PLCDA03C-6 - PLCDA15C-6
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- John Martin
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1 5 WATT MULTI-LINE LOW CAPACITANCE TVS ARRAY Description The PLCDAxxC-6 Series are low capacitance multi-line transient voltage suppressor arrays that provides board level protection for standard TTL and CMOS bus line applications against the damaging effects of ESD, tertiary lightning and switching transients. The PLCDAxxC-6 Series has a peak pulse power rating of 5 Watts for an 8/2µs waveshape. This device series meets the IEC , IEC and IEC requirements. SO-8 package Features Compatible with IEC (ESD): Air - 15kV, Contact - 8kV Compatible with IEC (EFT): 4A - 5/5ns Compatible with IEC (Surge): 24A, 8/2µs - Level 2(Line- Gnd) & Level 3(Line-Line) 5 Watts Peak Pulse Power per Line (tp = 8/2µs) Bidirectional Configuration Available in Multiple Voltages Ranging from 3V to 15V Protects Up to Six Lines Low Capacitance: 8pF RoHS Compliant REACH Compliant applications Computer Interface Protection Ethernet - 1/1/1 Base T Bluetooth & RF Mechanical characteristics Molded JEDEC SO-8 Package Approximate Weight: 7 milligrams Lead-Free Pure-Tin Plating (Annealed) Solder Reflow Temperature: Pure-Tin - Sn, 1: C 12mm Tape and Reel Per EIA Standard 481 Flammability Rating UL 94V- PIN CONFIGURATION I/O I/O I/O GND I/O I/O I/O GND 512.R9 9/12 Page 1
2 typical device characteristics MAXIMUM 25 C Unless Otherwise Specified PARAMETER SYMBOL VALUE UNITS Operating Temperature T L -55 to 15 C Storage Temperature T STG -55 to 15 C Peak Pulse Power (tp = 8/2µs) - See Figure 1 P PP 5 Watts PART NUMBER DEVICE MARKING ELECTRICAL CHARACTERISTICS PER 25 C Unless Otherwise Specified RATED STAND-OFF VOLTAGE minimum breakdown voltage MAXIMUM CLAMPING VOLTAGE (Fig. 2) MAXIMUM LEAKAGE CURRENT MAXIMUM CAPACITANCE (Note 1) V WM V (BR) P = 1A V C VOLTS PLCDA3C-6 PRS PLCDA5C-6 PRT PLCDA8C-6 PRW PLCDA12C-6 PRV PLCDA15C-6 PRU Notes 1. Capacitance between I/O pins and ground (pins 4 and 5) is typically 8pF. Capacitance between I/O pins is typically WM I D 1MHz C pf 1, figure 1 peak pulse power vs pulse time P PP - Peak Pulse Power - Watts 1, 1 5W, 8/2µs Waveform , 1, t d - Pulse Duration - µs 512.R9 9/12 Page 2
3 typical device characteristics I PP - Peak Pulse Current - % of I PP t f figure 2 pulse wave form Peak Value I PP e -t t d = t/(i PP /2) TEST WAVEFORM PARAMETERS t f = 8µs t d = 2µs t - Time - µs % Of Rated Power figure 3 power derating curve Peak Pulse Power 8/2µs Average Power T A - Ambient Temperature - C 16 figure 4 typcial clamping voltage vs peak pulse current for plcda5c-6 V C - Clamping Voltage - Volts I PP - Peak Pulse Current - Amps 512.R9 9/12 Page 3
4 typical device characteristics 4 figure 5 overshoot & clamping voltage for PLCDA5C-6 5 Volts per Division ESD Test Pulse - 25 kilovolt, 1/3ns (Waveshape) 5 figure 6 insertion loss - plcda5c-6 5 figure 7 return loss - plcda5c-6 1 db per Division db per Division MHz per Division -5 1 MHz per Division 512.R9 9/12 Page 4
5 SPICE MODEL figure 1 spice model I/O ABD LCRD LCRD ABD Lg.6nH ABD - Avalanche Breakdown Diode (TVS) LCRD: Low Capacitance Rectifier Diode Lg - Lead Inductance table 1 - spice parameters parameter unit abd(tvs) LCRD BV V See Table 2 2 IBV µa 1.1 C jo pf See Table 2 5 I S A See Table 2 1E-13 Vj V.6.6 M N R S Ohms See Table 2.31 TT s 1E-8 1E-9 EG ev table 2 - abd specific spice parameters PART NUMBER b v (volts) c jo (pf) i s (amps) rs(ohms) PLCDA E PLCDA E PLCDA E R9 9/12 Page 5
6 application information Line 6 Line 5 Line 4 Line 3 Line 2 Line figure 1 - BIDIRECTIONAL COMMON-MODE PROTECTION for a transceiver Circuit connectivity is as follows: Line 1 connected to Pin 1. Line 2 connected to Pin 2. Line 3 connected to Pin 3. Line 4 connected to Pin 8. Line 5 connected to Pin 7. Line 6 connected to Pin 6. Pins 4 and 5 connected to ground. circuit board recommendations Circuit board layout is critical for electromagnetic compatibility protection. The following guidelines are recommended: The protection device should be placed near the input terminals or connectors, the device will divert the transient current immediately before it can be coupled into the nearby traces. The path length between the TVS device and the protected line should be minimized. All conductive loops including power and ground loops should be minimized. The transient current return path to ground should be kept as short as possible to reduce parasitic inductance. Ground planes should be used whenever possible. For multilayer PCBs, use ground vias. 512.R9 9/12 Page 6
7 SO-8 package information outline dimensions -A- dim millimeters inches min max min max A B C B- P +.1 (.25mm) M B 4 PL M D F G 1.27 BSC.5 BSC J G D C R x 45-1 K P R T- K +.1 (.25mm) M T B S A S 8 PL J F NOTES 1. -T- = Seating plane and datum surface. 2. Dimensions A and B are datum. 3. Dimensions A and B do not include mold protrusion. 4. Maximum mold protrusion is.15 (.38mm) per side. 5. Dimensioning and tolerances per ANSI Y14.5M, Dimensions are exclusive of mold flash and metal burrs. dim pad layout dimensions millimeters inches min max min max A B A B C D C D E NOTES 1. Controlling dimension: inches. E 512.R9 9/12 Page 7
8 TAPE AND REEL P 1 Pitches Cumulative Tolerance on tape ±.2 t D P2 E F W K B A P User Direction of Feed Reel Dia. Tape Width specifications A B K D E F W P P2 P tmax 178mm (7 ) 12mm 6.5 ± ±.1 2. ± ± ± ± ±.3 4. ± ±.1 4. ±.1.25 Notes 1. Dimensions are in millimeters. 2. Surface mount product is taped and reeled in accordance with EIA Suffix - T7 = 7 Reel - 1, pieces per 12mm tape. 4. Suffix - T13 = 13 Reel - 2,5 pieces per 12mm tape. 5. Bulk product shipped in tubes of 98 pieces per tube. 6. Marking on Part - marking code (see page 2), date code, logo and pin one defined by dot on top of package. Package outline, pad layout and tape specifications per document number 69.R3 9/1. base PART NUMBER (xx = Voltage) ORDERING INFORMATION LEADFREE SUFFIX TAPE SUFFIX QTY/REEL REEL SIZE TUBE qty PLCDAxxC-6 -LF -T7 1, 7 98 PLCDAxxC-6 -LF -T13 2, This device is only available in a Lead-Free configuration. 512.R9 9/12 Page 8
9 company information COMPANY PROFILE In business more than 2 years, ProTek Devices is a privately-held company located in Tempe, Arizona, that offers a product line of transient voltage suppressors (TVS); avalanche breakdown diodes; steering diode TVS arrays and other surge suppressor component products. These TVS devices protect electronic systems from the effects of lightning, electrostatic discharge (ESD), nuclear electromagnetic pulses (NEMP), inductive switching and EMI / RFI. ProTek Devices also offers high performance interface and linear products that include analog switches; multiplexers; LED drivers; audio control ICs; RF and related high frequency products. The analog devices work in a host of consumer; industrial; automotive and other applications. CONTACT US Corporate Headquarters 2929 South Fair Lane Tempe, Arizona USA By Telephone General: Sales: & Marketing: Customer Service: Product Technical Support: By Fax General: By Sales: sales@protekdevices.com Customer Service: service@protekdevices.com Technical Support: support@protekdevices.com ProTek Devices (Asia Pacific) Pte. Ltd. 8 Ubi Road 2, #6-19 Zervex Singapore Tel: Fax: Web COPYRIGHT ProTek Devices 27 - This literature is subject to all applicable copyright laws and is not for resale in any manner. SPECIFICATIONS: ProTek reserves the right to change the electrical and or mechanical characteristics described herein without notice. DESIGN CHANGES: ProTek reserves the right to discontinue product lines without notice and that the final judgement concerning selection and specifications is the buyer s and that in furnishing engineering and technical assistance. ProTek assumes no responsibility with respect to the selection or specifications of such products. ProTek makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does ProTek assume any liability arising out of the application or use of any product or circuit and specifically disclaims any and all liability without limitation special, consequential or incidental damages. LIFE SUPPORT POLICY: ProTek Devices products are not authorized for use in life support systems without written consent from the factory. 512.R9 9/12 Page 9
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