IMT17

Document overview

  • Manufacturer or author: Diodes Incorporated
  • PDF pages: 5

Technical content

Features

  • Epitaxial Planar Die Construction
  • Small Surface Mount Package
  • Lead Free By Design/RoHS Compliant (Note 1)
  • "Green" Device (Note 2) Mechanical Data
  • Case: SOT-26
  • Case Material: Molded Plastic, “Green” Molding Compound. UL Flammability Classification Rating 94V-0
  • Moisture Sensitivity: Level 1 per J-STD-020D
  • Terminal Connections: See Diagram
  • Terminals: Finish – Matte Tin Annealed Over Copper Leadframe. Solderable per MIL-STD-202, Method 208
  • Marking Information: See Page 3
  • Ordering Information: See Page 3
  • Weight: 0.016 grams (approximate) Maximum Ratings @TA = 25°C unless otherwise specified Characteristic Symbol Value Unit Collector-Base Voltage VCBO -60 V Collector-Emitter Voltage VCEO -50 V Emitter-Base Voltage VEBO -5.0 V Continuous Collector Current IC -500 mA Thermal Characteristics Characteristic Symbol Value Unit Power Dissipation (Note 3) @TA = 25°C PD 300 mW Thermal Resistance, Junction to Ambient Air (Note 3) @TA = 25°C RθJA 417 °C /W Operating and Storage Temperature Range TJ, TSTG -55 to +150 °C Electrical Characteristics @TA = 25°C unless otherwise specified Characteristic Symbol Min Typ Max Unit Test Condition OFF CHARACTERISTICS (Note 4) Collector-Base Breakdown Voltage V(BR)CBO -60 — — V IC = -100µA Collector-Emitter Breakdown Voltage V(BR)CEO -50 — — V IC = -1.0mA Emitter-Base Breakdown Voltage V(BR)EBO -5.0 — — V IE = -100µA Collector Cutoff Current ICBO — — -0.1 µA VCB = -30V Emitter Cutoff Current IEBO — — -0.1 µA VEB = -4.0V ON CHARACTERISTICS (Note 4) DC Current Gain hFE 120 — 390 — VCE = -3.0V, IC = -100mA Collector-Emitter Saturation Voltage (Note 3) VCE(SAT) — — -0.6 V IC = -500mA, IB = -50mA SMALL SIGNAL CHARACTERISTICS Gain Bandwidth Product fT — 200 — MHz VCE = -5V, IE = 20mA, f = 100MHz Output Capacitance Cob — 7 — pF VCB = -10V, IE = 0, f = 1MHz Notes: 1. No purposefully added lead. 3. Device mounted on FR-4 PCB; pad layout as shown on Diodes Inc. suggested pad layout document AP02001, which can be found on page 4 or on our website at http://www.diodes.com/datasheets/ap02001.pdf. 4. Short duration pulse test used to minimize self-heating effect. Top View Device Schematic PART OBSOLETE – CONTACT US

Document number: DS31202 Rev. 5 - 4 2 of 5 www.diodes.com June 2021 © Diodes Incorporated IMT17 OBSOLETE – PART DISCONTINUED 100 25 50 75 100 125 150 175 200 P , POWER DISSIPATION (mW)D T , AMBIENT TEMPERATURE (°C) Fig. 1, Max Power Dissipation vs. Ambient Temperature A 150 200 250 300 350 400 0 1 2 3 4 5 -V , COLLECTOR EMITTER VOLTAGE (V)CE Fig. 2 Typical Collector Current vs. Collector-Emitter Voltage I = -2mAB I = -4mAB I = -6mAB I = -8mAB I = -10mAB 0.001 0.01 0.1 1 -I , COLLECTOR CURRENT (A)C h , DC CURRENT GAINFE Fig. 3 Typical DC Current Gain vs. Collector Current T = -55°CA T = 25°CA T = 85°CA T = 150°CA V = -3VCE 0.01 0.1 0.001 0.01 0.1 1 -I , COLLECTOR CURRENT (A)C -V , COLLECTOR EMITTER SATURATION VOLTAGE (V) CE(SAT) Fig. 4 Typical Collector-Emitter Saturation Voltage vs. Collector Current T = -55°CA T = 25°CA T = 85°CA T = 150°CA I /I = 10CB 0.2 0.4 0.6 0.8 1.2 0.001 0.01 0.1 1 -I , COLLECTOR CURRENT (A)C -V , BASE-EMITTER TURN-ON VOLTAGE (V)BE(ON) Fig. 5 Typical Base-Emitter Turn-On Voltage vs. Collector Current T = -55°CA T = 25°CA T = 85°CA T = 150°CA V = -3VCE 0.2 0.4 0.6 0.8 1.2 0.001 0.01 0.1 1 -I , COLLECTOR CURRENT (A)C -V , BASE-EMITTER SATURATION VOLTAGE (V)BE(SAT) Fig. 6 Typical Base-Emitter Saturation Voltage vs. Collector Current T = -55°CA T = 25°CA T = 85°CA T = 150°CA I /I = 10CB

Document number: DS31202 Rev. 5 - 4 3 of 5 www.diodes.com June 2021 © Diodes Incorporated IMT17 OBSOLETE – PART DISCONTINUED 100 0.1 1 10 100 V , REVERSE VOLTAGE (V)R Fig. 7 Typical Capacitance Characteristics Cibo Cobo f = 1MHz 100 150 200 250 300 0 20 40 60 80 100 I , EMITTER CURRENT (mA)E f , CURRENT GAIN-BANDWIDTH PRODUCT (MHz)T Fig. 8 Typical Gain-Bandwidth Product vs. Emitter Current V = -5V f = 100MHz CE Ordering Information (Note 5) Part Number Case Packaging IMT17-7 SOT-26 3000/Tape & Reel Marking Information Date Code Key Year 2007 2008 2009 2010 2011 2012 2013 2014 2015 Code U V W X Y Z A B C Month Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec Code 1 2 3 4 5 6 7 8 9 O N D Package Outline Dimensions SOT-26 Dim Min Max Typ A 0.35 0.50 0.38 B 1.50 1.70 1.60 C 2.70 3.00 2.80 D   0.95 H 2.90 3.10 3.00 J 0.013 0.10 0.05 K 1.00 1.30 1.10 L 0.35 0.55 0.40 M 0.10 0.20 0.15 α 0° 8°  All Dimensions in mm KP1 = Product Type Marking Code YM = Date Code Marking Y = Year (ex: V = 2008) M = Month (ex: 9 = September) KP1 YMKP1 YM A M J LD B C H K

Document number: DS31202 Rev. 5 - 4 4 of 5 www.diodes.com June 2021 © Diodes Incorporated IMT17 OBSOLETE – PART DISCONTINUED Suggested Pad Layout Dimensions Value (in mm) Z 3.20 G 1.60 X 0.55 Y 0.80 C1 2.40 C2 0.95 X Z Y C2C2 G

Document number: DS31202 Rev. 5 - 4 5 of 5 www.diodes.com June 2021 © Diodes Incorporated IMT17 OBSOLETE – PART DISCONTINUED IMPORTANT NOTICE 1. DIODES INCORPORATED AND ITS SUBSIDIARIES (“DIODES”) MAKE NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, WITH REGARDS TO ANY INFORMATION CONTAINED IN THIS DOCUMENT, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NON -INFRINGEMENT OF THIRD PARTY INTELLECTUAL PROPERTY RIGHTS (AND THEIR EQUIVALENTS UNDER THE LAWS OF ANY JURISDICTION). 2. The Information contained herein is for informational purpose only and is provided only to illustrate the operation of Diodes products described herein and application examples. Diodes does not assume any liability arising out of the application or use of this document or any product described herein. This document is intended for skilled and technically trained engineering customers and users who design with Diodes products. Diodes products may be used to facilitate safety -related applications; however, in all instances customers and users are responsible for (a) selecting the appropriate Diodes products for their applications, (b) eval uating the suitability of the Diodes products for their intended applications, (c) ensuring their applications, which incorporate Diodes products, comply the applicable legal and regulatory requirements as well as safety and functional -safety related standards, and (d) ensuring they design with appropriate safeguards (including testing, validation, quality control techniques, redundancy, malfunction prevention, and appropriate treatment for aging degradation) to minimize the risk s associated with their applications. 3. Diodes assumes no liability for any application- related information, support, assistance or feedback that may be provided by Diodes from time to time. 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