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SST204

Micross
Part Number SST204
Manufacturer Micross
Description Amplifier
Published Jun 17, 2011
Detailed Description SST204 N-CHANNEL JFET Linear Systems replaces discontinued Siliconix SST204 The SST204 is a high gain N-Channel JFET Th...
Datasheet PDF File SST204 PDF File

SST204
SST204


Overview
SST204 N-CHANNEL JFET Linear Systems replaces discontinued Siliconix SST204 The SST204 is a high gain N-Channel JFET This n-channel JFET is optimised for high gain.
The part is particularly suitable for use in low power or high impedance amplifiers.
The SOT-23 package is well suited for cost sensitive applications and mass production.
(See Packaging Information).
FEATURES  DIRECT REPLACEMENT FOR SILICONIX SST204  LOW CUT OFF VOLTAGE  VGS(off) ≤ 1.
5  HIGH GAIN  AV = 80 V/V  ABSOLUTE MAXIMUM RATINGS @ 25°C (unless otherwise noted)  Maximum Temperatures  Storage Temperature  Operating Junction Temperature  Maximum Power Dissipation  Continuous Power Dissipation   MAXIMUM CURRENT Forward Gate Current (Note 1)  MAXIMUM VOLTAGES  Gate to Drain Voltage  Gate to Source Voltage    ‐65°C to +150°C  ‐55°C to +135°C  350mW  50mA  VGDS = ‐40V  VGSS = ‐40V    SST204 Benefits: ƒ ƒ ƒ ƒ ƒ ƒ High Input Impedance Low Cutoff Voltage Low Noise Battery powered amplifiers Audio Pre-Amplifiers Infra-Red Detector Amplifiers SST204 Applications:     SST204 ELECTRICAL CHARACTERISTICS @ 25°C (unless otherwise noted) SYMBOL  CHARACTERISTIC  MIN  BVGSS  Gate to Source Breakdown Voltage  ‐25  VGS(off)  Gate to Source Cutoff Voltage  ‐0.
3  IDSS  Drain to Source Saturation Current (Note 2)  0.
2  IGSS  Gate Reverse Current  ‐2  IG  Gate Operating Current  ‐‐  ID(off)  Drain Cutoff Current  ‐‐  gfs  Forward Transconductance  0.
5  Ciss  Input Capacitance  ‐‐  Crss  Reverse Transfer Capacitance  ‐‐  en  Equivalent Noise Voltage  ‐‐  Click To Buy   V  mA    pA  mS  pF  nV/√Hz  Available Packages: SST204 in SOT-23 SST204 in bare die.
Please contact Micross for full package and die dimensions SOT-23 (Top View) TYP.
  ‐‐  ‐‐  ‐‐  ‐‐  ‐2   2  ‐‐  4.
5  1.
3  6  MAX  ‐‐  2  3  ‐100  ‐‐  ‐‐  ‐‐  ‐‐  ‐‐  ‐‐  UNITS  CONDITIONS  IG = 1µA,   VDS = 0V  VDS = 15V, ID = 10nA  VDS = 15V,  VGS = 0V  VGS = ‐20V,  VDS = 0V  VDG = 10V,  ID = 0.
1mA  VDS = 15V, VGS = ‐5V  VDS = 15V,   VGS = 0V , f = 1kHz  VDS = 15V, ...



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