DCX (XXXX) U
Document overview
- Manufacturer or author: Diodes Incorporated
- PDF pages: 14
Technical content
Features
- Supply Voltage VO = 50V
- Range of Bias Resistors
- Surface-Mount Package Suited for Automated Assembly
- Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2)
- Halogen and Antimony Free. “Green” Device (Note 3)
- The DCX (XXXX) UQs are suitable for automotive applications requiring specific change control; these parts are AEC-Q101 qualified, PPAP capable, and manufactured in IATF 16949 certified facilities. https://www.diodes.com/quality/product-definitions/ Part Number R1(NOM) R2(NOM) DCX124EU 22kΩ 22kΩ DCX144EU 47kΩ 47kΩ DCX114YU 10kΩ 47kΩ DCX123JU 2.2kΩ 47kΩ DCX114EU 10kΩ 10kΩ DCX143EU 4.7kΩ 4.7kΩ DCX143ZU 4.7kΩ 47kΩ DCX115EU 100kΩ 100kΩ Mechanical Data
- Package: SOT363
- Package Material: Molded Plastic, “Green” Molding Compound; UL Flammability Classification Rating 94V-0
- Moisture Sensitivity: Level 1 per J-STD-020
- Terminals: Finish – Matte Tin Plated Leads, Solderable per MIL-STD-202, Method 208
- Weight: 0.006 grams (Approximate) Part Number R1 Only DCX143TU 4.7kΩ DCX114TU 10kΩ Ordering Information (Notes 4, 5) Part Number Status Package Marking Reel Size (inches) Tape Width (mm) Packing Qty. Carrier DCX124EU-7-F Active SOT363 C17 7 8 3,000 Reel DCX124EU-13-F Active SOT363 C17 13 8 10,000 Reel DCX124EUQ-7-F NRND (Use ACX124EUQ) SOT363 C17 7 8 3,000 Reel DCX124EUQ-13-F NRND (Use ACX124EUQ) SOT363 C17 13 8 10,000 Reel DCX124EUQ-13R-F NRND (Use ACX124EUQ) SOT363 C17 13 8 10,000 Reel DCX144EU-7-F Active SOT363 C20 7 8 3,000 Reel DCX144EU-7R-F Active SOT363 C20 7 8 3,000 Reel DCX144EUQ-7-F Active SOT363 C20 7 8 3,000 Reel DCX144EUQ-7R-F Active SOT363 C20 7 8 3,000 Reel DCX114YU-7-F Active SOT363 C14 7 8 3,000 Reel DCX114YU-7R-F Active SOT363 C14 7 8 3,000 Reel DCX114YUQ-7-F NRND (Use ACX114YUQ) SOT363 C14 7 8 3,000 Reel DCX114YUQ-13-F NRND (Use ACX114YUQ) SOT363 C14 13 8 10,000 Reel DCX114YUQ-13R-F NRND (Use ACX114YUQ) SOT363 C14 13 8 10,000 Reel DCX123JU-7-F Active SOT363 C06 7 8 3,000 Reel DCX123JU-7R-F Active SOT363 C06 7 8 3,000 Reel DCX123JUQ-7-F Active SOT363 C06 7 8 3,000 Reel DCX114EU-7-F Active SOT363 C13 7 8 3,000 Reel DCX114EU-13R-F Active SOT363 C13 13 8 10,000 Reel SOT363 Device Schematic Top View R1, R2 R1 Only R 1 R 1 BQ 2 BQ 1 C Q 1 C Q 2 1 2 3 456 EQ 2 EQ 1 R 2 R 2 Q 1 R 1 R 1 C Q 1 Q 1 Q 2 1 2 3 456 BQ 2 BQ 1 CQ 2 EQ 2 EQ 1 OUT1 IN2 COM2 COM1 IN1 OUT2
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 2 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Ordering Information (Notes 4, 5) (continued) Part Number Status Package Marking Reel Size (inches) Tape Width (mm) Packing Qty. Carrier DCX114EUQ-7-F NRND (Use ACX114EUQ) SOT363 C13 7 8 3,000 Reel DCX114EUQ-13-F NRND (Use ACX114EUQ) SOT363 C13 13 8 10,000 Reel DCX114EUQ-13R-F NRND (Use ACX114EUQ) SOT363 C13 13 8 10,000 Reel DCX143TU-7-F Active SOT363 C07 7 8 3,000 Reel DCX143EU-7-F Active SOT363 C08 7 8 3,000 Reel DCX143EU-7R-F Active SOT363 C08 7 8 3,000 Reel DCX114TU-7-F Active SOT363 C12 7 8 3,000 Reel DCX143ZU-7-F Active SOT363 C02 7 8 3,000 Reel DCX143ZU-7R-F Active SOT363 C02 7 8 3,000 Reel DCX115EU-7-F Active SOT363 C01 7 8 3,000 Reel Notes: 1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS), 2011/65/EU (RoHS 2) & 2015/863/EU (RoHS 3) compliant. 2. See https://www.diodes.com/quality/lead-free/ for more information about Diodes Incorporated’s definitions of Halogen - and Antimony-free, "Green" and Lead-free. 3. Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and <1000ppm antimony compounds. 4. For packaging details, go to our website at https://www.diodes.com/design/support/packaging/diodes -packaging/. 5. NRND = Not Recommended for New Design. Marking Information SOT363 Date Code Key Year 2010 - 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 Code X - L M N P R S T U V W 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 CXX = Product Type Marking Code YM = Date Code Marking Y or Y= Year (ex: L = 2024) M = Month (ex: D = December)
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 3 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Absolute Maximum Ratings NPN Section (@ TA = +25° C, unless otherwise specified.) Characteristic Symbol Value Unit Supply Voltage VO 50 V Input Voltage DCX124EU DCX144EU DCX114YU DCX123JU DCX114EU DCX143TU DCX143EU DCX114TU DCX143ZU DCX115EU VI -10 to +40 -10 to +40 -6 to +40 -5 to +12 -10 to +40 -5V Max -10 to +30 -5V Max -10 to +30 -10 to +40 V Output Current DCX124EU DCX144EU DCX114YU DCX123JU DCX114EU DCX143TU DCX143EU DCX114TU DCX143ZU DCX115EU IO 100 100 100 100 100 mA Peak Output Current ICM 100 mA Absolute Maximum Ratings PNP Section (@ TA = +25° C, unless otherwise specified.) Characteristic Symbol Value Unit Supply Voltage VO 50 V Input Voltage DCX124EU DCX144EU DCX114YU DCX123JU DCX114EU DCX143TU DCX143EU DCX114TU DCX143ZU DCX115EU VI +10 to -40 +10 to -40 +6 to -40 +5 to -12 +10 to -40 +5V Max +10 to -30 +5V Max +5 to -30 +10 to -40 V Output Current DCX124EU DCX144EU DCX114YU DCX123JU DCX114EU DCX143TU DCX143EU DCX114TU DCX143ZU DCX115EU IO -30 -30 -70 -100 -50 -100 -100 -100 -100 -20 mA Peak Output Current ICM -100 mA Thermal Characteristics (@ TA = +25° C, unless otherwise specified.) Characteristic Symbol Value Unit Power Dissipation (Notes 6, 7) PD 200 mW Thermal Resistance, Junction to Ambient Air (Note 6) RJA 625 ° C/W Operating and Storage Temperature Range TJ, TSTG -55 to +150 °C Notes: 6. Mounted on FR-4 PC Board with minimum recommended pad layout. 7. 150mW per element must not be exceeded.
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 4 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Thermal Characteristics (@ TA = +25° C, unless otherwise specified.) 0 50 125 150 250 200 150 100 T , AMBIENT TEMPERATURE ( C) Fig. 1 Power Derating Curve A ° P , POWER DISSIPATION (mW)D R0JA = 625° C/W
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 5 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Electrical Characteristics NPN Section (@ TA = +25° C, unless otherwise specified.) Characteristic Symbol Min Typ Max Unit Test Condition R1 Only (DCX143TU & DCX114TU) Collector-Base Breakdown Voltage BVCBO 50 ⎯ ⎯ V IC = 50μA Collector-Emitter Breakdown Voltage BVCEO 50 ⎯ ⎯ V IC = 1mA Emitter-Base Breakdown Voltage BVEBO 5 ⎯ −− V IE = 50μA Collector Cutoff Current ICBO ⎯ ⎯ 0.5 μA VCB = 50V Emitter Cutoff Current IEBO ⎯ ⎯ 0.5 μA VEB = 4V Collector-Emitter Saturation Voltage VCE(sat) ⎯ ⎯ 0.3 V IC/IB = 2.5mA / 0.25mA DCX143TU IC/IB = 1mA / 0.1mA DCX114TU DC Current Transfer Ratio hFE 100 250 600 ⎯ IC = 1mA, VCE = 5V Input Resistor (R1) Tolerance R1 -30 ⎯ +30 % ⎯ Gain-Bandwidth Product fT ⎯ 250 ⎯ MHz VCE = 10V, IE = 5mA, f = 100MHz R1/R2 Only Input Voltage DCX124EU Vl(off) 0.5 1.1 V VCC = 5V, IO = 100μA DCX144EU 0.5 1.1 DCX114YU 0.3 ⎯ DCX123JU 0.5 ⎯ DCX114EU 0.5 1.1 DCX143EU 0.5 1.16 DCX143ZU 0.5 ⎯ DCX115EU 0.5 ⎯ DCX124EU Vl(on) ⎯ 1.9 3.0 VO = 0.3V, IO = 5mA DCX144EU 1.9 3.0 VO = 0.3V, IO = 2mA DCX114YU ⎯ 1.4 VO = 0.3V, IO = 1mA DCX123JU ⎯ 1.1 VO = 0.3V, IO = 5mA DCX114EU 1.9 3.0 VO = 0.3V, IO = 10mA DCX143EU 1.99 3.0 VO = 0.3V, IO = 20mA DCX143ZU ⎯ 1.3 VO = 0.3V, IO = 5mA DCX115EU ⎯ 3 VO = 0.3V, IO = 1mA Output Voltage DCX124EU VO(on) ⎯ 0.1 0.3 V IO/Il = 10mA / 0.5mA DCX144EU IO/Il = 10mA / 0.5mA DCX114YU IO/Il = 5mA / 0.25mA DCX123JU IO/Il = 5mA / 0.25mA DCX114EU IO/Il = 10mA / 0.5mA DCX143EU IO/Il = 10mA / 0.5mA DCX143ZU IO/Il = 5mA / 0.25mA DCX115EU IO/Il = 10mA / 0.5mA Input Current DCX124EU Il ⎯ ⎯ 0.36 mA VI = 5V DCX144EU 0.18 DCX114YU 0.88 DCX123JU 3.6 DCX114EU 0.88 DCX143EU 0.88 DCX143ZU 1.8 DCX115EU 0.15 Output Current IO(off) ⎯ ⎯ 0.5 μA VCC = 50V, VI = 0V DC Current Gain DCX124EU DCX124EUQ Gl ⎯ ⎯ ⎯ VO = 5V, IO = 5mA VO = 5V, IO = 5mA DCX144EU 68 VO = 5V, IO = 5mA DCX114YU DCX114YUQ VO = 5V, IO = 10mA VO = 5V, IO = 10mA DCX123JU 80 VO = 5V, IO = 10mA DCX114EU 30 VO = 5V, IO = 5mA DCX143EU 50 VO = 5V, IO = 10mA DCX143ZU 80 VO = 5V, IO = 10mA DCX115EU 82 VO = 5V, IO = 5mA Input Resistor (R1) Tolerance R1 -30 ⎯ +30 % ⎯ Resistance Ratio Tolerance R2/R1 -20 ⎯ +20 ⎯ Gain-Bandwidth Product fT ⎯ 250 ⎯ MHz VCE = 10V, IE = 5mA, f = 100MHz
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 6 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Electrical Characteristics PNP Section (@ TA = +25° C, unless otherwise specified.) Characteristic Symbol Min Typ Max Unit Test Condition R1 Only (DCX143TU & DCX114TU) Collector-Base Breakdown Voltage BVCBO -50 ⎯ ⎯ V IC = -50μA Collector-Emitter Breakdown Voltage BVCEO -50 ⎯ ⎯ V IC = -1mA Emitter-Base Breakdown Voltage BVEBO -5 ⎯ ⎯ V IE = -50μA Collector Cutoff Current ICBO ⎯ ⎯ -0.5 μA VCB = -50V Emitter Cutoff Current IEBO ⎯ ⎯ -0.5 μA VEB = -4V Collector-Emitter Saturation Voltage VCE(sat) ⎯ ⎯ -0.3 V IC/IB = 2.5mA / 0.25mA DCX143TU IC/IB = 1mA / 0.1mA DCX114TU DC Current Transfer Ratio hFE 100 250 600 ⎯ IC = -1mA, VCE = -5V Input Resistor (R1) Tolerance R1 -30 ⎯ +30 % ⎯ Gain-Bandwidth Product fT ⎯ 250 ⎯ MHz VCE = -10V, IE = -5mA, f = 100MHz R1/R2 Only Input Voltage DCX124EU Vl(off) -0.5 -1.1 V VCC = -5V, IO = -100μA DCX144EU -0.5 -1.1 DCX114YU -0.3 ⎯ DCX123JU -0.5 ⎯ DCX114EU -0.5 -1.1 DCX143EU -0.5 -1.16 DCX143ZU -0.5 ⎯ DCX115EU -0.5 ⎯ DCX124EU Vl(on) ⎯ DCX144EU -1.9 -3.0 VO = -0.3V, IO = -2mA DCX114YU ⎯ -1.4 VO = -0.3V, IO = -1mA DCX123JU ⎯ -1.1 VO = -0.3V, IO = -5mA DCX114EU -1.9 -3.0 VO = -0.3V, IO = -10mA DCX143EU -2.5 -3.0 VO = -0.3V, IO = -20mA DCX143ZU ⎯ -1.3 VO = -0.3V, IO = -5mA DCX115EU ⎯ -3 VO = -0.3V, IO = -1mA Output Voltage DCX124EU VO(on) ⎯ -0.1 -0.3 V IO/Il = -10mA / -0.5mA DCX144EU IO/Il = -10mA / -0.5mA DCX114YU IO/Il = -5mA / -0.25mA DCX123JU IO/Il = -5mA / -0.25mA DCX114EU IO/Il = -10mA / -0.5mA DCX143EU IO/Il = -10mA / -0.5mA DCX143ZU IO/Il = -5mA / -0.25mA DCX115EU IO/Il = -10mA / -0.5mA Input Current DCX124EU Il ⎯ ⎯ -0.36 mA VI = -5V DCX144EU -0.18 DCX114YU -0.88 DCX123JU -3.6 DCX114EU -0.88 DCX143EU -0.88 DCX143ZU -1.8 DCX115EU -0.15 Output Current IO(off) ⎯ ⎯ -0.5 μA VCC = -50V, VI = 0V DC Current Gain DCX124EU DCX124EUQ Gl ⎯ ⎯ ⎯ VO = -5V, IO = -5mA VO = -5V, IO = -5mA DCX144EU 68 VO = -5V, IO = -5mA DCX114YU DCX114YUQ VO = -5V, IO = -10mA VO = -5V, IO = -10mA DCX123JU 80 VO = -5V, IO = -10mA DCX114EU 30 VO = -5V, IO = -5mA DCX143EU 40 VO = -5V, IO = -10mA DCX143ZU 80 VO = -5V, IO = -10mA DCX115EU 82 VO = -5V, IO = -5mA Input Resistor (R1) Tolerance R1 -30 ⎯ +30 % ⎯ Resistance Ratio Tolerance R2/R1 -20 ⎯ +20 % ⎯ Gain-Bandwidth Product fT ⎯ 250 ⎯ MHz VCE = -10V, IE = -5mA, f = 100MHz
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 7 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Typical Curves – DCX123JU PNP Section (@ TA = +25° C, unless otherwise specified.) -IO Output Current (mA) -VI Input Voltage (V) Fig.5 Typical IO vs. VI -VR Reverse Bias Voltage (V) Fig.4 Typical COBO vs. VR COBO Capacitance (pF) -VI Input Voltage (V) -IO Output Current (mA) Fig.6 Typical VI vs. IO -IO Output Current (mA) Fig.2 Typical VO vs. IO GI DC Current Gain -IO Output Current (mA) Fig.3 Typical GI vs. IO -VO Output Voltage (V)
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 8 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Typical Curves – DCX123JU NPN Section (@ TA = +25° C, unless otherwise specified.) 0 20 30 C , CAPACITANCE (pF)OB V , REVERSE BIAS VOLTAGE (V) Fig. 9 Typical Output Capacitance R 105 15 25 I = 0mA f = 1MHz E 0.001 0.01 100 0 1 2 3 4 8 9 10 I , COLLECTOR CURRENT (mA)C V , INPUT VOLTAGE (V) Fig. 10 Typical Collector Current vs. Input Voltage IN T = -25 癈A 5 6 7 T = 25 癈A 0.1 V = 5VO T = 75 癈A VO Output Voltage (V) IO Output Current (mA) Fig.7 Typical VO vs. IO GI DC Current Gain IO Output Current (mA) Fig.8 Typical GI vs. IO IO Output Current (mA) VR Reverse Bias Voltage (V) Fig.9 Typical COBO vs. VR TA = 75°C TA = 25°C TA = -25°C VI Input Voltage (V) Fig.10 Typical IO vs. VI COBO Capacitance (pF) VI Input Voltage (V) IO Output Current (mA) Fig.11 Typical VI vs. IO
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 9 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Typical Curves – DCX143EU PNP Section (@ TA = +25° C, unless otherwise specified.) -IO Output Current (mA) Fig.16 Typical VI vs. IO -IO Output Current (mA) Fig.17 Typical VI(on) vs. IO -VO Output Voltage (V) -VI Input Voltage (V) -IO Output Current (mA) Fig.15 Typical VI vs. IO -IO Output Current (mA) Fig.14 Typical VO vs. IO -VI Input Voltage (V) -IO Output Current (A) -VO Output Voltage (V) Fig.12 Typical IO vs. VO GI DC Current Gain -IO Output Current (mA) Fig.13 Typical GI vs. IO -VI(on) Input Voltage (V)
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 10 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Typical Curves – DCX143EU NPN Section (@ TA = +25° C, unless otherwise specified.) VI Input Voltage (V) VI Input Voltage (V) VO Output Voltage (V) IO Output Current (mA) Fig.22 Typical VI vs. IO VO Output Voltage (V) Fig.18 Typical IO vs. VO GI DC Current Gain IO Output Current (mA) Fig.19 Typical GI vs. IO VI(on) Input Voltage (V) IO Output Current (A) IO Output Current (mA) Fig.23 Typical VI(on) vs. IO IO Output Current (mA) Fig.20 Typical VO vs. IO IO Output Current (mA) Fig.21 Typical VI vs. IO VI Input Voltage (V)
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 11 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Typical Curves – DCX114TU PNP Section (@ TA = +25° C, unless otherwise specified.) GI DC Current Gain -IO Output Current (mA) Fig.25 Typical GI vs. IO -VO Output Voltage (V) -IO Output Current (mA) Fig.24 Typical VO vs. IO -VI Input Voltage (V) Fig.27 Typical IO vs. VI -IO Output Current (mA) VR Reverse Bias Voltage (V) Fig.26 Typical COBO vs. VR COBO Capacitance (pF) -IO Output Current (mA) Fig.28 Typical VI vs. IO -VI Input Voltage (V)
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 12 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Typical Curves – DCX114TU NPN Section (@ TA = +25° C, unless otherwise specified.) GI DC Current Gain IO Output Current (mA) Fig.30 Typical GI vs. IO IO Output Current (mA) Fig.29 Typical VI vs. IO VI Input Voltage (V) VI Input Voltage (V) Fig.32 Typical IO vs. VI IO Output Current (mA) VR Reverse Bias Voltage (V) Fig.31 Typical COBO vs. VR COBO Capacitance (pF) IO Output Current (mA) Fig.33 Typical VI vs. IO VI Input Voltage (V)
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 13 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U Package Outline Dimensions Please see http://www.diodes.com/package-outlines.html for the latest version. SOT363 SOT363 Dim Min Max Typ A1 0.00 0.10 0.05 A2 0.90 1.00 0.95 b 0.10 0.30 0.25 c 0.10 0.22 0.11 D 1.80 2.20 2.15 E 2.00 2.20 2.10 E1 1.15 1.35 1.30 e 0.650 BSC F 0.40 0.45 0.425 L 0.25 0.40 0.30 a 0° 8° -- All Dimensions in mm Suggested Pad Layout Please see http://www.diodes.com/package-outlines.html for the latest version. SOT363 Dimensions Value (in mm) C 0.650 G 1.300 X 0.420 Y 0.600 Y1 2.500 e D L b E F c a Y1 G Y X C
DCX (XXXX) U Document number: DS30347 Rev. 24 - 2 14 of 14 www.diodes.com July 2024 © 2024 Copyright Diodes Incorporated. All Rights Reserved. DCX (XXXX) U IMPORTANT NOTICE 1. DIODES INCORPORATED (Diodes) AND ITS SUBSIDIARIES 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. 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