EZJZSV270TAK
TVS Varistor, 16 V, 0504 [1310 Metric], Multilayer Varistor (MLV)
- Manufacturer: PANASONIC
- Product type: TVS Varistors
- Voltage Rating VAC:-; Voltage Rating V DC:16V; Product Range:-; Clamping Voltage Vc Max:-; Varistor Case Style:0504; Varistor Type:Multilayer Varistor (MLV); Peak Surge Current @ 8/20µs:5
- SVHC: No SVHC (12-Jan-2017)
- Product Range: -
- Varistor Type: Multilayer Varistor (MLV)
- Voltage Rating VAC: -
- Voltage Rating VDC: 16V
- Varistor Case Style: 0504 [1310 Metric]
- Clamping Voltage Vc Max: -
- Peak Energy (10/1000uS): -
- Operating Temperature Max: 85°C
- Operating Temperature Min: -40°C
- Peak Surge Current @ 8/20µs: 5A
- Automotive Qualification Standard: -
| Delivery and price | |
|---|---|
| Units per pack | 4000 |
| Price | 0.134 € |
| Current stock | 10+ |
| Lead time | 30 days |
## Multilayer Varistors Multilayer Varistor for ESD pulse ~~me~~ Series EZJZS Series EZJZR ## n Features - l Multilayer monolithic ceramic construction - n Precautions for Handling see Page 112 to 118 - l Excellent solderability and superior heat resistance - l Large surge current and energy capabilities in withstanding small size. - n Packing method see Page 111, 182 ## l Series EZJZS, R - l Multilayer varistor of Zinc oxide ceramic. suppresses the pulse noise(ESD, burst-noise) and protects the equipment from the transient surge. - l This Varistor is suitable for high-speed signal line due to small capacitance. l ## n Explanation of Part Numbers **==> picture [454 x 405] intentionally omitted <==** **----- Start of picture text -----**<br> 1 2 3 4 5 6 7 8 9 10 11 12<br>E Z J Z S V 2 7 0 E A K (Example)<br>HOOOOUOOROOOO<br>Product Code Design No.<br>(Multilayer Varistor)<br>Series code Size Code Packaging Style Nomiral Capacitance Code Design No.<br>Varistor voltage<br>ZnO 2 Array Type V Paper Taping The first digitits D 27 pF max. Nil Cap. Tolerance : max.<br>R 4 Array Type are significant P 33 pF max. K Cap. Tolerance : ±10 %<br>figures and the S 39 pF max. M Cap. Tolerance : ±20 %<br>third one denotes<br>the number of T 43 pF max.<br>zeros following. E 47 pF max.<br> Construction<br>[2 Array Type] Schematic<br>Ceramic dielectric<br>Terminal Electrode Inner Electrode =<br>[4 Array Type]<br>Schematic<br>Ceramic dielectric<br>Terminal Electrode ieee<br>Inner Electrode<br>**----- End of picture text -----**<br> ## n Construction Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use. Should a safety concern arise regarding this product, please be sure to contact us immediately. Multilayer Varistors ## n Dimmension in mm(not to scale) **==> picture [389 x 154] intentionally omitted <==** **----- Start of picture text -----**<br> [2 Array Type] [4 Array Type]<br>L L<br>BW BW<br>P P (Unit:mm)<br>W W<br>BW1 BW1<br>T T<br>**----- End of picture text -----**<br> |||||||||||||||| |---|---|---|---|---|---|---|---|---|---|---|---|---|---|---| |||||||||||||||| ||||||||||||P|||| |Type|Part Numbers|||L<br>W||||T|BW|||BW1||P| |2 Array Type|EZJZS11111A|||1.37±0.15||1.0±0.1||0.60±0.0|6<br>0.36±0.10|||0.2±0.1||0.64±0.10| |4 ArrayType|EZJZR11111A|||2.00±0.15||1.25±0.15||0.85±0.1|0<br>0.25±0.10|||0.2<br>+0.3<br>-0.1||0.5±0.1| |nRatings and Characteristics||||||||||||||| |Type||Size<br>Code<br>(EIA)|Prat Numbers<br>||Maximum<br>Allowable<br>Voltage||Varistor<br><br>Voltage<br>@ 1mA||Capacitance<br>@ 1MH z|||Maximum<br>Peak Current<br>@8/20 µs|Maximum<br>ESD<br>IEC61000-4-2|| |2 Array Type||0504|EZJZSV120JA||DC 6.7 V||12 V<br>||220pF max.|||5 A|Contact Discharge<br>Voltage: 8 kV<br>Air Gap Discharge<br>Voltage:15 kV|| ||||EZJZSV270RA||DC 16 V||27 V||20pF max.|||3 A||| ||||EZJZSV270EA||DC 16 V||27 V||47pF max.|||5 A||| ||||EZJZSV800AA||DC 18 V||80 V||3pF max.|||ÑÑÑ||| ||||EZJZSV171AA||DC 18 V||170 V||3pF max.|||ÑÑÑ||| |4 Array Type||0805|EZJZRV120JA||DC 6.7 V||12 V<br>||220pF max.|||5 A||| ||||EZJZRV270RA||DC 16 V||27 V||20pF max.|||3 A||| ||||EZJZRV270EA||DC 16 V||27 V||47pF max.|||5 A||| ||||EZJZRV800AA||DC 18 V||80 V||3pF max.|||ÑÑÑ||| ||||EZJZRV171AA||DC 18 V||170 V||3pF max.|||ÑÑÑ||| |||||||||||||||| |Type||Size<br>Code<br>(EIA)|Prat Numbers||Maximum<br>Allowable<br>Voltage||Varistor<br><br>Voltage<br>@ 1mA||Capacitance<br>@ 1MH z|||Maximum<br>Peak Current<br>@8/20 µs|Maximum<br>ESD<br>IEC61000-4-2|| |2 Array Capacitance<br>Control Type||0504|EZJZSV270DA1||DC 16 V||27 V||27 pF<br>33 pF<br>39 pF<br>43pF<br>47pF|||5 A|Contact Discharge<br>Voltage: 8 kV<br>Air Gap Discharge<br>Voltage:15 kV|| ||||EZJZSV270PA1|||||||||||| ||||EZJZSV270SA1|||||||||||| ||||EZJZSV270TA1|||||||||||| ||||EZJZSV270EA1|||||||||||| l Operating Temperature Range: -40 to 85 ¡C l 1:Capacitance Tolerance Code (K:±10 %, M:±20 %) n Typical Characteristics l Voltage vs. Current **==> picture [17 x 6] intentionally omitted <==** **----- Start of picture text -----**<br> 1000<br>**----- End of picture text -----**<br> **==> picture [266 x 184] intentionally omitted <==** **----- Start of picture text -----**<br> 100<br>10<br>1<br>0.000001 0.00001 0.0001 0.001 0.01 0.1 1 10 100<br>Current (A)<br>EZJZ1V171AA<br>EZJZ1V800AA<br>EZJZ1V2701A1<br>Voltage (V) EZJZ1V120JA<br>**----- End of picture text -----**<br> Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use. Should a safety concern arise regarding this product, please be sure to contact us immediately. Multilayer Varistors ## n Frequency Characteristics **==> picture [225 x 163] intentionally omitted <==** **----- Start of picture text -----**<br> 10<br>EZJZ1V111AA<br>0<br>−10<br>−20<br>−30<br>EZJZ1V270RA<br>−40 EZJZ1V270EA<br>EZJZ1V120JA<br>−50<br>−60<br>1 10 100 1000 10000<br>Frequency (MHz)<br>Attenuation (dB)<br>**----- End of picture text -----**<br> **==> picture [225 x 164] intentionally omitted <==** **----- Start of picture text -----**<br> 10<br>0 EZJZSV270DAK<br>− 10<br>−20<br>EZJZSV270EAK<br>−30<br>EZJZSV270SAK<br>−50<br>−50<br>−60<br>1 10 100 1000 10000<br>Frequency (MHz)<br>Attenuation (dB)<br>**----- End of picture text -----**<br> Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use. Should a safety concern arise regarding this product, please be sure to contact us immediately. Multilayer Varistors ## n Recommended Applications |n Recommended Applications||||| |---|---|---|---|---| ||Series||Recommended Applications<br>DC1k 1M 1G(Hz)|| |Applications Examples||||| |PC mother board<br>Photoelectric sensor<br>HDD<br>Proximity sensor<br>CD-ROM<br>Pressure switch<br>DSC<br>Flowmeter<br>Cellular teleptone, PHS<br>SSR<br>PDA<br>motor|Series<br>EZJZ|Ultra low capacitance<br>(3 pF max.)||DC to some tens of GHz<br>Power, Relay. signal line<br>High frequency circuit (USB,IEEE1394,etc)| |||Low capacitance<br>(20 to 330 pF)||DC to some tens of GHz<br>Power, Relay. signal line<br>High frequencycircuit(RC232C,etc)| ||Series<br>EZJS|High capacitance<br>(1800 to 22000 pF)||DC to some hunderds of kHz<br>Power, Relay. Audio signal| |||||| |n Recom|mended Appl|ications| |---|---|---| ||Applications|Examples| |PC mother<br>HDD|board|Photoelectric sensor<br>Proximity sensor| |CD-ROM<br>DSC||Pressure switch<br>Flowmeter| |Cellular teleptone, PHS||SSR| |PDA||motor| ## n Equivalent and Impules suppression **==> picture [287 x 138] intentionally omitted <==** **----- Start of picture text -----**<br> Series EZJZ Series EZJS<br>(Zn0:Zinc Oxide) (ST:Strontium Titanate)<br>Varistor<br>Capacitance C:0.022 F<br>C:100pF<br>(EZJZ1V270GA) (EZJS2VB223)<br>Clamped wave form<br>**----- End of picture text -----**<br> **==> picture [79 x 10] intentionally omitted <==** **----- Start of picture text -----**<br> Inpules wave form<br>**----- End of picture text -----**<br> **==> picture [417 x 100] intentionally omitted <==** ## n Typical circuits requiring protection **==> picture [462 x 282] intentionally omitted <==** **----- Start of picture text -----**<br> Controller<br>l USB Interface Circuit Controller l IEEE1394 Interface Circuit<br>Vcc<br>D+ Power Power<br>D- IC Supply<br>z1 z1 z3 GDN z3 z1, 2<br>USB Power<br>IEEE1394<br>IC TPA+<br>Controller<br>Controller z1 TPA-<br>Vcc Controller z1<br>D [�]<br>D-<br>z3 z1 z1 z3 GDN z1 z1 TPB+TPB-<br>l IC Protection l Motor or Electromagnetic surge absorption<br>DC Power Line Signal Line<br>I/O Port<br>Audio Signal<br>Motor<br>3<br>3 Electromagnetic valve (Solenoid)<br>1,2<br>Z1 : EZJZ Series(EZJZ@V171AA)<br>Z2 : EZJZ Series<br>Z3 : EZJZ Series or EZJS Series<br>**----- End of picture text -----**<br> Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use. Should a safety concern arise regarding this product, please be sure to contact us immediately. Multilayer Varistors ## n Performance Characteristics l Electrical |n Performance Charact<br>l Electrical|eristics|| |---|---|---| |Characteristics|Test Method|Specifications| ||Unless otherwise specified all test and measurements shall|| |Standard Test<br>Condition|be made at a temperature of 15 to 35 ¡C and at a relative<br>humidity of 45 to 75 %RH. If results obtained are doubted a<br>further test should be carried out at a temperature of 20±|ÑÑÑ| ||2 ¡C and a relative humidity of 60 to 70 %RH.|| |Maximum|The maximum DC voltage that can be applied continuously|| |allowable Voltage|in the specified operating temperature.|| ||The voltage between two terminals with the specified|| |Varistor voltage|measuring current CmADC applied is called Vcor VcmA.<br>The measurement shall be made as fast as possible to avoid|| ||heat affection.|| |Capacitance|Capacitance shall be measured with the specified<br>measuring frequency, 0.2 to 2.0 Vms., 0V bias and 20 ¡C.|To meet<br>the specified value.| ||The Maximum current within the varistor voltage change of|| |Maximum peak current|±10 % when a standard impulse current of 8/20ms is|| ||applied two times with an interval of 5 minutes.|| |Maximum ESD|The maximum ESD within the varistor voltage change of ±30%<br>when impressing 10 times of ESD (five times of positive-|| ||negatives for each polarity) which is based on IEC61000-4-2|| |Temperature coefficient<br>Varistor Voltage|Coefficient indicating dependency of V-I characteristics on<br>temperature. This is shown by the change of VcmA per ¡C at<br>the ambient operating temperature.|EZJZ Series: ±0.1 %/¡C<br>EZJS Series: ±0.3 %/¡C| |Temperature coefficient<br>capacitance|This is shown by the maximum capacitance change at<br>the ambient operating temperature.|EZJZ Series: ±20 %<br>EZJS Series: ±10 %| ## l Mechanical requirements |l Mechanical requireme|nts|| |---|---|---| |Characteristics|Test Method|Specifications| ||After securing the specimen by the body with tweezers and|| |Solderability|dipping in to the specified soldering flux, the specimen shall<br>be completely immersed into a soldering bath having a<br>temperature of 235±5 ¡C for 4±1 seconds. And then the<br>specimen shall be visually examined.<br>Use the specified soldering flux and solder following:<br>Soldering Flux: Ethanol solution of rosin about 25 % by weight|Approximately 75 %<br>of the terminals shall<br>be covered with new<br>solder<br>uniformly,| ||Solder: Eutectic solder (Sn 63 : Pb 37)|| ||After preheating the specimen according to the following|| ||conditions in Table-1, the specimen shall be completely|| ||immersed into a soldering bath having a temperature of 270±5|| ||¡C for 3±0.5 seconds. And then be stored at room|No remarkable| |Resistance to<br>soldering heat|temperature for 24±2 hours. Thereafter, the change of Vc<br>and the mechanical damage shall be examined.|mechanical<br>ÆVc/Vc <±10 %| ||Step<br>Temperature<br>Period|| ||1<br>080 to100ûC<br>300 to 360 s|| ||2<br>150 to 200ûC<br>300 to 360 s|| |||| Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use. Should a safety concern arise regarding this product, please be sure to contact us immediately. Multilayer Varistors ## n Performance Characteristics l Environmental |n Performance Charact<br>l Environmental|eristics|| |---|---|---| |Characteristics|Test Methods|Specifications| |Temperature Cycle|Before the measurement after test, the specimen shall be<br>left to stand and mechanical damage shall be examined.<br>TL: Lower operating temperature<br>TU: Upper operating temperature<br>Step<br>Temperature<br>Period<br>Cycles<br>1<br>TL<br>30min.<br>2<br>Room Temp.<br>15min.<br>5 cycles<br>3<br>TU<br>30min.<br>4<br>Room Temp.<br>15min.|To meet<br>the specified value.| |Damp Heat Load|Allowable Voltage shall be applied continuously to the<br>specimen at specified conditions for specified period and then<br>stored at room temperature and normal humidity for 24±2<br>hours. Thereafter, the change of Vc and mechanical damage<br>shall be examined.<br>Ambient condition :40±2 ¡C, 90 to 95 %RH<br>Period<br>: 500+24 hours<br>-0|No remarkable<br>mechanical damage<br>ÆVc/Vc <±10 %| |High Temperature Load<br>(Dry Heat Load)|Allowable Voltage shall be applied continuously to the<br>specimen at specified conditions for specified period and then<br>stored at room temperature and normal humidity<br>for<br>24±2hours. Thereafter, the change of Vcand mechanical<br>damage shall be examined.<br>Ambient temp.<br>: Upper operating temperature<br>Period<br>: 500+24 hours<br>-0|No remarkable<br>mechanical damage<br>ÆVc/Vc <±10 %| Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use. Should a safety concern arise regarding this product, please be sure to contact us immediately. Multilayer Varistors ## n Packaging Specifications l Standard Packing Quantity |Series|Size Cod|e (EIA)<br>Thickness|Paper taping|Embossed taping| |---|---|---|---|---| |EZJZ|020<br>040<br>060<br>2 Array <br>4 Array|1<br>0.3 mm|Pitch: 2 mm 15,000 pcs./reel|Ñ| |||2<br>0.5 mm|Pitch: 2 mm 10,000pcs./reel|Ñ| |||3<br>0.8 mm|Pitch: 4 mm14,000pcs./reel|Ñ| |||Type<br>0.6 mm|Pitch: 4 mm14,000pcs./reel|Ñ| |||Type<br>0.85 mm|Pitch: 4 mm14,000pcs./reel|Ñ| |EZJS|060<br>080|3<br>0.8 mm|Pitch: 4 mm14,000pcs./reel|Ñ| |||5<br>0.8 mm<br>1.25 mm|Pitch: 4 mm15,000pcs./reel|Ñ| ||||Ñ|Pitch: 4 mm 2,000pcs./reel| l Paper Taping P1: 2mm **==> picture [234 x 136] intentionally omitted <==** **----- Start of picture text -----**<br> t1 Feeding hole Chip pocket<br>fD0<br>A<br>t2<br>Chip component P1 P2 P0 Tape running direction<br>(Unit: mm)<br>Size Code Symbol A B W F E P1 P2 P0 fD t1 t2<br>0201 0.37 0.67 0.5 0.8<br>±0.03 ±0.03 8.0 3.501.752.002.00 4.0 1.5 max. max.<br>0402 0.62 1.12 ±0.2 ±0.05 ±0.10 ±0.05 ±0.05 ±0.05 +0.10 0.7 1.0<br>±0.05 ±0.05 max. max.<br>E<br>F W<br>B<br>**----- End of picture text -----**<br> ## P1: 4mm **==> picture [222 x 78] intentionally omitted <==** **----- Start of picture text -----**<br> t1 Feeding hole Chip pocket<br>fD0<br>A<br>t2 Chip component P1 P2 P0 Tape running direction<br>E<br>F W<br>B<br>**----- End of picture text -----**<br> |(Unit: mm)|(Unit: mm)|(Unit: mm)|(Unit: mm)|(Unit: mm)|(Unit: mm)|(Unit: mm)|(Unit: mm)| |---|---|---|---|---|---|---|---| |Code<br>Symbol|A<br>B<br>W|F<br>E<br>P1|P2|P0|fD|t1|t2| |0603<br>1<br>±|8.0<br>±0.<br>.18<br>0.10<br>.65<br>0.2<br>1.63<br>±0.10<br>2.4<br>±0.2<br>.0<br>0.1<br>1.8<br>±0.1|3.501.75 4.0<br>2 ±0.05 ±0.10 ±0.1|2.0<br> ±0.0|0 4.0 <br>5 ±0.1 <br>0|1.5 <br>+0.1|1.1 <br> max.|1.4<br> max.| |0805<br>Array Type<br>1<br>±|||||||| |0504<br>Array Type<br>1<br>±|||||||| ## l Reel **==> picture [235 x 198] intentionally omitted <==** **----- Start of picture text -----**<br> W1<br>E<br>C<br>D<br>W2<br>A<br>Symbol A B C D E W1 W2<br>Dim. f180 Ð10 f60.0±0.5 13.0±0.5 21.0±0.8 2.0±0.5 9.0±0.3 11.4±1.00<br>(mm)<br>B<br>**----- End of picture text -----**<br> l Leader Part and Taped End Tape end **==> picture [65 x 17] intentionally omitted <==** **----- Start of picture text -----**<br> 160 min.<br>Vacant position<br>**----- End of picture text -----**<br> ## l Embossed Taping **==> picture [234 x 129] intentionally omitted <==** **----- Start of picture text -----**<br> t1 Feeding hole Chip pocket<br>fD0<br>A<br>t2 Chip component P1 P2 P0 Tape running direction<br>(Unit: mm)<br>Size Code Symbol A B W F E P1 P2 P0 fD t1 t2<br>1.55 2.35 8.0 3.501.75 4.0 2.00 4.0 1.5 0.6 1.5<br>0805 ±0.20 ±0.20 ±0.2 ±0.05 ±0.10 ±0.1 ±0.05 ±0.1 +0.1 max. max.<br>0<br>E<br>F W<br>B<br>**----- End of picture text -----**<br> **==> picture [48 x 9] intentionally omitted <==** **----- Start of picture text -----**<br> Leader part<br>**----- End of picture text -----**<br> **==> picture [175 x 38] intentionally omitted <==** **----- Start of picture text -----**<br> 100 min.<br>Vacant position<br>400 min.<br>Unit : mm<br>**----- End of picture text -----**<br> Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use. Should a safety concern arise regarding this product, please be sure to contact us immediately.
Updated at April 24, 2026
Panasonic Industry is a global leader in the design and manufacture of high-quality electronic components. Renowned for a commitment to continuous innovation, the company provides the essential building blocks that empower modern engineering. From industrial automation to consumer electronics, Panasonic's components are trusted worldwide for their outstanding reliability, efficiency, and long-term performance. The extensive portfolio is anchored by a massive selection of passive components, featuring an industry-leading range of aluminium electrolytic, film, and polymer capacitors. Alongside these advanced capacitance solutions, engineers rely on Panasonic's robust power inductors and a highly versatile array of electromechanical devices, including solid-state, power, and signal relays engineered to excel in demanding environments. Beyond core passives and switching solutions, the offering encompasses critical circuit protection devices such as TVS varistors and NTC thermistors, as well as sophisticated thermal management materials. Panasonic also delivers precision light and motion sensors, highly reliable batteries, and advanced Bluetooth and WLAN connectivity modules, providing a comprehensive ecosystem of components to support next-generation technological design.
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