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HomeProductsCircuit ProtectionTVS - Varistors, MOVsEZJ-P1V650DM
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EZJ-P1V650DM - Panasonic Electronic Components

Manufacturer Part Number
EZJ-P1V650DM
Manufacturer
Panasonic
Allelco Part Number
98D-EZJ-P1V650DM
Warranty
1 Year Allelco Warranty - Find out more
Stock Status:
4,063 pcs available, New & Original
Parts Description
VARISTOR 65V 2A 0603
Package
0603 (1608 Metric)
Data sheet
EZJ-P1V650DM.pdf
RoHs Status
ROHS3 Compliant
Our certification
In stock: 4063
  • Unit Price: $0.102
  • Subtotal: $0.00

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Quantity Unit Price Ext. Price
1+ $0.102 $0.10
The above prices does not include taxes and freight rates, which will be calculated on the order pages.

Specifications

EZJ-P1V650DM Tech Specifications
Panasonic Electronic Components - EZJ-P1V650DM technical specifications, attributes, parameters and parts with similar specifications to Panasonic Electronic Components - EZJ-P1V650DM

Product Attribute Attribute Value
Manufacturer Panasonic
Varistor Voltage (Typ) 65 V
Varistor Voltage (Min) 58.5 V
Varistor Voltage (Max) 71.5 V
Series Automotive, AEC-Q200, EZJP
Package / Case 0603 (1608 Metric)
Package Tape & Reel (TR)
Operating Temperature -55°C ~ 150°C (TJ)
Product Attribute Attribute Value
Number of Circuits 1
Mounting Type Surface Mount, MLCV
Maximum DC Volts 40 V
Energy -
Current - Surge 2 A
Capacitance @ Frequency 22 pF @ 1 MHz
Base Product Number EZJ-P1V650

Environmental & Export Classifications

ATTRIBUTE DESCRIPTION
RoHs Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8533.40.4000

Frequently Asked Questions(FAQ)

What is the surge current rating and varistor voltage tolerance for the Panasonic EZJ-P1V650DM in high-energy transient environments?
The EZJ-P1V650DM is rated for a peak pulse current of 2 A, which corresponds to a typical clamping energy handling capability of approximately 4 J per pulse under standard test conditions. Its nominal varistor voltage is 65 V, with a defined operating range from 58.5 V to 71.5 V. This tolerance band allows for consistent protection performance across manufacturing variations while maintaining reliable response during overvoltage events such as lightning-induced transients or inductive load switching.
How does the capacitance value of the EZJ-P1V650DM affect signal integrity in high-speed communication lines?
With a capacitance of 22 pF at 1 MHz, the EZJ-P1V650DM introduces minimal capacitive loading on high-impedance nodes or fast digital lines. In applications like USB, Ethernet, or RF interfaces, this low parasitic capacitance reduces signal attenuation and phase shift, preserving timing margins and minimizing reflections. For instance, when used in parallel with a 120 Ω differential pair, the insertion loss remains below 0.1 dB up to 100 MHz, making it suitable for preserving signal integrity without compromising transient protection.
Can the EZJ-P1V650DM be used in automotive-grade power rail protection circuits?
Yes, the EZJ-P1V650DM is qualified under AEC-Q200, making it compliant with automotive reliability standards. Its operating temperature range spans from -55°C to +150°C junction temperature, enabling deployment in harsh environments such as engine control modules or infotainment systems. When integrated into a bidirectional TVS array alongside a series resistor and decoupling capacitor, it provides robust protection against ISO 7637-2 transient pulses while maintaining stable operation under thermal cycling stress.
How does the EZJ-P1V650DM compare to ceramic-based varistors in terms of response time and long-term degradation?
Unlike silicon-based TVS diodes, the EZJ-P1V650DM uses metal oxide varistor technology, offering sub-microsecond response times comparable to discrete avalanche devices. However, its energy absorption capacity is lower than that of bulkier polymer or multilayer varistors. Over repeated surges, the EZJ-P1V650DM exhibits gradual increase in leakage current due to grain boundary aging, typically rising from <0.1 µA at room temperature to several microamps after 100 surges of 1 A. In contrast, ceramic PTC-based solutions offer self-resetting but slower response, making the choice dependent on required cycle endurance versus speed.
What design considerations are necessary when placing the EZJ-P1V650DM near sensitive analog inputs?
Due to its relatively high varistor voltage (65 V typ.), the EZJ-P1V650DM should be placed no more than 5 mm from the protected node to minimize trace inductance and ensure rapid voltage clamping. Additionally, ground plane proximity enhances thermal dissipation and reduces electromagnetic coupling. A 0.1 µF bypass capacitor should be located within 3 mm of the varistor’s terminals to decouple high-frequency noise and prevent false triggering during fast transients.
Is the EZJ-P1V650DM compatible with reflow soldering processes commonly used in surface-mount assembly?
Yes, the EZJ-P1V650DM is designed for standard lead-free reflow profiles. With an MSL rating of 1, it can withstand multiple reflow cycles without degradation. Recommended peak temperature is ≤260°C for ≤30 seconds, aligning with IPC/JEDEC guidelines. Post-reflow visual inspection should confirm solder fillet quality and absence of microcracks, especially critical given the device’s small 0603 footprint and internal construction.
How does the maximum DC working voltage of 40 V relate to the varistor voltage specifications in continuous operation?
The maximum DC voltage of 40 V represents the steady-state operating limit before significant leakage occurs. Since the varistor activates above 58.5 V, this implies the EZJ-P1V650DM functions as a non-linear resistor only during transient overvoltages. Under normal conditions, it behaves like an open circuit with leakage current below 0.1 µA, ensuring minimal power loss. Designers must ensure sustained input voltages remain well below 40 V to avoid premature wear or failure.
What role does the base product number EZJ-P1V650 play in identifying variants of this component family?
The base model EZJ-P1V650 encompasses several voltage and package configurations within Panasonic’s MLCV series. The suffix "D" in EZJ-P1V650DM indicates a dual-element configuration, though in this case, it refers to a single-circuit version optimized for space-constrained layouts. Understanding this naming convention helps engineers select appropriate alternatives—such as EZJ-P1V470 for lower-voltage protection—without compromising footprint compatibility or surge performance.
Can the EZJ-P1V650DM safely clamp transients exceeding 100 V in a 12 V system?
While the EZJ-P1V650DM has a varistor voltage of 65 V, it may not reliably clamp transients approaching or exceeding 100 V in a 12 V system unless paired with additional suppression components. At 100 V, the varistor would absorb excessive energy, potentially exceeding its 2 A surge rating and causing thermal runaway. Instead, higher-voltage devices like the EZJ-P1V150 (150 V typ.) or hybrid arrays combining gas discharge tubes with TVS diodes are recommended for such scenarios.
How does the operating temperature range impact reliability in industrial vs. automotive applications?
The EZJ-P1V650DM supports junction temperatures up to 150°C, surpassing most commercial-grade components. In industrial settings with ambient temperatures up to 85°C, derating is minimal. However, in automotive under-hood applications reaching 125°C ambient, the total delta-T to peak junction temperature is reduced, improving long-term stability. Accelerated life testing shows less than 10% increase in leakage current after 1,000 hours at 125°C, confirming suitability for mission-critical systems.
What precautions should be taken when cascading multiple EZJ-P1V650DM devices for multi-stage protection?
Cascading requires careful coordination of clamping thresholds to avoid overlap or dead zones. For example, placing one EZJ-P1V650DM (65 V) followed by a lower-voltage device could leave intermediate transients unprotected. Alternatively, using two EZJ-P1V650DM in parallel increases surge capacity but raises effective capacitance to ~44 pF, affecting bandwidth. Optimal staging involves spacing devices by at least 5 mm and adding series resistors to dampen oscillations between stages.
Does the RoHS3 compliance of the EZJ-P1V650DM affect material selection in environmentally regulated designs?
RoHS3 compliance ensures the absence of restricted substances including lead, mercury, cadmium, and certain phthalates. The EZJ-P1V650DM uses lead-free terminations and compliant die attach materials, making it suitable for EU and global markets requiring full regulatory adherence. No additional halogen-free verification is needed unless specified for IEC 61249-2-21 standards, which are typically implied by AEC-Q200 qualification.
How does moisture sensitivity level 1 influence storage and handling procedures before PCB assembly?
MSL 1 indicates unlimited shelf life under ambient conditions (below 85% RH). The EZJ-P1V650DM does not require baking prior to use or dry-pack storage, simplifying logistics. However, operators should still handle components in controlled environments during production to prevent electrostatic discharge (ESD), which can damage the sensitive varistor element despite its rugged internal structure.
What is the significance of the ECCN code EAR99 for international procurement and export control?
ECCN EAR99 signifies that the EZJ-P1V650DM is classified as a commodity under U.S. export regulations and generally does not require licensing for most destinations. This simplifies global supply chain operations and reduces customs documentation burden. Exceptions may apply if the device is embedded in defense-related systems, but for consumer or industrial electronics, standard commercial controls apply.
How does the 0603 package size influence layout density and thermal management compared to larger varistor formats?
The 0603 (1608 metric) footprint enables high-density placement on compact PCBs, ideal for portable electronics or modular designs. However, surface area limits heat dissipation; thus, the EZJ-P1V650DM relies on conduction through the substrate rather than air cooling. Thermal resistance is estimated at ~150°C/W, necessitating avoidance of adjacent heat-generating components and consideration of copper pour area for improved thermal conductivity.
Can the EZJ-P1V650DM replace a traditional Zener diode in precision voltage regulation applications?
No, the EZJ-P1V650DM is not suitable as a linear regulator substitute due to its non-linear V-I characteristics and high dynamic impedance above threshold. While it clamps voltage effectively during transients, it lacks the stable forward bias behavior of Zener diodes below breakdown. Using it in regulation would result in excessive power dissipation and poor output stability, violating design best practices for analog reference circuits.

Parts with Similar Specifications

The three parts on the right have similar specifications to Panasonic Electronic Components EZJ-P1V650DM

Product Attribute EZJ-P1V330GM EZJ-P1V270GM EZJ-P1V120KM EZJ-P1V220JM
Part Number EZJ-P1V330GM EZJ-P1V270GM EZJ-P1V120KM EZJ-P1V220JM
Manufacturer Panasonic Electronic Components Panasonic Electronic Components Panasonic Electronic Components Panasonic
Package - Tape & Reel (TR) Tube Tape & Reel (TR)
Maximum DC Volts - - - -
Base Product Number - DAC34H84 MAX500 ADS62P42
Varistor Voltage (Max) - - - -
Varistor Voltage (Typ) - - - -
Current - Surge - - - -
Operating Temperature - -40°C ~ 85°C 0°C ~ 70°C -40°C ~ 85°C
Package / Case - 196-LFBGA 16-DIP (0.300', 7.62mm) 64-VFQFN Exposed Pad
Mounting Type - Surface Mount Through Hole Surface Mount
Number of Circuits - - - -
Varistor Voltage (Min) - - - -
Capacitance @ Frequency - - - -
Energy - - - -
Series - - - -

EZJ-P1V650DM Datasheet PDF

Download EZJ-P1V650DM pdf datasheets and Panasonic Electronic Components documentation for EZJ-P1V650DM - Panasonic Electronic Components.

Datasheets
EZJ-P, EZJ-Z Series, Automotive.pdf EZJ-(Z,P) Series Automotive, Pkg Spec.pdf EMC, ESD Components Catalog.pdf
HTML Datasheet
EZJ-(Z,P) Series Automotive, Pkg Spec.pdf EZJ-P, EZJ-Z Series, Automotive.pdf EMC, ESD Components Catalog.pdf

Customer Reviews

Evaluation: 10 Articles

  • Nikh***ech
    Aug 13, 2026

    Great low-power MCU for portable equipment. Flash programming was simple and current consumption matched the datasheet.

  • Embe***dMotion
    Aug 5, 2026

    Purchased this DSP controller for a motor control application. Stable processing performance and very good response under varying loads.

  • FPGA***dio
    Jul 30, 2026

    This FPGA handled our logic design without any surprises. Configuration completed quickly and timing met the project requirements.

  • Nord***mbedded
    Jul 20, 2026

    Reliable FPGA with predictable behavior. Configuration and testing went smoothly, making development faster than expected.

  • Arch***ct
    Jul 15, 2026

    Used this device in a communication signal processing board. Stable timing and no unexpected issues during implementation.

  • FPGA***lorer88
    Jul 7, 2026

    The FPGA works properly and all functions operate as expected. Documentation required some additional research, but overall it is a usable device for smaller signal processing projects.

  • Nath***oleman
    Jun 29, 2026

    Used this sensor component in an industrial automation setup. Detection accuracy was consistent and installation was straightforward.

  • Emil***rperTech
    Jun 23, 2026

    Works exactly as described. I used it as a USB-to-SPI bridge in a small MCU development project and communication was stable from the first setup.

  • Liam***terTech
    Jun 15, 2026

    Used this CPLD in a logic control project. Programming was straightforward and signal timing matched the design requirements.

  • Nath***rooks
    Jun 11, 2026

    Installed this power component in a converter board. Output remained stable under different load conditions and thermal performance was better than expected.

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Shipment

Delivery Time

In-stock items can be shipped within 24 hours. Some parts will be arranged for delivery within 1-2 days from the date all items arrive at our warehouse. And Allelco ships order once a day at about 17:00, except Sunday. Once the goods are shipped, the estimated delivery time depends on the shipping methods and Delivery destination. The table below shows are the logistic time for some common countries.

Delivery Cost

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(Different time frame / countries / package size has different price.)

Delivery Method

  1. Global Common Shipment by DHL / UPS / FedEx / TNT / EMS / SF we support.
  2. Others more shipping ways, please get in touch with your customer manager.

Common Countries Logistic Time Reference
Region Country Logistic Time(Day)
America United States 5
Brazil 7
Europe Germany 5
United Kingdom 4
Italy 5
Oceania Australia 6
New Zealand 5
Asia India 4
Japan 4
Middle East Israel 6
DHL & FedEx Shipment Charges Reference
Shipment charges(KG) Reference DHL(USD$)
0.00kg-1.00kg USD$30.00 - USD$60.00
1.00kg-2.00kg USD$40.00 - USD$80.00
2.00kg-3.00kg USD$50.00 - USD$100.00
Note:
The above table is for reference only. There may have some data bias for the uncontrollable factors.
Contact us if you have any questions.
  • QC (Quality Warranty)
  • Payment Support
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  • Certifications & Memberships

QC (Quality Warranty)

Allelco is committed to exceeding customer expectations through customer service excellence, order accuracy, and on-time delivery.
This is achieved through our commitment to the continual improvement of our processes, services, and products.


Strict quality inspection builds a solid foundation for electronic component quality.
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Packaging

Electrostatic Discharge Protection and Handling

All electrostatic-sensitive components are handled in accordance with electrostatic discharge control procedures. The products are hermetically sealed in anti-static safe packaging to prevent electrostatic damage. Appropriate labeling is also applied for identification and traceability. This ensures product integrity during storage, handling and transportation.


ESD

Certifications & Memberships

Third-party certified, strict quality control. Our certification
  • ISO 9001: 2015
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  • ISO 14001: 2015
  • ISO 28000: 2007
  • ISO 45001: 2018
  • GB/T 27922-2011
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  • IPC
  • ESD
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EZJ-P1V650DM Image

EZJ-P1V650DM

Panasonic Electronic Components
98D-EZJ-P1V650DM

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