# TVS Varistor, 25 V, 32 V, CAN Series, 120 V, 0603 [1608 Metric], Multilayer Varistor (MLV)

![Product image](https://novapart.co/image/farnell:2440187RL/)

**URL**: https://novapart.co/products/CAN0007DP/tvs-varistor-25-v-32-can-series-120-0603-1608
**SKU**: CAN0007DP
**Manufacturer**: KYOCERA AVX
**Category**: Circuit Protection || TVS - Transient Voltage Suppressors || TVS Varistors
**Price**: €0.1160
**Stock**: 10+
**Lead Time**: 169 days (indicative)

## Description

Voltage Rating VAC:25V; Voltage Rating V DC:32V; Product Range:CAN Series; Clamping Voltage Vc Max:120V; Varistor Case Style:0603 [1608 Metric]; Varistor Type:Multilayer Varistor (M

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (17-Jan-2023) |
| Product Range | CAN Series |
| Varistor Type | Multilayer Varistor (MLV) |
| Voltage Rating Vac | 25V |
| Voltage Rating Vdc | 32V |
| Varistor Case Style | 0603 [1608 Metric] |
| Clamping Voltage Vc Max | 120V |
| Peak Energy (10/1000Us) | 50mJ |
| Operating Temperature Max | 125°C |
| Operating Temperature Min | -55°C |
| Peak Surge Current @ 8/20Μs | 5A |
| Automotive Qualification Standard | - |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2440187RL/)

## **Communication BUS Varistor** 

## **GENERAL DESCRIPTION** 

The CAN BUS and FlexRay varistor is a zinc oxide (ZnO) based ceramic semiconductor device with non- linear voltage-current characteristics (bi-directional) similar to back-to-back Zener diodes and an EMC capacitor in parallel (see equivalent circuit model). 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. 

AVX Communication Bus Varistors offer the advantages of large in-rush current capability, low capacitance to minimize signal distortion, fast turn on time to conservatively clamp the energy before its maximum and off state EMI filtering through their bulk capacitance. These features coupled with an extremely low FIT rate and excellent process capability make an ideal device for today's automotive or general circuit protection. 

## **GENERAL CHARACTERISTICS** 

- Operting Teperature: -55°C to +125°C 

- Working Voltage: ≤18Vdc 

- Case Size: 0402, 0603 0405 2xArray 0612 4xArray 

## **FEATURES** 

- Compact footprint 

- High ESD capability (25kV) 

- High Inrush Current (8x20μs) 

- EMI/RFI Attenuation 

- Low Capacitance/Low Insertion Loss 

- Very Fast Response Time 

- High Reliability <0.1 FIT 

- AEC-Q200 Qualified 

## **APPLICATIONS** 

- Communication Bus: CAN Bus, FlexRay, etc. 

- General I/O Protocols 

- Keyboard Interfaces 

- Datalines 

- Sensors 

- Capacitance sensitive applications and more 

## **HOW TO ORDER** 

**CAN 0001 D P Style Case Size Packaging Code Termination** 0001 = 0603 Discrete **(Reel Size)** P = Ni/Sn 0002 = 0405 2-Element D = 7" reel (1,000 pcs.) (Plated) 0003 = 0405 2-Element R = 7" reel (4,000 pcs.) 0004 = 0612 4-Element T = 13" reel (10,000 pcs.) W = 7" reel (10,000 pcs.) 0402 only 

**Style Case Size** CAN = CAN BUS 0001 = 0603 Discrete FLX = FlexRay 0002 = 0405 2-Element 0003 = 0405 2-Element 0004 = 0612 4-Element 0005 = 0402 Discrete 0006 = 0402 Discrete 0007 = 0603 Discrete 

## **PERFORMANCE CHARACTERISTICS** 

**AVX PN VW (DC) VW (AC) VB VC IVC IL ET IP Cap Freq VJump PDiss Max Case Elements** ~~nan~~ CAN0001 _ _ ≤ 18 ≤ 14 120 225 1 2 0.015 4 22 Max M 27.5 0.003 0603 1 ~~ee~~ CAN0002 _ _ ≤ 18 ~~ee~~ ≤ 14 ~~ee~~ 70 145 ~~ee~~ 1 ~~ee~~ 2 ~~ee~~ 0.015 4 22 Max M ~~ee~~ 27.5 0.003 ~~eee~~ 0405 2 ~~Se~~ CAN0003 _ _ ≤18 ~~ee~~ ≤14 28.5 ~~ed~~ 50 ~~ee~~ 1 5 0.02 ~~nn~~ 15 50 Max M 27.5 0.0008 0405 2 CAN0004 _ _ ≤ 18 ≤ 14 100 180 1 2 0.015 4 22 Max M 27.5 0.003 0612 4 ~~ee ee ee ee a ss es~~ CAN0005 _ _ ≤ 18 ≤ 14 33 55 1 2 0.05 10 37 Max M 27.5 0.01 0402 1 ~~fr té<~sSS<“Csé‘*™CSCSCS~*”C Po ee~~ CAN0006 _ _ ≤18 ≤14 26 45 1 5 0.02 4 17 Max M ~~eee~~ 27.5 0.004 0402 1 ~~ee~~ CAN0007 _ _ ≤ 32.0 ~~ee~~ ≤ 25.0 ~~ee~~ 61 120 ~~eee~~ 1 ~~ee~~ 5 0.05 ~~ee~~ 5 15 Max ~~ee~~ M 27.5 0.003 ~~eee~~ 0603 1 ~~—~~ FLX0005 _ _ ~~————————————~~ ≤ 18 ≤ 14 26 45 ~~a~~ 1 5 ~~ee~~ 0.02 4 17 Max ~~ee~~ M 27.5 0.004 0402 1 

Termination Finish Code Packaging Code 

VW (DC) DC Working Voltage (V) VW (AC) AC Working Voltage (V) VB Typical Breakdown Voltage (V @ 1mADC ) VC Clamping Voltage (V @ IVC) IVC Test Current for VC (A, 8x20μS) 

IL ET IP Cap Temp Range 

Maximum Leakage Current at the Working Voltage (μA) Transient Energy Rating (J, 10x1000μS) Peak Current Rating (A, 8x20μS) Maximum Capacitance (pF) @ 1 MHz and 0.5Vrms -55ºC to +125ºC 

40 

080216 

## **Communication BUS Varistor** 

## **S21 CHARACTERISTICS** 

**==> picture [242 x 152] intentionally omitted <==**

**----- Start of picture text -----**<br>
10.0<br>0.0<br>-10.0<br>-20.0<br>-30.0<br>-40.0<br>-50.0<br>0 1 10 100 1000 10000<br>Frequency (MHz)<br>CAN0001 CAN0005 FLX0005<br>Insertion Loss (dB)<br>**----- End of picture text -----**<br>


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**----- Start of picture text -----**<br>
5<br>0<br>-5<br>-10<br>-15<br>-20<br>-25<br>-30<br>0.1 1 10 100 1000 10000<br>Frequency (MHz)<br>CAN0007<br>Insertion Loss (dB)<br>**----- End of picture text -----**<br>


## **TYPICAL MLV IMPLEMENTATION** 

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**----- Start of picture text -----**<br>
MultiLayer Varistors (MLVs) TVS Diodes<br>XCVR BUS XCVR BUS<br>EMC<br>CAP<br>MLV PROTECTION METHOD DIODE PROTECTION METHOD<br>SINGLE COMPONENT SOLUTION THREE COMPONENT SOLUTION<br>TVS & EMI TVS + EMI<br>**----- End of picture text -----**<br>


## **TYPICAL PULSE RATING CURVE** 

## **Typical Pulse Rating Curve** 

**==> picture [221 x 91] intentionally omitted <==**

**----- Start of picture text -----**<br>
10000<br>1000<br>100<br>10<br>10 100 1000 10000<br>Pulse Duration (µS)<br>Peak Power (W)<br>**----- End of picture text -----**<br>


## **EQUIVALENT CIRCUIT MODEL** 

## **Discrete MLV Model** 

**==> picture [120 x 105] intentionally omitted <==**

**----- Start of picture text -----**<br>
To Device<br>PCB Requiring<br>Trace Protection<br>LP<br>RV C RP<br>Ron<br>Solder Pad<br>**----- End of picture text -----**<br>


- Where: Rv = Voltage Variable resistance (per VI curve) R ≥ 10[12] Ω p 

- C = defined by voltage rating and energy level Ron = turn on resistance Lp = parallel body inductance 

41 

080216 

## **Communication BUS Varistor** 

## **TYPICAL CAN BUS IMPLEMENTATION SCHEME** 

**TYPICAL FLEX RAY IMPLEMENTATION SCHEME** 

**==> picture [516 x 159] intentionally omitted <==**

**----- Start of picture text -----**<br>
VCC VCC BP<br>TxD CAN_H<br>ECU<br>Split<br>Vcc BM<br>RxD CAN_L<br>TX V1 V2<br>D<br>Transceiver  V1 V2<br>**----- End of picture text -----**<br>


## **PHYSICAL DIMENSIONS** 

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**----- Start of picture text -----**<br>
mm (inches)<br>0402 Discrete 0603 Discrete 0405 Array 0612 Array<br>Length 1.00 ±0.10 (0.040 ±0.004) 1.60 ±0.15 (0.063 ±0.006) 1.00 ±0.15 (0.039 ±0.006) 1.60 ±0.20 (0.063 ±0.008)<br>Width 0.50 ±0.10 (0.020 ±0.004) 0.80 ±0.15 (0.032 ±0.006) 1.37 ±0.15 (0.054 ±0.006) 3.20 ±0.20 (0.126 ±0.008)<br>Thickness 0.60 Max. (0.024 Max.) 0.90 Max. (0.035 Max.) 0.66 Max. (0.026 Max.) 1.22 Max. (0.048 Max.)<br>Term Band Width 0.25 ±0.15 (0.010 ±0.006) 0.35 ±0.15 (0.014 ±0.006) 0.36 ±0.10 (0.014 ±0.004) 0.41 ±0.10 (0.016 ±0.010)<br>**----- End of picture text -----**<br>


## **SOLDER PAD DIMENSIONS** 

## **mm (inches)** 

|C<br>A<br>B<br>A<br>B<br>**0402/0603 Discrete**|C<br>A<br>B<br>A<br>B<br>**0402/0603 Discrete**|C<br>A<br>B<br>A<br>B<br>**0402/0603 Discrete**||A<br>B<br>D<br>E<br>**0405 Array**|A<br>B<br>D<br>E<br>**0405 Array**|A<br>B<br>D<br>E<br>**0405 Array**|A<br>B<br>D<br>E<br>**0405 Array**|A<br>B<br>D<br>E<br>**0405 Array**|||**0612 Array**<br>A<br>B<br>D<br>E|**0612 Array**<br>A<br>B<br>D<br>E|**0612 Array**<br>A<br>B<br>D<br>E|**0612 Array**<br>A<br>B<br>D<br>E|**0612 Array**<br>A<br>B<br>D<br>E|**0612 Array**<br>A<br>B<br>D<br>E|
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
||||C|A<br>B||||||C|||||||
||||||||||||||||||
||||||||||||||||||
||||||||||||||||||
||||||||||||||||||
||||||||||||||||||
||**0402, 0603**<br>**0405**<br>**Discrete**<br>**Array**||||||||||||||||
||||||||||||**A**|**B**||**C**|**D**|**E**|
||||||||||0402 Discrete|0.61<br>(0.024)||0.51<br>(0.020)||1.70<br>(0.067)|–|–|
||||||||||||||||||
||||||||||0603 Discrete|0.89<br>(0.035)||0.76<br>(0.030)||2.54<br>(0.100)|–|–|
||||||||||0405 Array|0.46<br>(0.018)||0.74<br>(0.029)||0.12<br>(0047)|0.38<br>(0.015)|0.64<br>(0.025)|
||||||||||0612 Array|0.89<br>(0.035)||1.65<br>(0.065)||2.54<br>(0.100)|0.46<br>(0.018)|0.76<br>(0.030)|



42 

080216 

## **Communication BUS Varistor** 

**==> picture [454 x 540] intentionally omitted <==**

**----- Start of picture text -----**<br>
= CAN0001 = Feedthru Cap<br>LEDS Lamps = MultiGuard = Tantalum<br>Tachometer<br>z ts (Stepper Motor) @<br>y Lamp/ 5 Gauge :<br>LED Drvr Motor<br>Drvr<br>BATT 8V Reg Speedometer(Stepper Motor)<br>—<br>iit = = ;<br>NTC Based<br>5V Reg = wo Temp. Sensor ||_@)<br>CAN<br>BUS F l L l<br>Physical MCU<br>Interface<br>LCD<br>iby =—= Module 2<br>DDC<br>aM =<br>FlexRay [TM] Wheel Node<br>CAN<br>Wheel Node<br>Body Control<br>Powertrain Module/CAN X -by-Wire Master<br>Gateway<br>Wheel Node<br>Smart<br>Junction Bo x<br>Wheel Node<br>Instrument Door<br>Cluster Module<br>Dash Board<br>HVAC<br>Node<br>**----- End of picture text -----**<br>


## **APPLICATION** 

AVX CAN BUS and FlexRay varistors offer significant advantages in general areas of a typical CAN or FlexRay network as shown on the right. Some of the advantages over diodes include: 

- space savings 

- higher ESD capability @ 25kV contact 

- higher in rush current (4A) 8 x 20μS 

- FIT rate ≤0.1 failures (per billion hours) 

43 

080216 



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- [Supplier page](https://es.farnell.com/avx/can0007dp/varistor-multilayer-61v-120v-0603/dp/2440187RL)
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