engineeredcomponentscompany
ADivisionofCornucopiaTool&Plastics,Inc.POBox1915,448SherwoodRd.,PasoRoblesCA93447
Phone:805-369-0034
Fax:805-369-0033
Web:www.ec2.com
100KECLSquareWaveGeneratorModule
TheMTBFonthesemodules,whencalculatedperMIL-HDBK-217, fora50deg.Cgroundfixedenvironmentand
with 50VDC applied, is in excess of 3.3 million hours. The temperature coefficient of delay is less than
+/-200ppm/deg.Covertheoperatingtemperaturerangeof 0to+85deg.C.
The module is provided in a 16-pin DIP package, fully encapsulated in epoxy resin and is housed in a Diallyl
Phthalatecase,blueincolor.Thecasemarkingisappliedbysilkscreenusingwhiteepoxypaint.The6copper
leadsaretin-leadplatedandmeetthesolderabilityrequirementsof MIL-STD-202,Method208.
OperatingSpecifications:
Allmeasurementsmadeat25deg.C
AllmeasurementsmadewithVe=-4.5VDC,Vc=0VDC
Allmeasurementsmadewith(1)ECL outputload
Allmeasurementsmadewitha50ohmpulldown
resistorto-2VDCattheinputandoutput
Operating Temperature:0to+85deg.C
Storage Temperature:-55to+125deg.C
VeeSupplyVoltage:-4.5+/-5%VDC
VccSupplyCurrent:80mA typical
Logic“High”Input:
Voltage:-1.165VDCmin.
Current:350uA max.
Logic“Low”Input:
Voltage:-1.475VDCmax.
Current:0.5uA min.
Logic“High”VoltageOut:-1.025VDCmin.
Logic“Low”VoltageOut:-1.625VDCmax.
ECL-100K-
SWGM-100
MECHANICAL DIAGRAM
Topview
OUT
OUT
Ve
V
V
IN
.800
DATECODE
.600
.280
.050 TYP. .350 TYP.
.100 TYP.
.020DIA.
TYP.
.060
TYP.
+/-.030
.160
.030
TYP.
.150 TYP.
.300
BLOCKDIAGRAM
IN OUT
OUT
9
15
8
1,16
4
V
Ve
SquareWave
Oscillator
YY WW
MADEINUSA
Specialmodulescanoftenbemanufacturedtoprovideforcustomerspecificapplications.
ProductSelectionTable
PartNominalOutputFrequency
NumberOutputFrequencyTolerance
ECL-100K-SWGM-5050MHz+/-2%
ECL-100K-SWGM-5555MHz+/-2%
ECL-100K-SWGM-6060MHz+/-2%
ECL-100K-SWGM-6565MHz+/-2%
ECL-100K-SWGM-7070MHz+/-2%
ECL-100K-SWGM-7575MHz+/-2%
ECL-100K-SWGM-8080MHz+/-2%
ECL-100K-SWGM-8585MHz+/-2%
ECL-100K-SWGM-9090MHz+/-2%
ECL-100K-SWGM-9595MHz+/-2%
ECL-100K-SWGM-100100MHz+/-2%
ECL-100K-SWGM-110110MHz+/-2%
ECL-100K-SWGM-120120MHz+/-2%
ECL-100K-SWGM-130130MHz+/-2%
ECL-100K-SWGM-140140MHz+/-2%
ECL-100K-SWGM-150150MHz+/-2%
ECL-100K-SWGM-160160MHz+/-2%
ECL-100K-SWGM-170170MHz+/-2%
ECL-100K-SWGM-180180MHz+/-2%
ECL-100K-SWGM-190190MHz+/-2%
ECL-100K-SWGM-200200MHz+/-2%
ECL-100K-SWGM-210210MHz+/-2%
ECL-100K-SWGM-220220MHz+/-2%
ECL-100K-SWGM-230230MHz+/-2%
ECL-100K-SWGM-240240MHz+/-2%
ECL-100K-SWGM-250250MHz+/-2%
The 100K ECL Square Wave Generator Modules manufactured by Engineered Components Company are
designed to provide a square wave output at a given frequency. These generators are both keyable and
synchronizable,producingacontinuousoutputtrainaslongaTTL“low”isappliedtotheinput.Whentheinput
switches to “low”, the output goes “low” one half-cycle later and continues to output a continuous square
wave output. When the input switches back to “high”, the output will be forced to a “high” one half-cycle
later.Aninvertedoutputisalsosupplied.