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400MHz Slew Enhanced VFA

封装信息

CAD 模型:View CAD Model
Pkg. Type:SOICN
Pkg. Code:MSK
Lead Count (#):8
Pkg. Dimensions (mm):4.9 x 3.9 x 0.00
Pitch (mm):1.3

环境和出口类别

Moisture Sensitivity Level (MSL)3
Pb (Lead) FreeYes
ECCN (US)EAR99
HTS (US)8542.33.0001
RoHS (EL5203ISZ)下载

产品属性

Lead Count (#)8
Carrier TypeTube
Moisture Sensitivity Level (MSL)3
Pitch (mm)1.3
Pkg. Dimensions (mm)4.9 x 3.9 x 0.00
Pb (Lead) FreeYes
Pb Free CategoryPb-Free 100% Matte Tin Plate w/Anneal-e3
Temp. Range (°C)-40 to +85°C
2nd Harmonic (dB)-76
3rd Harmonic (dB)-75
AVOL (dB)66
Bandwidth (MHz)400
CMRR (dB)80
Channels (#)2
Diff Gain (%)0.01
Diff Phase (°)0.01
Distortion Conditions2Vpp, 10MHz
EnableNo
Gain Min1
IBIAS (nA)2000
IOUT (A)0.15
IS per Amp (mA)5.2
Length (mm)4.9
MOQ3492
Noise VN (nV/√Hz)12
Offset Voltage (Max) (mV)5
Output Headroom (V)1.1
PSRR (db)80
Pkg. TypeSOICN
Qualification LevelStandard
Rail-to-Rail InputNo
Rail-to-Rail OutputNo
Single Supply Voltage Range (V)5 - 10
Slew Rate (V/µs)2200
THD (dB)70
Thermal ShutdownNo
Topology [Rail 1]VFA
VOUT (V)7.8
VS (Max) (V)10
VS (Min) (V)5
Width (mm)3.9
field__slew_rate_typical_2200

描述

The EL5202 and EL5203 are dual, high-speed VFAs based on a CFA architecture. This gives the typical high slew rate benefits of a CFA family along with the stability and ease of use associated with the VFA type architecture. With slew rates of 3500V/µs, these devices enable the use of voltage feedback amplifiers in a space where the only alternative has been current feedback amplifiers. This family also includes single, dual, and triple versions with 750MHz bandwidths; please see the EL5104 through EL5304 data sheet for details. Both devices operate on single 5V or ±5V supplies from minimum supply current. The EL5202 also features an output enable function, which can be used to put the output in to a high-impedance mode. This allows the outputs of multiple amplifiers to be tied together for use in multiplexing applications. Typical applications for these families include cable driving, filtering, A/D and D/A buffering, multiplexing and summing within video, communications, and instrumentation designs.