120 130 80 120 wmax hmax lmin ∅d 22.0 22.0 17.5 17.5 13.5 13.5 11.0 11.0 11.0 9.0 9.0 9.0 6.5 6.5 6.5 4.0 4.0 4.0 25.5 25.5 21.0 21.0 17.0 17.0 14.5 14.5 14.5 12.5 12.5 12.5 10.0 10.0 10.0 7.5 7.5 7.5 35 35 25 25 35 25 25 25 25 25 25 25 25 25 25 25 25 25 0.8 0.6 0.8 0.6 0.6 0.6 0.6 0.6 0.6 0.6 0.6 0.6 0.6 0.6 0.6 0.6 0.5 0.5 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 General technical data Max. operating voltage Rated voltage Switching cycles Tolerance of RR Tolerance of RR Operating temperature range Operating temperature range Operating temperature range (TA = 60 °C) Vmax VR N (Tref = 80 °C or 120 °C) ∆RR (Tref = 130 °C) ∆RR (V = 0) Top (V = Vmax, Tref = 80 °C) Top (V = Vmax, Tref = 120 °C/130 °C) Top 80 63 100 ±25 ±20 40/+125 40/+85 40/+125 V DC or V AC V DC or V AC % % °C °C °C Electrical specifications and ordering codes Type IR mA IS mA C910 1000 1500 C930 700 1400 C930 700 1100 C940 450 900 C950 320 640 C950 320 500 C960 250 500 C960 250 380 C950 170 350 C970 150 300 C970 150 240 C960 130 265 C970 90 190 C980 85 170 C980 85 130 C980 50 110 C990 50 100 C990 30 60 ISmax Ir Tref RR (V = Vmax) (typ.) (typ.) (V = Vmax) mA Ω A °C Rmin 10.0 10.0 8.0 8.0 5.5 4.3 4.3 3.0 5.5 3.0 1.0 4.3 3.0 1.0 0.7 1.0 0.7 0.7 0.8 1.1 1.5 1.5 2.4 3.2 3.7 5.2 2.4 6.2 13.2 3.7 6.2 16.5 40.9 16.5 36.3 36.3 Please read Cautions and warnings and Important notes at the end of this document. 60 50 50 40 30 25 25 20 20 20 18 15 11 16 15 8 12 5 130 120 130 120 120 130 120 130 80 120 130 80 80 120 130 80 120 80 1.2 1.65 2.2 2.3 3.7 4.9 5.6 8.0 3.7 9.4 20 5.6 9.4 25 62 25 55 55 Page 3 of 16 Approvals Ω X X X X X X X X X X X X X X X X X X IECQ         X  X X X  X X  X Ordering code B59910C0130A070 B59930C0120A070 B59930C0130A070 B59940C0120A070 B59950C0120A070 B59950C0130A070 B59960C0120A070 B59960C0130A070 B59950C0080A070 B59970C0120A070 B59970C0130A070 B59960C0080A070 B59970C0080A070 B59980C0120A070 B59980C0130A070 B59980C0080A070 B59990C0120A070 B59990C0080A070 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Reliability data Test Electrical endurance, cycling Electrical endurance, constant Damp heat Standard IEC 60738-1 Rapid change of temperature IEC 60738-1 Vibration IEC 60738-1 Shock IEC 60738-1 Climatic sequence IEC 60738-1 IEC 60738-1 IEC 60738-1 Please read Cautions and warnings and Important notes at the end of this document. Test conditions Room temperature, ISmax; Vmax Number of cycles: 100 Storage at Vmax and Top,max (@ Vmax) Test duration: 1000 h Temperature of air: 40 °C Relative humidity of air: 93% Duration: 56 days Test according to IEC 60068-2-78 T1 = Top,min (0 V), T2 = Top,max (0 V) Number of cycles: 5 Test duration: 30 min Test according to IEC 60068-2-14, test Na Frequency range: 10 to 55 Hz Displacement amplitude: 0.75 mm Test duration: 3 × 2 h Test according to IEC 60068-2-6, test Fc Acceleration: 500 m/s2 Pulse duration: 11 ms; 6 × 3 pulses Dry heat: T = Top,max (0 V) Test duration: 16 h Damp heat first cycle Cold: T = Top,min (0 V) Test duration: 2 h Damp heat 5 cycles Tests performed according to IEC 60068-2-30 Page 4 of 16 ∆R25/R25 < 25% < 25% < 10% < 10% < 5% < 5% < 10% Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Characteristics (typical) for Tref = 80 °C PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) PTC current IPTC versus PTC voltage VPTC (measured at 25 °C in still air) Switching time tS versus switching current IS (measured at 25 °C in still air) Rated current IR versus ambient temperature TA (measured in still air) Please read Cautions and warnings and Important notes at the end of this document. Page 5 of 16 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Characteristics (typical) for Tref = 80 °C PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) PTC current IPTC versus PTC voltage VPTC (measured at 25 °C in still air) Switching time tS versus switching current IS (measured at 25 °C in still air) Rated current IR versus ambient temperature TA (measured in still air) Please read Cautions and warnings and Important notes at the end of this document. Page 6 of 16 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Characteristics (typical) for Tref = 120 °C PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) PTC current IPTC versus PTC voltage VPTC (measured at 25 °C in still air) Switching time tS versus switching current IS (measured at 25 °C in still air) Rated current IR versus ambient temperature TA (measured in still air) Please read Cautions and warnings and Important notes at the end of this document. Page 7 of 16 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Characteristics (typical) for Tref = 120 °C PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) PTC current IPTC versus PTC voltage VPTC (measured at 25 °C in still air) Switching time tS versus switching current IS (measured at 25 °C in still air) Rated current IR versus ambient temperature TA (measured in still air) Please read Cautions and warnings and Important notes at the end of this document. Page 8 of 16 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Characteristics (typical) for Tref = 130 °C PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) PTC current IPTC versus PTC voltage VPTC (measured at 25 °C in still air) Switching time tS versus switching current IS (measured at 25 °C in still air) Rated current IR versus ambient temperature TA (measured in still air) Please read Cautions and warnings and Important notes at the end of this document. Page 9 of 16 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Characteristics (typical) for Tref = 130 °C PTC resistance RPTC versus PTC temperature TPTC (measured at low signal voltage) PTC current IPTC versus PTC voltage VPTC (measured at 25 °C in still air) Switching time tS versus switching current IS (measured at 25 °C in still air) Rated current IR versus ambient temperature TA (measured in still air) Please read Cautions and warnings and Important notes at the end of this document. Page 10 of 16 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Cautions and warnings General EPCOS thermistors are designed for specific applications and should not be used for purposes not identified in our specifications, application notes and data books unless otherwise agreed with EPCOS during the design-in-phase. Ensure suitability of thermistor through reliability testing during the design-in phase. The thermistors should be evaluated taking into consideration worst-case conditions. Storage Store thermistors only in original packaging. Do not open the package prior to processing. Storage conditions in original packaging: storage temperature 25 °C ... +45 °C, relative humidity ≤75% annual mean, maximum 95%, dew precipitation is inadmissible. Avoid contamination of thermistors surface during storage, handling and processing. Avoid storage of thermistor in harmful environment with effect on function on long-term operation (examples given under operation precautions). Use thermistor within the following period after delivery:  Through-hole devices (housed and leaded PTCs): 24 months  Motor protection sensors, glass-encapsulated sensors and probe assemblies: 24 months  Telecom pair and quattro protectors (TPP, TQP): 24 months  Leadless PTC thermistors for pressure contacting: 12 months  Leadless PTC thermistors for soldering: 6 months  SMDs in EIA sizes 3225 and 4032, and for PTCs with metal tags: 24 months  SMDs in EIA sizes 1210 and smaller: 12 months Handling PTCs must not be dropped. Chip-offs must not be caused during handling of PTCs. The ceramic and metallization of the components must not be touched with bare hands. Gloves are recommended. Avoid contamination of thermistor surface during handling. Soldering (where applicable) Use rosin-type flux or non-activated flux. Insufficient preheating may cause ceramic cracks. Rapid cooling by dipping in solvent is not recommended. Complete removal of flux is recommended. Standard PTC heaters are not suitable for soldering. Please read Cautions and warnings and Important notes at the end of this document. Page 11 of 16 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Mounting Electrode must not be scratched before/during/after the mounting process. Contacts and housing used for assembly with thermistor have to be clean before mounting. Especially grease or oil must be removed. When PTC thermistors are encapsulated with sealing material, the precautions given in chapter "Mounting instructions", "Sealing and potting" must be observed. When the thermistor is mounted, there must not be any foreign body between the electrode of the thermistor and the clamping contact. The minimum force and pressure of the clamping contacts pressing against the PTC must be 10 N and 50 kPa, respectively. In case the assembly is exposed to mechanical shock and/ or vibration this force should be higher in order to avoid movement of the PTC during operation. During operation, the thermistor’s surface temperature can be very high. Ensure that adjacent components are placed at a sufficient distance from the thermistor to allow for proper cooling at the thermistors. Ensure that adjacent materials are designed for operation at temperatures comparable to the surface temperature of thermistor. Be sure that surrounding parts and materials can withstand this temperature. Avoid contamination of thermistor surface during processing. Operation Use thermistors only within the specified temperature operating range. Use thermistors only within the specified voltage and current ranges. Environmental conditions must not harm the thermistors. Use thermistors only in normal atmospheric conditions. Avoid use in deoxidizing gases (chlorine gas, hydrogen sulfide gas, ammonia gas, sulfuric acid gas etc), corrosive agents, humid or salty conditions. Contact with any liquids and solvents should be prevented. Be sure to provide an appropriate fail-safe function to prevent secondary product damage caused by abnormal function (e.g. use VDR for limitation of overvoltage condition). This listing does not claim to be complete, but merely reflects the experience of TDK Electronics. Display of ordering codes for TDK Electronics products The ordering code for one and the same product can be represented differently in data sheets, data books, other publications, on the company website, or in order-related documents such as shipping notes, order confirmations and product labels. The varying representations of the ordering codes are due to different processes employed and do not affect the specifications of the respective products. Detailed information can be found on the Internet under www.tdkelectronics.tdk.com/orderingcodes. Please read Cautions and warnings and Important notes at the end of this document. Page 12 of 16 Overcurrent protection Leaded disks, coated, 63 V C910 ... C990 Symbols and terms Symbol A C Cth f I Imax IR Ires IPTC Ir Ir,oil Ir,air IRMS IS ISmax LCT N Nc Nf P P25 Pel Pdiss RG Rmin RR ∆RR RP RPTC Rref RS R25 R25,match ∆R25 Term Area Capacitance Heat capacity Frequency Current Maximum current Rated current Residual current PTC current Residual currrent Residual currrent in oil (for level sensors) Residual currrent in air (for level sensors) Root-mean-square value of current Switching current Maximum switching current Lower category temperature Number (integer) Operating cycles at Vmax, charging of capacitor Switching cycles at Vmax, failure mode Power Maximum power at 25 °C Electrical power Dissipation power Generator internal resistance Minimum resistance Rated resistance @ rated temperature TR Tolerance of RR Parallel resistance PTC resistance Reference resistance Series resistance Resistance at 25 °C Resistance matching per reel/ packing unit at 25 °C Tolerance of R25 Please read Cautions and warnings and Important notes at the end of this document. Page 13 of 16 Overcurrent protection Leaded disks, coated, 63 V T t TA ta TC tE TR Tsense Top TPTC tR Tref TRmin tS Tsurf UCT V or Vel Vc(max) VF,max VRMS VBD Vins Vlink,max Vmax Vmax,dyn Vmeas Vmeas,max VR VPTC α ∆ δth τth λ C910 ... C990 Temperature Time Ambient temperature Thermal threshold time Ferroelectric Curie temperature Settling time (for level sensors) Rated temperature @ 25 °C or otherwise specified in the data sheet Sensing temperature Operating temperature PTC temperature Response time Reference temperature Temperature at minimum resistance Switching time Surface temperature Upper category temperature Voltage (with subscript only for distinction from volume) Maximum DC charge voltage of the surge generator Maximum voltage applied at fault conditions in protection mode Root-mean-square value of voltage Breakdown voltage Insulation test voltage Maximum link voltage Maximum operating voltage Maximum dynamic (short-time) operating voltage Measuring voltage Maximum measuring voltage Rated voltage Voltage drop across a PTC thermistor Temperature coefficient Tolerance, change Dissipation factor Thermal cooling time constant Failure rate Lead spacing (in mm) Please read Cautions and warnings and Important notes at the end of this document. Page 14 of 16 Important notes The following applies to all products named in this publication: 1. Some parts of this publication contain statements about the suitability of our products for certain areas of application. These statements are based on our knowledge of typical requirements that are often placed on our products in the areas of application concerned. We nevertheless expressly point out that such statements cannot be regarded as binding statements about the suitability of our products for a particular customer application. As a rule we are either unfamiliar with individual customer applications or less familiar with them than the customers themselves. For these reasons, it is always ultimately incumbent on the customer to check and decide whether a product with the properties described in the product specification is suitable for use in a particular customer application. 2. We also point out that in individual cases, a malfunction of electronic components or failure before the end of their usual service life cannot be completely ruled out in the current state of the art, even if they are operated as specified. In customer applications requiring a very high level of operational safety and especially in customer applications in which the malfunction or failure of an electronic component could endanger human life or health (e.g. in accident prevention or life-saving systems), it must therefore be ensured by means of suitable design of the customer application or other action taken by the customer (e.g. installation of protective circuitry or redundancy) that no injury or damage is sustained by third parties in the event of malfunction or failure of an electronic component. 3. The warnings, cautions and product-specific notes must be observed. 4. In order to satisfy certain technical requirements, some of the products described in this publication may contain substances subject to restrictions in certain jurisdictions (e.g. because they are classed as hazardous). Useful information on this will be found in our Material Data Sheets on the Internet (www.tdk-electronics.tdk.com/material). Should you have any more detailed questions, please contact our sales offices. 5. We constantly strive to improve our products. Consequently, the products described in this publication may change from time to time. The same is true of the corresponding product specifications. Please check therefore to what extent product descriptions and specifications contained in this publication are still applicable before or when you place an order. We also reserve the right to discontinue production and delivery of products. Consequently, we cannot guarantee that all products named in this publication will always be available. The aforementioned does not apply in the case of individual agreements deviating from the foregoing for customer-specific products. 6. Unless otherwise agreed in individual contracts, all orders are subject to our General Terms and Conditions of Supply. 7. Our manufacturing sites serving the automotive business apply the IATF 16949 standard. The IATF certifications confirm our compliance with requirements regarding the quality management system in the automotive industry. Referring to customer requirements and customer specific requirements (“CSR”) TDK always has and will continue to have the policy of respecting individual agreements. Even if IATF 16949 may appear to support the acceptance of unilateral requirements, we hereby like to emphasize that only requirements mutually agreed upon can and will be implemented in our Quality Management System. For clarification purposes we like to point out that obligations from IATF 16949 shall only become legally binding if individually agreed upon. Page 15 of 16 Important notes 8. The trade names EPCOS, CarXield, CeraCharge, CeraDiode, CeraLink, CeraPad, CeraPlas, CSMP, CTVS, DeltaCap, DigiSiMic, ExoCore, FilterCap, FormFit, LeaXield, MiniBlue, MiniCell, MKD, MKK, ModCap, MotorCap, PCC, PhaseCap, PhaseCube, PhaseMod, PhiCap, PowerHap, PQSine, PQvar, SIFERRIT, SIFI, SIKOREL, SilverCap, SIMDAD, SiMic, SIMID, SineFormer, SIOV, ThermoFuse, WindCap, XieldCap are trademarks registered or pending in Europe and in other countries. Further information will be found on the Internet at www.tdk-electronics.tdk.com/trademarks. Release 2020-06 Page 16 of 16
B59990C0120A050
物料型号:B5990系列,例如B59910C0130A070、B59930C0120A070等。

器件简介:这些是TDK公司生产的PTC热敏电阻,用于过电流保护,具有有铅终端,额定电压63V。

引脚分配:文档中没有提供具体的引脚分配图,但通常这类器件为双引脚配置。

参数特性: - 工作电压范围:-40°C至+125°C(V=0)或-40°C至+85°C(V=Vmax, Tret=80°C)。 - 额定电压(VR):63V DC或AC。 - 额定电流范围:从30mA至1A。 - 环境温度范围:-40°C至+85°C(V=Vmax, Tret=80°C/120°C/130°C)。

功能详解: - 过电流保护:当电路中电流超过额定值时,PTC热敏电阻的电阻值会急剧增加,限制电流,保护电路。 - 短路保护:在短路情况下,PTC热敏电阻能够快速响应,防止电路损坏。

应用信息: - 适用于过电流保护和短路保护。

封装信息: - 提供多种尺寸,直径从3.5mm至11.0mm不等。 - 有UL和VDE认证,符合RoHS标准。 - 部分型号提供卷带包装选项。

注意事项: - 存储条件、处理方式、焊接要求等有详细说明,以确保器件的正确使用和长期稳定性。

可靠性数据: - 提供了电气耐久性、湿热、快速温度变化、振动、冲击和气候序列等测试条件下的电阻变化数据。

特性曲线: - 提供了在不同参考温度(Tref)下的PTC电阻与温度、PTC电流与电压、开关时间与电流、额定电流与环境温度等特性曲线。
B59990C0120A050 价格&库存

很抱歉,暂时无法提供与“B59990C0120A050”相匹配的价格&库存,您可以联系我们找货

免费人工找货