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MC10H116LMOT?N/a2000avaiTriple Line Receiver
MC10H116PMOTOROLAN/a58avaiTriple Line Receiver


MC10H116L ,Triple Line ReceiverMAXIMUM RATINGSPLASTIC SOICCharacteristic Symbol Rating Unit CASE 751B–05Power Supply (V = 0) V –8. ..
MC10H116M ,Triple Line ReceiverAND8090/DAC Characteristics of ECLDevices
MC10H116M ,Triple Line ReceiverAPPLICATION NOTEDifferential Characteristics (continued)APPLICATION NOTE USAGEThis application note ..
MC10H116M ,Triple Line Receiver3AND8090/DAC Test BoardsAn example of an AC characteristic test board is shown inEach test device i ..
MC10H116M ,Triple Line ReceiverELECTRICAL CHARACTERISTICS (V = –5.2 V ±5%) (Note 2)EE0° 25° 75°Symbol Characteristic Min Max Min M ..
MC10H116MEL ,Triple Line ReceiverPrepared byCleon PettyAPPLICATION NOTETodd PearsonECL Applications EngineeringThis application note ..
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MC34161D ,UNIVERSAL VOLTAGE MONITORSThermal Characteristics (Note 1)P Suffix, Plastic Package, Case 626Maximum Power Dissipation @ T = ..
MC34161D ,UNIVERSAL VOLTAGE MONITORSThermal Characteristics (Note 1)P Suffix, Plastic Package, Case 626Maximum Power Dissipation @ T = ..
MC34161DG , Universal Voltage Monitors
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MC10H116L-MC10H116P
Triple Line Receiver
SEMICONDUCTOR TECHNICAL DATA -
The MC10H116 is a functional/pinout duplication of the MC10116, with 100%
improvement in propagation delay and no increase in power– supply current. Propagation Delay, 1.0 ns Typical Power Dissipation 85 mW Typ/Pkg (same as MECL 10K) Improved Noise Margin 150 mV (Over Operating Voltage and
Temperature Range) Voltage Compensated MECL 10K–Compatible
MAXIMUM RATINGS
ELECTRICAL CHARACTERISTICS (VEE = –5.2 V ±5%) (2)
AC PARAMETERS
NOTES:

1. When VBB is used as the reference voltage.
2. Each MECL 10H series circuit has been designed to meet the specifications shown in the test table, after thermal
equilibrium has been established. The circuit is in a test socket or mounted on a printed circuit board and transverse
air flow greater than 500 linear fpm is maintained. Outputs are terminated through a 50–ohm resistor to –2.0 volts.
3. Differential input not to exceed 1.0 Vdc.
4. 150 mVp–p differential input required to obtain full logic swing on output.
DIP PIN ASSIGNMENT

VCC1
AOUT
AOUT
AIN
AIN
BOUT
BOUT
VEE
VCC2
COUT
COUT
CIN
CIN
VBB
BIN
BIN
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