AOZ Ultra Low Capacitance One-line Bi-directional TVS Diode. Features. General Description. Applications. Signal Line

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Transcription:

Ultra Low Capacitance One-line Bi-directional TVS Diode General Description The is an ultra low capacitance one-line bi-directional transient voltage suppressor diode designed to protect high speed data lines and voltage sensitive electronics from high transient conditions and SD. This device incorporates one TVS diode in an ultra-small DFN 1.0 x 0.6 package. It may be used to meet the SD immunity requirements of IC 61000-4-2, Level 4. The comes in an RoHS compliant DFN package and is rated over a -40 C to +85 C ambient temperature range. The ultra-small 1.0 x 0.6 x 0.4mm DFN package makes it ideal for applications where PCB space is a premium. The small size and high SD protection makes it ideal for protecting voltage sensitive electronics from high transient conditions and SD. Features SD protection for high-speed data lines: xceeds: IC 61000-4-2 (SD) ±20kV (air), ±20kV (contact) Human Body Model (HBM) ±15kV Small package saves board space Ultra low capacitance: 0.22pF Low clamping voltage Operating voltage: 5V Pb-free device pplications Portable handheld devices Notebook computers Digital Cameras Portable GPS Typical pplication Pin Configuration Signal Line 1 2 Bidirection Protection of Single Line Rev. 1.0 November 2014 www.aosmd.com Page 1 of 7

Ordering Information Part Number mbient Temperature Range Package nvironmental OZ8831DT-05-40 C to +85 C DFN 1.0 x 0.6 Green Product OS Green Products use reduced levels of Halogens, and are also RoHS compliant. Please visit www.aosmd.com/media/osgreenpolicy.pdf for additional information. bsolute Maximum Ratings xceeding the bsolute Maximum ratings may damage the device. Parameter Rating VP VN 5.5V Peak Pulse Current (I PP ), t P = 8/20µs Peak Pulse Power (IC61000-4-5 8/20µs current pulse) Storage Temperature (T S ) SD Rating per IC61000-4-2, Contact (1) SD Rating per IC61000-4-2, ir (1) SD Rating per Human Body Model (2) 6 90W -65 C to +150 C ±20kV ±20kV ±15kV Notes: 1. IC 61000-4-2 discharge with C Discharge = 150pF, R Discharge = 330Ω. 2. Human Body Discharge per MIL-STD-883, Method 3015 C Discharge = 100pF, R Discharge = 1.5kΩ. Maximum Operating Ratings Parameter Rating Junction Temperature (T J ) -40 C to +125 C Rev. 1.0 November 2014 www.aosmd.com Page 2 of 7

lectrical Characteristics T = 25 C unless otherwise specified. Symbol Parameter Diagram I PP Maximum Reverse Peak Pulse Current (3) (IC61000-4-5 8/20µs pulse) V CL Clamping Voltage @ I (3) PP I PP I V RWM I R V BR C J Working Peak Reverse Voltage Maximum Reverse Leakage Current Breakdown Voltage Capacitance @ V R = 0 and f = 1MHz V CL V BR V RWM V I R V RWM V BR V CL IT I PP Device Device Marking V RWM (V) Notes: 3. These specifications are guaranteed by design and characterization. V BR (V) V CL C J (pf) I R (µ) Min. I PP = 1 I PP = 4 I PP = 6 Typ. OZ8831DT-05 5 5.5 6 10 0.1 4 9.5 15 0.22 0.35 Rev. 1.0 November 2014 www.aosmd.com Page 3 of 7

Performance Characteristics 16 Clamping Voltage vs. Peak Pulse Current (IC 61000-4-5 8/20µs current pulse) 1.0 Typical Variations of CIN vs. VR (f = 1MHz, T = 25ºC) Clamping Voltage, VCL (V) 14 12 10 8 6 4 Normalized Capacitance 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 2 0 1 2 3 4 5 6 Peak Pulse Current, IPP () 0 0 1.0 2.0 3.0 4.0 5.0 Input Voltage (V) Rev. 1.0 November 2014 www.aosmd.com Page 4 of 7

Package Dimensions, DFN 1.0 x 0.6 Pin #1 ID 0.125x45 D e O ddd M CB 1 Seating Plane C 2 x b 2 x L O ddd M CB SID VIW BOTTOM VIW RCOMMNDD LND PTTRN Dimensions in millimeters Dimensions in inches 0.30 0.55 Symbols Min. 0.31 Nom. 0.38 Symbols Min. 0.012 Nom. 0.015 0.016 1 0.00 0.02 0.05 1 0.000 0.001 0.002 b 0.45 0.50 0.55 b 0.018 0.020 0.022 D 0.55 0.60 0.65 D 0.022 0.024 0.026 0.70 1.00 e 0.95 1.00 0.65 BSC 1.05 e 0.037 0.039 0.041 0.026 BSC L 0.20 0.25 0.30 L 0.008 0.010 0.012 0.125x45 ccc ddd 0.03 0.10 ccc ddd 0.001 0.004 0.30 UNIT: mm Notes: 1. ll dimensions are in millimeters, angles are in degrees. 2. Coplanarity applies to the exposed heat sink slug as well as the terminals. Rev. 1.0 November 2014 www.aosmd.com Page 5 of 7

Tape and Reel Dimensions, DFN 1.0 x 0.6 Carrier Tape T D1 P1 P2 1 2 UNIT: mm Option Package K0 B DFN 1.0x0.6/ DFN 1.0x0.6 (8 mm) DFN 1.0x0.6/ DFN 1.0x0.6 (8 mm) B0 0 0.69 0.65 ±0.04 B0 1.19 1.05 ±0.04 K0 0.66 0.61 ±0.04 0 D0 D1 1.50 1.50 D0 8.00 +0.3/-0.1 8.00 +0.3/-0.1 1 1.75 1.75 P0 2 3.50 3.50 P0 P1 4.00 4.00 P2 T 0.23 ±0.02 0.20 Reel W1 G S V M N K R H UNIT: mm W Tape Size 8mm Reel Size ø178 M ø178 ±0.5 N ø55 ±1 W 8.4 +1.5/-0 W1 14.4 H ø13.0 ±0.5 K 10.1 S 2.0 ±0.5 G N/ R N/ V N/ Leader / Trailer & Orientation TVS Unit Per Reel: 10000pcs Trailer Tape 300mm Min. Components Tape Orientation in Pocket Leader Tape 500mm Min. MOS Unit Per Reel: 10000pcs Trailer Tape 300mm Min. Components Tape Orientation in Pocket Leader Tape 500mm Min. Rev. 1.0 November 2014 www.aosmd.com Page 6 of 7

Part Marking 5 Product Number Code Date Code LGL DISCLIMR lpha and Omega Semiconductor makes no representations or warranties with respect to the accuracy or completeness of the information provided herein and takes no liabilities for the consequences of use of such information or any product described herein. lpha and Omega Semiconductor reserves the right to make changes to such information at any time without further notice. This document does not constitute the grant of any intellectual property rights or representation of non-infringement of any third party s intellectual property rights. LIF SUPPORT POLICY LPH ND OMG SMICONDUCTOR PRODUCTS R NOT UTHORIZD FOR US S CRITICL COMPONNTS IN LIF SUPPORT DVICS OR SYSTMS. s used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user. 2. critical component in any component of a life support, device, or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. Rev. 1.0 November 2014 www.aosmd.com Page 7 of 7