X-On Electronics has gained recognition as a prominent supplier of NB6N14SMNR2G Clock Buffer across the USA, India, Europe, Australia, and various other global locations. NB6N14SMNR2G Clock Buffer are a product manufactured by ON Semiconductor. We provide cost-effective solutions for Clock Buffer, ensuring timely deliveries around the world.

NB6N14SMNR2G ON Semiconductor

NB6N14SMNR2G electronic component of ON Semiconductor
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Part No.NB6N14SMNR2G
Manufacturer: ON Semiconductor
Category: Clock Buffer
Description: Clock Buffer HF LVDS FANOUT BUFF/ TRANS
Datasheet: NB6N14SMNR2G Datasheet (PDF)
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)
1: USD 17.8529 ea
Line Total: USD 17.85 
Availability - 4685
Ship by Tue. 10 Dec to Mon. 16 Dec
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
4685
Ship by Tue. 10 Dec to Mon. 16 Dec
MOQ : 1
Multiples : 1
1 : USD 17.8529
10 : USD 14.6185
25 : USD 13.0065
100 : USD 11.3581
250 : USD 10.9174
500 : USD 10.8797
1000 : USD 10.8407
3000 : USD 10.803

   
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We are delighted to provide the NB6N14SMNR2G from our Clock Buffer category, at competitive rates not only in the United States, Australia, and India, but also across Europe and beyond. A long established and extensive electronic component distribution network has enhanced our global reach and dependability, ensuring cost savings through prompt deliveries worldwide. Client satisfaction is at the heart of our business, where every component counts and every customer matters. Our technical service team is ready to assist you. From product selection to after-sales support, we strive to deliver a seamless and satisfying experience. Are you ready to experience the best in electronic component distribution? Contact X-ON Electronics today and discover why X-On are a preferred choice for the NB6N14SMNR2G and other electronic components in the Clock Buffer category and beyond.

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NB6N14S 3.3 V 1:4 AnyLevel Differential Input to LVDS Fanout Buffer/Translator The NB6N14S is a differential 1:4 Clock or Data Receiver and will accept AnyLevel differential input signals: LVPECL, CML or NB6N14S Q0 Q0 V GND Exposed Pad (EP) CC 16 15 14 13 Table 1. TRUTH TABLE Q1 1 12 IN IN IN EN Q Q Q1 2 11 V T 01 1 0 1 NB6N14S Q2 3 10 V 10 1 1 0 REF AC x x 0 0 (Note 1) 1 (Note 1) Q2 4 9 IN 1. On next transition of the input signal (IN). 56 7 8 Q3 Q3 V EN CC Figure 3. NB6N14S Pinout, 16pin QFN (Top View) Table 2. PIN DESCRIPTION Pin Name I/O Description 1 Q1 LVDS Output Noninverted IN output. Typically loaded with 100 receiver termination resistor across differential pair. 2 Q1 LVDS Output Inverted IN output. Typically loaded with 100 receiver termination resistor across differential pair. 3 Q2 LVDS Output Noninverted IN output. Typically loaded with 100 receiver termination resistor across differential pair. 4 Q2 LVDS Output Inverted IN output. Typically loaded with 100 receiver termination resistor across differential pair. 5 Q3 LVDS Output Noninverted IN output. Typically loaded with 100 receiver termination resistor across differential pair. 6 Q3 LVDS Output Inverted IN output. Typically loaded with 100 receiver termination resistor across differential pair. 7 V Positive Supply Voltage. CC 8 EN LVTTL / LVCMOS Input Synchronous Output Enable. When LOW, Q outputs will go LOW and Qb outputs will go HIGH on the next negative transition of IN input. The internal DFF register is clocked on the falling edge of IN input see Figure 23. The EN pin has an internal pullup resistor and defaults HIGH when left open. 9 IN LVPECL, CML, LVDS Inverted Differential Input 10 V LVPECL Output The V reference output can be used to rebias capacitorcoupled REF AC REF AC differential or singleended input signals. For the capacitor coupled IN and/or INb inputs, V should be connected to the VT pin and bypassed to REF AC ground with a 0.01 F capacitor. 11 V LVPECL Output Internal 100 Centertapped Termination Pin for IN and IN T 12 IN LVPECL, CML, LVDS Noninverted Differential Input. (Note 2) 13 GND Negative Supply Voltage. 14 V Positive Supply Voltage. CC 15 Q0 LVDS Output Noninverted IN output. Typically loaded with 100 receiver termination resistor across differential pair. 16 Q0 LVDS Output Inverted IN output. Typically loaded with 100 receiver termination resistor across differential pair. EP The Exposed Pad (EP) on the QFN16 package bottom is thermally connected to the die for improved heat transfer out of package. The exposed pad must be attached to a heatsinking conduit. The pad is not electrically connected to the die, but is recommended to be electrically and thermally connected to GND on the PC board. 2. In the differential configuration, when the input termination pin (VT) is connected to a termination voltage or left open, and if no signal is applied on IN/IN inputs, then the device will be susceptible to selfoscillation.

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
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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