onsemi MC10E111FNG

Clock Buffer, Driver, Fanout, 9 Outputs, 4.2 V to 5.7 V, 28 Pins, PLCC
$ 5.591
Production

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IHS

Datasheet9 páginas9 anos atrás

onsemi

SHENGYU ELECTRONICS

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Peças alternativas

Price @ 1000
$ 5.591
$ 5.58
$ 5.58
Stock
224,962
140,742
140,742
Authorized Distributors
4
2
2
Case/Package
PLCC
LCC
LCC
Number of Pins
28
28
28
Number of Circuits
1
1
1
Logic Function
-
-
-
Max Frequency
800 MHz
800 MHz
800 MHz
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

Cadeia de suprimentos

Country of OriginPhilippines
Harmonized Tariff Schedule (HTS) Code8542.39.00.60
Introduction Date1994-12-01
Lifecycle StatusProduction (Last Updated: 6 years ago)
Manufacturer Lifecycle StatusLIFETIME (Last Updated: 6 years ago)

Peças relacionadas

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Low Skew Clock Driver, 100E Series, 8 True Output(s), 0 Inverted Output(s), ECL, PQCC28

Descrições

Descrições de onsemi MC10E111FNG fornecidas pelos seus distribuidores.

Clock Buffer, Driver, Fanout, 9 Outputs, 4.2 V to 5.7 V, 28 Pins, PLCC
5.0 V ECL 1:9 Differential Clock Driver
Low Skew Clock Driver, 10E Series, 9 True Output(s), 0 Inverted Output(s), ECL, PQCC28
Amplifiers- Audio 5V ECL 1:9 Diff Clock Driver
The MC10E/100E111 is a low skew 1-to-9 differential driver designed with clock distribution in mind. It accepts one signal input which can be either differential or else single-ended if the VBB output is used. The signal is fanned out to 9 identical differential outputs. An enable input is also provided. A HIGH disables the device by forcing all Q outputs LOW and all Qbar outputs HIGH. The device is specifically designed modeled and produced with low skew as the key goal. Optimal design and layout serve to minimize gate to gate skew within-device and empirical modeling is used to determine process control limits that ensure consistent tpd distributions from lot to lot. The net result is a dependable guaranteed low skew device. 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 only one side is being used. In most applications all nine differential pairs will be used and therefore terminated. In the case where fewer than nine pairs are used it is necessary to terminate at least the output pairs on the same package side (i.e. sharing the same VCCO ) as the pair(s) being used on that side in order to maintain minimum skew. Failure to do this will result in small degradations of propagation delay (on the order of 10-20 ps) of the output(s) being used which while not being catastrophic to most designs will mean a loss of skew margin. 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. The 100 Series contains temperature

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