SR70 RailClamp Low Capacitance TVS Diode Array
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- Christina Crawford
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1 Description RailClamps are surge rated diode arrays designed to protect high speed data interfaces. The has been specifically designed to protect sensitive components which are connected to data and transmission lines from over-voltages caused by ESD (electrostatic discharge), EFT (electrical fast transients), and lightning. The has been optimized for use on ADSL and other high-speed interfaces. The unique design of the integrates four surge rated, low capacitance steering diodes in a low profile SOT-3 package. It has a typical capacitance of only 5pF and may be used to protect two high-speed lines without sacrificing signal integrity. The is designed to replace standard rectifiers that are not rated for the high energy surges that are normally expected in telecommunications applications. During transient conditions, the steering diodes direct the transient to either the positive side of the power supply line or to ground. The maximum clamping voltage seen by the protected circuit will be one diode drop (V F ) above the supply (reference) voltage. The may be used as a stand alone device or in conjunction with TVS diodes for enhanced protection. RailClamp Low Capacitance TVS Diode Array Features Transient protection for high speed data lines to IEC 6--2 (ESD) ±5kV (air), ±8kV (contact) IEC 6-- (EFT) A (5/5ns) IEC 6--5 (Lightning) kv, 2A (8/2µs) Array of surge rated, low capacitance diodes Protects two I/O lines Low capacitance (5pF typical) for high-speed interfaces Low clamping voltage Solid-state silicon-avalanche technology Mechanical Characteristics JEDEC SOT-3 package UL 97B listed Molding compound flammability rating: UL 9V- Marking : R7 Packaging : Tape and Reel per EIA 8 Applications ADSL Lines I 2 C Bus Protection Video Line Protection T/E secondary IC Side Protection Portable Electronics Microcontroller Input Protection WAN/LAN Equipment ISDN S/T Interface Circuit Diagram Schematic & PIN Configuration Pin Pin 2 Pin Pin SOT-3 (Top View) Revision /8/3
2 Absolute Maximum Rating Rating Symbol Value Units Peak Pulse Current (t = 8/2µs) I p P Rectifier Repetitive Peak Reverse Voltage V RM P R 2 A 7 V ESD per IEC 6--2 (Air) ESD per IEC 6--2 (Contact) V ESD 5 8 kv Lead Soldering Temperature T L 26 ( sec. ) C Operating Temperature T J -55 to +25 C Storage Temperature T STG 55 to +5 - C Electrical Characteristics (T=25 o C) Parameter Symbol Conditions Minimum Typical Maximum Units Peak Reverse Reverse Stand-Off Voltage Breakdown Voltage V RRM 7 V B I t = 5µA 85 V V R Reverse Leakage Current I R V RWM = 7V, T=25 C 5 µ A Forward Forward Forward Clamping Voltage Clamping Voltage Clamping Voltage V FC V FC V FC I PP I PP I PP = A, t = 8/2µ s. 5 V p = A, t = 8/2µ s 3. 3 V p = 2A, t = 8/2µ s 7 V p Junction Capacitance C j Between I/O pins and Ground = V, f = MHz V R Between I/O pins = V, f = MHz V R 5 pf 3 pf 23 Semtech Corp. 2
3 Typical Characteristics Non-Repetitive Peak Pulse Power vs. Pulse Time Power Derating Curve Peak Pulse Power - PPk (kw)... Pulse Duration - tp (µs) % of Rated Power or IPP Ambient Temperature - T A ( o C) Pulse Waveform Capacitance vs. Reverse Voltage Percent of I PP Waveform Parameters: 9 tr = 8µs 8 td = 2µs 7 e -t 6 5 td = I PP/ Time (µs) % Change in Capacitance I/O to GND f = MHz Reverse Voltage - V R (V) Forward Voltage vs. Forward Current 9 Forward Voltage - V F (V) Waveform Parameters: tr = 8µs td = 2µs Forward Current - I F (A) 23 Semtech Corp. 3
4 Applications Information Device Connection Options for Protection of Two High-Speed Data Lines The is designed to protect two data lines from transient over-voltages by clamping them to a fixed reference. When the voltage on the protected line exceeds the reference voltage (plus diode V F ) the steering diodes are forward biased, conducting the transient current away from the sensitive circuitry. Data lines are connected at pins 2 and 3. The negative reference (REF) is connected at pin. This pin should be connected directly to a ground plane on the board for best results. The path length is kept as short as possible to minimize parasitic inductance. The positive reference (REF2) is connected at pin. The options for connecting the positive reference are as follows:. To protect data lines and the power line, connect pins 2 and 3 directly to the positive supply rail (V CC ). In this configuration the data lines are referenced to the supply voltage. An external TVS diode may be added between the supply rail and ground in order to prevent over-voltage on the supply rail. 2. In applications where no positive supply reference is available, or complete supply isolation is desired, an external TVS diode may be used as the reference. The steering diodes will begin to conduct when the voltage on the protected line exceeds the working voltage of the TVS (plus one diode drop). Pin Configuration Data Line and Power Supply Protection Using Vcc as reference Semtech Corp.
5 Outline Drawing Notes: () Controlling dimension: Inch (unless otherwise specified). (2) Dimension A and B do not include mold protrusions. Mold protrusions are.6 max. Land Pattern 23 Semtech Corp. 5
6 Marking Codes Part Number Marking Code R7 R7 Marking (Top View) Ordering Information Part Number Qty per Reel Reel Size.TC 3, 7 Inch.TG, 3 Inch Contact Information Semtech Corporation Protection Products Division 2 Flynn Rd., Camarillo, CA 932 Phone: (85)98-2 FAX (85) Semtech Corp. 6
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