사양
| 속성 | 가치 |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| Series | 100LVEP |
| ProductStatus | Active |
| Type | Fanout Buffer (Distribution), Multiplexer |
| NumberofCircuits | 1 |
| Ratio-Input:Output | 2:10 |
| Differential-Input:Output | Yes/Yes |
| Input | ECL, HSTL, LVDS, PECL |
| Output | ECL, PECL |
| Frequency-Max | 3 GHz |
| Voltage-Supply | 2.375V ~ 3.8V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 32-LQFP |
개요
Description
The MC100LVEP111FARG is a high-speed differential PECL/ECL clock driver from ON Semiconductor. It features 1:10 fanout with low skew (<50ps) and operates at frequencies up to 2.5GHz, making it ideal for high-performance clock distribution in telecom, networking, and computing systems.
Key features:
- Inputs: Accepts LVPECL, LVDS, or CML signals.
- Outputs: 10 LVPECL pairs with <50ps skew.
- Supply Voltage: 3.3V (±10%).
- Low Jitter: <1ps RMS (typ.).
- Package: 32-pin QFN (5x5mm).
Applications include clock buffering in high-speed data transmission, servers, and FPGA/ASIC timing systems. The device ensures signal integrity with minimal phase distortion, critical for synchronous designs.
For detailed specs, refer to the datasheet.
Key features:
- Inputs: Accepts LVPECL, LVDS, or CML signals.
- Outputs: 10 LVPECL pairs with <50ps skew.
- Supply Voltage: 3.3V (±10%).
- Low Jitter: <1ps RMS (typ.).
- Package: 32-pin QFN (5x5mm).
Applications include clock buffering in high-speed data transmission, servers, and FPGA/ASIC timing systems. The device ensures signal integrity with minimal phase distortion, critical for synchronous designs.
For detailed specs, refer to the datasheet.
Equivalent
The MC100LVEP111FARG is a differential PECL/ECL receiver. Equivalent or similar products include:
- ON Semiconductor MC100EP111: Similar ECL receiver with enhanced performance.
- Texas Instruments SN65LVEP111: LVDS-compatible differential receiver.
- NXP Semiconductors 100EL11: ECL-compatible alternative.
Check datasheets for exact compatibility in voltage levels and speed.
- ON Semiconductor MC100EP111: Similar ECL receiver with enhanced performance.
- Texas Instruments SN65LVEP111: LVDS-compatible differential receiver.
- NXP Semiconductors 100EL11: ECL-compatible alternative.
Check datasheets for exact compatibility in voltage levels and speed.
Pinout
The MC100LVEP111FARG is a 3.3V ECL differential receiver/translator with the following key details:
- Pin Count: 20 (TSSOP package)
- Functions:
- Converts LVPECL/LVDS/CML signals to 3.3V LVTTL/LVCMOS levels.
- Single differential input with one LVTTL/LVCMOS output.
- Includes an enable/disable pin (EN#) for power management.
- Operates at >3 GHz for high-speed applications.
Key Pins:
- IN+, IN– (Differential Input)
- Q (LVTTL Output)
- EN# (Active-low Enable)
- VCC, GND (3.3V Power & Ground)
Used in clock distribution, networking, and high-speed data transmission.
- Pin Count: 20 (TSSOP package)
- Functions:
- Converts LVPECL/LVDS/CML signals to 3.3V LVTTL/LVCMOS levels.
- Single differential input with one LVTTL/LVCMOS output.
- Includes an enable/disable pin (EN#) for power management.
- Operates at >3 GHz for high-speed applications.
Key Pins:
- IN+, IN– (Differential Input)
- Q (LVTTL Output)
- EN# (Active-low Enable)
- VCC, GND (3.3V Power & Ground)
Used in clock distribution, networking, and high-speed data transmission.
Application
The MC100LVEP111FARG is a differential PECL/ECL clock driver used in high-speed digital systems. Key application areas include:
- Telecommunications: Clock distribution in routers, switches, and base stations.
- Networking: Synchronization in high-speed data transmission equipment.
- Computing: Clock management in servers and high-performance computing.
- Test & Measurement: Precision timing in oscilloscopes and signal analyzers.
- Industrial: High-reliability timing in automation and control systems.
Its low skew, high-speed operation (up to 3 GHz), and ECL compatibility make it ideal for demanding timing applications.
- Telecommunications: Clock distribution in routers, switches, and base stations.
- Networking: Synchronization in high-speed data transmission equipment.
- Computing: Clock management in servers and high-performance computing.
- Test & Measurement: Precision timing in oscilloscopes and signal analyzers.
- Industrial: High-reliability timing in automation and control systems.
Its low skew, high-speed operation (up to 3 GHz), and ECL compatibility make it ideal for demanding timing applications.