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0ZCF0500FF2A

0ZCF0500FF2A

  • 厂商:

    POWER-ONE

  • 封装:

    2920

  • 描述:

  • 详情介绍
  • 数据手册
  • 价格&库存
0ZCF0500FF2A 数据手册
Surface Mount PTC 0ZCF Series 0ZCF Series – 2920 Chip RoHS 2 Compliant Product Features - 2920 Chip Size, Fast Trip Time, High Hold Currents - AEC-Q Compliant - Meets Bel automotive qualification* * - Largely based on internal AEC-Q test plan Operating (Hold Current) Range 300mA – 5A Maximum Voltage 6 – 60V (per table) Temperature Range -40° C to 85° C Agency Approval TUV (Std. EN/IEC 60738-1-1 and EN/IEC 60730-1, Cert. R50102117) UL Recognized Component (Std. UL1434, File E305051) LEAD FREE = AEC-Q Compliant HALOGEN FREE = Electrical Characteristics (23 Part Number New Rating New Rating New Rating New Rating ) Max Time to Trip Resistance Tolerance Agency Approvals Hold Current Trip Current Rated Voltage Maximum Current Typical Power Current Time Rmin R1max IH, A IT, A Vmax, Vdc Imax, A Pd, W A Sec Ohms Ohms A 0ZCF0030FF2C 0.30 0.60 60 100 1.5 1.5 3.0 1.000 4.800 B 0ZCF0050FF2C 0.50 1.00 60 100 1.5 2.5 4.0 0.300 1.400 0ZCF0075FF2C 0.75 1.50 33 100 1.5 8.0 0.3 0.180 1.000 C 0ZCF0075AF2C 0.75 1.50 60 100 1.5 8.0 0.3 0.180 1.000 0ZCF0100AF2A 1.00 2.00 60 100 1.5 8.0 0.5 0.090 0.410 D 0ZCF0110FF2C 1.10 2.20 33 100 1.5 8.0 0.5 0.090 0.410 E 0ZCF0110AF2A 1.10 2.20 60 100 1.5 8.0 0.5 0.090 0.410 F 0ZCF0125FF2C 1.25 2.50 33 100 1.5 8.0 2.0 0.050 0.250 G 0ZCF0150FF2C 1.50 3.00 33 100 1.5 8.0 2.0 0.050 0.230 H 0ZCF0185FF2C 1.85 3.70 33 100 1.5 8.0 2.5 0.040 0.150 0ZCF0200FF2C 2.00 4.00 16 100 1.5 8.0 4.5 0.035 0.120 I 0ZCF0200AF2C 2.00 4.00 24 100 1.5 8.0 5.0 0.035 0.120 J 0ZCF0250FF2C 2.50 5.00 16 100 1.5 8.0 16.0 0.025 0.085 0ZCF0260FF2C 2.60 5.20 6 100 1.5 8.0 20.0 0.020 0.075 K 0ZCF0260AF2C 2.60 5.20 24 100 1.5 8.0 20.0 0.020 0.075 0ZCF0300FF2C 3.00 5.20 6 100 1.5 8.0 25.0 0.010 0.048 L 0ZCF0300AF2C 3.00 5.20 15 100 1.5 8.0 20.0 0.010 0.048 0ZCF0300BF2C 3.00 5.20 24 100 1.5 8.0 20.0 0.010 0.048 M 0ZCF0330FF2C 3.30 5.50 24 100 1.5 8.0 20.0 0.010 0.048 N 0ZCF0400FF2A 4.00 8.00 16 100 1.5 20.0 4.0 0.010 0.040 O 0ZCF0500FF2A 5.00 10.00 16 100 1.5 20.0 5.0 0.005 0.025 IH Hold Current- The maximum current at which the device will not trip in still air at 23° C. IT Trip current- The minimum current at which the device will trip in still air at 23° C. Vmax Maximum voltage device can withstand at its rated current without suffering damage. Imax Maximum fault current device can withstand at rated voltage (Vmax) without damage. Pd Typical power dissipated by device when in tripped state in 23° C still air environment. Rmin Minimum device resistance at 23° C in initial un-soldered state. R1max Maximum device resistance at 23° C, 1 hour after initial device trip, or after being soldered to PCB in end application. Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Y Specifications subject to change without notice belfuse.com/circuit-protection Type 0ZCF Series 2/4 PTC’s – Basic Theory of Operation / “Tripped” Resistance Explanation A Bel PTC consists of a block of polymeric material containing conductive carbon granules which is sandwiched between two conductive metal plates. When this polymer block reaches approximately 125C, either due to current passing through it via conductive chains of carbon particles or due to an external heat source; it swells volumetrically. This expansion breaks apart a majority of the chains of carbon granules that run randomly between the two conductive plates. This behavior results in a sharp increase in resistance across the two plates which all but eliminates current flow through the device, allowing just enough residual current flow to maintain the block’s internal temperature at 125C. Once this “tripped” state current is cut off, the polymer brick cools and shrinks to its original size, thereby allowing its broken carbon chains to reestablish themselves and permit the part to return to its low resistance state. Once cooled to room ambient, the PTC will once again exhibit a resistance less than its “R1max” rating. At currents below the device IHOLD rating, AND at temperatures below 100C, the PTC maintains a resistance value below its R1 MAX rating. The catalog data for each device specifies a "Typical Power" value. This is the power required to exactly match the heat lost by the tripped device to its ambient surroundings at 23C. By Ohm's Law, power can be stated as: W = E²/R. Thus the approximate resistance of a “Tripped” PTC can be determined by: R = E²/W, where "E" is the voltage appearing across the PTC (usually the supply's open circuit voltage), and "W" is the Typical Power value for the particular PTC. Since the PPTC acts to maintain a constant internal temperature, its apparent resistance will change based upon applied voltage and, to a lesser degree, ambient conditions. Consider the following example.... A PTC with a Typical Power of 1 watt protecting a circuit using a 60V supply will demonstrate an apparent, tripped resistance "R" of: R = 60²/1 = 3,600 ohms This same tripped device when used to protect a 12V circuit would now present an apparent resistance of: R = 12²/1 = 144 ohms The value for Typical Power is "typical" because any physical factors that affect heat loss (such as ambient temperature or air convection) will somewhat alter the level of power that the PTC needs to maintain its internal temperature. In short, PTCs do not exhibit a constant, quantifiable tripped resistance value. Average Time Current Characteristic Curve at 23°C The Average Time Current Characteristic Curve and Temperature Rerating Curve are affected by a number of variables and these curves are provided for guidance only. Specifications subject to change without notice Bel Fuse Inc. 206 Van Vorst Street Jersey City, NJ 07302 USA +1 201.432.0463 Bel.US.CS@belf.com belfuse.com/circuit-protection © 2019 Bel Fuse, Inc. Rev. 0ZCF Sep2019 Type 0ZCF Series 3/4 Pad Layout Termination Pad Materials The dimensions in the table below provide the Recommended pad layout. Matte Tin – Plated Copper P S W Nominal Nominal Nominal mm Inch mm Inch mm Inch 5.10 0.201 2.30 0.091 5.60 0.221 Mechanical Dimensions and Marking All dimensions in mm. Dimensions Part Number Marking Code C “b”, IH code Min Max 0ZCF0030FF2C 0.60 1.15 0030 0ZCF0050FF2C 0.60 1.15 0050 0ZCF0075FF2C 0.40 1.15 0075 0ZCF0075AF2C 0.60 1.15 0ZCF0100AF2A 0.40 1.70 0ZCF0110FF2C 0.40 1.00 0ZCF0110AF2A 0.40 1.70 0ZCF0125FF2C 0ZCF0150FF2C 0ZCF0185FF2C 0ZCF0200FF2C 0.40 0.40 0.30 0.30 0.90 0.90 0.90 0.90 0ZCF0200AF2C 0.20 0.80 0ZCF0250FF2C 0ZCF0260FF2C 0.30 0.30 0.90 0.90 0ZCF0260AF2C 0.65 1.15 0ZCF0300FF2C 0.40 0.90 0ZCF0300AF2C 0.40 1.15 0ZCF0300BF2C 0.65 1.15 0ZCF0330FF2C 0ZCF0400FF2A 0ZCF0500FF2A 0.65 0.40 0.40 1.15 1.50 1.50 0075 60 0100 60 0110 0110 60 0125 0150 0185 0200 0200 24 0250 0260 0260 24 0300 0300 15 0300 24 0330 0400 0500 Temperature Derating Table I Hold Value 0030 and 0050 0075 thru 0500 -40 182% 146% -20 156% 131% Temperature Derating Table 23 30 40 100% 93% 83% 100% 93% 83% 0 130% 115% Thermal Derating Curve Percent of Hold and Trip Current 200% 180% 160% 140% 120% 100% 80% 60% 40% 20% 0% -20 0 20 40 60 Temperature(° C) 0075 thru 0500 60 60% 64% 70 48% 56% 85 30% 43% Cautionary Notes Temperature Derating Curve -40 50 72% 74% 0030 and 0050 80 1. Operation beyond the specified maximum ratings or improper use may result in damage and possible electrical arcing and/or flame. 2. These Polymer PTC (PPTC) devices are intended for protection against occasional overcurrent/overtemperature fault conditions and may not be suitable for use in applications where repeated and/or prolonged fault conditions are anticipated. 3. Avoid contact of PTC device with chemical solvent. Prolonged contact may adversely impact the PTC performance. 4. These PTC devices may not be suitable for use in circuits with a large inductance, as the PTC trip can generate circuit voltage spikes above the PTC rated voltage. 5. These devices may be used in both DC and AC circuits provided that peak-to-peak line voltage when carrying AC does not exceed the PTC’s Vmax rating. As PTCs are essentially thermal devices, the RMS value of AC current carried by a PTC will produce tripping parameters and times-to-trip similar to those of a DC voltage of the same magnitude. 6. If potting is mandated, avoid rigid potting compounds as they will encase the PTC and prevent it from volumetrically expanding to properly respond to a trip event. 7. MSL: 2a (According to IPC J-Std-020). Specifications subject to change without notice Bel Fuse Inc. 206 Van Vorst Street Jersey City, NJ 07302 USA +1 201.432.0463 Bel.US.CS@belf.com belfuse.com/circuit-protection © 2019 Bel Fuse, Inc. Rev. 0ZCF Sep2019 Type 0ZCF Series 4/4 Environmental Specifications Temperature cycling JESD22 Method JA-104 Biased humidity MIL-STD-202 Method 103 Operational life MIL-STD-202 Method 108 Resistance to solvents MIL-STD-202 Method 215 Mechanical shock MIL-STD-202 Method 213 Vibration MIL-STD-202 Method 204 Resistance to soldering heat MIL-STD-202 Method 210 Thermal shock MIL-STD-202 Method 107 Solderability ANSI/J-STD-002 Board flex(SMD) AEC-Q200-005 Terminal strength AEC-Q200-006 Solder Reflow and Rework Recommendations Profile Feature Pb-Free Assembly Average Ramp-Up Rate (Tsmax to Tp) 3° C℃/second max Preheat : Temperature Min (Tsmin) Temperature Max (Tsmax) Time (tsmin to tsmax) Time maintained above: Temperature(TL ) 150° C 200° C 60-180 seconds 217° C Time (tL) 60-150 seconds Peak/Classification Temperature(Tp) : 260° C Time within 5° C of actual Peak : Temperature (tp) 20-40 seconds Ramp-Down Rate : 6° C/second max. Time 25° C to Peak Temperature : 8 minutes max Solder Reflow Due to “lead free / RoHS 2 ” construction of these PTC devices , the required Temperature and Dwell Time in the “ Soldering ” zone of the reflow profile are greater than those used for non-RoHS devices. 1. Recommended reflow methods; IR, vapor phase oven, hot air oven. 2. Not Recommended For Wave Solder / Direct Immersion. 3. Recommended paste thickness range – 0.20 – 0.25mm. 4. Devices are compatible with standard industry cleaning solvents and methods. 5. MSL: 2a (According to IPC J-Std-020). Caution If reflow temperature / dwell times exceed the recommended profile, the electrical performance of the PTC may be affected. Rework: MIL-STD-202G Method 210F, Test Condition A. Standard Packaging Part Number P/N Explanation and Ordering Information Tape/Reel Qty 0ZCF0030FF2C Thru 2,000 0ZCF0075AF2C 0ZCF0100AF2A 1,000 0ZCF0110AF2A 1,000 0ZCF0110FF2C Thru 2,000 0ZCF0330FF2C 0ZCF0400FF2A 1,000 0ZCF0500FF2A 2000 or 1000 fuses in 7 inches dia. Reel, 8mm wide tape, 4mm pitch, per EIA-481(equivalent IEC-286 part 3). Specifications subject to change without notice Bel Fuse Inc. 206 Van Vorst Street Jersey City, NJ 07302 USA +1 201.432.0463 Bel.US.CS@belf.com belfuse.com/circuit-protection © 2019 Bel Fuse, Inc. Rev. 0ZCF Sep2019
0ZCF0500FF2A
物料型号:0ZCF系列,包括多种型号,如0ZCF0030FF2C、0ZCF0050FF2C等,每个型号具有不同的保持电流(IH)和触发电流(IT)。

器件简介:0ZCF系列是符合RoHS 2标准的2920尺寸的表面贴装PTC,具有快速响应时间和高保持电流,符合AEC-Q标准,适用于汽车应用。

引脚分配:文档中未明确提供引脚分配图,但通常PTC的引脚分配为两个端子,用于连接电路。

参数特性: - 工作(保持)电流范围:300mA至5A。 - 最大电压:6至60V,具体取决于型号。 - 温度范围:-40°C至85°C。 - 机构认证:TUV和UL。

功能详解: - PTC工作原理:当电流或外部热源使聚合物块温度达到约125°C时,聚合物膨胀,导致碳颗粒链断裂,电阻急剧增加,从而限制电流流动。 - 恢复过程:当电流被切断,聚合物冷却并收缩,碳链重新建立,PTC返回低电阻状态。

应用信息:适用于需要过电流/过热保护的场合,不适用于预期会有重复或持续故障条件的应用。

封装信息:提供了推荐的焊盘布局尺寸,以及机械尺寸和标记信息。

环境规格:包括温度循环、偏置湿度、操作寿命、耐溶剂性、机械冲击、振动、耐焊接热、热冲击、可焊性、板弯曲(SMD)和端子强度等测试。

焊接和返工建议:提供了无铅焊接的推荐方法和注意事项,以及返工建议。

标准包装:提供了标准包装的型号和卷带数量信息。
0ZCF0500FF2A 价格&库存

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