V2AF109C200Y1FDP
DIODE, TVS, BI-DIRECTIONAL, 9VDC, 0805
- Manufacturer: KYOCERA AVX
- Product type: TVS Diodes
- Product Range:TransGuard Series; TVS Polarity:Bidirectional; Reverse Standoff Voltage:9VDC; Clamping Voltage Max:22V; Diode Case Style:0805; No. of Pins:4Pins; 07X1369
- No. of Pins: 4Pins
- TVS Polarity: Bidirectional
- Product Range: TransGuard Series
- Qualification: -
- Diode Mounting: Surface Mount
- Diode Case Style: 0805
- Clamping Voltage Max: 22V
- Reverse Standoff Voltage: 9VDC
- Maximum Breakdown Voltage: 14.605V
- Minimum Breakdown Voltage: 10.795V
- Operating Temperature Max: 125°C
- Peak Pulse Power Dissipation: -
| Delivery and price | |
|---|---|
| Units per pack | 1000 |
| Price | 0.399 € |
| Current stock | 1000+ |
| Lead time | 30 days |
TransFeed[®] Automotive Series Multilayer Ceramic Transient Voltage Suppressors TVS Protection and EMI Attenuation in a Single Chip
## **GENERAL DESCRIPTION**
KYOCERA AVX has combined the best electrical characteristics of its TransGuard[®] Transient Voltage Suppressors (TVS) and its Feedthru Capacitors into a single chip for state-of-the-art overvoltage circuit protection and EMI reduction over a broad range of frequencies. This unique combination of multilayer ceramic construction in a feedthru configuration gives the circuit designer a single 0805 chip that responds to transient events faster than any TVS device on the market today, and provides significant EMI attenuation when in the off-state. Automotive TransFeed[®] is designed for automotive applications and are AEC-Q 200 qualified.
The reduction in parallel inductance, typical of the feedthru chip construction when compared to the construction of standard TVS or ceramic capacitor chips, gives the TransFeed[®] product two very important electrical advantages: (1) faster “turn-on” time. Calculated response times of <200 pSec are not unusual with this device, and measured response times range from 200 – 250 pSec. The TransFeed[®] “turn-on” characteristic is less than half that of an equivalent TransGuard[®] part — and TransGuards[®] clamp transient voltages faster than any other bipolar TVS solution such as diodes; (2) the second electrical advantage of lower parallel inductance, coupled with optimal series inductance, is the enhanced attenuation characteristics of the TransFeed[®] product. Not only is there significantly greater attenuation at a higher self-resonance frequency, but the roll-off characteristic becomes much flatter, resulting in EMI filtering over a much broader frequency spectrum. Typical applications include filtering/ protection on Microcontroller I/O Lines, Interface I/O Lines, Power Line Conditioning and Power Regulation.
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Schematic Diagram<br>IN OUT<br>Electrical Model<br>IN LS LS OUT<br>RV C RP<br>RON<br>LP<br>a eo<br>**----- End of picture text -----**<br>
## **TYPICAL APPLICATIONS**
- Drive by Wire
- Dimming Mirror Circuit
- Filtering/protection on Microcontroller I/O lines
- Filtering/protection on Interface I/O lines
- Power Line Conditioning
- Power Regulation
- LCD Dashboard driver
Where designers are concerned with both transient voltage protection and EMI attenuation, either due to the electrical performance of their circuits or due to required compliance to specific EMC regulations, the TransFeed product is an ideal choice.
## **GENERAL CHARACTERISTICS**
- Operting Teperature: -55°C to +125°C
- Working Voltage: 5.6Vdc - 26Vdc
- Case Size: 0805
- Energy Rating: 0.05 - 0.3J
- Current: 20 - 120A
- Max Feedthru Current: 0.5 - 1A
## **FEATURES**
- Bi-directional TVS
- Narrow band, high attenuation filter
- EMI Filtering over broader frequency range
- Fastest Response Time to ESD Strikes
- AEC-Q 200 Qualified
– transient suppression products –
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
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TransFeed[®] Automotive Series Multilayer Ceramic Transient Voltage Suppressors TVS Protection and EMI Attenuation in a Single Chip
## **HOW TO ORDER**
V 2 AF 1 05 A 150 Y 2 E D P Varistor Automotive Voltage Varistor DC Packaging Code Feedthru 05 = 5.6VDC Clamping Resistance Pcs./Reel Capacitor 09 = 9.0VDC Voltage 1 = 0.150 Ohms D = 1,000 14 = 14.0VDC 150 = 18V 2 = 0.200 Ohms R = 4,000 18 = 18.0VDC 200 = 22V 3 = 0.250 Ohms T = 10,000 26 = 26.0VDC 300 = 32V 400 = 42V Energy 500 = 50V Feedthru ype ye [ 7 | Chip Size No. of X = 0.05JRating 600 = 60V Capacitance D = 500 mACurrent Termination Finish 2 = 0805 Elements A = 0.1J Tolerance E = 750 mA P = Ni/Sn (Plated) Y = +100/-50% C = 0.3J F = 1.0 Amp
## **TRANSFEED ELECTRICAL SPECIFICATIONS**
|**Part Number**<br>~~—~~<br>~~|~~<br>~~|~~|**Part Number**<br>~~—~~<br>~~|~~<br>~~|~~|**Working**<br>**Voltage**<br>**(DC)**<br>~~|~~<br>~~|~~|**Working**<br>**Voltage**<br>**(AC)**<br>~~|~~<br>~~|~~|**Breakdown**<br>**Voltage**<br>~~|~~<br>~~|~~|**Clamping**<br>**Voltage**<br>~~|~~<br>~~|~~|**Maximum**<br>**Leakage**<br>**Current**<br>~~|~~<br>~~|~~|**Transient**<br>**Energy**<br>**Rating**<br>~~ft~~<br>~~|~~|**Peak**<br>**Current**<br>**Rating**<br>~~ftttt~~<br>~~|~~|**Typical**<br>**Cap**<br>~~ttt~~<br>~~|~~|**DC**<br>**Resistance**<br>~~ttt~~<br>~~|~~|**Maximum**<br>**Feedthru**<br>**Current**<br>~~ttt~~<br>~~7[~~|**Jump**<br>**Start**<br>**Voltage**<br>~~7[~~|
|---|---|---|---|---|---|---|---|---|---|---|---|---|
|V2AF105A150Y2E _ _<br>~~—~~<br>~~|~~<br>~~|~~||5.6<br>~~|~~<br>~~|~~|4.0<br>~~|~~<br>~~|~~|8.5±20%<br>~~|~~<br>~~|~~|18<br>~~|~~<br>~~|~~|35<br>~~|~~<br>~~|~~|0.10<br>~~ft~~<br>~~|~~|30<br>~~ft ttt~~<br>~~|~~|800<br>~~ttt~~<br>~~|~~|0.200<br>~~ttt~~<br>~~|~~|0.75<br>~~ttt~~<br>~~7[~~|–<br>~~7[~~|
|V2AF105C150Y1F _ _<br>~~|~~<br>~~OCC~~<br>~~{||~~||5.6<br>~~|~~<br>~~OCC~~<br>~~{||~~|4.0<br>~~|~~<br>~~OCC~~<br>~~{|||||~~|8.5±20%<br>~~|~~<br>~~OCC~~<br>~~|||~~|18<br>~~|~~<br>~~OCC~~<br>~~|||~~|35<br>~~|~~<br>~~OCC~~<br>~~||||||~~|0.30<br>~~|~~<br>~~OCC~~<br>~~|||~~|120<br>~~|~~<br>~~OCC~~<br>~~|||~~|2500<br>~~|~~<br>~~OCC~~<br>~~|||~~|0.150<br>~~|~~<br>~~OCC~~<br>|1.00<br>~~7[~~<br>~~OCC~~<br>|–<br>~~7[~~<br>~~OCC~~<br>|
|V2AF109A200Y2E _ _<br>~~{||~~||9.0<br>~~{||~~|6.4<br>~~{|||||~~|12.7±15%<br>~~|||~~|22<br>~~|||~~|25<br>~~||||||~~<br>~~CO~~|0.10<br>~~|||~~<br>~~CO~~|30<br>~~|||~~<br>~~CO~~|575<br>~~||||||~~|0.200<br>~~|||~~|0.75<br>~~|||~~|–<br>~~|||~~|
|V2AF109C200Y1F _ _<br>~~{||~~<br>~~Oa~~||9.0<br>~~{||~~<br>~~Oa~~|6.4<br>~~{|| |||~~<br>~~Oa~~|12.7±15%<br>~~|||~~<br>~~Oa~~<br>~~||~~|22<br>~~|||~~<br>~~Oa~~<br>~~||~~|25<br>~~||| |||~~<br>~~Oa~~<br>~~CO~~<br>~~||~~|0.30<br>~~|||~~<br>~~Oa~~<br>~~CO~~<br>~~||~~|120<br>~~|||~~<br>~~Oa~~<br>~~CO~~<br>~~||~~|1800<br>~~|||~~<br>~~Oa~~<br>~~||~~|0.150<br><br>~~Oa~~<br>~~|~~|1.00<br><br>~~Oa~~<br>~~||~~|–<br><br>~~Oa~~<br>~~|~~|
|V2AF114A300Y2E _ _<br>~~{|~~<br>~~{|~~||14.0<br>~~{|~~<br>~~{|~~|10.0<br>~~{|~~<br>|18.5±12%<br>~~{|~~<br>~~||~~<br>|32<br>~~{|~~<br>~~||~~<br>|15<br>~~CO~~<br>~~{|~~~~**||**~~<br>~~||~~<br>~~OO~~<br>|0.10<br>~~CO~~<br>~~**||**~~<br>~~||~~<br>~~OO~~<br>|30<br>~~CO~~<br>~~**||**~~<br>~~||~~<br>~~OO~~<br>|300<br>~~**||**~~<br>~~||~~|0.200<br>~~**||**~~<br>~~|~~|0.75<br>~~**||**~~<br>~~||~~|27.5<br>~~**||**~~<br>~~|~~|
|V2AF114C300Y1F _ _<br>~~SC~~<br>~~{|~~||14.0<br>~~SC~~<br>~~{||||~~|10.0<br>~~SC~~<br>~~|||~~|18.5±12%<br>~~||~~<br>~~SC~~<br>~~|||~~|32<br>~~||~~<br>~~SC~~<br>~~||||||~~|15<br>~~||~~<br>~~SC~~<br>~~OO~~<br>~~|||~~|0.30<br>~~||~~<br>~~SC~~<br>~~OO~~<br>~~|||~~|120<br>~~||~~<br>~~SC~~<br>~~OO~~<br>~~|||~~<br>~~|~~|900<br>~~||~~<br>~~SC~~<br>~~||~~|0.150<br>~~|~~<br>~~SC~~<br>~~||~~|1.00<br>~~| |~~<br>~~SC~~<br>~~|||~~|27.5<br>~~|~~<br>~~SC~~<br>~~|~~|
|V2AF118A400Y2E _ _<br>~~{|~~<br>~~{||~~||18.0<br>~~{||||~~<br>~~{||~~|13.0<br>~~|||~~<br>~~{||~~|25.5±10%<br>~~|||~~<br>|42<br>~~||||||~~<br>|10<br>~~OO~~<br>~~|||~~<br>~~CO~~<br>|0.10<br>~~OO~~<br>~~|||~~<br>~~CO~~<br>|30<br>~~OO~~<br>~~|||~~<br>~~|~~<br>~~CO~~<br>|200<br>~~||~~<br>~~a~~<br>|0.200<br>~~||~~<br>~~a~~<br>|0.75<br>~~|||~~<br>|27.5<br>~~|~~<br>|
|V2AF118C400Y1F _ _<br>~~{|~~<br>~~CC~~<br>~~{||~~||18.0<br>~~{| |||~~<br>~~CC~~<br>~~{||~~|13.0<br>~~|||~~<br>~~CC~~<br>~~{|||||.~~|25.5±10%<br>~~|||~~<br>~~CC~~<br>~~|||.~~|42<br>~~||| |||~~<br>~~CC~~<br>~~|||.~~|10<br>~~OO~~<br>~~|||~~<br>~~CC~~<br>~~CO~~<br>~~|||.~~|0.30<br>~~OO~~<br>~~|||~~<br>~~CC~~<br>~~CO~~<br>~~|||~~|120<br>~~OO~~<br>~~|||~~<br>~~|~~<br>~~CC~~<br>~~CO~~<br>~~|||~~|500<br>~~||~~<br>~~CC~~<br>~~a~~<br>~~|||~~|0.150<br>~~||~~<br>~~CC~~<br>~~a~~<br>|1.00<br>~~|| |~~<br>~~CC~~<br>|27.5<br>~~|~~<br>~~CC~~<br>|
|V2AF118X500Y3D _ _<br>~~{||~~||18.0<br>~~{||~~|13.0<br>~~{|||||.~~|25.5±10%<br>~~|||.~~|50<br>~~|||.~~|10<br>~~CO~~<br>~~|||.~~|0.05<br>~~CO~~<br>~~|||~~|20<br>~~CO~~<br>~~|||~~|75<br>~~a~~<br>~~||||||~~|0.250<br>~~a~~<br>~~|||~~|0.50<br>~~|||~~|27.5<br>~~|||~~|
|V2AF126C600Y2E_ _<br>~~{||~~<br>~~—~~||26.0<br>~~{||~~<br>~~See~~|18.0<br>~~{|| |||.~~<br>~~See~~|34.5±10%<br>~~|||.~~<br>~~See~~|60<br>~~|||.~~<br>~~ee~~|10<br>~~CO~~<br>~~|||. ~~<br>~~ee eee~~|0.3<br>~~CO~~<br> ~~|||~~<br>~~eee~~|80<br>~~CO ~~<br>~~|||~~<br>~~eee~~|250<br> ~~a~~<br>~~|||~~<br>~~eee~~|0.2<br>~~a~~<br><br>~~eee~~|0.75<br><br>~~eee~~|27.5<br><br>~~eee~~|
|~~—~~|Termination Finish Code<br>Packaging Code<br>~~—Seeee eee~~||||||||||||
– transient suppression products –
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
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TransFeed[®] Automotive Series Multilayer Ceramic Transient Voltage Suppressors TVS Protection and EMI Attenuation in a Single Chip
||L|W|T|BW|BL|EW|X|S|
|---|---|---|---|---|---|---|---|---|
|0805|2.01 ± 0.20<br>(0.079 ± 0.008)|1.25 ± 0.20<br>(0.049 ± 0.008)|1.143 Max.<br>(0.045 Max.)|0.46 ± 0.10<br>(0.018 ± 0.004)|0.18 + 0.25 -0.08<br>(0.007 + 0.010 -0.003)|0.25 ± 0.13<br>(0.010 ± 0.005)|1.02 ± 0.10<br>(0.040 ± 0.004)|0.23 ± 0.05<br>(0.009 ± 0.002)|
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L<br>X<br>| ae S<br>T<br>nia<br>J U<br>p o BW e<br>CL<br>BL<br>W<br>B a|<br>— ) EW ie<br>RECOMMENDED SOLDER PAD LAYOUT (TYPICAL DIMENSIONS) mm (inches)<br>T P S W L C<br>0805 3.45 (0.136) 0.51 (0.020) 0.76 (0.030) 1.27 (0.050) 1.02 (0.040) 0.46 (0.018)<br>rr<br>4 Pad Layout<br>y TP g<br>tT<br>P<br>S W<br>INPUT OUTPUT<br>C L<br>enn<br>**----- End of picture text -----**<br>
– transient suppression products –
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
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TransFeed[®] Automotive Series Multilayer Ceramic Transient Voltage Suppressors TVS Protection and EMI Attenuation in a Single Chip
## **PERFORMANCE CHARACTERISTICS**
## **FEEDTHRU VARISTORS**
KYOCERA AVX Multilayer Feedthru Varistors (MLVF) are an ideal choice for system designers with transient strike and broadband EMI/RFI concerns. Feedthru Varistors utilize a ZnO varistor material and the electrode pattern of a feedthru capacitor. This combination allows the package advantage of the feedthru and material advantages of the ZnO dielectric to be optimized. ZnO MLV Feedthrus exhibit electrical and physical advantages over standard ZnO MLVs. Among them are:
The electrical model for a ZnO MLV and a ZnO Feedthru MLV are shown below. The key difference in the model for the Feedthru is a transformation in parallel to series inductance. The added series inductance helps lower the injected transient peak current (by 2πfL) resulting in an additional benefit of a lower clamping voltage. The lowered parallel inductance decreases the turn on time for the varistor to <250ps.
1. Faster Turn on Time
2. Broadband EMI attenuation
3. Small size (relative to discrete MLV and EMI filter schemes)
## **Discrete MLV Model**
## **Discrete MLVF Model**
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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>
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**----- Start of picture text -----**<br>
To Device<br>Requiring<br>Protection<br>LS LS<br>Solder Pad Solder Pad<br>RV C RP<br>Ron<br>LP<br>Solder Pad<br>**----- End of picture text -----**<br>
Where: Rv = Voltage Variable resistance (per VI curve) R ≥ 1012 Ω p C = defined by voltage rating and energy level Ron = turn on resistance
Lp = parallel body inductance
Where: Rv = (per VI curve)Voltage Variable resistance Rp ≥ Body IR C = defined by voltage rating and energy level Ron = turn on resistance Lp = minimized parallel body inductance Ls = series body inductance
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
– transient suppression products –
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TransFeed[®] Automotive Series Multilayer Ceramic Transient Voltage Suppressors TVS Protection and EMI Attenuation in a Single Chip
## **PERFORMANCE CHARACTERISTICS**
## **APPLICATIONS**
- EMI Suppression
- Broadband I/O Filtering
- Vcc Line Conditioning
## **FEATURES**
- Small Size
- Low ESR
- Ultra-fast Response Time
- Broad S21 Characteristics
## **MARKET SEGMENTS**
- Computers
- Automotive
- Power Supplies
- Multimedia Add-On Cards
- Bar Code Scanners
- Remote Terminals
- Medical Instrumentation
- Test Equipment
- Transceivers
- Cellular Phones / Pagers
## **TYPICAL CIRCUITS REQUIRING TRANSIENT VOLTAGE PROTECTION AND EMI FILTERING**
The following applications and schematic diagrams show where TransFeed[®] TVS/ EMI filtering devices might be used:
- System Board Level Interfaces: (Fig. 1) Digital to RF Analog to Digital Digital to Analog
- Voltage Regulation (Fig. 2)
- Power Conversion Circuits (Fig. 3)
- GaAs FET Protection (Fig. 4)
**Fig. 1 – System Interface**
## **Fig. 2 – Voltage Regulators**
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REGULATOR +<br>**----- End of picture text -----**<br>
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Sensor/Keyboard/<br>Touchscreen Input<br>BOARD RF BOARD<br>By X Bus<br>Sensor Input Display<br>BOARD BOARD<br>Keyboard<br>BOARD BOARD<br>**----- End of picture text -----**<br>
**Fig. 3 – Power Conversion Circuits/Power Switching Circuits**
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+3.3V<br>POWER +3.3V CARD<br>CHIP<br>+5V<br>+1.8V<br>+12V<br>ASIC<br>**----- End of picture text -----**<br>
## **SPECIFICATION COMPARISON**
|**MLVF**<br>**0805**|**PARAMETER**|**MLV**<br>**0805**|
|---|---|---|
|5ph|**Ls**<br>**typical**|N/A|
|<600nh|**Lp**<br>**typical**|<1.5nh|
|<0.025Ω|**Ron**<br>**typical**|<0.1Ω|
|100pf to 2.5nf|**C**<br>**typical**|100pf to 5.5nf|
|see VI curves|**Rv**<br>**typical**|see VI curves|
|>0.25 x 1012Ω|**Rp**<br>**typical**|>1 x 1012Ω|
|<250ps|**Typical turn on time**<br>**Typical frequency response**|<500ps|
A comparison table showing typical element parameters and resulting performance features for MLV and MLVF is shown above.
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Fig. 4 – GaAs FET Protection<br>a INPUT OUTPUT<br>Fig. 5 – Automotive TransFeed - Throttle by Wire<br>THROTTLE<br>ACCELERATOR DRIVE<br>SENSOR<br>ECU<br>THROTTLE<br>SENSOR<br>r h<br>**----- End of picture text -----**<br>
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or available online at www.kyocera-avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
– transient suppression products –
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Updated at April 15, 2026
KYOCERA AVX is a globally recognized leader in the design, development, and manufacturing of advanced electronic components. For over 50 years, the company has provided innovative solutions across the automotive, industrial, medical, military, consumer electronics, and communications markets. Supported by an extensive international network of research and production facilities, KYOCERA AVX is renowned for delivering highly reliable components that meet the stringent demands of modern engineering. The manufacturer's extensive portfolio is strongly anchored in high-performance passive components, with a particular emphasis on advanced capacitive solutions. Their offering features a comprehensive selection of polymer capacitors, RF capacitors, and supercapacitors engineered for demanding power and high-frequency requirements. This core lineup is further supported by a variety of film and aluminium electrolytic capacitors, alongside precision power inductors. Beyond passive components, KYOCERA AVX excels in robust circuit protection and discrete semiconductors. Their expertise in transient voltage suppression is demonstrated by a wide array of TVS varistors and TVS diodes, complemented by temperature-sensing NTC thermistors and reliable Schottky diodes. The product ecosystem is completed by precision timing devices, including crystals and resonators, as well as specialized RF antennas, providing engineers with a versatile and dependable foundation for next-generation technology.
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