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MR2535LRLONN/a15avaiMedium Current Overvoltage Transient Suppressor
MR2535LRLMOTN/a573avaiMedium Current Overvoltage Transient Suppressor


MR2535LRL ,Medium Current Overvoltage Transient Suppressor2MR2535L1000 1000V = 20 VR10075°C10010T = 125°CJ25°C1100.11 0.01600 700 800 900 1000 25 50 75 100 1 ..
MR2535LRL ,Medium Current Overvoltage Transient Suppressor3r(t), TRANSIENT THERMAL C, CAPACITANCE (pF) I , INSTANTANEOUS FORWARD CURRENT (A)FRESISTANCE (NORM ..
MR2535S ,MEDIUM CURRENT OVERVOLTAGE TRANSIENT SUPPRESSORSTHERMAL CHARACTERISTICSLeadCharacteristic Length Symbol Max UnitThermal Resistance, Junction to Lea ..
MR2535S ,MEDIUM CURRENT OVERVOLTAGE TRANSIENT SUPPRESSORS**Order this documentSEMICONDUCTOR TECHNICAL DATAby MR2535L/D* * **. . . designed for applications ..
MR2535S ,MEDIUM CURRENT OVERVOLTAGE TRANSIENT SUPPRESSORSMAXIMUM RATINGSRating Symbol Value UnitDC Peak Repetitive Reverse Voltage V 20 VoltsRRMWorking Peak ..
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MR2535LRL
Medium Current Overvoltage Transient Suppressor
MR2535L
Overvoltage
Transient Suppressors
Medium Current

Designed for applications requiring a low voltage rectifier with
reverse avalanche characteristics for use as reverse power transient
suppressors. Developed to suppress transients in the automotive
system, these devices operate in the forward mode as standard
rectifiers or reverse mode as power avalanche rectifier and will protect
electronic equipment from overvoltage conditions. Avalanche Voltage 24 to 32 Volts High Power Capability Economical Increased Capacity by Parallel Operation
Mechanical Characteristics
Case: Epoxy, Molded Weight: 2.5 Grams (Approximately) Finish: All External Surfaces Corrosion Resistant and Terminal
Leads are Readily Solderable Maximum Lead Temperature for Soldering Purposes:
350°C 3/8″ from Case for 10 Seconds at 5 lbs. Tension Polarity: Indicated by Diode Symbol or Cathode Band Marking: MR2535L
MAXIMUM RATINGS (TJ = 25°C unless otherwise noted)

Maximum ratings are those values beyond which device damage can occur.
Maximum ratings applied to the device are individual stress limit values (not
normal operating conditions) and are not valid simultaneously. If these limits are
exceeded, device functional operation is not implied, damage may occur and
reliability may be affected.
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