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SY10ELT21L - 3.3V DIFFERENTIAL LVPECL-to-LVTTL TRANSLATOR

Download the SY10ELT21L datasheet PDF. This datasheet also covers the SY100ELT21L variant, as both devices belong to the same 3.3v differential lvpecl-to-lvttl translator family and are provided as variant models within a single manufacturer datasheet.

General Description

The SY10/100ELT21L are single differential LVPECLto-LVTTL translators using a single +3.3V power supply.

Because LVPECL (Low Voltage Positive ECL) levels are used, only +3.3V and ground are required.

Key Features

  • s 3.3V power supply s 2.0ns typical propagation delay s Low power s Differential LVPECL inputs s 24mA TTL outputs s Flow-through pinouts s Available in 8-pin SOIC package 3.3V.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (SY100ELT21L_MicrelSemiconductor.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number SY10ELT21L
Manufacturer Micrel Semiconductor
File Size 52.00 KB
Description 3.3V DIFFERENTIAL LVPECL-to-LVTTL TRANSLATOR
Datasheet download datasheet SY10ELT21L Datasheet

Full PDF Text Transcription (Reference)

The following content is an automatically extracted verbatim text from the original manufacturer datasheet and is provided for reference purposes only.

View original datasheet text
Micrel, Inc. FEATURES s 3.3V power supply s 2.0ns typical propagation delay s Low power s Differential LVPECL inputs s 24mA TTL outputs s Flow-through pinouts s Available in 8-pin SOIC package 3.3V DIFFERENTIAL LVPECL-to-LVTTL TRANSLATOR Precision Edge® PrecisioSnSYY1E01d00EEgLLeTT®2211LL SY10ELT21L SY100ELT21L Precision Edge® DESCRIPTION The SY10/100ELT21L are single differential LVPECLto-LVTTL translators using a single +3.3V power supply. Because LVPECL (Low Voltage Positive ECL) levels are used, only +3.3V and ground are required. The small outline 8-lead SOIC package and low skew single gate design make the ELT21L ideal for applications that require the translation of a clock or data signal where minimal space, low power, and low cost are critical.