ZEN056V130A24LS Product Details

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1 TE onnectivity My art My Part Lists Sign In/Register English (hange) Have a Question? hat with a Product Information Specialist What can we help you find? Products Industries Resources bout TE My ccount Innovation Support enter ZENV13LS Product etails PolyZen evices Share Print Quick Links ZENV13LS TE Internal Number: RF19- ctive lways EU RoHS/ELV ompliant (Statement of ompliance) Product Highlights: PolyZen Product lassification = Hybrid evices Family Name = LS Vz - Minimal =. V Vz - Typical =. V View all Features Pricing & vailability Search for Tooling Product Feature Selector ontact Us bout This Product dd to My Part List Request Sample Find Similar Products uy Product ocumentation & dditional Information Product rawings: None vailable Related Products: Tooling atalog Pages/ata Sheets: P TLOG 11-POLYZEN (PF, English) Product Specifications: ZENV13LS (PF, English) pplication Specifications: None vailable Instruction Sheets: None vailable Files: None vailable List all ocuments Product Features (Please use the Product rawing for all design activity) Product Type Features: Product Type = PolyZen Product lassification = Hybrid evices Family Name = LS Product ategory = ircuit Protection evices - Passive Electrical haracteristics: Vz - Minimal (V) =. Vz - Typical (V) =. Vz - Maximum (V) =.7 Izt () =.1 () = 1.3 RTyp (Ω) =.1 R1MX (Ω) =.1 VINT MX (V) = VINT MX Test urrent () = 3 IFLT MX () = +/- IFLT MX Test Voltage (V) = +/-1V Termination Features: onstruction = Surface Mount ody Features: Type = Polymer Enhanced Zener iode Microassembly Industry Standards: RoHS/ELV ompliance = RoHS compliant, ELV compliant Lead Free Solder Processes = Reflow solder capable to, Reflow solder capable to RoHS/ELV ompliance History = lways was RoHS compliant Other: rand = Raychem orporate Information bout TE Investors Quick Links istributor Inventory Product ross Reference ustomer Support or hat With Us Find a Phone Number

2 PolyZen evices Polymer Protected Zener iode PolyZen devices are polymer enhanced precision Zener diode micro-assemblies that help protect sensitive electronics from damage caused by inductive voltage spikes, voltage transients, use of incorrect power supplies and reverse bias. PolyZen evices The PolyZen micro-assembly incorporates a stable Zener diode for precise voltage clamping and a resistively non-linear, polymeric positive temperature coefficient (PPT) layer that responds to either diode heating or overcurrent events by transitioning from a low to high resistance state. PolyZen devices help provide resettable protection against damage caused by multi-watt fault events and require only.7w power dissipation. In the event of sustained high power conditions, the PPT element of the device trips to limit current and generate voltage drop. This functionality helps protect both the Zener and the follow-on electronics, effectively increasing the diode s power handling capacity. enefits Helps shield downstream electronics from overvoltage and reverse bias Trip events shut out overvoltage and reverse bias sources nalog nature of trip events minimize upstream inductive spikes Helps reduce design costs with single component placement and minimal heat sinking requirements Features RoHS compliant Overvoltage transient suppression Hold currents up to.3 Time delayed, overvoltage trip Time delayed, reverse bias trip Power handling on the order of 3 watts Integrated device construction pplications Portable media players Global positioning systems Hard disk drives V & 1V bus Solid State rives (SS) V bus ellphone charger port and US power utomotive peripheral input power power port protection Industrial handheld POS 31

3 Figure PZ1 Typical pplication lock iagram for PolyZen evices Power Supply (External or internal) Protected Electronics + V IN 1 PolyZen evice GN 3 Regulated Output R LO Protected downstream electronics Table PZ1 Electrical haracteristics for PolyZen evices (Performance unless otherwise specified) Part Number V Z (V) Min. Typ. Max. ZENV13LS V 3 +/- +/-1V ZEN9V13LS V 3 +/- +/-1V ZENV13LS V 3 +/- +/-1V ZEN9V13LS V 3 +3./- +/-1V ZEN13V13LS V 3 +/- +/-1V ZEN1V13LS V 3 +1./- +/-1V ZENV31LS V +/- +1/-1V ZENV31LS V +3./- +1/-1V ZEN9V31LS V +3./- +1/-1V ZEN13V31LS V +/- +/-1V ZENV7LS V 3 +/- +/-1V ZEN13V7LS V 3 +/- +/-1V ZENV11LS V 3 +/- +/-1V ZENV13GS* V 3 +/- +/-1V * Module height is 1.mm. Module height of all other part numbers is.mm. Typical operating current is which meets US suspend mode requirement. I Zt () I () R Typ (Ω) R 1MX (Ω) V INT MX Test urrent (V) () V INT MX I FLT MX () I FLT MX Test Voltage (V) Table PZ efinitions of Terms for PolyZen evices V Z I Zt I HOL R Typ R 1MX I FLT I FLT MX Zener clamping voltage measured at current I Zt and. Test current at which V Z is measured. Maximum steady state current I PT that will not generate a trip event at the specified temperature. Ratings assume I FLT =. Typical resistance between V IN and pins when the device is at room temperature. The maximum resistance between V IN and pins, at room temperature, one hour after first trip or after reflow soldering. urrent flowing through the Zener diode. Maximum RMS fault current the Zener diode component of the device can withstand and remain resettable; testing is conducted at rated voltage with no load connected to. V INT MX The voltage (V IN - post trip ) at which typical qualification devices (9% devices, 9% confidence) survived at least trip cycles and hours trip endurance when tripped at the specified voltage and current (I PT ). I PT I OUT Trip Event urrent flowing through the PT portion of the circuit. urrent flowing out the pin of the device. condition where the PT transitions to a high resistance state, thereby limiting I PT, and significantly increasing the voltage drop between V IN and. V IN V IN Polymer PT Zener iode IPT IFLT GN GN IOUT 3 RoHS ompliant, ELV ompliant

4 Figure PZ-PZ9 Typical Performance urves for PolyZen evices Figure PZ Peak (V) F E Peak vs I FLT = ) I FLT RMS () = ZENV1yyLS/GS = ZEN9V13LS = ZENV13LS = ZEN9V13LS E = ZEN13V13LS F = ZEN1V13LS Figure PZ3 Time-to-Trip (Sec) 1.1 F Time-to-Trip vs I FLT = ) E I FLT RMS () = ZENV1yyLS/GS = ZEN9V13LS = ZENV13LS = ZEN9V13LS E = ZEN13V13LS F = ZEN1V13LS PolyZen evices Figure PZ Peak (V) Peak vs I FLT = ) I FLT RMS () = ZENV31LS = ZENV31LS = ZEN9V31LS = ZEN13V31LS Figure PZ Time-to-Trip (Sec) 1.1 Time-to-Trip vs I FLT = ) I FLT RMS () = ZENV31LS = ZENV31LS = ZEN9V31LS = ZEN13V31LS Figure PZ Peak (V) Peak vs I FLT = ) I FLT RMS () = ZENxxxV1yyLS/GS = ZENxxxV31LS = ZENxxxV7LS Figure PZ7 Time-to-Trip (Sec) Time-to-Trip vs I FLT = ) = ZENxxxV1yyLS/GS = ZENxxxV31LS = ZENxxxV7LS I FLT RMS () Figure PZ Temperature Effect on I HOL (I FLT = ) Figure PZ9 Time-to-Trip vs I PT RMS (I FLT = ) IHOL () mbienttemperature ( ) = ZENxxxV13LS/GS = ZENxxxV31LS = ZENxxxV7LS = ZENxxxV11LS Time-to-Trip (Sec) I PT RMS () = ZENxxxV1yyLS/GS = ZENxxxV31LS = ZENxxxV7LS RoHS ompliant, ELV ompliant 33

5 Table PZ3 General haracteristics for PolyZen evices Operating temperature range - to + Storage temperature - to + ES withstand 1kV Human body model iode capacitance pf 1MHz, 1V RMS onstruction RoHS compliant Figure PZ-PZ3 asic Operation Examples for PolyZen evices Figure PZ Voltage (V) and urrent () apacitive urrent Spike urrent Pulled to GN via diode Hot-Plug Response ZENV13LS vs a V/1W Universal Power Supply Supply Voltage dropped by current Supply Voltage returns to normal PPT switches to high resistance Peak Time (Sec) Output Voltage remains clamped = V IN = = URRENT (I FLT ) = POWER Power (Watts) Figure PZ11 Voltage (V) or urrent () Typical Fault Response: ZENV1xxLS V, 3. urrent Limited Source (I OUT =) = VIN (V) 1 = VOUT (V) 1 = IFLT () Figure PZ1 Voltage (V) or urrent () Typical Fault Response: ZEN9V13LS V / urrent Limited Source (I OUT =) = VIN (V) = VOUT (V) = IFLT ()....1 Figure PZ13 Voltage (V) or urrent () Typical Fault Response: ZENV13LS V,. urrent Limited Source (I OUT =) = VIN (V) = VOUT (V) = IFLT () Figure PZ1 Voltage (V) or urrent () Typical Fault Response: ZEN9V13LS V, 3. urrent Limited Source (I OUT =) = VIN (V) 1 = VOUT (V) = IFLT () RoHS ompliant, ELV ompliant

6 Figure PZ1-PZ3 asic Operation Examples for PolyZen evices Figure PZ1 Voltage (V) or urrent () 3 1 = VIN (V) = VOUT (V) = IFLT () Typical Fault Response: ZEN13V13LS V,. urrent Limited Source (I OUT =) Figure PZ1 Voltage (V) or urrent () 3 1 = VIN (V) = VOUT (V) = IFLT () Typical Fault Response: ZEN1V13LS V, 1. urrent Limited Source (I OUT =) ont d PolyZen evices Figure PZ17 Voltage (V) or urrent () 1 = VIN (V) = VOUT (V) = IFLT () Typical Fault Response: ZENV31LS 1V,. urrent Limited Source (I OUT =) Figure PZ1 Voltage (V) or urrent () 1 = VIN (V) = VOUT (V) = IFLT () Typical Fault Response: ZENV31LS 1V, 3. urrent Limited Source (I OUT =) Figure PZ19 Voltage (V) or urrent () Typical Fault Response: ZEN9V31LS 1V, 3. urrent Limited Source (I OUT =) = VIN (V) = VOUT (V) = IFLT ()...1. Figure PZ Voltage (V) or urrent () Typical Fault Response: ZEN13V31LS V,. urrent Limited Source (I OUT =) 1 = VIN (V) = VOUT (V) 1 = IFLT () Figure PZ1 Voltage (V) or urrent () 3 = VIN (V) = VOUT (V) = IFLT () Typical Fault Response: ZENV7LS V,. urrent Limited Source (I OUT =) Figure PZ Voltage (V) or urrent () Typical Fault Response: ZEN13V7LS V,. urrent Limited Source (I OUT =) = VIN (V) = VOUT (V) = IFLT () RoHS ompliant, ELV ompliant 3

7 Figure PZ1-PZ3 asic Operation Examples for PolyZen evices ont d Figure PZ3 Voltage (V) or urrent () Typical Fault Response: ZENV13GS V, 1. urrent Limited Source (I OUT =) = VIN (V) = VOUT (V) = IFLT () Table PZ Packaging and Marking Information for PolyZen evices Part Number ag Quantity Tape & Reel Quantity Standard Package ZENxxxVyyyzzLS - 3, 1, ZENxxxVyyyzzGS -,, Table PZ imensions for PolyZen evices in Millimeters (Inches) ZENxxxVyyyzzLS evices mm inch (.1) (.13) (.1) (.13) (.) (.1) ZENxxxVyyyzzGS evices L W H mm inch (.1) (.13) (.1) (.13) (.) (.9) L W H 3 RoHS ompliant, ELV ompliant

8 Table PZ Pad Layout and onfiguration Information for PolyZen evices Pin Number Pin Name Pin Function 1 V IN V IN = Protected input to Zener diode GN GN = Ground 3 = Zener regulated voltage output PolyZen evices Pin onfiguration (Top View) Pad imensions V IN 1 GN 3.1mm (.7 ).33mm (.13 ).9mm (.37 ).9mm (.37 ).mm (. ).mm (.113 ).mm (. ) Solder Reflow and Rework Recommendation for PolyZen evices lassification Reflow Profiles Profile Feature Pb-Free ssembly verage ramp up rate (Ts MX to Tp) 3 /second max. Preheat Temperature min. (Ts MIN ) 1 Temperature max. (Ts MX ) Time (ts MIN to ts MX ) -1 seconds Time maintained above: Temperature (T L ) 17 Time (t L ) -1 seconds Peak/lassification temperature (Tp) Time within of actual peak temperature Time (tp) - seconds Ramp down rate /second max. Time to peak temperature minutes max. Note: ll temperatures refer to topside of the package, measured on the package body surface. Figure PZ Tp Ramp up tp ritical Zone T L to Tp T L Ts MX t L Temperature Ts MIN ts Preheat Ramp down Reflow Profile t to Peak Time RoHS ompliant, ELV ompliant 37

9 Tape and Reel Specifications for PolyZen evices (in Millimeters) Figure PZ EI Referenced Taped omponent imensions for PolyZen evices (in Millimeters) escription ZENxxxVyyyzzLS evices ZENxxxVyyyzzGS evices K ±.. ±. Note 3. Note 1 ø1. Min ø / -.. R 1.7 ±. R.3 Max. ±. Note 3 1. ±.3 K. Notes: 1. sprocket hole pitch cumulative tolerance ±.. amber in compliance with EI 1 3. Pocket position relative to sprocket hole measured as true position of pocket, not pocket hole Figure PZ Reel imensions for PolyZen evices (in Millimeters) Matte Finish These rea escription imension (mm) Lock Feature ( places) Max 33 N Min W 1. W 11.1 ø. Min Max N Min ø Ref. +/. etail See etail W 1 (measured at hub) W (measured at hub) Part Numbering System for PolyZen evices ZEN V 13 LS & GS Special Labeling LS = Module Height of.mm GS = Module Height of 1.mm V INT Max Rating ( = V) PPT Hold urrent Group (13 = 1.3) Zener Voltage Group ( =.V) PolyZen Series 3 RoHS ompliant, ELV ompliant

10 Part Marking System for PolyZen evices tnnn 13 ZENxxxVyyyzzLS evices Zener iode Voltage Rating nnn = (.V) nnn = 9 (.9V) nnn = (.V) nnn = 9 (9.V) nnn = 13 (13.V) nnn = 1 (1.V) atch Number tnnn 137 ZENxxxVyyyzzGS evices Zener iode Voltage Rating nnn = (.V) atch Number PolyZen evices Warning : ll information, including illustrations, is believed to be accurate and reliable. Users, however, should independently evaluate the suitability of and test each product selected for their application. Tyco Electronics orporation and/or its ffiliates in the TE onnectivity Ltd. family of companies ( TE ) makes no warranties as to the accuracy or completeness of the information, and disclaims any liability regarding its use.te s only obligations are those in the TE Standard Terms and onditions of Sale for this product, and in no case will TE be liable for any incidental, indirect, or consequential damages arising from the sale, resale, use, or misuse of the product. Specifications are subject to change without notice. In addition, TE reserves the right to make changes to materials or processing that do not affect compliance with any applicable specification without notification to uyer. RoHS ompliant, ELV ompliant 39

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