onsemi MC10EP139DT

Low Skew Clock Driver, 10E Series, 4 True Output(s), 0 Inverted Output(s), ECL, PDSO20
$ 5.198
Obsolete
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Fiches techniques et documents

Téléchargez les fiches techniques et la documentation du fabricant pour onsemi MC10EP139DT.

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Datasheet14 pagesIl y a 14 ans
Datasheet14 pagesIl y a 17 ans

SHENGYU ELECTRONICS

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Pièces de rechange

Price @ 1000
$ 5.198
$ 11.1
$ 11.1
Stock
201,312
97,993
97,993
Authorized Distributors
2
6
6
Case/Package
TSSOP
TSSOP
TSSOP
Number of Pins
20
20
20
Number of Circuits
1
1
1
Logic Function
-
Clock
Clock
Max Frequency
1 GHz
1 GHz
1 GHz
Quiescent Current
-
-
-
Min Supply Voltage
3 V
3 V
3 V
Max Supply Voltage
5.5 V
5.5 V
5.5 V

Chaîne d'approvisionnement

Lifecycle StatusObsolete (Last Updated: 4 months ago)

Pièces détachées

MC100EP139 Series 1 GHz 5.5 V ECL ÷2/4, ÷4/5/6 Clock Generation Chip - TSSOP-20
Texas InstrumentsLMX2430SLEX/NOPB
CMOS PLL Frequency Synthesizer 20-UFLGA LMX2430 clock generator circuit 2.5V 3GHz 800MHz 3.6mA 3.5mm
Texas InstrumentsLMX2430TMX/NOPB
PLL Frequency Synthesizer Dual 100MHz to 3000MHz 20-Pin TSSOP T/R
Silicon LabSI4112-D-GT
TSSOP-24 Clock Generators / Frequency Synthesizers / PLL ROHS
Low Skew Clock Driver, 100LVE Series, 3 True Output(s), 0 Inverted Output(s), ECL, PDSO16
Quad HCSL/LVDS Clock Generator, 3.3 V, Crystal to 100 MHz / 200 MHz

Descriptions

Descriptions de onsemi MC10EP139DT fournies par ses distributeurs.

Low Skew Clock Driver, 10E Series, 4 True Output(s), 0 Inverted Output(s), ECL, PDSO20
3.3V / 5V ECL /2/4, /4/5/6 Clock Generation Chip | IC CLK GEN 2/4 4/5/6 ECL 20TSSOP
DUAL Obsolete GULL WING Surface Mount Clock Generator IC 2012 -40C~85C 0.9ns 6.5mm
The MC10/100EP139 is a low skew divide by 2/4 divide by 4/5/6 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 device can be driven by either a differential or single-ended ECL or if positive power supplies are used LVPECL input signals. In addition by using the VBB output a sinusoidal source can be AC coupled into the device. If a single-ended input is to be used the VBB output should be connected to the CLKbar input and bypassed to ground via a 0.01uF capacitor. 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. 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 EP139s the master reset (MR) input must be asserted to ensure synchronization. For systems which only use one EP139 the MR pin need not be exercised as the internal divider design ensures synchronization between the divide by 2/4 and the divide by 4/5/6 outputs of a single device. All VCC and VEE pins must be externally connected to power supply to guarantee proper operation. The 100 Series contains temperature compensation.

Alias du fabricant

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  • ON Semiconductor / Fairchild
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  • ON SEMICONDUCTOR CORP
  • onsemi / Fairchild
  • MOT/ON SEMI
  • Fairchild/ONSemiconductor
  • ON Semiconductor Corporation
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  • ON SEMICONDUCT
  • ON-SEMI SCG
  • ON Semiconductor Inc.
  • onsemiconductor
  • On Semiconductor Ltd