onsemi MC100EL39DWG

Low Skew Clock Driver, 100EL Series, 4 True Output(s), 0 Inverted Output(s), ECL, PDSO20
$ 4.028
Obsolete
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Datasheet7 SeitenVor 17 Jahren

SHENGYU ELECTRONICS

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Alternative Teile

Price @ 1000
$ 4.028
$ 4.028
$ 4.028
Stock
91,662
71,149
71,149
Authorized Distributors
2
2
2
Case/Package
SOP
SOP
SOP
Number of Pins
20
-
-
Number of Circuits
1
1
1
Logic Function
Clock
-
-
Max Frequency
1 GHz
1 GHz
1 GHz
Quiescent Current
-
-
-
Min Supply Voltage
4.2 V
4.2 V
4.2 V
Max Supply Voltage
5.7 V
5.7 V
5.7 V

Lieferkette

Country of OriginPhilippines
Harmonized Tariff Schedule (HTS) Code8542.39.00.60
Introduction Date1996-03-01
Lifecycle StatusObsolete (Last Updated: 4 months ago)
LTB Date2007-12-31
LTD Date2008-06-30

Verwandte Teile

Low Skew Clock Driver, 100EL Series, 4 True Output(s), 0 Inverted Output(s), ECL, PDSO20
Low Skew Clock Driver, 100LVEL Series, 4 True Output(s), 0 Inverted Output(s), ECL, PDSO20
MC100EL34 Series 1.1 GHz 5.7 V SMT ECL ÷2, ÷4, ÷8 Clock Generation Chip -SOIC-16
MicrochipSY100S834LZG
Clock Generator, 3 Outputs, 2.97 V to 3.63 V, 16 Pins, SOIC
MicrochipSY100EL34LZG
Low Skew Clock Driver, 100EL Series, 3 True Output(s), 0 Inverted Output(s), ECL, PDSO16
IC CLK GEN /2/4/8 3.3/5V 16-SOIC / Clock Divider Buffer 3-OUT 1-IN 1:3 16-Pin SOIC T/R

Beschreibungen

Beschreibungen von onsemi MC100EL39DWG, die von den Distributoren bereitgestellt werden.

Low Skew Clock Driver, 100EL Series, 4 True Output(s), 0 Inverted Output(s), ECL, PDSO20
DUAL Obsolete GULL WING Surface Mount Clock Generator IC 2005 -40C~85C 0.05ns 2.65mm
Clock Generator 20-Pin SOIC W Rail
Amplifiers- Audio 5V ECL Clock Generator
IC CLOCK GEN ECL 2/4 4/6 20SOIC
5V ECL 2/4, 4/6 Clock Generation Chip
The MC100EL39 is a low skew divide by 2/4 divide by 4/6 clock generation chip designed explicitly for low skew clock generation applications. The internal dividers are synchronous to each other therefore the common output edges are all precisely aligned. The VBB pin an internally generated voltage supply is available to this device only. For single-ended input conditions the unused differentia 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. The common enable (ENbar) is synchronous so that the internal dividers will only be enabled/disabled when the internal clock is already in the LOW state. This avoids any chance of generating a runt clock pulse on the internal clock when the device is enabled/disabled as can happen with an asynchronous control. An internal runt pulse could lead to losing synchronization between the internal divider stages. The internal enable flip-flop is clocked on the falling edge of the input clock therefore all associated specification limits are referenced to the negative edge of the clock input. Upon startup the internal flip-flops will attain a random state; therefore for systems which utilize multiple EL39s the master reset (MR) input must be asserted to ensure synchronization. For systems which only use one EL39 the MR pin need not be exercised as the internal divider design ensures synchronization between the divide by 2/4 and the divide by 4/6 outputs of a single device.

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