VC120605D150R AVX | Alldatasheet

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AVX Multilayer Ceramic Transient Voltage Suppressors GENERAL DESCRIPTION The AVX TransGuard ® Transient Voltage Suppressors (TVS) with unique high-energy multilayer construction represents state-of-the-art overvoltage circuit protection. Monolithic multilayer construction provides protection from voltage transients caused by ESD, lightning, NEMP , inductive switch- ing, etc. True surface mount product is provided in EIA industry standard packages. Thru-hole components are supplied as conformally coated axial devices. TRANSGUARD® DESCRIPTION TransGuard® products are zinc oxide (ZnO) based ceramic semiconductor devices with non-linear voltage-current charac- teristics (bi-directional) similar to back-to-back zener diodes. They have the added advantage of greater current and energy handling capabilities as well as EMI/RFI attenuation. Devices are fabricated by a ceramic sintering process that yields a structure of conductive ZnO grains surrounded by electrically insulating barriers, creating varistor-like behavior. The number of grain-boundary interfaces between conduct- ing electrodes determines “Breakdown Voltage” of the device. High voltage applications such as AC line protection require many grains between electrodes while low voltage requires few grains to establish the appropriate breakdown voltage. Single layer ceramic disc processing proved to be a viable production method for thick cross section devices with many grains, but attempts to address low voltage suppression needs by processing single layer ceramic disc formulations with huge grain sites has had limited success. AVX, the world leader in the manufacture of multilayer ceramic capacitors, now offers the low voltage transient protection marketplace a true multilayer, monolithic surface mount varistor. Technology leadership in processing thin dielectric materials and patented processes for precise ceramic grain growth have yielded superior energy dissipation in the smallest size. Now a varistor has voltage characteristics determined by design and not just cell sorting whatever falls out of the process. Multilayer ceramic varistors are manufactured by mixing ceramic powder in an organic binder (slurry) and casting it into thin layers of precision thickness. Metal electrodes are deposited onto the green ceramic layers which are then stacked to form a laminated structure. The metal electrodes are arranged so that their terminations alternate from one end of the varistor to the other. The device becomes a monolithic block during the sintering (firing) cycle providing uniform energy dissipation in a small volume.

Important: For part number identification only, not for con- struction of part numbers. The information below only defines the numerical value of part number digits, and cannot be used to construct a desired set of electrical limits. Please refer to the TransGuard ® part number data (blue section, pages 3-8) for the correct electrical ratings. Important: For part number identification only, not for con- struction of part numbers. The information below only defines the numerical value of part number digits, and cannot be used to construct a desired set of electrical limits. Please refer to the TransGuard ® part number data (blue section, page 9) for the correct electrical ratings. V C 1206 05 D 150 R PACKAGING (Pcs/Reel): VC0402 N/A 4,000 10,000 VC0603 1,000 4,000 10,000 VC0805 1,000 4,000 10,000 VC1206 1,000 4,000 10,000 VC1210 1,000 2,000 10,000 CLAMPING VOLTAGE: Where: 100 = 10.0V 500 = 50.0V 150 = 15.5V 560 = 56.0V 200 = 20.0V 580 = 58.0V 250 = 25.0V 620 = 62.0V 300 = 30.0V 650 = 65.0V 390 = 39.0V 101 = 100.0V 400 = 40.0V 121 = 120.0V ENERGY: Where: A = 0.1J H = 1.2J C = 0.3J J = 1.5J D = 0.4J P = 3.0J F = 0.7J V = 0.02J G = 0.9J X = 0.05J WORKING VOLTAGE: Where: 03 = 3.3 VDC 18 = 18.0 VDC 05 = 5.6 VDC 26 = 26.0 VDC 09 = 9.0 VDC 30 = 30.0 VDC 12 = 12.0 VDC 48 = 48.0 VDC 14 = 14.0 VDC 60 = 60.0 VDC CASE SIZE DESIGNATOR: SIZE LENGTH WIDTH CASE STYLE: C = Chip PRODUCT DESIGNATOR: V = Varistor MARKING: All standard surface mount TransGuard® chips will not be marked. Marked chips will be considered a special; contact factory for minimum order requirement and price adder. V A 1000 05 D 150 R PACKAGING (Pcs/Reel): VA1000 1,000 3,000 7,500 VA2000 1,000 2,500 5,000 CLAMPING VOLTAGE: Where: 100 = 10.0V 580 = 58.0V 150 = 15.5V 650 = 65.0V 300 = 30.0V 101 = 100.0V 400 = 40.0V 121 = 120.0V ENERGY: Where: A = 0.1J D = 0.4J K = 2.0J WORKING VOLTAGE: Where: 03 = 3.3 VDC 26 = 26.0 VDC 05 = 5.6 VDC 30 = 30.0 VDC 14 = 14.0 VDC 48 = 48.0 VDC 18 = 18.0 VDC 60 = 60.0 VDC CASE SIZE DESIGNATOR: SIZE LENGTH DIAMETER CASE STYLE: A = Axial PRODUCT DESIGNATOR: V = Varistor MARKING: All axial TransGuards® are marked with vendor identification, product identification, voltage/energy rating code and date code (see example below): Where: AVX = Always AVX (Vendor Identification) TVS = Always TVS (Product Identification - Transient Voltage Suppressor) 05D = Working VDC and Energy Rating (Joules) Where: 05 = 5.6 VDC, D = 0.4J 025 = Three Digit Date Code Where: 0 = Last digit of year (2000) 25 = Week of year Axial Leaded Devices PART NUMBER IDENTIFICATION AVX TVS 05D 025 TransGuard AVX Multilayer Ceramic Transient Voltage Suppressors

AVX Working Breakdown Clamping Peak Transient Part Number Voltage Voltage Voltage Current Energy Capacitance Inductance Symbol VWM VB VC Ipeak Etrans CL Units Volts Volts Volts Amp Joules pF nH Test Condition <50µA 1mA DC 8/20µS† 8/20µs 10/1000µS 0.5Vrms @: di/dt = 100mA/nS1MHz VC04LC18V500 See pages 14-15 for specification and performance details. VOLTAGES = 5.6, 9, 14 OR 18 VDC

0402 SURFACE MOUNT

Dimensions: Actual Size: Thickness 0.6mm Max. (0.024") Termination Band Width 0.25 ± 0.15mm (0.010" ± 0.006") Termination Separation 0.3mm Min. (0.012") Termination Finish Pt/Pd/Ag VWM—Maximum steady-state DC operating voltage the varistor can maintain and not exceed 50µA leakage current VB—Voltage across the device measured at 1mA DC current VC—Maximum peak voltage across the varistor measured at a specified pulse current and waveform †Transient Energy Rating Pulse Current & Waveform <0.05 Joule 1A 8/20µS Ipeak—Maximum peak current which may be applied with the specified waveform without device failure Etran—Maximum energy which may be dissipated with the specified waveform without device failure C—Device capacitance measured with zero volt bias 0.5Vrms and 1MHz L—Device inductance measured with a current edge rate of 100 mA/nS Dimensions: Millimeters (Inches) TransGuard AVX Multilayer Ceramic Transient Voltage Suppressors

AVX Multilayer Ceramic Transient Voltage Suppressors Multilayer construction and improved grain structure result in excellent transient clamping characteristics up to 20 amps peak current, while maintaining very low leakage currents under DC operating conditions. The VI curves below show the voltage/current characteristics for the 5.6V, 9V, 14V, 18V and low capacitance StaticGuard parts with currents ranging from parts of a micro amp to tens of amps. Traditionally varistors have suffered degradation of electrical performance with repeated high current pulses resulting in decreased breakdown voltage and increased leakage cur- rent. It has been suggested that irregular intergranular boundaries and bulk material result in restricted current paths and other non-Schottky barrier paralleled conduction paths in the ceramic. Repeated pulsing of TransGuard tran- sient voltage suppressors with 150Amp peak 8 x 20µS waveforms shows negligible degradation in breakdown voltage and minimal increases in leakage current. This does not mean that TransGuard suppressors do not suffer degradation, but it occurs at much higher current. TYPICAL PERFORMANCE CURVES (0402 CHIP SIZE) VOLTAGE/CURRENT CHARACTERISTICS PULSE DEGRADATION VC04LC18V500 VC040214X300 VC040218X400 VC040205X150 VC040209X200 100 -9 10-7 10-5 10-3 10-1 10 10 3 105 Current (A) Voltage (V) VC04LC18V500 VC040214X300 VC040218X400 VC040205X150 VC040209X200 10 100 1000 10000 8kV ESD STRIKES BREAKDOWN VOLTAGE (Vb) VC040205X VC04LC18V VC040214X VC040218X VC040209X -10 -15 -20 -25 0.01 0.1 1 10 Frequency (GHz) dB VC04LC18V500 VC040214X300 VC040218X400 VC040205X150 VC040209X200 1300 1200 10 100 1000 IMPULSE DURATION (µS) PEAK POWER (W) 1100 1000 900 800 700 600 500 400 300 200 100 PEAK POWER VS PULSE DURATION INSERTION LOSS CHARACTERISTICS ESD TEST OF 0402 PARTS

AVX Multilayer Ceramic Transient Voltage Suppressors VOLTAGES = 3.3, 5.6, 9, 14, 18, 26 OR 30 VDC

0603 SURFACE MOUNT

Dimensions: Actual Size: Thickness 0.9mm Max. (0.035") Termination Band Width 0.35 ± 0.15mm (0.014" ± 0.006") Termination Separation 0.7mm Min. (0.028") Termination Finish Pt/Pd/Ag AVX Working Breakdown Clamping Peak Transient Part Number Voltage Voltage Voltage Current Energy Capacitance Inductance Symbol VWM VB VC Ipeak Etrans CL Units Volts Volts Volts Amp Joules pF nH Test Condition <50µA 1mA DC 8/20µS† 8/20µs 10/1000µS 0.5Vrms @: di/dt = 100mA/nS1kHz 1 MHz VC06LC18X500 See pages 14-15 for specification and performance details. VWM—Maximum steady-state DC operating voltage the varistor can maintain and not exceed 50µA leakage current VB—Voltage across the device measured at 1mA DC current VC—Maximum peak voltage across the varistor measured at a specified pulse current and waveform †Transient Energy Rating Pulse Current & Waveform

0.1 Joule 2A 8/20µS

Ipeak—Maximum peak current which may be applied with the specified waveform without device failure Etran—Maximum energy which may be dissipated with the specified waveform without device failure C—Device capacitance measured with zero volt bias 0.5Vrms and 1kHz L—Device inductance measured with a current edge rate of 100 mA/nS Dimensions: Millimeters (Inches) #Test condition <100µA

VOLTAGES = 3.3, 5.6, 9, 12, 14, 18, 26 OR 30 VDC

0805 SURFACE MOUNT

Dimensions: Actual Size: Thickness 1.02mm Max. (0.040") Land Length 0.71mm Max. (0.028") Termination Finish Pt/Pd/Ag AVX Working Breakdown Clamping Peak Transient Part Number Voltage Voltage Voltage Current Energy Capacitance Inductance Symbol VWM VB VC Ipeak Etrans CL Units Volts Volts Volts Amp Joules pF nH Test Condition <50µA 1mA DC 8/20µS† 8/20µs 10/1000µS 0.5Vrms @: di/dt = 100mA/nS1kHz 1 MHz VC080509A200 9 11.0 - 14.0 20 40 0.1 780 585 <1.5 VC080512A250 12 14.0 - 18.3 25 40 0.1 525 400 <1.5 VC080514A300 14 16.5 - 20.3 30 40 0.1 375 280 <1.5 VC080514C300 14 15.9 - 19.4 30 120 0.3 1100 820 1.5 VC080518A400 18* 22.9 - 28.0 40 30 0.1 350 275 <1.5 VC080518C400 18* 22.5 - 27.5 40 100 0.3 650 500 1.5 VC080526A580 26 31.0 - 37.9 58 30 0.1 140 110 <1.5 VC080526C580 26 30.5 - 37.3 58 100 0.3 250 190 1.5 VC080530A650 30 37.0 - 46.0 65 30 0.1 100 80 <1.5 VC08LC18A500 See pages 14-15 for specification and performance details. VWM—Maximum steady-state DC operating voltage the varistor can maintain and not exceed 50µA leakage current VB—Voltage across the device measured at 1mA DC current VC—Maximum peak voltage across the varistor measured at a specified pulse current and waveform †Transient Energy Rating Pulse Current & Waveform 0.2 - 0.3 Joules 5A 8/20µS Ipeak—Maximum peak current which may be applied with the specified waveform without device failure Etran—Maximum energy which may be dissipated with the specified waveform without device failure C—Device capacitance measured with zero volt bias 0.5Vrms and 1kHz L—Device inductance measured with a current edge rate of 100 mA/nS *Withstands 24.5 VDC for 5 minutes (automotive applications) Dimensions: Millimeters (Inches) #Test condition <100µA TransGuard AVX Multilayer Ceramic Transient Voltage Suppressors

AVX Working Breakdown Clamping Peak Transient Part Number Voltage Voltage Voltage Current Energy Capacitance Inductance Symbol VWM VB VC Ipeak Etrans CL Units Volts Volts Volts Amp Joules pF nH Test Condition <50µA 1mA DC 8/20µS† 8/20µs 10/1000µS 0.5Vrms @: di/dt = 100mA/nS1kHz 1 MHz VC120614A300 14 16.5 - 20.3 30 40 0.1 600 500 <1.7 VC120614D300 14 15.9 - 19.4 30 150 0.4 1200 900 1.7 VC120618A400 18* 22.9 - 28.0 40 30 0.1 350 270 <1.7 VC120618D400 18* 22.5 - 27.5 40 150 0.4 800 635 1.7 VC120626D580 26 30.5 - 37.3 58 120 0.4 550 450 1.7 VC120630D650 30 36.0 - 45.0 65 120 0.4 500 400 1.7 VC120648D101 48 56.0 - 68.0 100 100 0.4 225 185 1.7 VC12LC18A500 See pages 14-15 for specification and performance details. VOLTAGES = 3.3, 5.6, 14, 18, 26, 30 OR 48 VDC

1206 SURFACE MOUNT

Dimensions: Actual Size: Thickness 1.02mm Max. (0.040") Land Length 0.71mm Max. (0.028") Termination Finish Pt/Pd/Ag0 V WM—Maximum steady-state DC operating voltage the varistor can maintain and not exceed 50µA leakage current VB—Voltage across the device measured at 1mA DC current VC—Maximum peak voltage across the varistor measured at a specified pulse current and waveform †Transient Energy Rating Pulse Current & Waveform ‡0.4 Joules 10A 8/20µS Ipeak—Maximum peak current which may be applied with the specified waveform without excessive leakage Etran—Maximum energy which may be dissipated with the specified waveform without device failure C—Device capacitance measured with zero volt bias 0.5Vrms and 1kHz L—Device inductance measured with a current edge rate of 100 mA/nS *Withstands 24.5 VDC for 5 minutes (automotive applications) Dimensions: Millimeters (Inches) #Test condition <100µA TransGuard AVX Multilayer Ceramic Transient Voltage Suppressors

AVX Multilayer Ceramic Transient Voltage Suppressors VOLTAGES = 18, 26, 30, 48 OR 60 VDC

1210 SURFACE MOUNT

Dimensions: Actual Size: Thickness 1.70mm Max. (0.067") Land Length 0.71mm Max. (0.028") Termination Finish Pt/Pd/Ag AVX Working Breakdown Clamping Peak Transient Part Number Voltage Voltage Voltage Current Energy Capacitance Inductance Symbol VWM VB VC Ipeak Etrans CL Units Volts Volts Volts Amp Joules pF nH Test Condition <50µA 1mA DC 8/20µS† 8/20µs 10/1000µS 0.5Vrms @: di/dt = 100mA/nS 1kHz 1 MHz VC121018J390 18* 21.5 - 26.5 39 500 1.5 3100 2400 2.0 VC121026H560 26 29.7 - 36.3 56 300 1.2 2150 1675 2.0 VC121030G620 30 35.0 - 43.0 62 220 0.9 1900 1530 2.0 VC121030H620 30 35.0 - 43.0 62 280 1.2 1975 1575 2.0 VC121048G101 48 54.5 - 66.5 100 220 0.9 500 430 2.0 VC121048H101 48 54.5 - 66.5 100 250 1.2 525 450 2.0 VC121060J121 60 67.0 - 83.0 120 250 1.5 450 375 2.0 VWM—Maximum steady-state DC operating voltage the varistor can maintain and not exceed 50µA leakage current VB—Voltage across the device measured at 1mA DC current VC—Maximum peak voltage across the varistor measured at a specified pulse current and waveform †Transient Energy Rating Pulse Current & Waveform ‡0.4 Joules 10A 8/20µS Ipeak—Maximum peak current which may be applied with the specified waveform without device failure Etran—Maximum energy which may be dissipated with the specified waveform without device failure C—Device capacitance measured with zero volt bias 0.5Vrms and 1kHz L—Device inductance measured with a current edge rate of 100 mA/nS *Withstands 24.5 VDC for 5 minutes (automotive applications) Dimensions: Millimeters (Inches)