MC100LVE310 Motorola, MC100LVE310 Datasheet

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MC100LVE310

Manufacturer Part Number
MC100LVE310
Description
Low-voltage 2:8 differential fanout buffer ECL/PECL compatible
Manufacturer
Motorola
Datasheet

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MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
Low Voltage 2:8 Differential
Fanout Buffer
ECL/PECL Compatible
fanout buffer designed with clock distribution in mind. The device features
fully differential clock paths to minimize both device and system skew.
The LVE310 offers two selectable clock inputs to allow for redundant or
test clocks to be incorporated into the system clock trees. The
MC100E310 is pin compatible to the National 100310 device. The
MC100LVE310 works from a –3.3V supply while the MC100E310
provides identical function and performance from a standard –4.5V 100E
voltage supply.
voltage is supplied. For single–ended input applications the V BB
reference should be connected to the CLK input and bypassed to ground
via a 0.01 f capacitor. The input signal is then driven into the CLK input.
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
adjacent to the output pair being used in order to maintain minimum skew.
Failure to follow this guideline will result in small degradations of
propagation delay (on the order of 10–20ps) of the outputs being used,
while not catastrophic to most designs this will result in an increase in
skew. Note that the package corners isolate outputs from one another
such that the guideline expressed above holds only for outputs on the
same side of the package.
LVE310 to be used for high performance clock distribution in +3.3V systems. Designers can take advantage of the LVE310’s
performance to distribute low skew clocks across the backplane or the board. In a PECL environment series or Thevenin line
terminations are typically used as they require no additional power supplies, if parallel termination is desired a terminating voltage
of V CC –2.0V will need to be provided. For more information on using PECL, designers should refer to Motorola Application Note
AN1406/D.
7/95
Motorola, Inc. 1996
Dual Differential Fanout Buffers
200ps Part–to–Part Skew
50ps Output–to–Output Skew
Low Voltage ECL/PECL Compatible
28–lead PLCC Packaging
The MC100LVE310 is a low voltage, low skew 2:8 differential ECL
For applications which require a single–ended input, the V BB reference
To ensure that the tight skew specification is met it is necessary that
The MC100LVE310, as with most ECL devices, can be operated from a positive V CC supply in PECL mode. This allows the
4–1
REV 0.1
MC100LVE310
MC100E310
2:8 DIFFERENTIAL
FANOUT BUFFER
LOW VOLTAGE
PLASTIC PACKAGE
CASE 776–02
FN SUFFIX

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MC100LVE310 Summary of contents

Page 1

... The MC100LVE310, as with most ECL devices, can be operated from a positive V CC supply in PECL mode. This allows the LVE310 to be used for high performance clock distribution in +3.3V systems. Designers can take advantage of the LVE310’s performance to distribute low skew clocks across the backplane or the board ...

Page 2

... MC100LVE310 MC100E310 CCO CLK_SEL 28 CLKa Pinout: 28–Lead PLCC (Top View) 2 CLKa CLKb CLKb CCO Q7 CLKa CLKa CLKb CLKb CLK_SEL MOTOROLA PIN NAMES Q3 17 Pins Q4 16 ...

Page 3

... MC100LVE310 MC100E310 Typ Max Min Typ Max Unit –0.955 –0.880 –1.025 –0.955 –0.880 V –1.705 –1.620 –1.810 – ...

Page 4

... MC100LVE310 MC100E310 MC100E310 ECL DC CHARACTERISTICS –40 C Symbol Characteristic Min Typ V OH Output HIGH Voltage –1.085 –1.005 V OL Output LOW Voltage –1.830 –1.695 V IH Input HIGH Voltage –1.165 V IL Input LOW Voltage –1.810 V BB Output Reference – ...

Page 5

... U 0.450 0.456 V 0.042 0.048 W 0.042 0.048 X 0.042 0.056 Y — 0.020 0.410 0.430 K1 0.040 — 4–5 MC100LVE310 MC100E310 T L – – 0.010 (0.250 – 0.007 (0.180 – 0.007 (0.180 – ...

Page 6

... MC100LVE310 MC100E310 Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “ ...

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