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Dual 1:6, 3.3V, 2.5V LVPECL Output Fanout Buffer

Package Information

CAD Model:View CAD Model
Pkg. Type:VFQFPN
Pkg. Code:NLG40
Lead Count (#):40
Pkg. Dimensions (mm):6.0 x 6.0 x 0.9
Pitch (mm):0.5

Environmental & Export Classifications

Moisture Sensitivity Level (MSL)3
Pb (Lead) FreeYes
ECCN (US)EAR99
HTS (US)8542.39.0090

Product Attributes

Lead Count (#)40
Carrier TypeReel
Moisture Sensitivity Level (MSL)3
Qty. per Reel (#)5000
Qty. per Carrier (#)0
Pb (Lead) FreeYes
Pb Free Categorye3 Sn
Temp. Range (°C)-40 to 85°C (Tc ≤ 105°C)
Country of AssemblyCHINA
Country of Wafer FabricationAUSTRIA
105°C Max. Case Temp.1
Additive Phase Jitter Typ RMS (fs)42
Additive Phase Jitter Typ RMS (ps)0.042
Adjustable PhaseNo
Advanced FeaturesDual Buffer
Channels (#)2
Core Voltage (V)2.5V, 3.3V
Family Name8SLVP
FunctionBuffer
Input Freq (MHz)2000
Input TypeLVDS, LVPECL
Inputs (#)2
Length (mm)6
Longevity2040 Apr
MOQ5000
Noise Floor (dBc/Hz)-162
Output Banks (#)2
Output Freq Range (MHz)2000
Output Skew (ps)26
Output TypeLVPECL
Output Voltage (V)2.5V, 3.3V
Outputs (#)12
Package Area (mm²)36
Pitch (mm)0.5
Pkg. Dimensions (mm)6.0 x 6.0 x 0.9
Pkg. TypeVFQFPN
PublishedNo
Reel Size (in)13
Requires Terms and ConditionsDoes not require acceptance of Terms and Conditions
Supply Voltage (V)2.5 - 2.5, 3.3 - 3.3
Tape & ReelYes
Thickness (mm)0.9
Width (mm)6

Description

The 8SLVP2106I is a high-performance differential dual 1:6 LVPECL fanout buffer. The device is designed for the fanout of high-frequency, very low additive phase-noise clock and data signals. The 8SLVP2106I is characterized to operate from a 3.3V and 2.5V power supply. Guaranteed output-to-output and part-to-part skew characteristics make the 8SLVP2106I ideal for those clock distribution applications demanding well-defined performance and repeatability. Two independent buffers with six low skew outputs each are available. The integrated bias voltage generators enables easy interfacing of single-ended signals to the device inputs. The device is optimized for low power consumption and low additive phase noise.