Product Information

MC100LVE310FNR2G

MC100LVE310FNR2G electronic component of ON Semiconductor

Datasheet
Clock Drivers & Distribution 3.3V ECL 2:8 Diff Fanout Buffer

Manufacturer: ON Semiconductor
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)

48: USD 9.0593 ea
Line Total: USD 434.85

0 - Global Stock
MOQ: 48  Multiples: 48
Pack Size: 48
Availability Price Quantity
0 - WHS 1


Ships to you between Thu. 23 May to Wed. 29 May

MOQ : 500
Multiples : 500

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MC100LVE310FNR2G
ON Semiconductor

500 : USD 5.9606
1000 : USD 5.9606
1500 : USD 5.9606

0 - WHS 2


Ships to you between Thu. 23 May to Wed. 29 May

MOQ : 48
Multiples : 48

Stock Image

MC100LVE310FNR2G
ON Semiconductor

48 : USD 9.0593

0 - WHS 3


Ships to you between Thu. 23 May to Wed. 29 May

MOQ : 500
Multiples : 500

Stock Image

MC100LVE310FNR2G
ON Semiconductor

500 : USD 8.036

     
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RoHS - XON
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Supply Voltage - Max
Supply Voltage - Min
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MC100LVE310 3.3 VECL 2:8 Differential Fanout Buffer Description The MC100LVE310 is a low voltage, low skew 2:8 differential ECL fanout buffer designed with clock distribution in mind. The device www.onsemi.com features fully differential clock paths to minimize both device and system skew. The LVE310 offers two selectable clock inputs to allow for redundant or test clocks to be incorporated into the system clock trees. To ensure that the tight skew specification is met it is necessary that both sides of the differential output are terminated into 50 , even if PLCC28 only one side is being used. In most applications all eight differential FN SUFFIX CASE 776 pairs will be used and therefore terminated. In the case where fewer than eight pairs are used it is necessary to terminate at least the output pairs adjacent to the output pair being used in order to maintain MARKING DIAGRAM* minimum skew. Failure to follow this guideline will result in small degradations of propagation delay (on the order of 1020 ps) of the 1 outputs being used, while not catastrophic to most designs this will result in an increase in skew. Note that the package corners isolate MC100LVE310G outputs from one another such that the guideline expressed above AWLYYWW holds only for outputs on the same side of the package. The MC100LVE310, as with most ECL devices, can be operated from a positive V supply in LVPECL mode. This allows the CC LVE310 to be used for high performance clock distribution in +3.3 V A = Assembly Location systems. Designers can take advantage of the LVE310s performance WL = Wafer Lot to distribute low skew clocks across the backplane or the board. In YY = Year aPECL environment series or Thevenin line terminations are WW = Work Week typically used as they require no additional power supplies, if parallel G = Pb-Free Package termination is desired a terminating voltage of V 2.0 V will need CC *For additional marking information, refer to to be provided. For more information on using PECL, designers Application Note AND8002/D. should refer to Application Note AN1406/D. The V pin, an internally generated voltage supply, is available to BB this device only. For single-ended input conditions, the unused ORDERING INFORMATION differential input is connected to V as a switching reference voltage. BB V may also rebias AC coupled inputs. When used, decouple V BB BB Device Package Shipping and V via a 0.01 F capacitor and limit current sourcing or sinking CC MC100LVE310FNG PLCC28 37 Units / Tube to 0.5 mA. When not used, V should be left open. BB (Pb-Free) Features MC100LVE310FNR2G PLCC28 500 Tape & Reel (Pb-Free) 200 ps Part-to-Part Skew For information on tape and reel specifications, in- 50 ps Output-to-Output Skew cluding part orientation and tape sizes, please refer PECL Mode Operating Range: to our Tape and Reel Packaging Specifications Brochure, BRD8011/D. V = 3.0 V to 3.8 V with V = 0 V CC EE NECL Mode Operating Range: V = 0 V with V = 3.0 V to 3.8 V CC EE Q Output will Default LOW with All Inputs Open or at V EE The 100 Series Contains Temperature Compensation These Devices are Pb-Free, Halogen Free and are RoHS Compliant Semiconductor Components Industries, LLC, 2016 1 Publication Order Number: July, 2016 Rev. 6 MC100LVE310/DMC100LVE310 Q0 Q0 Q1 V Q1 Q2 Q2 CCO Q0 Q0 25 24 23 22 21 20 19 Q1 V 26 18 Q3 EE Q1 Q3 CLK SEL 27 17 Q2 Q4 Q2 CLKa 28 16 CLKa Q3 Pinout: 28-Lead PLCC V 15 V CC 1 CLKa CCO Q3 (Top View) CLKb CLKa 2 14 Q4 Q4 CLKb Q4 3 13 Q5 V BB Q5 CLK SEL CLKb 4 12 Q5 Q5 5 6 789 10 11 Q6 Q6 CLKb NC Q7 V Q7 Q6 Q6 CCO Q7 Warning: All V , V , and V pins must be externally CC CCO EE connected to Power Supply to guarantee proper operation. Q7 Figure 1. Logic Diagram and Pinout Assignment V BB Figure 2. Logic Symbol Table 1. PIN DESCRIPTION PIN FUNCTION Table 2. TRUTH TABLE CLKa, CLKa ,CLKb CLKb ECL Differential Input Clocks CLK SEL Input Clock Q0:7, Q0:7 ECL Differential Outputs CLK SEL ECL Input Clock Select L CLKa Selected V Reference Voltage Output H CLKb Selected BB V , V Positive Supply CC CCO V Negative Supply EE NC No Connect Table 3. ATTRIBUTES Characteristics Value Internal Input Pulldown Resistor YES Internal Input Pullup Resistor N/A ESD Protection Human Body Model > 2 kV Machine Model > 200 V Moisture Sensitivity, Indefinite Time Out of Drypack (Note 1) Pb-Free Pkg PLCC28 Level 3 Flammability Rating Oxygen Index: 28 to 34 UL 94 V0 0.125 in Transistor Count 212 Devices Meets or exceeds JEDEC Spec EIA/JESD78 IC Latchup Test 1. For additional information, see Application Note AND8003/D. www.onsemi.com 2

Tariff Desc

8542.39.23 No ..Linear/analogue and peripheral integrated circuits, timers, voltage regulators, A/D and D/A converters, telecommunication and modem integrated circuits, other than board level products Free

Electronic integrated circuits- Processors and controllers, whether or not combined with memories, converters, logic circuits, amplifiers, clock and timing circuits, or other circuits
Aptina / ON Semiconductor
FAIRCHILD
FAIRCHILD (ON SEMICONDUCTOR)
Fairchild Semiconductor
FS8
FSC
ON
ON SEMI
ON Semicon
ON SEMICONDUCTOR
ON SEMICONDUCTOR (FAIRCHILD)
ON Semiconductor / Fairchild
ON4
ON5
onsemi
ON-SEMI
onsemi / Fairchild
OOF
Xsens / Fairchild

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