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1/9 ESDA6V1-5W6 TRANSIL ARRAY FOR ESD PROTECTION ® DESCRIPTION The ESDA6V1-5W6 is a 5-bit wide monolithic suppressor which is designed to protect components connected to data and transmission lines against ESD. March 2000 - Ed: 1A Where transient overvoltage protection in ESD sensitive equipment is required, such as : n Computers n Printers n Communication systems n Cellular phone handsets and accessories n Other telephone sets n Set top boxes APPLICATIONS SOT323-6L I/O1 I/O2 Gnd I/O5 I/O3 I/O4 FUNCTIONAL DIAGRAM Application Specific Discretes A.S.D. ä BENEFITS n High integration n Suitable for high density boards - IEC 61000-4-2: level 4 15 kV (air discharge) 8 kV (contact discharge) - MIL STD 883C-Method 3015-6: class3 (human body model) COMPLIES WITH THE FOLLOWING STANDARDS: n 5 UNIDIRECTIONAL TRANSIL FUNCTIONS n BREAKDOWN VOLTAGE: VBR = 6.1V min n LOW LEAKAGE CURRENT: I R max<1 μ A n VERY SMALL SIZE FOR PCB SPACE SAVING: 4.2mm 2 TYPICALLY FEATURES ESD response to IEC61000-4-2 (air discharge 16kV, positive surge)
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ESDA6V1-5W6 2/9 Symbol Test conditions Value Unit V PP ESD discharge - MIL STD 883C - Method 3015-6 IEC 61000-4-2 air discharge IEC 61000-4-2 contact discharge 25 20 15 kV P PP Peak pulse power (8/20 μ s) 100 W T j Junction temperature 150 °C T stg Storage temperature range -55 to +150 °C T L Lead solder temperature (10 seconds duration) 260 ° C T op Operating temperature range (note 1) -40 to +125 °C Note 1 : The evolution of the operating parameters versus temperature is given by curves and α T parameter. ABSOLUTE MAXIMUM RATINGS (T amb = 25°C) V cl VBR VRM Slope = 1/Rd VF IF IRM IPP I V Type V BR @I R I RM @V RM Rd α TCV F F min. max . max. typ. max. typ. max note 2 note 3 0V bias VV m A μ AVm 10 -4 /°C pF V mA ESDA6V1-5W6 6.1 7.2 1 1 3 610 6 50 1.25 200 Note 2 : Square pulse, Ipp = 15A, tp=2.5 μ s. Note 3 : V BR = α T*(T amb - 25°C) * V BR (25°C) Symbol Parameter V RM Stand-off voltage V BR Breakdown voltage V CL Clamping voltage I RM Leakage current I PP Peak pulse current α T Voltage temperature coefficient C Capacitance Rd Dynamic impedance V F Forward voltage drop
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This note was uploaded on 01/29/2012 for the course ECE 000 taught by Professor Sabaei during the Spring '11 term at Amirkabir University of Technology.

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