2SB1025 Silicon PNP Epitaxial REJ03G0661-0200 (Previous ADE-208-1036) Rev.2.00 Aug.10.2005 Application • Low frequency power amplifier • Complementary pair with 2SD1418 Outline RENESAS Package code: PLZZ0004CA-A (Package name: UPAK R ) 1 3 2 1. Base 2. Collector 3. Emitter 4. Collector (Flange) 4 *UPAK is a trademark of Renesas Technology Corp. Absolute Maximum Ratings (Ta = 25°C) Item Symbol Collector to base voltage VCBO Collector to emitter voltage VCEO Emitter to base voltage VEBO Collector current IC Collector peak current iC(peak)*1 Collector power dissipation PC*2 Junction temperature Tj Storage temperature Tstg Notes: 1. PW ≤ 10 ms, Duty cycle ≤ 20% 2. Value on the alumina ceramic board (12.5 × 20 × 0.7 mm) Rev.2.00 Aug 10, 2005 page 1 of 5 Ratings –120 –80 –5 –1 –2 1 150 –55 to +150 Unit V V V A A W °C °C 2SB1025 Electrical Characteristics (Ta = 25°C) Item Collector to base breakdown voltage Collector to emitter breakdown voltage Emitter to base breakdown voltage Collector cutoff current DC current transfer ratio Collector to emitter saturation voltage Base to emitter voltage Gain bandwidth product Collector output capacitance Rev.2.00 Aug 10, 2005 page 2 of 5 Symbol V(BR)CBO V(BR)CEO V(BR)EBO ICBO hFE1 hFE2 Min –120 –80 –5 — 100 30 Typ — — — — — — Max — — — –10 200 — Unit V V V µA VCE(sat) — — –1 V VBE fT Cob — — — — 140 20 –0.9 — — V MHz pF Test conditions IC = –10 µA, IE = 0 IC = –1 mA, RBE = ∞ IE = –10 µA, IC = 0 VCB = –100 V, IE = 0 VCE = –5 V, IC = –150 mA VCE = –5 V, IC = –500 mA (Pulse test) IC = –500 mA, IB = –50 mA (Pulse test) VCE = –5 V, IC = –150 mA VCE = –5 V, IC = –150 mA VCB = –10 V, IE = 0, f = 1 MHz 2SB1025 Main Characteristics Typical Output Characteristics –1.0 1.2 Collector Current IC (A) Collector Power Dissipation Pc (W) (on the alumina ceramic board) Maximum Collector Dissipation Curve 0.8 0.4 0 –12 0 –10 –80 –60 –0.8 –40 –30 0 –2 –10 5 – –2 –0.6 –0.4 –1 –0.5 mA –0.2 IB = 0 0 50 100 150 0 Ambient Temperature Ta (°C) –2 600 DC Current Transfer Ratio hFE 75°C Ta = –20 –10 25 –25 Collector Current IC (mA) VCE = –5 V Pulse –50 –5 –2 –0.2 –0.4 –0.6 –0.8 500 –1.0 –25 100 –0.5 Ta 25 75 VBE (sat) –0.6 –0.2 0 –1 VCE (sat) –3 –10 –30 –0.2 –0.1 0 –100 –300 –1,000 Collector Current IC (mA) Rev.2.00 Aug 10, 2005 page 3 of 5 –0.4 –0.3 Ta = 75°C 25 –25 –0.4 –3 –10 –30 –100 –300 –1,000 Gain Bandwidth Product vs. Collector Current Gain Bandwidth Product fT (MHz) –0.8 –0.6 5°C = –2 25 Collector Current IC (mA) Collector to Emitter Saturation Voltage VCE (sat) (V) Base to Emitter Saturation Voltage VBE (sat) (V) –1.0 Ta = 75°C 200 Saturation Voltage vs. Collector Current IC = 10 IB Pulse VCE = –5 V Pulse 300 Base to Emitter Voltage VBE (V) –1.2 –10 400 0 –1 –1 0 –8 DC Current Transfer Ratio vs. Collector Current –500 –100 –6 Collector to Emitter Voltage VCE (V) Typical Output Characteristics –200 –4 VCE = –5 V 300 200 100 –10 –30 –100 –300 Collector Current IC (mA) –1,000 2SB1025 Collector Output Capacitance Cob (pF) Collector Output Capacitance vs. Collector to Base Voltage 200 f = 1 MHz IE = 0 100 50 20 10 5 2 –1 –2 –5 –10 –20 –50 –100 Collector to Base Voltage VCB (V) Rev.2.00 Aug 10, 2005 page 4 of 5 2SB1025 Package Dimensions RENESAS Code Package Name MASS[Typ.] PLZZ0004CA-A UPAK / UPAKV 0.050g 1.5 1.5 3.0 1.5 ± 0.1 0.44 Max 2.5 ± 0.1 4.25 Max (1.5) 0.44 Max (0.2) 0.53 Max 0.48 Max 0.8 Min φ1 0.4 4.5 ± 0.1 1.8 Max Unit: mm (2.5) SC-62 (0.4) JEITA Package Code Ordering Information Part Name 2SB1025DJTL-E Quantity 1000 Shipping Container φ 178 mm Reel, 12 mm Emboss Taping Note: For some grades, production may be terminated. Please contact the Renesas sales office to check the state of production before ordering the product. Rev.2.00 Aug 10, 2005 page 5 of 5 Sales Strategic Planning Div. Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan Keep safety first in your circuit designs! 1. Renesas Technology Corp. puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or property damage. Remember to give due consideration to safety when making your circuit designs, with appropriate measures such as (i) placement of substitutive, auxiliary circuits, (ii) use of nonflammable material or (iii) prevention against any malfunction or mishap. Notes regarding these materials 1. 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