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www.anova-semi.com Revision: A Jun-25-2010 P. 1 Low Capacitance Stand-Off Voltage: 6.5 to 28 V Peak Pulse Power: 1500 W Note: Axial Lead Transient Voltage Suppressors Features DO-201 Glass passivated chip
1500 W peak pulse power capability with a
10/1000 μs waveform, repetitive rate (duty cycle):0.01 % Low leakage Excellent clamping capability Very fast response time RoHS compliant Mechanical Data Case: molded plastic Epoxy: UL 94V-0 rate flame retardant Lead: Solderable per MIL-STD-750, method 2026 guranteed Polarity: Color band denotes TVS cathode end Mounting position: Any Maximum Ratings(TA=25℃ unless otherwise noted) Parameter Symbol Value Unit Peak power dissipation with a 10/1000μs waveform(1) PPP 1500 W Power dissipation on infinite heatsink at TL = 75 °C(Fig.2) PD 6.5 W Peak pulse current wih a 10/1000μs waveform(Fig.2)(1) IPP See Next Table A Operating junction and storage temperature range TJ, TSTG –55 to +150 °C (1)Non-repetitive current pulse per Fig.3 and derated above TA= 25 °C per Fig.2 0.042 0.038 [ 1.07 0.97] 0.209 0.189 [ 5.30 4.79] MIN MIN DIA. DIA. Dimensions : inch [ mm ] 0.375 0.285 [ 9.53 7.24] 1.000 [25.40] 1.000 [25.40]
www.anova-semi.com Revision: A Jun-25-2010 P. 2 0 30 0.1 20 0.1 13 0 100 0 100 ## 0.2 10000 0.14 10000 0.1 25 100 75 100 175 25 175 0 0 0 0.2 100 0.5 76 1 50 1.5 33 2 23 3 13 4 10 Ratings and Characteristics Curves (TA=25℃ unless otherwise noted) Fig. 1 - Peak Pulse Power Rating Curve Fig. 2 - Power Derating Curve Surge Current Fig. 3 - Pulse Waveform Fig. 4 - AC Line Protection Application 100 0 1 2 3 4 Peak Pulse Current , (% ) Time , (ms) TJ = 25 °C Pulse Width (td) is defined as the point where the peak current decays to 50 % of Ipp 10/1000 μsec. Waveform as defined by R.E.A. Peak Value (Ipp) Half Value = Ipp td Tr=10μs 0.1 100 0.1 1 10 100 1000 10000 Peak Pulse Power,PPK, (kW) Pulse Width, td (μs) 100 0 25 50 75 100 125 150 175 Percentage of Rated Power (%) Lead Temperature ,TL (℃) Peak Power (Single Pulse) TJ = Initial Temperature Power Dissipation Low Capacitance TVS Application Note: Device must be used with two units in parallel, opposite in polarity as shown in circuit for AC signal line protection.
www.anova-semi.com Revision: A Jun-25-2010 P. 3 Min (V) Max (V) IT (mA) LCE10 10.0 11.10 13.60 1 5 18.8 80 100 75 1 100 LCE10A 10.0 11.10 12.30 1 5 17.0 88 100 75 1 100 LCE11 11.0 12.20 14.90 1 5 20.1 74 100 75 1 100 LCE11A 11.0 12.20 13.50 1 5 18.2 82 100 75 1 100 LCE12 12.0 13.30 16.30 1 5 22.0 68 100 75 1 100 LCE12A 12.0 13.30 14.70 1 5 19.9 75 100 75 1 100 LCE13 13.0 14.40 17.60 1 5 23.8 63 100 75 1 100 LCE13A 13.0 14.40 15.90 1 5 21.5 70 100 75 1 100 LCE14 14.0 15.60 19.10 1 5 25.8 58 100 75 1 100 LCE14A 14.0 15.60 17.20 1 5 23.2 65 100 75 1 100 LCE15 15.0 16.70 20.40 1 5 26.9 56 100 75 1 100 LCE15A 15.0 16.70 18.50 1 5 24.4 61 100 75 1 200 LCE16 16.0 17.80 21.80 1 5 28.8 52 100 75 1 200 LCE16A 16.0 17.80 19.70 1 5 26.0 57 100 75 1 200 LCE17 17.0 18.90 23.10 1 5 30.5 49 100 75 1 200 LCE17A 17.0 18.90 20.90 1 5 27.6 54 100 75 1 200 LCE18 18.0 20.00 24.40 1 5 32.2 46 100 75 1 200 LCE18A 18.0 20.00 22.10 1 5 29.2 51 100 75 1 200 LCE20 20.0 22.20 27.10 1 5 35.8 42 100 75 1 200 LCE20A 20.0 22.20 24.50 1 5 32.4 46 100 75 1 200 LCE22 22.0 24.40 29.80 1 5 39.4 38 100 75 1 200 LCE22A 22.0 24.40 26.90 1 5 35.5 42 100 75 1 200 LCE24 24.0 26.70 32.60 1 5 43.0 35 100 75 1 200 LCE24A 24.0 26.70 29.50 1 5 38.9 39 100 75 1 200 LCE26 26.0 28.90 35.30 1 5 46.6 32 100 75 1 200 LCE26A 26.0 28.90 31.90 1 5 42.1 36 100 75 1 200 LCE28 28.0 31.10 38.00 1 5 50.1 30 100 75 1 200 LCE28A 28.0 31.10 34.40 1 5 45.5 33 100 75 1 200 LCE30A 30.0 33.30 36.80 1 1 48.4 31 100 75 1 100 LCE33A 33.0 36.70 40.60 1 1 53.3 28 100 75 1 100 LCE36A 36.0 40.00 44.20 1 1 58.1 26 100 75 1 100 LCE40A 40.0 44.40 49.10 1 1 64.5 23 100 75 1 100 LCE43A 43.0 47.80 52.80 1 1 69.4 22 100 75 1 100 LCE45A 45.0 50.00 55.30 1 1 72.7 21 100 75 1 100 LCE48A 48.0 53.30 58.90 1 1 77.4 19 100 75 1 100 LCE51A 51.0 56.70 62.70 1 1 82.4 18 100 75 1 100 LCE54A 54.0 60.00 66.30 1 1 87.1 17 100 100 1 125 LCE58A 58.0 64.40 71.20 1 1 93.6 16 100 100 1 125 LCE60A 60.0 66.70 73.70 1 1 96.8 16 100 100 1 125 LCE64A 64.0 71.10 78.60 1 1 103.0 15 100 100 1 125 LCE70A 70.0 77.80 86.00 1 1 113.0 13 100 125 1 150 LCE75A 75.0 83.30 92.10 1 1 121.0 12 100 125 1 150 LCE85A 85.0 94.40 104.00 1 1 129.0 12 100 125 1 150 LCE90A 90.0 100.00 111.00 1 1 146.0 10 100 125 1 150 Inverse Blocking Leakage Current IIB @VWIB (mA) Peak Inverse Voltage VPIB (V) Part Number Stand-Off Voltage VWM (V) Breakdown Voltage VBR @ IT Maximum Reverse Leakage IR @VWM (uA) Electrical Characteristics(TA=25℃ unless otherwise noted) Maximum Junction Capacitance @0 V (pF) Working Inverse Blocking Voltage VWIB (V) Maximum Reverse Surge Current IPP (A) Maximum Clamping Voltage VC @IPP