• Part: D1330
  • Description: 2SD1330
  • Manufacturer: Panasonic
  • Size: 115.45 KB
Download D1330 Datasheet PDF
Panasonic
D1330
D1330 is 2SD1330 manufactured by Panasonic.
Features - Low collector-emitter saturation voltage VCE(sat) - Low ON resistance Ron - High forward current transfer ratio h FE - M type package allowing easy automatic and manual insertion as well as stand-alone fixing to the printed circuit board. 3.5±0.1 (1.0) 2.0±0.2 2.4±0.2 0.45±0.05 1 R 0.9 R 0.7 .. 1.0±0.1 Parameter Collector-base voltage (Emitter open) Collector-emitter voltage (Base open) Emitter-base voltage (Collector open) Collector current Peak collector current Collector power dissipation Junction temperature Storage temperature Symbol VCBO VCEO VEBO IC ICP PC Tj Tstg Rating 25 20 12 0.5 1 600 150 - 55 to +150 Unit V V V A A m W °C °C 3 (2.5) 2 (2.5) 1.25±0.05 - Absolute Maximum Ratings Ta = 25°C (0.85) 0.55±0.1 1 : Base 2 : Collector 3 : Emitter M-A1 Package - Electrical Characteristics Ta = 25°C ± 3°C Parameter Collector-base voltage (Emitter open) Collector-emitter voltage (Base open) Emitter-base voltage (Collector open) Collector-base cutoff current (Emitter open) Forward current transfer ratio - 1 Symbol VCBO VCEO VEBO ICBO h FE1 - 2 h FE2 Collector-emitter saturation voltage Base-emitter saturation voltage Transition frequency Collector output capacitance (mon base, input open circuited) ON resistanse - 3 VCE(sat) VBE(sat) f T Cob Ron Conditions IC = 10 µA, IE = 0 IC = 1 m A, IB = 0 IE = 10 µA, IC = 0 VCB = 25 V, IE = 0 VCE = 2 V, IC = 0.5 A VCE = 2 V, IC = 1 A IC = 0.5 A, IB = 20 m A IC = 0.5 A, IB = 50 m A VCB = 10 V, IE = - 50 m A, f = 200 MHz VCB = 10 V, IE = 0, f = 1 MHz 200 10 1 200 60 0.13 0.4 1.2 V V MHz p F Ω Min 25 20 12 100 800 Typ Max Unit V V V n A  Note) 1. Measuring methods are based on JAPANESE INDUSTRIAL STANDARD JIS C 7030 measuring methods for transistors. 2. - 1: Pulse measurement - 2: Rank classification - 3: Ron Measurement circuit 1 kΩ Rank h FE1 R 200 to 350 S 300 to 500 T 400 to 800 IB = 1 m A f = 1 k Hz V = 0.3 V VB VV VA Ron = VB × 1 000 (Ω) VA -...