PT-F EDI | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 2
Technical content
8 AMPERES-TAB TERMINALS
SINGLE-PHASE FULL-WAVE BRIDGES HEAT SINK AND CHASSIS MOUNTING PT-F EDI reserves the right to change these specifications at any time without notice. Max.Forward Voltage Drop, VF =1.0 V @ I F = 2.0 Amp Max. DC Reverse Current @ PRV and 25 oC, IR 3 oC, IR 75 Max. Peak Surge Current, IFSM (8.3ms) 150 Amp Storage Temperature Range, TSTG -55 to +150 oC Thermal Resistance (Total Bridge), R0 j-c 6.0typ. oC/ W- A A PT-F SERIES PRV/Leg 50V 100V 200V 400V 600V 800V 1000V Type No. PT05F PT 10F PT 20F PT 40F PT 60F PT 80F PT100F This mark indicates recognition underthe component program ofUnderwriters Laboratories,inc. ELECTRICAL CHARACTERISTICS PER LEG (at TA=25 C Unl ess Oth erw ise Spe cifie d) Max. DC Reverse Current @ PRV and 100
PT-F SERIES CURRENT DERATING Figure 2 Figure 3 NON-REPETITIVE SURGE CURRENT POWER DISSIPATION 100 1 2 3 4 6 10 20 30 40 608 NUMBER OF CYCLES(60 Hz) IF(AV). AVERAGE FORWARD CURRENT (AMP) PT(AV). TOTAL AVERAGE POWER DISSIPATION (WATTS) 0 2 4 6 8 BRIDGE OUTPUT RES IND LOADS PT-F SERIES MECH. OUTLINE NOTE: 1. A thin film of silicone thermal compound is recommended between the bridge case and mounting surface for improved thermal conduction. 21 GRAY OAKS AVENUE * YONKERS. NEW YORK 10710 914-965-4400 * FAX 914-965-5531 * 1-800-678-0828 ELECTRONIC DEVICES, INC. DESIGNERS AND MANUFACTURERS OF SOLID STATE DEVICES SINCE 1951. 40 60 80 100 120 140 160 IF(AV) . AVERAGE FORWARD CURRENT (AMP) FULL WAVE OUTPUT RES IND LOADS O TC CASE TEMPERATURE ( C) 50 70 90 110 130 150 150 200 300 80 100 10 12 I(AV) I(PK) = { NOTE: I(PK) / I (AV) ratio refers to a single diode (leg) PT-F Ee-mail:sales@edidiodes.com Wwebsite:http:// www.edidiodes.com* CAPACITIVE LOADS3 C B AC E D F LTR B C D E F G INCHES .140-.160DIA .032 .250 6.35
7.62 MAX
12.7 MAX
.81 MILLIMETERS 3.5 - 4.1 DIA
20.4 MAXAC
G IFSM . PEAK SURGE CURRENT (AMP) .500 MAX .300 MAX .800 MAX