Datasheets
MC10116L by:
Motorola Mobility LLC
Freescale Semiconductor
Motorola Mobility LLC
Motorola Semiconductor Products
onsemi
Rochester Electronics LLC
Twilight Technology Inc
Not Found

LINE RECEIVER, CDIP16, CERAMIC, DIP-16

Part Details for MC10116L by Motorola Mobility LLC

Results Overview of MC10116L by Motorola Mobility LLC

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Applications Education and Research Consumer Electronics Internet of Things (IoT) Audio and Video Systems Computing and Data Storage Aerospace and Defense Healthcare Telecommunications Automotive

MC10116L Information

MC10116L by Motorola Mobility LLC is a Line Driver or Receiver.
Line Driver or Receivers are under the broader part category of Drivers And Interfaces.

A driver controls the current or voltage delivered to components like LCDs or motors, while an interface component connects systems for data transfer and control. Read more about Drivers And Interfaces on our Drivers And Interfaces part category page.

Part Details for MC10116L

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MC10116L Part Data Attributes

MC10116L Motorola Mobility LLC
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MC10116L Motorola Mobility LLC LINE RECEIVER, CDIP16, CERAMIC, DIP-16
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Part Life Cycle Code Transferred
Ihs Manufacturer MOTOROLA INC
Part Package Code DIP
Package Description DIP, DIP16,.3
Pin Count 16
Reach Compliance Code unknown
ECCN Code EAR99
HTS Code 8542.39.00.01
Differential Output YES
Input Characteristics DIFFERENTIAL
Interface IC Type LINE RECEIVER
Interface Standard GENERAL PURPOSE
JESD-30 Code R-GDIP-T16
JESD-609 Code e0
Length 19.495 mm
Number of Functions 1
Number of Terminals 16
Operating Temperature-Max 85 °C
Operating Temperature-Min -30 °C
Output Characteristics OPEN-EMITTER
Output Polarity COMPLEMENTARY
Package Body Material CERAMIC, GLASS-SEALED
Package Code DIP
Package Equivalence Code DIP16,.3
Package Shape RECTANGULAR
Package Style IN-LINE
Qualification Status Not Qualified
Receive Delay-Max 3.3 ns
Receiver Number of Bits 3
Seated Height-Max 5.08 mm
Supply Current-Max 23 mA
Surface Mount NO
Technology ECL
Temperature Grade OTHER
Terminal Finish Tin/Lead (Sn/Pb)
Terminal Form THROUGH-HOLE
Terminal Pitch 2.54 mm
Terminal Position DUAL
Width 7.62 mm

Alternate Parts for MC10116L

This table gives cross-reference parts and alternative options found for MC10116L. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of MC10116L, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
MC10116P Motorola Mobility LLC Check for Price LINE RECEIVER, PDIP16, PLASTIC, DIP-16 MC10116L vs MC10116P
MC10H116L Motorola Mobility LLC Check for Price TRIPLE LINE RECEIVER, CDIP16, CERAMIC, DIP-16 MC10116L vs MC10H116L
MC10H116P Motorola Mobility LLC Check for Price TRIPLE LINE RECEIVER, PDIP16, PLASTIC, DIP-16 MC10116L vs MC10H116P
MC10H116MEL Motorola Mobility LLC Check for Price TRIPLE LINE RECEIVER, PDSO16 MC10116L vs MC10H116MEL
MC10H116MG Rochester Electronics LLC Check for Price TRIPLE LINE RECEIVER, PDSO16, LEAD FREE, EIAJ, SO-16 MC10116L vs MC10H116MG
MC10H116PG Rochester Electronics LLC Check for Price TRIPLE LINE RECEIVER, PDIP16, LEAD FREE, PLASTIC, DIP-16 MC10116L vs MC10H116PG

MC10116L Related Parts

MC10116L Frequently Asked Questions (FAQ)

  • The recommended operating voltage range for the MC10116L is 4.5V to 5.5V, although it can operate from 3.5V to 6V with reduced performance.

  • To ensure reliable operation in high-temperature environments, it's essential to provide adequate heat sinking, keep the device within the recommended operating temperature range (-40°C to +85°C), and avoid exceeding the maximum junction temperature (150°C).

  • The MC10116L can support clock frequencies up to 100 MHz, but the actual frequency limit may vary depending on the specific application, capacitive loading, and other factors.

  • The output enable (OE) pin should be connected to a valid logic level (either VCC or GND) to ensure proper operation. Leaving the OE pin floating can cause unpredictable behavior.

  • The VCC pin is the power supply pin for the internal logic and should be connected to a stable 5V power source. It's essential to decouple the VCC pin with a capacitor to ensure noise-free operation.