onsemi MC10EP16VADG

MC10EP16VA Series 5.5 V 3 GHz ECL Differential Receiver/Driver with High Gain
$ 2.32
Obsolete
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Fiches techniques et documents

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Datasheet12 pagesIl y a 9 ans

onsemi

SHENGYU ELECTRONICS

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Pièces de rechange

Ce composant
Pièces de rechange
Price @ 1000
$ 2.32
$ 1.901
Stock
131,618
267,372
Authorized Distributors
3
2
Case/Package
SOP
SOP
Number of Pins
8
8
Logic Function
Receiver
Receiver
Interface
-
-
Number of Drivers
-
-
Number of Receivers
1
1
Data Rate
-
-
Min Supply Voltage
3 V
3 V
Max Supply Voltage
5.5 V
5.5 V

Chaîne d'approvisionnement

Country of OriginPhilippines
Export Control Classification Number (ECCN) CodeEAR99
Harmonized Tariff Schedule (HTS) Code8542.39.00.60
Introduction Date2001-02-01
Lifecycle StatusObsolete (Last Updated: 4 months ago)
LTB Date2017-01-22
LTD Date2017-07-22

Pièces détachées

3.3V / 5V ECL Differential Receiver/Driver with High Gain and Enable Output | IC RCVR/DRVR ECL DIFF 5V 8SOIC
MC10EP16 Series 5.5 V 4 GHz SMT ECL Differential Receiver/Driver - SOIC-8
Differential Driver / Receiver with Internal Termination
Texas InstrumentsSN74LS2323D
ROHS3Compliant Receiver Obsolete 74LS interface driver 0C~70C 4.5V~5.5V
IC RECEIVER 3.3V ECL DIFF 8SOIC
Texas InstrumentsSN74LS2323DR
EAR99 74LS2323 Tape & Reel (TR) GENERAL PURPOSE interface transceiver 5V 24mA 72.603129mg 35ns

Descriptions

Descriptions de onsemi MC10EP16VADG fournies par ses distributeurs.

MC10EP16VA Series 5.5 V 3 GHz ECL Differential Receiver/Driver with High Gain
Single Transmitter/Receiver 8-Pin SOIC N Tube
Line Transceiver, 1 Func, 1 Driver, 1 Rcvr, ECL, PDSO8
DIFFERENTIAL RCVR/DRIV, ECL, NSOIC-8;
IC RCVR/DRVR HV ECL DIFF 8SOIC
The EP16VA is a world-class differential receiver/driver. The device is functionally equivalent to the EP16 and LVEP16 devices but with high gain output. QHG and QHGbar outputs have a DC gain several times larger than the DC gain of an EP16. The VBB pin an internally generated voltage supply is available to this device only. For single-ended input conditions the unused differential input is connected to VBB as a switching reference voltage. VBB may also rebias AC coupled inputs. When used decouple VBB and VCC via a 0.01 F capacitor and limit current sourcing or sinking to 0.5 mA. When not used VBB should be left open. Under open input conditions (pulled to VEE) internal input clamps will force the QHG output LOW. Special considerations are required for differential inputs under No Signal conditions to prevent instability. The 100 Series contains temperature compensation.

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  • ON Semiconductor / Fairchild
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  • ON SEMICONDUCTOR CORP
  • onsemi / Fairchild
  • MOT/ON SEMI
  • Fairchild/ONSemiconductor
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  • ON Semi - ON Semiconductor
  • ON SEMICONDUCT
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  • ON Semiconductor Inc.
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