Product Information

SY100EL16VKG

SY100EL16VKG electronic component of Microchip

Datasheet
Buffers & Line Drivers 5V/3.3V Differential Receiver (I Temp, Green)

Manufacturer: Microchip
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)

5: USD 1.8669 ea
Line Total: USD 9.3345

26 - Global Stock
Ships to you between
Fri. 05 Apr to Thu. 11 Apr
MOQ: 5  Multiples: 1
Pack Size: 1
Availability Price Quantity
26 - Global Stock


Ships to you between Fri. 05 Apr to Thu. 11 Apr

MOQ : 1
Multiples : 1

Stock Image

SY100EL16VKG
Microchip

1 : USD 1.8669
25 : USD 1.8669
100 : USD 1.8669

244 - Global Stock


Ships to you between Thu. 11 Apr to Mon. 15 Apr

MOQ : 1
Multiples : 1

Stock Image

SY100EL16VKG
Microchip

1 : USD 3.151
25 : USD 2.7025
100 : USD 2.461

26 - Global Stock


Ships to you between Fri. 05 Apr to Thu. 11 Apr

MOQ : 5
Multiples : 1

Stock Image

SY100EL16VKG
Microchip

5 : USD 1.8669

     
Manufacturer
Product Category
RoHS - XON
Icon ROHS
Number of Input Lines
Number of Output Lines
Polarity
Supply Voltage - Max
Supply Voltage - Min
Operating Supply Current
Minimum Operating Temperature
Maximum Operating Temperature
Mounting Style
Package / Case
Packaging
Output Type
Series
Supply Current
Brand
Propagation Delay Time
Factory Pack Quantity :
Cnhts
Hts Code
Mxhts
Product Type
Subcategory
Taric
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SY100EL16V 5V/3.3V ECL Differential Receiver Features General Description 3.3V and 5V Power Supply Options The SY100EL16V is a differential receiver. With fast output transition times, the SY100EL16V is ideally 250 ps Propagation Delay (Typical) suited for interfacing with high-frequency sources. High Bandwidth Output Transitions The SY100EL16V provides a VBB output for either Internal 75 k Input Pull-Down Resistors single-ended use or as a DC bias for AC coupling to the Available in 8-pin (3 mm x 3 mm) MSOP and device. The VBB pin should be used only as a bias for SOIC Packages the SY100EL16V as its current sink/source capability is limited. Whenever used, the VBB pin should be bypassed to ground via a 0.01 F capacitor. Under open input conditions (pulled to VEE), internal . input clamps will force the Q output low Package Type SY100EL16V 8-Pin MSOP (K) 8-Pin SOIC (Z) NC 1 VCC 8 D 2 7 Q /D 3 6 /Q 4 VEE 5 VBB 2018-2020 Microchip Technology Inc. DS20006115B-page 1SY100EL16V 1.0 ELECTRICAL CHARACTERISTICS Absolute Maximum Ratings PECL Power Supply Voltage (V ) (Note 1).............................................................................................................. +8V CC NECL Power Supply Voltage (V ) ( Note 2) .............................................................................................................. 8V EE PECL Mode Input Voltage (V ) (Note 3) ................................................................................................................... +6V IN NECL Mode Input Voltage (V ) ( Note 4) ................................................................................................................... 6V IN Continuous Output Current (I ).......................................................................................................................... 50 mA OUT Surge Output Current (I ) ................................................................................................................................ 100 mA OUT ESD Rating ( Note 5)................................................................................................................................................ >2 kV Notice: Stresses above those listed under Absolute Maximum ratings may cause permanent damage to the device. Exposure to maximum rating conditions for extended periods may affect device reliability. Note 1: V = 0V EE = 0V 2: V CC = 0V, V V 3: V EE IN CC 4: V = 0V, V V CC IN EE 5: Mil Std. 883 Human Body Model, all pins PECL DC ELECTRICAL CHARACTERISTICS Electrical Specifications PECL: V = 3.0V to 5.5V V = 0V T = 40C to +85C, unless otherwise stated CC EE A (Note 1) Parameter Symbol Min. Typ. Max. Units Conditions 18 22 T = 40C to +25C A Power Supply Current I mA EE = +85C 21 26 T A V 1.085 V 1.005 V 0.88 T = 40C Output High Voltage CC CC CC A V V OH ( Note 2) 1.025 V 0.955 V 0.88 T = 0C to +85C V CC CC CC A V 1.830 V 1.695 V 1.555 T = 40C Output Low Voltage CC CC CC A V V OL (Note 2) 1.810 V 1.705 V 1.620 T = 0C to +85C V CC CC CC A Input High Voltage V V 1.165 V 0.880 V IH CC CC (Single-Ended) Input Low Voltage V V 1.810 V 1.475 V IL CC CC (Single-Ended) Output Reference V V 1.38 V 1.26 V BB CC CC oltage V 2.0 V 0.4 T = 40C Common Mode Range CC A V V IHCMR ( Note 3) 0.4 T = 0C to +85C 1.9 V CC A 150 A Input High Current I IH 0.5 A V = V Input Low Current I IL IN IL(MIN) Note 1: Devices are designed to meet the DC specifications shown in the above table after thermal equilibration has been established. The circuit is in a test socket or mounted on a printed circuit board and transverse airflow greater than 500 lfpm is maintained. 2: Outputs are terminated through a 50 resistor to V 2.0V. CC 3: The CMR range is referenced to the most positive side of the differential input voltage. Normal operation is obtained if the high level falls within the specified range and the peak-to-peak voltage lies between 150 mV and 1V. DS20006115B-page 2 2018-2020 Microchip Technology Inc.

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

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