Negative Battery Voltage SLIC Protection GR-1089-CORE Intra-building Solution

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1 Negative Battery Voltage SLIC Protection GR-1089-CORE Intra-building Solution Solution Products TBU-PL WH MOV-10D201K Objective The SLIC (Subscriber Line Interface Circuit) provides all the BORSCHT functions such as battery, ringing, supervision between the codec and telephone hand set. This PortNote solution protects negative battery voltage solutions against surge and power contact threats. Solution 1 TBU High-Speed Protector: TBU-PL WH 2 MOV Devices: MOV-10D201K Compliance GR-1089-CORE intra-building, issue 5, port type V rms, 25 A, 900 seconds withstand. 130 V rms maximum AC withstand. Increased surge level to 5 kv, 500 A 2/10 µs. Alternate Recommendations Other PortNote Solutions: SLIC Protection - GR-1089-CORE Intra-building Solution Negative Battery Voltage SLIC Protection - ITU-T Solution Dual Supply Voltage SLIC Protection - ITU-T Solution Benefit This solution provides a high level of protection in a small PCB area. GND V DD SLIC Tip SLIC Line 1 Line 1 SLIC TBU-PL WH MOV-10D201K RJ11 Design Kit MOV-10D201K SLIC Ring SLIC Line 2 Line 2 -V BAT V SS PN-DESIGNKIT-20 The schematic above illustrates the application protection and does not constitute the complete circuit design. Customers should verify actual device performance in their specific applications. Europe: Tel +41-(0) Fax +41-(0) Americas: Tel Fax Asia-Pacific: Tel Fax COPYRIGHT 2012 BOURNS, INC. 6/12 e/cpk1130 PortNote is a registered service mark of Bourns, Inc. Bourns and TBU are registered trademarks of Bourns, Inc. in the U.S. and other countries. Bourns PortNote solutions provide protection recommendations for typical port threats. For more information, go to: or protection@bourns.com

2 *RoHS COMPLIANT L501 C954 Features Superior circuit protection Overcurrent & overvoltage protection Blocks surges up to rated limits High-speed performance Small SMT package RoHS compliant* Agency recognition: Applications SLIC protection Cable & DSL MDU/MTU modems ONT Voice/DSL line cards TBU-PL Series - TBU High-Speed Protectors General Information The TBU-PL Series of Bourns TBU products are low capacitance dual bidirectional high-speed protection components, constructed using MOSFET semiconductor technology, and designed to protect against faults caused by short circuits, AC power cross, induction and lightning surges. In addition to overcurrent protection, an added feature is the voltage monitoring on the two lines. If the voltage on the line drops below V ss then the voltage will trigger the device to switch to the blocking state. The TBU high-speed protector placed in the system circuit will monitor the current with the MOSFET detection circuit triggering to provide an effective barrier behind which sensitive electronics will not be exposed to large voltages or currents during surge events. The TBU device is provided in a surface mount DFN package and meets industry standard requirements such as RoHS and Pb Free solder refl ow profi les. Vdd Line 1 SLIC Line 1 Line 2 SLIC Line 2 Vss TBU Device Agency Approval Industry Standards (in Conjunction with OVP Device) UL Description File Number: E Solutions available for GR-1089-CORE, ITU-T and a combination of both. Absolute Maximum Ratings (@ T A = 25 C Unless Otherwise Noted) Symbol Parameter Part Number Value Unit TBU-PL050-xxx-WH 500 V imp Peak impulse voltage withstand with duration less than 10 ms TBU-PL060-xxx-WH 600 TBU-PL075-xxx-WH 750 V TBU-PL085-xxx-WH 850 V rms Continuous A.C. RMS voltage TBU-PL050-xxx-WH TBU-PL060-xxx-WH TBU-PL075-xxx-WH TBU-PL085-xxx-WH T op Operating temperature range -55 to +125 C T stg Storage temperature range -65 to +150 C T jmax Maximum Junction Temperature +125 C ESD HBM ESD Protection per IEC on line pads ±2 kv Electrical Characteristics (@ T A = 25 C Unless Otherwise Noted) Symbol Parameter Part Number Min. Typ. Max. Unit I trigger Current required for the device to go from TBU-PLxxx-100-WH operating state to protected state TBU-PLxxx-200-WH ma R device Series resistance of the TBU device Ω R match Package resistance matching of the TBU device #1 - TBU device #2 ±0.5 ±1.0 Ω t block Time taken for the device to go into current limiting 1 µs I Q Current through the triggered TBU device with 50 Vdc circuit voltage ma I ss Operating current with V ss = -50 V 100 µa V V reset Voltage below which the triggered TBU device will transition to normal operating state *RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, TBU-PLxxx-100-WH Forward Mode Reverse Mode V Forward Mode TBU-PLxxx-200-WH Reverse Mode V to Voltage threshold offset with 60 Hz applied voltage, with V ss -50 V (V ss - V lineslic ) V V ss Operating voltage range relative to V dd V R th(j-l) One side junction to package pads - FR4 using minimum recommended pad layout 110 C/W R th(j-l) Both sides junction to package pads - FR4 using minimum recommended pad layout 65 C/W R th(j-l) One side junction to package pads - FR4 using heat sink on board (6 cm 2 ) (0.5 in. 2 ) 70 C/W R th(j-l) Both sides junction to package pads - FR4 using heat sink on board (6 cm 2 ) (0.5 in. 2 ) 40 C/W

3 TBU-PL Series - TBU High-Speed Protectors Functional Block Diagram Line 1 SLIC HIGH VOLTAGE SWITCH Line 1 CURRENT SENSE V dd + V ss VOLTAGE COMPARATOR V ss V dd V dd VOLTAGE COMPARATOR V ss + CURRENT SENSE Line 2 SLIC HIGH VOLTAGE SWITCH Line 2 Reference Application The TBU-PL Series are high-speed protectors used in voice/ VoIP SLIC applications.the maximum voltage rating of the TBU device should never be exceeded. Where necessary, an OVP device should be employed to limit the maximum voltage. A costeffective protection solution combines Bourns TBU protection devices with a pair of Bourns MOVs. For bandwidth sensitive applications, a Bourns GDT may be substituted for the MOV. If EN55024 EMC compliance is required, the TBU device may require capacitors to be fi tted between the Tip and Ring connections and ground. Basic TBU Operation The TBU device, constructed using MOSFET semiconductor technology, placed in the system circuit will monitor the current with the MOSFET detection circuit triggering to provide an effective barrier behind which sensitive electronics are not exposed to large voltages or currents during surge events. The TBU device operates in approximately 1 µs - once line current exceeds the TBU device s trigger current I trigger. When operated, the TBU device restricts line current to less than 1 ma typically. When operated, the TBU device will block all voltages including the surge up to rated limits. GND -VBAT V dd Line 1 SLIC Line 2 SLIC V ss TBU Device MOV MOV C1 C2 Line 1 Line 2 When the voltage on the SLIC output is driven below (V bat V to ) the TBU-PL series device switches to the blocking state, regardless of output current in the device. After the surge, the TBU device resets when the voltage across the TBU device falls to the V reset level. The TBU device will automatically reset on lines which have no DC bias or have DC bias below V reset (such as unpowered signal lines). If the line has a normal DC bias above V reset, the voltage across the TBU device may not fall below V reset after the surge. In such cases, special care needs to be taken to ensure that the TBU device will reset, with software monitoring as one method used to accomplish this. Bourns application engineers can provide further assistance.

4 TBU-PL Series - TBU High-Speed Protectors Bourns TBU Device Solutions Industry Standard Surge & AC Withstand TBU Device P/N Qty. OVP Device P/N Qty. Telcordia GR-1089-CORE Intra-building Port Type 4 Telcordia GR-1089-CORE Intra-building Port Type 4a Non-GR-1089-CORE Intra-building Specifi cations ITU-T Basic K.20, K.21, K.45 ITU-T Enhanced K.20, K.21, K V, 100 A 2/10 µs 120 V rms, 25 A, 900 s 1000 V, 100 A 10/1000 µs 120 V rms, 25 A, 900 s 5000 V, 500 A 2/10 µs 230 V rms, 25 A, 900 s 1500 V, 100 A 2/10 µs 275 V rms, 25 A, 900 s 4000 V, 40 Ω 10/700 µs 230 V rms 10 Ω Ω, 900 s 600 V rms 600 Ω, 0.2 s 4000 V, 40 Ω 10/700 µs 230 V rms 10 Ω Ω, 900 s 600 V rms 600 Ω, 0.1 s 6000 V, 40 Ω 10/700 µs 240 V rms 10 Ω Ω, 900 s 600 V rms 600 Ω, 0.2 s 600 V rms 600 Ω, 1 s* 1500 V rms, 200 Ω, 2 s* 6000 V, 40 Ω 10/700 µs 240 V rms 10 Ω Ω, 900 s 600 V rms 600 Ω, 1 s 1500 V rms, 200 Ω, 2 s TBU-PL WH 1 MOV-07D201K 2 TBU-PL WH 1 MOV-10D201K 2 TBU-PL WH 1 MOV-10D361K 2 TBU-PL WH 1 MOV-10D431K 2 TBU-PL WH 1 MOV-10D361K 2 TBU-PL WH 1 TISP4400M3BJ 2 TBU-PL WH 1 MOV-10D391K 2 TBU-PL WH 1 TISP4500H3BJ 2 * GDT Special Test Protector with DC breakdown (DCBD) of less than 330 V. Notes: 1) The Le9500, Le9520 and Le9530 (VE950 series) require a 200 ma I trigger TBU device for normal operation. Other SLIC types should use the 100 ma device. 2) The MOV maximum continuous rms voltage rating should not be exceeded. The exception is where the data sheet highlights withstand capability such as the 600 V rms, 1 A for 0.2 s, for example. 3) If EN55024 EMC compliance is required, the TBU device may require capacitors to be fi tted between the Tip and Ring connections and ground (i.e. in parallel with the MOV device). The capacitance value can be chosen to meet levels as follows: 10 nf for EN55024 Level 1 20 nf for EN55024 Level 2 47 nf for EN55024 Level 3 Selection of capacitor voltage rating depends upon TBU part number selection. Recommendations include: TBU-PL050 & TBU-PL060 Series: 120 VAC, 500 V Peak Surge Rated TBU-PL075 & TBU-PL085 Series: 240 VAC, 750 V Peak Surge Rated Depending upon the SLIC type, it is usually possible to remove any EMI capacitors present between the output of the SLIC and ground when using capacitors C1 and C2 in parallel with the MOVs.

5 TBU-PL Series - TBU High-Speed Protectors Performance Graphs Typical V-I Characteristics (TBU-PL WH) Typical Trigger Current vs. Temperature 1.8 CURRENT (50 ma/div) I TRIGGER V RESET VOLTAGE (5 V/div) Normalized Trigger Current Junction Temperature ( C) Tracking Voltage Characteristics Resistance ( ) Power Derating Curve V bat range of -25 V to -150 V Voltage threshold offset (V) Typical Resistance vs. Temperature Normalized Resistance Junction Temperature ( C) Typical Surge Response Total Max. Power (W) One Side, No PCB Cu One Side, 0.5 sq. in. PCB Cu Two Sides, No PCB Cu Two Sides, 0.5 sq. in. PCB Cu Voltage: 100 V/div Time: 250 ns/div Current: 100 ma/div Ambient Temperature ( C) (TBU-PL WH with MOV-07D201K Using 1800 V 1.2/50 ms Surge Pulse)

6 TBU-PL Series - TBU High-Speed Protectors Product Dimensions 0.70 (.028) 6.50 (.256) 0.85 ± 0.05 (.033 ±.002) (.053) 0.30 (.012) (.032) 0.40 (.016) (.032) 1.15 (.045) 1.20 (.047) 1.35 (.053) (.029) (.050) 0.30 (.012) (.050) 0.73 (.029) 0.85 (.033) 0.85 (.033) 4.00 (.157) 1.35 (.053) 1.20 (.047) 0.85 (.033) 0.85 (.033) 0.85 (.033) PIN 1 & BACKSIDE CHAMFER 0.85 (.033) 0.90 (.035) ( ) ( ) (.053) DIMENSIONS: 1.25 (.049) 0.75 (.030) 0.70 (.028) 0.75 (.030) MM 0.40 (INCHES) (.016) 0.75 (.030) 1.30 (.051) (.050) 0.25 C PIN 1 (.010) Recommended Pad Layout TBU High-Speed Protectors have a 100 % matte-tin termination finish. For improved thermal dissipation, the recommended layout uses PCB copper areas which extend beyond the exposed solder pad. The exposed solder pads should be defined by a solder mask which matches the pad layout of the TBU device in size and spacing. It is recommended that they should be the same dimension as the TBU pads but if smaller solder pads are used, they should be centered on the TBU package terminal pads and not more than mm ( in.) smaller in overall width or length. Solder pad areas should not be larger than the TBU pad sizes to ensure adequate clearance is maintained. The recommended stencil thickness is mm ( in.) with a stencil opening size mm ( in.) less than the solder pad size. Extended copper areas beyond the solder pad significantly improve the junction to ambient thermal resistance, resulting in operation at lower junction temperatures with a corresponding benefit of reliability. All pads should soldered to the PCB, including pads marked as NC or NU but no electrical connection should be made to these pads. For minimum parasitic capacitance, it is recommended that signal, ground or power signals are not routed beneath any pad. Thermal Resistance vs Additional PCB Cu Area Dark grey areas show added PCB copper area for better thermal resistance Thermal Resistance ( C/W) Power in One Side of TBU Device Total Power in Both Sides of TBU Device Added Cu Area (Sq. In.)

7 TBU-PL 3312 Series - 2 mm - TBU SMD High-Speed Trimming Potentiometer Protectors Reflow Profile Profile Feature Pb-Free Assembly Average Ramp-Up Rate (Tsmax to Tp) 3 C/sec. max. Preheat - Temperature Min. (Tsmin) - Temperature Max. (Tsmax) - Time (tsmin to tsmax) 150 C 200 C sec. Time maintained above: - Temperature (TL) - Time (tl) 217 C sec. Peak/Classifi cation Temperature (Tp) 260 C Time within 5 C of Actual Peak Temp. (tp) sec. Ramp-Down Rate 6 C/sec. max. Time 25 C to Peak Temperature 8 min. max. How to Order TBU Product Series PL = Dual Bidirectional Series Impulse Voltage Rating 050 = 500 V 060 = 600 V 075 = 750 V 085 = 850 V Trigger Current 100 = 100 ma 200 = 200 ma Hold to Trip Ratio Suffi x W = Hold to Trip Ratio Package Suffi x H = DFN Package TBU - PL WH Typical Part Marking MANUFACTURER S TRADEMARK PRODUCT CODE - 1ST DIGIT INDICATES PRODUCT FAMILY: L = TBU-PL SERIES - 2ND & 3RD DIGITS INDICATE IMPULSE VOLTAGE: 50 = 500 V 60 = 600 V 75 = 750 V 85 = 850 V - 4TH DIGIT INDICATES TRIGGER CURRENT: 1 = 100 ma 2 = 200 ma PIN 1 MANUFACTURING DATE CODE - 1ST DIGIT INDICATES THE YEAR S 6-MONTH PERIOD. - 2ND DIGIT INDICATES THE WEEK NUMBER IN THE 6-MONTH PERIOD. - 3RD & 4TH DIGITS INDICATE SPECIFIC LOT FOR THE WEEK. 6-MONTH PERIOD CODES: A = JAN-JUN 2009 C = JAN-JUN 2010 E = JAN-JUN 2011 B = JUL-DEC 2009 D = JUL-DEC 2010 F = JUL-DEC 2011 Device Pin Out Pad # Pin Out Pad Designation Pad # Pin Out 1 Line 1 5 Line 2 SLIC 2 V dd (SLIC Ground or 0 V) 6 V ss (SLIC Negative Supply or -V bat ) 3 Not Used 7 Not Used 4 Line 1 SLIC 8 Line 2

8 TBU-PL Series 2 mm SMD - TBU Trimming High-Speed Potentiometer Protectors Packaging Specifications B t TOP COVER TAPE D P 0 P 2 E A N F W D C K 0 B 0 G (MEASURED AT HUB) A 0 P CENTER LINES OF CAVITY D 1 EMBOSSMENT USER DIRECTION OF FEED QUANTITY: 3000 PIECES PER REEL A B C D G N Min. Max. Min. Max. Min. Max. Min. Max. Ref. Ref (12.835) (13.002) (.059) (.098) (.504) (.531) (.795) (.650) (4.016) A0 B0 D D1 E F Min. Max. Min. Max. Min. Max. Min. Max. Min. Max. Min. max (.169) (.177) (.264) (.272) (.059) (.063) (.059) (.065) (.073) (.291) (.299) K0 P P0 P2 t W Min. Max. Min. Max. Min. Max. Min. Max. Min. Max. Min. Max. 1.0 (.039) 1.2 (.047) 7.9 (.311) 8.1 (.319) 3.9 (.159) 4.1 (.161) 1.9 (.075) 2.1 (.083) 0.25 (.010) 0.35 (.014) 15.7 (.618) 16.3 (.642) DIMENSIONS: MM (INCHES) Asia-Pacific: Tel: Fax: Europe: Tel: Fax: The Americas: Tel: Fax: REV. 01/25/12 TBU is a registered trademark of Bourns, Inc. in the United States and other countries.

9 *RoHS COMPLIANT 10D201K 5 Features n High voltage rating n High current rating n Bidirectional n Surge protection n Fast response time n RoHS compliant* n Agency listing: Applications n Power supplies n Power systems n Line voltage n Telecom systems n White goods / appliances MOV-10DxxxK Series - Metal Oxide Varistor General Information The MOV-10DxxxK Series of 10 mm radial leaded varistor devices protects against overvoltage transients such as lightning, power contact and power induction. The metal oxide varistors offer a choice of varistor voltages from 18 V to 820 V and V rms voltages from 11 V to 510 V. The devices have a high current handling, high energy absorption capability and fast response times to protect against transient faults up to rated limits. Industry Standard Compliance Standard UL 1449 File Number E Standard ITU-T K.20, K.21, K.45 MOV-10D201K Will pass 600 V rms, MOV-10D361K 600 ohm, 1 A, 0.2 s, 5 MOV-10D391K cycles, every 1 minute MOV-10D431K condition. Absolute Maximum Ratings (@ T A = 25 C Unless Otherwise Noted) Parameter Symbol Min. Typ. Max. Unit Operating Temperature T OPR C Storage Temperature T STG C Rated Wattage P w 0.40 Watt Varistor Voltage Temperature Coefficient V TC % / C Response Time T r ns Varistor Voltage Tolerance V tol % Electrical Characteristics (@ T A = 25 C Unless Otherwise Noted) Bourns Part No. Max. Continuous Voltage (V) 1 ma DC (V) r.m.s. d.c. Min. Nom. Max. Max. Peak Max. Class Current Max. Cap. Current Energy (8/20 μs) (8/20 μs) (J) (pf) Class Max. One Current Clamping 8/20 μs 1 khz Time (A) Voltage (V) MOV-10D180K MOV-10D220K MOV-10D270K MOV-10D330K MOV-10D390K MOV-10D470K MOV-10D560K MOV-10D680K MOV-10D820K MOV-10D101K MOV-10D121K MOV-10D151K MOV-10D181K MOV-10D201K MOV-10D221K MOV-10D241K MOV-10D271K MOV-10D301K MOV-10D331K MOV-10D361K MOV-10D391K MOV-10D431K MOV-10D471K MOV-10D511K MOV-10D561K MOV-10D621K MOV-10D681K MOV-10D751K MOV-10D781K MOV-10D821K *RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, Specifications are subject to change without notice. Customers should verify actual device performance in their specific applications.

10 MOV-10DxxxK mm Series SMD - Trimming Metal Oxide Potentiometer Varistor Product Dimensions This is an RoHS compliant molded radial package with 100 % Sn plating on the terminations. Bourns Part Number MOV-10D180K MOV-10D220K MOV-10D270K MOV-10D330K MOV-10D390K MOV-10D470K MOV-10D560K MOV-10D680K MOV-10D820K MOV-10D101K MOV-10D121K MOV-10D151K MOV-10D181K MOV-10D201K MOV-10D221K 12.5 (.492) MAX. 10D201K 5 Dim. T (Max.) 3.8 (.150) 3.9 (.154) 4.2 (.165) 3.8 (.150) 4.0 (.157) 4.2 (.165) 4.3 (.169) 4.4 (.173) 3.8 (.150) 4.0 (.157) 4.2 (.165) 4.4 (.173) 3.6 (.142) 3.8 (.150) 3.9 (.154) 15.5 (.610) MAX. 0.8 ± 0.1 (.031 ±.004) 7.5 ± 0.8 (.295 ±.031) T 20.0 (.787) MIN. DIMENSIONS: Bourns Part Number MOV-10D241K MOV-10D271K MOV-10D301K MOV-10D331K MOV-10D361K MOV-10D391K MOV-10D431K MOV-10D471K MOV-10D511K MOV-10D561K MOV-10D621K MOV-10D681K MOV-10D751K MOV-10D781K MOV-10D821K MM (INCHES) Dim. T (Max.) 4.0 (.157) 4.2 (.165) 4.4 (.173) 4.6 (.181) 4.8 (.189) 5.0 (.197) 5.2 (.205) 5.4 (.213) 5.5 (.217) 5.9 (.232) 6.2 (.244) 6.4 (.252) 6.6 (.260) 6.8 (.268) 7.2 (.283) Typical Part Marking Bourns Part Number Bourns Part Marking MOV-10D180K 10D180K MOV-10D220K 10D220K MOV-10D270K 10D270K MOV-10D330K 10D330K MOV-10D390K 10D390K MOV-10D470K 10D470K MOV-10D560K 10D560K MOV-10D680K 10D680K MOV-10D820K 10D820K MOV-10D101K 10D101K MOV-10D121K 10D121K MOV-10D151K 10D151K MOV-10D181K 10D181K MOV-10D201K 10D201K MOV-10D221K 10D221K MOV-10D241K 10D241K MOV-10D271K 10D271K MOV-10D301K 10D301K MOV-10D331K 10D331K MOV-10D361K 10D361K MOV-10D391K 10D391K MOV-10D431K 10D431K MOV-10D471K 10D471K MOV-10D511K 10D511K MOV-10D561K 10D561K MOV-10D621K 10D621K MOV-10D681K 10D681K MOV-10D751K 10D751K MOV-10D781K 10D781K MOV-10D821K 10D821K NOTE: The 5 marking on MOV products is for traceability of production assembly for quality assurance compliance. How to Order Model Designator MOV = Metal Oxide Varistor Disc Diameter 10D = 10 mm Nominal Varistor Voltage See Electrical Characteristics Table Multiplier of Voltage Digits 0 = No multiplier 1 = nn * 10 1 Varistor Voltage Tolerance K = 10 % Packaging Blank = Bulk TR = Tape & Reel Examples: MOV-10D270K = 27 V, Bulk Pack MOV-10D331KTR = 330 V, Tape & Reel MOV - 10D nn (n) K (TR) Specifications are subject to change without notice. Customers should verify actual device performance in their specific applications.

11 3312 MOV-10DxxxK - 2 mm SMD Series Trimming - Metal Oxide Potentiometer Varistor Performance Graphs Maximum Clamping Voltage (V) K 781K 751K 681K 621K 561K 511K 471K 431K 391K 361K 331K 301K 271K 241K 221K 201K 181K 151K 121K 101K 820K 680K 560K 470K 390K 330K 270K 220K 180K Current (A) Internal Construction Specifications are subject to change without notice. Customers should verify actual device performance in their specific applications.

12 CDDFN5-0504N MOV-10DxxxK Series - TVS/Steering - Metal Oxide Diode Varistor Array Packaging Information TAPE & REEL Item Symbol 10 mm Disc P2 P Reel Outside Diameter RD 355 (13.98) Δh Reel Inner Diameter RD1 30 (1.181) Tape Width RW 55 (2.16) Reel Width RW1 63 max. (2.48) max H1 Pitch of Component P 25.4 ± 0.7 (1.00 ± 0.03) W2 Feed Hole Pitch P ± 1.0 (0.50 ± 0.04) H 8.95 ± 0.7 Feed Hole Center to Pitch P1 (0.352 ± 0.03) Feed Hole Center to Component 12.7 ± 1.0 P2 W0 W Center (0.50 ± 0.04) Lead to Lead Distance F 7.50 ± 0.8 (0.30 ± 0.03) 2.0 W1 Component Alignment Dh D0 P1 (0.079) L F 18.0 ± 0.5 P0 Tape Width W t (0.71 ± 0.02) Hole Down Tape Width W ± 0.8 (0.47 ± 0.03) Hole Position W1 9.0 ± 0.5 (0.35 ± 0.02) Hole Down Tape Position W2 3.0 max. (0.12) max. Height From Center to 19.0 ± 1.0 H Component Base (0.75 ± 0.04) RD1 Seating Plane Height H ± 1.0 (0.63 ± 0.04) RD Component Height H max. (1.42) max Crimp Length C 2.60 typ. (0.10) max Feed Hole Diameter D0 4.0 ± 0.2 (0.16 ± 0.08) Total Tape Thickness t 0.6 ± 0.3 (0.02 ± 0.01) 1.0 RW Length of Clippped Height L max. (0.04) max MM DIMENSIONS: RW1 Quantity per Reel (INCHES) (10D180K 10D391K) Quantity per Reel (10D431K 10D821K) BULK (9.84) (6.69) QUANTITY = 1000 PCS. PER BOX REV. 10/12 Specifications are subject to change without notice. Customers should verify actual device performance in their specific applications (2.36) Asia-Pacific: Tel: Fax: Europe: Tel: Fax: The Americas: Tel: Fax:

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