Multi Layer Varistor Overvoltage Protection Device

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GENERAL DESCRIPTION PAGE NO.: 1 OF 5 These s are small, leadless, surface mount packages made of multiple layers of Zinc Oxide, with electrodes between them. They are used to help protect integrated circuits and other sensitive equipment. Their small size is ideal for high density printed circuit boards. BENEFITS Help to protect sensitive equipment against typical ESD, EMC and EOS (Electrical Over Stress) events and transients Cost efficient assembly and protection Resistance to standard wave solder fluxes, provides excellent solderability Space savings Longer battery life due to low leakage current FEATURES Bidirectional clamping Compatible with standard surface mount methods Low and stable leakage current Low clamping voltage Quick response time (<1ns) High transient current capability RoHS Compliant Inner Electrode Metal Oxide 100% Ag Layer 100% Ni Barrier Layer 100% Sn Plated APPLICATIONS SYMBOL ESD, EMC and EOS protection of: Computer I/O ports and interfaces (USB, IEEE 1394, etc ) Portable devices Automotive electronic circuits Telecom equipment Medical instruments MATERIALS INFORMATION ROHS Compliant EL Compliant

Ratings @ (25± 5 C) PAGE NO.: 2 OF 5 aristor oltage Maximum Working oltage Clamping oltage Typical Resistance Peak Current Transient Energy Typical Capacitance 1 Symbol v RMS DC c IR I max W max Cp Units X10 6 Ohm A J (Max) (Min) (Min) (Max) pf Test Conditions @ 1mA DC <10μA < 10μA @ 1A 8/20μs @ 5 DC 8/20μs 10/1000μs @ 1KHz @ 1MHz ML0402-080M-C221 8 ± 20% 4 5.5 20 10 20 0.05 230 220 ML0402-250K-C400 25 ± 10% 14 18 50 10 20 0.05 45 40 Note 1: Cp Device capacitance measured with zero volt bias and 1 rms signal PART NUMBERING ML 0402-080 M -CXXX Series Capacitance ML : Multi Layer arisor -CXXX C: Capacitance XXX: Capacitance alue EIA Size (500 = 50 x 10 0 = 50pF) (221 = 2200 x 10 1 = 220pF) aristor oltage (v) Denominator Tolerance 080 = 8 x 10 0 = 8 K : ± 10 % L : ± 15 % 220 = 22 x 10 0 = 22 M : ± 20 % GENERAL CHARACTERISTICS Operating Temperature: -40 to +85 C Storage Temperature: -40 to +85 C ENIRONMENTAL CHARACTERISTICS Characteristics Specifications Test Conditions Bias Humidity v / v ± 10% 90%RH, 40ºC, maximum working oltage DC, 1000 hours Thermal Shock v / v ± 10% -40ºC to 85ºC, 30 min. cycle, 5 cycles Full Load oltage v / v ± 10% Maximum working oltage DC, 85ºC, 1000 hours Solderability 95% Coverage 230ºC, 3s Solder Heat Resistance 90% Coverage 260ºC, 10s

DIMENSIONS PAGE NO.: 3 OF 5 B Drawing Not To Scale length A Height B Terminal Width C Width D MIN MAX MIN MAX MIN MAX MIN MAX mm: 0.85 1.15 0.4 0.6 0.1 0.4 0.4 0.6 in*: (0.033) (0.045) (0.016) (0.024) (0.004) (0.016) (0.016) (0.024) * Rounded off approximation RECOMMENDED PAD LAYOUT Print solder with a thickness of 150 to 200μm A B C A B C mm: 0.35 0.75 0.85 in:* (0.014) (0.030) (0.033) * Rounded off approximation

PAGE NO.: 4 OF 5 SOLDER REFLOW RECOMMENDATIONS A Temperature ramp up 1 From ambient to Preheating temperature 30s to 60s B Preheating 140 C - 160 C 60s to 120s PACKAGING C Temperature ramp up 2 From Preheating to Main heating temperature at 200 C 20s to 40s 60s ~ 70s Main at 220 C 50s ~ 60s D heating at 240 C 30s ~ 40s at 260 C 5s ~ 10s E Cooling From main heating temperature to 100 C max 4 C/s PACKAGING *Rounded off approximation Leader & Trailer: The leader is 180mm in length & consists of empty cavities with sealed cover tape. The trailer is 350mm in length & consists of empty cavities with sealed cover tape.

PAGE NO.: 5 OF 5 RECOMMENDED STORAGE CONDITIONS Storage time: 12 months max Storage temperature: 5 to 40 C Storage Relative humidity: 65% max POST REFLOW, CLEANING CONDITIONS A 5% saponofier combined with water during wash. For an Ultrasonic process water temperature should be at 50 C and board should be submerged for a minimum of one minute in the solution, then rinse and dry. For in-line washing, the temperature of the water sprayed should be at 110 C, rise and drying is done in-line. Information furnished is believed to be accurate and reliable. However, users should independently evaluate the suitability of each product for their applications. Tyco Electronics Corporation assumes no responsibility for the use of its product or for any infringement of patents or other rights of third parties resulting from the use of its product. No license is granted by implication or otherwise under any patent or proprietary right of Tyco Electronics except the right to use such product for the purpose for which it is sold. Tyco Electronics reserves the right to change or update, without notice, any information contained in this publication; to change, without notice, the design, construction, processing, or specification of any product; and to discontinue or limit production or distribution of any product. This publication supersedes and replaces all information previously supplied. Without express written consent by an officer of Tyco Electronics, Tyco Electronics does not authorize the use of any its products as components in nuclear facility applications, aerospace, or in critical life support devices or systems. Tyco Electronics only obligations are those in the Tyco Electronics Standard Terms and Conditions of Sale and in no case will Tyco Electronics be liable for any incidental, indirect, or consequential damages arising from the sale, resale, use, or misuse of its products. 2007 Tyco Electronics Corporation. All rights reserved.