TBU P500-G and P850-G Protectors

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1 *RoS OMPLIT eatures ormerly brand xtremely high speed performance locks high voltages and currents Two TU protectors in one small package Simple, superior circuit protection Minimal P area RoS compliant*, UL Recognized pplications POTS linecards VolP equipment Voice and data combo linecards OU, OT Gateways able and SL modems TU and Protectors Transient locking Units - TU evices ourns Model and TU products are high speed, surge protection components designed to protect Subscriber Line Interface ircuits (SLIs) against transients caused by power cross, induction and lightning surges. The TU device blocks surges and provides an effective barrier behind which sensitive electronics are not exposed to large voltages or currents during surge events. gency pproval UL recognized component ile # Industry Standards escription Model Telcordia GR-089 Port Type, 4 Port Type, 5 ITU-T.0,.0,.,.,.45 bsolute Maximum Ratings (T amb = 5 ) Symbol Parameter Value Unit V imp Maximum protection voltage for impulse faults with rise time µsec xxx-w xxx-w V V rms Maximum protection voltage for continuous V rms faults xxx-w xxx-w V T op Operating temperature range -40 to +85 T stg Storage temperature range -65 to +50 lectrical haracteristics (T amb = 5 ) Symbol Parameter Min. Typ. Max. Unit I op Maximum current through the device that will not cause current blocking 0-W 00-W 0-W 00-W m I trigger Typical current for the device to go from normal operating state to protected state 0-W 00-W 0-W 00-W m I out Maximum current through the device 0-W 00-W 0-W 00-W m R TU Series resistance of the TU device Ω R bal Line-to line series resistance difference between two TU devices Ω t block I quiescent V reset Maximum time for the device to go from normal operating state to protected state urrent through the triggered TU device with 50 Vdc circuit voltage Voltage below which the triggered TU device will transition to normal operating state µs 0.7 m V The P-G series TU devices are bidirectional; specifications are valid in both directions. *RoS irective 00/95/ an 7 00 including nnex.

2 TU and Protectors Typical Performance haracteristics V-I haracteristics Time to lock vs. ault urrent +I 0. -V reset I trigger -I trigger V reset +V Time to lock (sec) ault urrent () Trigger urrent Temperature 40 0 % of Trigger urrent Temperature ( )

3 TU and Protectors Operational haracteristics The graphs below demonstrate the operational characteristics of the TU device. or each graph the fault voltage, protected side voltage, and current is presented. V V Tip TST OIGURTIO IGRM Pxxx-G Ring quipment Lightning, 500 V Lightning, 850 V 00 V/div. 400 m/div. 00 m/div. µs/div. h V h V h urrent µs/div. h V h V h urrent Power ault, 0 Vrms, 5 Power ault, 0 Vrms, 5 00 V/div. 00 m/div. 00 V/div. 00 m/div. 4 ms/div. h V h V h urrent 4 ms/div. h V h V h urrent

4 TU and Protectors Product imensions xxx xxx PI PI TOP VIW SI VIW OTTOM VIW G 4 L L TOP VIW SI VIW OTTOM VIW Pads and are internally connected; the same for pads with, 4 with 4, and 6 with 6. This allows for one P layout to accommodate the P500 or P850. Recommended Pad Layout xxx.5 (.048) xxx.5 (.048).75 (.050) 0.75 (.05) 0.85 (.0) 0.75 (.05) 0.0 (.0) 0.75 (.00).5 (.049).5 (.045) 0.75 (.00).5 (.045) M 6 G M Pad esignation Pad # pply Tip In Tip Out 4 Ring Out 5 6 Ring In = Solder to P; do not make electrical connection, do not connect to ground. Pad esignation Pad # pply Pad # pply Tip In 4 Ring Out Tip In 4 Ring Out 5 Tip Out 6 Ring In Tip Out 6 Ring In = Solder to P; do not make electrical connection, do not connect to ground. im. Min. Typ. Max. Min. Typ. Max (.9) (.57) (.6) (.9) (.57) (.6) (.) (.6) (.40) (.) (.5) (.9) (.0) (.0) (.05) (.0) (.0) (.05) (.000) (.00) (.00) (.000) (.00) (.00) (.045) (.049) (.05) (.045) (.049) (.05) (.04) (.045) (.049) (.04) (.045) (.049) G (.09) (.0) (.06) (.04) (.047) (.05) (.04) (.047) (.05) (.05) (.07) (.09) (.05) (.07) (.09) (.08) (.00) (.0) (.00) (.0) (.04) L (.08) (.00) (.0) M (.08) (.00) (.0) (.08) (.00) (.0) (.05) (.07) (.08) (.05) (.07) (.08) IMSIOS: lock iagram xxx xxx 6 4 6&6 TU devices have matte-tin termination finish. Suggested layout should use non-solder mask define (SM). Recommended stencil thickness is mm ( in.) with stencil opening size 0.05 mm (.000 in.) less than the device pad size. s when heat sinking any power device, it is recommended that, wherever possible, extra P copper area is allowed. or minimum parasitic capacitance, do not allow any signal, ground or power signals beneath any of the pads of the device. & MM (IS) 4&4 &

5 TU and Protectors Thermal Resistances Part # Symbol Parameter Value Unit R th(j-a) unction to leads (package) /W unction to leads (per TU device) 6 /W R th(j-a) unction to leads (package) 9 /W unction to leads (per TU device) 5 /W Reflow Profile Profile eature Pb-ree ssembly verage Ramp-Up Rate (Tsmax to Tp) /sec. max. Preheat - Temperature Min. (Tsmin) - Temperature Max. (Tsmax) - Time (tsmin to tsmax) sec. Time maintained above: - Temperature (TL) - Time (tl) sec. Peak/lassification Temperature (Tp) 60 Time within 5 of ctual Peak Temp. (tp) 0-40 sec. Ramp-own Rate 6 /sec. max. Time 5 to Peak Temperature 8 min. max.

6 - mm SM Trimming Potentiometer TU and Protectors ow to Order P G 0 - W orm actor P = Two TU protectors in one device Impulse Voltage Rating 500 = 500 V 850 = 850 V irectional Indication for Paired evices G = idirectional Iop Indicator 0 = 00 m 00 = 00 m Packaging Indicator lank = Packaged in tape and reel (000 pieces per reel) X = Packaged in tubes Typical Part Marking PI MUTURR S TRMR* *TRSITIO ROM ULT TRMR TO OURS TRMR I 009. MRIG UMR 50G = 0-W 50G = 00-W 85G = 0-W 85G = 00-W MUTURIG T O Packaging Specifications (per I468-) t TOP OVR TP P 0 P W 0 0 G (MSUR T U) 0 P TR LIS O VITY MOSSMT USR IRTIO O evice, evice evice G Min. Max. Min. Max. Min. Max. Min. Max. Ref. Ref (.85) (.00) (.098) (.504) (.5) (.795) (.650) (4.06) 0 0 Min. Max. Min. Max. Min. Max. Min. Max. Min. Max. Min. max. 4. (.65) 4. (.65) 4.4 (.7) 4.4 (.7) 6. (.44) 8.45 (.) 6.4 (.5) 8.65 (.4) (.06).6 (.06) (.065).65 (.065).85 (.07).85 (.07) 5.4 (.) 7.4 (.9) 5.6 (.0) 7.6 (.99) 0 P P0 P t W Min. Max. Min. Max. Min. Max. Min. Max. Min. Max. Min. Max..0 (.09). (.04). (.047). (.05) 7.9 (.) 7.9 (.) 8. (.9) 8. (.9).9 (.59).9 (.59) 4. (.6) 4. (.6).9 (.075).9 (.075). (.08). (.08) 0.5 (.00) 0.5 (.00) 0.5 (.04) 0.5 (.04).7 (.46) 5.7 (.68). (.484) 6. (.64) IMSIOS: MM (IS)

7 TU - mm and SM Trimming Protectors Potentiometer Reference esigns cost-effective protection solution combines the ourns TU protection device with a pair of MOVs or ourns GTs and a diode bridge. The diagram below illustrates a common configuration of these components. The graphs to the right demonstrate the operational characteristics of the circuit. V V MOVs or GTs Pxxx-G -V R quipment ommon onfiguration iagram onfiguration (GR-089 Intra-building and 5 kv Lightning) Product Qty. Part umber Source TU evice xxx-w ourns, Inc. MOV iode bridge R-00 GR00 GS004S-V MM004S R entra Science eramate Technical Vishay iodes Inc. 00 V/div. 400 m/div. 500 ns/div. h V h V h urrent Solution: 5000 V Lightning /0 µsec, 500 onfiguration (ITU-T.0,.,.0,.,.45) Product Qty. Part umber Source TU evice 0-W ourns, Inc. MOV iode bridge R-06 GR06 GS004S-V MM004S R entra Science eramate Technical Vishay iodes Inc. 00 V/div. 400 m/div. sia-pacific: Tel: ax: urope: Tel: ax: The mericas: Tel: ax: ns/div. h V h V h urrent Solution: 4000 V Lightning 0/700 µsec, 00 RV. /08 OPYRIGT 008, OURS, I. LITO I U.S.. e /08 U080

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