SA14H TSC | Alldatasheet

Document overview

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  • PDF pages: 9

Technical content

1 Version: L2105

500W, 5V - 170V Transient Voltage Suppressor

FEATURES

  • AEC-Q101 qualified available
  • Excellent clamping capability
  • Low impedance surge resistance
  • 500W surge capability at 10/1000μs waveform
  • Fast response time: Typically less than 1.0ps from 0 volt to VBR for unidirectional and 5.0ns for bidirectional
  • Typical IR less than 1μA above 10V
  • RoHS Compliant
  • Halogen-free according to IEC 61249-2-21

APPLICATIONS

  • Protect sensitive circuit from damage by high voltage transients
  • Lighting, ESD transient voltage protection of IC, system
  • Inductive switching load protection of IC, system
  • Electrical Fast Transient Immunity protection of IC, system MECHANICAL DATA
  • Case: DO-204AC (DO-15)
  • Molding compound meets UL 94V-0 flammability rating
  • Terminal: Pure tin plated leads, solderable per J-STD-002
  • Meet JESD 201 class 2 whisker test
  • Polarity: As marked
  • Weight: 0.400g (approximately) KEY PARAMETERS PARAMETER VALUE UNIT VWM 5 - 170 V VBR (uni - directional) 6.4 - 209 V VBR (bi - directional) 6.4 - 209 V PPK 500 W TJ MAX 175 °C Package DO-204AC (DO-15) DO-204AC (DO-15) ABSOLUTE MAXIMUM RATINGS (TA = 25°C unless otherwise noted) PARAMETER SYMBOL VALUE UNIT Peak power dissipation at TA = 25°C, Tp = 1ms(1) PPK 500 W Steady state power dissipation at TL = 75°C lead lengths .375", 9.5mm(2) PD 3 W Peak forward surge current, 8.3 ms single half sine-wave superimposed on rated load(3) IFSM 70 A Maximum instantaneous forward voltage at 35A for Unidirectional only VF 3.5 V Operating junction temperature range TJ -55 to +175 °C Storage temperature range TSTG -55 to +175 °C Note: 1. Non-repetitive current pulse per Fig.3 and Derated above TA = 25°C per Fig.2 2. Mounted on 10 x 10 mm copper pads to each terminal 3. 8.3ms single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minute maximum Devices for bipolar applications 1. For bidirectional use C or CA suffix for types SA5.0 - types SA170 2. Electrical characteristics apply in both directions

2 Version: L2105

MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS (TA=25°C unless otherwise noted) Part Number Breakdown voltage VBR@IT (V)(1) Test current IT (mA) Working stand-off voltage VWM (V) Reverse leakage @ VWM ID (uA) Maximum peak pulse current IPPM (A)(2) Maximum clamping voltage VC@IPPM (V) Maximum temperature coefficient VBR IT VWM IR IPPM VC VBR V mA V μA A V mV/°C Min Max SA10 11.1 13.6 1 10 1 27.0 18.8 10 SA10A 11.1 12.3 1 10 1 30.0 17.0 10 SA11 12.2 14.9 1 11 1 26.0 20.1 11 SA11A 12.2 13.5 1 11 1 28.0 18.2 11 SA12 13.3 16.3 1 12 1 23.0 22.0 12 SA12A 13.3 14.7 1 12 1 26.3 19.9 12 SA13 14.4 17.6 1 13 1 22.0 23.8 13 SA13A 14.4 15.9 1 13 1 24.0 21.5 13 SA14 15.6 19.1 1 14 1 20.3 25.8 14 SA14A 15.6 17.2 1 14 1 22.6 23.2 14 SA15 16.7 20.4 1 15 1 19.5 26.9 16 SA15A 16.7 18.5 1 15 1 21.0 24.4 16 SA16 17.8 21.8 1 16 1 18.0 28.8 19 SA16A 17.8 19.7 1 16 1 20.0 26.0 17 SA17 18.9 23.1 1 17 1 17.0 30.5 20 SA17A 18.9 20.9 1 17 1 19.0 27.7 19 SA18 20.0 24.4 1 18 1 16.3 32.2 21

3 Version: L2105

MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS (TA=25°C unless otherwise noted) Part Number Breakdown voltage VBR@IT (V)(1) Test current IT (mA) Working stand-off voltage VWM (V) Reverse leakage @ VWM ID (uA) Maximum peak pulse current IPPM (A)(2) Maximum clamping voltage VC@IPPM (V) Maximum temperature coefficient VBR IT VWM IR IPPM VC VBR V mA V μA A V mV/°C Min Max SA18A 20.0 22.1 1 18 1 17.9 39.4 20 SA20 22.2 27.1 1 20 1 14.0 35.5 25 SA20A 22.2 24.5 1 20 1 16.0 43.0 23 SA22 24.4 29.8 1 22 1 13.0 38.9 28 SA22A 24.4 26.9 1 22 1 14.7 46.6 25 SA24 26.7 32.6 1 24 1 12.0 42.1 31 SA24A 26.7 29.5 1 24 1 13.4 50.1 28 SA26 28.9 35.3 1 26 1 11.0 45.4 31 SA26A 28.9 31.9 1 26 1 12.4 53.5 30 SA28 31.1 38.0 1 28 1 10.0 48.4 35 SA28A 31.1 34.4 1 28 1 11.5 59.0 31 SA30 33.3 40.7 1 30 1 9.8 53.3 39 SA30A 33.3 36.8 1 30 1 10.8 64.3 36 SA33 36.7 44.9 1 33 1 8.8 58.1 42 SA33A 36.7 40.6 1 33 1 9.8 71.4 39 SA36 40.0 48.9 1 36 1 8.1 64.5 46 SA36A 40.0 44.2 1 36 1 9.0 58.1 41 SA40 44.4 54.3 1 40 1 7.3 71.4 51 SA40A 44.4 49.1 1 40 1 8.1 64.5 46 SA43 47.8 58.4 1 43 1 6.8 76.7 55 SA43A 47.8 52.8 1 43 1 7.5 69.4 50 SA45 50.0 61.1 1 45 1 6.5 80.3 58 SA45A 50.0 55.3 1 45 1 7.2 72.7 52 SA48 53.3 65.2 1 48 1 6.1 85.5 63 SA48A 53.3 58.9 1 48 1 6.7 77.4 56 SA51 56.7 69.3 1 51 1 5.7 91.1 66 SA51A 56.7 62.7 1 51 1 6.3 82.4 61 SA54 60.0 73.3 1 54 1 5.4 86.3 71 SA54A 60.0 66.3 1 54 1 6.0 87.1 65 SA58 64.4 78.7 1 58 1 5.0 103 78 SA58A 64.4 71.2 1 58 1 5.6 93.6 70 SA60 66.7 81.5 1 60 1 4.9 107 80 SA60A 66.7 73.7 1 60 1 5.4 96.8 71

4 Version: L2105

MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS (TA=25°C unless otherwise noted) Part Number Breakdown voltage VBR@IT (V)(1) Test current IT (mA) Working stand-off voltage VWM (V) Reverse leakage @ VWM ID (uA) Maximum peak pulse current IPPM (A)(2) Maximum clamping voltage VC@IPPM (V) Maximum temperature coefficient VBR IT VWM IR IPPM VC VBR V mA V μA A V mV/°C Min Max SA64 71.1 86.9 1 64 1 4.6 114 86 SA64A 71.1 78.6 1 64 1 5.0 103 76 SA70 77.8 95.1 1 70 1 4.2 125 94 SA70A 77.8 86.0 1 70 1 4.6 113 85 SA75 83.3 102 1 75 1 3.9 134 101 SA75A 83.3 92.1 1 75 1 4.3 121 91 SA78 86.7 103 1 78 1 3.7 139 105 SA78A 86.7 95.8 1 78 1 4.1 126 95 SA85 94.4 115 1 85 1 3.4 151 114 SA85A 94.4 104 1 85 1 3.8 137 103 SA90 100 122 1 90 1 3.2 160 121 SA90A 100 111 1 90 1 3.5 146 110 SA100 111 136 1 100 1 2.9 179 135 SA100A 111 123 1 100 1 3.2 162 123 SA110 122 149 1 110 1 2.6 196 148 SA110A 122 135 1 110 1 2.9 177 133 SA120 133 163 1 120 1 2.4 214 162 SA120A 133 147 1 120 1 2.7 193 146 SA130 144 176 1 130 1 2.2 230 175 SA130A 144 159 1 130 1 2.5 209 158 SA150 167 204 1 150 1 1.9 268 203 SA150A 167 185 1 150 1 2.1 243 184 SA160 178 218 1 160 1 2.0 257 217 SA160A 178 197 1 160 1 2.0 259 196 SA170 189 231 1 170 1 1.7 304 230 SA170A 189 209 1 170 1 0.1 275 208 Notes: 1. VBR measure after IT applied for 300us, IT = square wave pulse or equivalent. 2. Surge current waveform per Fig.3 and derate per Fig.2 3. For bipolar types having VWM of 10 volts and under, the IR limit is doubled. 4. All terms and symbols are consistent with ANSI/IEEE C62.35.

5 Version: L2105

ORDERING INFORMATION

ORDERING CODE(1)(2) PACKAGE PACKING SAx DO-204AC (DO-15) 3,500 / Tape & Reel SAx A0G DO-204AC (DO-15) 1,500 / Ammo box SAxH DO-204AC (DO-15) 3,500 / Tape & Reel SAxHA0G DO-204AC (DO-15) 1,500 / Ammo box Notes: 1. “x” defines voltage from 5V (SA5.0) to 170V (SA170) 2. “H” means AEC-Q101 qualified

6 Version: L2105

(TA = 25°C unless otherwise noted) Fig.1 Peak Pulse Power Rating Curve Fig.2 Pulse Derating Curve Fig.3 Clamping Power Pulse Waveform Fig.4 Typical Junction Capacitance 0.1 100 0.1 1 10 100 1000 10000 PPPM, PEAK PULSE POWER, KW tp, PULSE WIDTH, (µs) NON-REPETITIVE PULSE WAVEFORM SHOWN in Fig.3 IMPULSE EXPONENTIAL DECAY HALF SINE SQUARE 100 125 0 25 50 75 100 125 150 175 PEAK PULSE POWER(PPP) OR CURRENT (IPP) A DERATING IN PERCENTAGE (%) TEMPERATURE (°C) TL TA 100 1000 10000 1 10 100 1000 f=1.0MHz Vsig=50mVp-p VR=0 MEASURED at STAND-OFF VOLTAGE,Vwm 100 120 140 0 0.5 1 1.5 2 2.5 3 IPPM, PEAK PULSE CURRENT (%) t, TIME (ms) td Peak value IPPM Rise time tr=10μs to 100% Half value-IPPM/2 Pulse width(td) is defined as the point where the peak current decays to 50% of IPPM 10/1000μs, waveform CJ, JUNCTION CAPACITANCE (pF) V(BR), BREAKDOWN VOLTAGE (V)

7 Version: L2105

(TA = 25°C unless otherwise noted) Fig.5 Maximum Non-Repetitive Forward Surge Current 100 1 10 100 8.3ms single half sine wave UNIDIRECTIONAL ONLY NUMBER OF CYCLES AT 60 Hz PEAK FORWARD SURGE CURRENT (A)

8 Version: L2105

PACKAGE OUTLINE DIMENSIONS DO-204AC (DO-15) MARKING DIAGRAM Cathode band for uni-directional products only P/N = Marking Code G = Green Compound YWW = Date Code F = Factory Code

9 Version: L2105

Specifications of the products displayed herein are subject to change without notice. TSC or anyone on its behalf assumes no responsibility or liability for any errors or inaccuracies. Purchasers are solely responsible for the choice, selection, and use of TSC products and TSC assumes no liability for application assistance or the design of Purchasers’ products. Information contained herein is intended to provide a product description only. No license, express or implied, to any intellectual property rights is granted by this document. Except as provided in TSC’s terms and conditions of sale for such products, TSC assumes no li ability whatsoever, and disclaims any express or implied warranty, relating to sale and/or use of TSC products including liability or warranties relating to fitness for a particular purpose, merchantability, or infringement of any patent, copyright, or other intellectual property right. The products shown herein are not designed for use in medical, life -saving, or life -sustaining applications. Customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify TSC for any damages resulting from such improper use or sale.