• Part: DB104S
  • Description: SURFACE MOUNT BRIDGE
  • Manufacturer: MIC
  • Size: 74.40 KB
Download DB104S Datasheet PDF
MIC
DB104S
DB104S is SURFACE MOUNT BRIDGE manufactured by MIC.
- Part of the DB101S comparator family.
FEATURES - - - - - VOLTAGE RANGE CURRENT 50 to 1000 Volts 1.0 Ampere Glass passivated chip junction Ideal for surface mounted applications Low leakage High forward surge current capability High temperature soldering guaranteed: 260℃/10 seconds at terminals 0.205 (5.2) 0.195 (5.0) 0.404 (10.3) 0.386 (9.80) 0.255 (6.5) 0.245 (6.2) - + 0.047 (1.20) 0.040 (1.02) - 0.060 (1.524) 0.040 (1.016) 0.013 (0.330) 0.003 (0.076) 0.013 (0.330) 0.009 (0.241) MECHANICAL DATA - - - - - Case: Molded plastic body Epoxy: UL94V-0 rate flame retardant Polarity: Molded on body Lead P: Plated terminals solderable per MIL-STD-202E method 208C Weight: 0.04 ounce, 1.0 gram 0.335 (8.51) 0.320 (8.13) .135 (3.4) .115 (2.9) Dimensions in inches and (millimeters ) MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS - Ratings at 25℃ ambient temperature unless otherwise specified - Single Phase, half wave, 60Hz, resistive or inductive load - For capacitive load derate current by 20% DB102S SYMBOLS DB101S DF005S DF01S Maximum Reverse Peak Repetitive Voltage VRRM 50 100 Maximum RMS Voltage VRMS 35 70 Maximum DC Blocking Voltage VDC 50 100 Maximum Average Forward Rectified Output Current, 0.06”(1.5mm) lead length at T A=40℃ (Note 2) Peak Forward Surge Current 8.3ms single half sine wave superimposed on rated load (JEDEC Method) Rating for Fusing (t<8.3ms) Maximum Instantaneous Forward Voltage drop Per Bridge element 1.0A TA=25℃ Maximum Reverse Current at rated DC blocking voltage per element TA=125℃ Typical Junction Capacitance (NOTE 1) Typical Thermal Resistance (NOTE 2) Operating and Storage Temperature Range DB103S DF02S DB104S DF04S DB105S DF06S DB106S DF08S DB107S DF10S 200 140 200 400 280 400 1.0 50 10 1.1 5 0.5 25 40 (-55 to +150) 600 420 600 800 560 800 1000 700 1000 UNIT Volts Volts Volts Amps Amps A2s Volts µAmps m Amps ℃/W I(AV) IFSM I2 t VF IR CJ RΘJA TJ...