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MC100EL11DR2ONN/a2500avai5V ECL 1:2 Differential Fanout Buffer
MC100EL16DR2ON SemiconductorN/a5430avai5V ECL Differential Receiver
MC100EL32DR2ONN/a12avai5V ECL Divide by 2 Divider
MC100EL58DR2MOTOROLAN/a938avai5V ECL 2:1 Multiplexer
MC100ELT21DONN/a215avaiDifferential PECL to TTL Translator
MC100ELT21DTONN/a80avai5V Differential PECL To TTL Translator
MC100ELT22DR2MOTN/a376avai5V Dual TTL to Differential PECL Translator
MC100EP01DONN/a13519avai3.3V / 5V ECL 4-Input OR/NOR
MC100EP16DONN/a124avai3.3V / 5V ECL Differential Receiver/Driver
MC100EP51DTONN/a48avai3.3V / 5V ECL D Flip Flop with Reset and Differential Clock
MC100EPT22DN/a14avai3.3V Dual LVTTL/LVCMOS to Differential LVPECL Translator
MC100EPT23DMOT ?N/a42avai3.3V Dual Differential PECL to TTL Translator
MC100EPT26DONN/a100avai1:2 Fanout Differential LVPECL to LVTTL Translator
MC100LVEL01DTONN/a80avai3.3V ECL 4-Input OR/NOR
MC100LVEL05DN/a27avai3.3V ECL 2-Input Differential AND/NAND
MC100LVEL11DONN/a1744avai3.3V ECL 1:2 Differential Fanout Buffer
MC100LVEL11DR2ONN/a2100avai3.3V ECL 1:2 Differential Fanout Buffer
MC100LVEL11DTONN/a451avai3.3V ECL 1:2 Differential Fanout Buffer
MC100LVEL32DONN/a234avai3.3V ECL ÷2 Divider
MC100LVEL33DONN/a514avai? Divider
MC100LVEL33DTONN/a2000avai3.3V ECL Divide by 4 Divider
MC100LVEL33DTR2ONN/a303avai3.3V ECL Divide by 4 Divider
MC100LVEL51D |MC100LVEL51DONN/a790avai3.3V ECL Differential Clock D Flip-Flop
MC100LVEL51DTONN/a10avai3.3V ECL Differential Clock D Flip-Flop
MC100LVEP11DTONN/a200avai2.5V / 3.3V ECL 1:2 Differential Fanout Buffer
MC100LVELT22DR2ONN/a4209avai3.3V Dual LVTTL/LVCMOS to Differential LVPECL Translator
MC100LVELT23DR2MOTN/a12500avai3.3V Dual Differential LVPECL to LVTTL Translator
MC10EL01DR2N/a1600avai5V ECL 4-Input OR/NOR
MC10EL89DONN/a225avaiCoaxial Cable Driver
MC10LVEP11DTONN/a75avai2.5V / 3.3V ECL 1:2 Differential Fanout Buffer


MC100EP01D ,3.3V / 5V ECL 4-Input OR/NORECLSOIC8EVBEvaluation Board Manualfor High Frequency SOIC 8
MC100EP01DR2 ,3.3V / 5V ECL 4-Input OR/NOR
MC100EP05D ,3.3V / 5V 2-Input Differential AND/NAND2AN1504/D28.6300 NS 31.1300 NS 33.6300 NSCH. 3 = 150.0 mV/DIV TIMEBASE = 500 PS/DIVSTOP = 31.5600 N ..
MC100EP05DG , 3.3V / 5V ECL 2−Input Differential AND/NAND
MC100EP08D ,3.3V / 5V Differential 2-Input XOR/XNOR3AND8009/DTable 4. ECLinPS Plus Input/Output Selection TableDevice Package A Package B Input ESD In ..
MC100EP08DR2 ,3.3V / 5V Differential 2-Input XOR/XNOR3AND8009/DTable 4. ECLinPS Plus Input/Output Selection TableDevice Package A Package B Input ESD In ..
MC33072P ,Single Supply 3V to 44V, Dual Operational AmplifierMAXIMUM RATINGSRating Symbol Value UnitSupply Voltage (from V to V ) V +44 VEE CC SInput Differenti ..
MC33072U ,V(cc): +44V; high slew rate, wide bandwidth, single supply operational amplifierMAXIMUM RATINGSRating Symbol Value UnitSupply Voltage (from VEE to VCC) Vs +44 VInput Differential ..
MC33074 ,Single Supply 3V to 44V, Quad Operational Amplifier
MC33074AD ,Single Supply 3V to 44V, Quad Operational Amplifierhttp://onsemi.commonolithic operational amplifiers. This series of operationalamplifiers offer 4.5 ..
MC33074ADR2 ,Single Supply 3V to 44V, Quad Operational Amplifierhttp://onsemi.com3MC34071,2,4,A MC33071,2,4,AAC
MC33074ADR2 ,Single Supply 3V to 44V, Quad Operational AmplifierMAXIMUM RATINGSRating Symbol Value UnitSupply Voltage (from V to V ) V +44 VEE CC SInput Differenti ..


MC100EL11DR2-MC100EL16DR2-MC100EL32DR2-MC100EL58DR2-MC100ELT21D-MC100ELT21DT-MC100ELT22DR2-MC100EP01D-MC100EP16D-MC100EP51DT-MC100EPT22D-MC100EPT23D-MC100EPT26D-MC100LVEL01DT-MC100LVEL05D-MC100LVEL11D-MC100LVEL11DR2-MC100LVEL11DT-MC100LVEL32D-MC100LVEL33D-MC100L
2.5V / 3.3V ECL 1:2 Differential Fanout Buffer
ECLSOIC8EVB
Evaluation Board Manual
for High Frequency SOIC 8
INTRODUCTION

ON Semiconductor has developed an evaluation board for
the devices in 8−lead SOIC package. These evaluation
boards are offered as a convenience for the customers
interested in performing their own engineering assessment
on the general performance of the 8−lead SOIC device
samples. The board provides a high bandwidth 50 �
controlled impedance environment. The pictures in Figure 1
show the top and bottom view of the evaluation board, which
can be configured in several different ways, depending on
device under test (See Table 1. Configuration List).
This evaluation board manual contains: Information on 8−lead SOIC Evaluation Board Assembly Instructions Appropriate Lab Setup Bill of Materials
This manual should be used in conjunction with the device
data sheet, which contains full technical details on the device
specifications and operation.
Board Lay−Up

The 8−lead SOIC evaluation board is implemented in four
layers with split (dual) power supplies (Figure 2.
Evaluation Board Lay−up). For standard ECL lab setup and
test, a split (dual) power supply is essential to enable the
50 � internal impedance in the oscilloscope as a termination
for ECL devices. The first layer or primary trace layer is
0.008″ thick Rogers RO4003 material, which is designed to
have equal electrical length on all signal traces from the
device under the test (DUT) to the sense output. The second
layer is the 1.0 oz copper ground plane and a portion of the
plane is the VEE power plane. The FR4 dielectric material is
placed between second and third layer and between third and
fourth layer. The third layer is also 1.0 oz copper ground
plane and a portion of this layer is VCC power plane. The
fourth layer is the secondary trace layer.
Figure 1. Top and Bottom View of the 8−lead SOIC Evaluation Board
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