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STTH2L06-STTH2L06A-STTH2L06U Fast Delivery,Good Price
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STTH2L06STN/a50000avaiHIGH EFFICIENCY ULTRAFAST DIODE
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STTH2L06-STTH2L06A-STTH2L06U
HIGH EFFICIENCY ULTRAFAST DIODE
1/8
Table 1: Main Product Characteristics
STTH2L06

HIGH EFFICIENCY ULTRAFAST DIODE
Table 3: Absolute Ratings (limiting values)

September 2004 REV. 1
FEATURES AND BENEFITS
Very low conduction losses Negligible switching losses Low forward and reverse recovery times High junction temperature
DESCRIPTION

The STTH2L06 is using ST Turbo 2 600V planar
Pt doping technology. It is specially suited for
SMPS and base drive transistor circuits.
Packaged in axial, SMA and SMB, this device is
intended for use in high frequency inverters, free
wheeling and polarity protection.
Table 2: Order Codes
STTH2L06
Table 4: Thermal Resistance
Table 5: Static Electrical Characteristics

Pulse test: * tp = 5 ms, δ < 2%
** tp = 380 µs, δ < 2%
To evaluate the conduction losses use the following equation: P = 0.89 x IF(AV) + 0.08 IF2 (RMS)
Table 6: Dynamic Characteristics
STTH2L06
3/8
Figure 1: Conduction losses versus average
forward current
Figure 2: Forward voltage drop versus forward
current
Figure 3: Relative variation of thermal
impedance junction to case versus pulse
duration (SMA - SCU = 1cm2)
Figure 4: Relative variation of thermal
impedance junction to case versus pulse
duration (SMB - SCU = 1cm2)
Figure 5: Relative variation of thermal
impedance junction to case versus pulse
duration (DO-41)
Figure 6: Peak reverse recovery current versusF /dt (typical values)
STTH2L06
Figure 7: Reverse recovery time versus dIF/dt
(typical values)
Figure 8: Reverse recovery charges versus
dIF/dt (typical values)
Figure 9: Relative variations of dynamic
parameters versus junction temperature
Figure 10: Transient peak forward voltage
versus dIF /dt (typical values)
Figure 11: Forward recovery time versus dIF/dt
(typical values)
Figure 12: Junction capacitance versus
reverse voltage applied (typical values)
STTH2L06
5/8
Figure 15: SMA Package Mechanical Data
Figure 13: Thermal resistance junction to
ambient versus copper surface under tab
(epoxy FR4, eCU =35µm) (SMA / SMB)
Figure 14: Thermal resistance versus lead
lengh (DO-41)
Figure 16: SMA Foot Print Dimensions

(in millimeters)
STTH2L06
Figure 17: SMB Package Mechanical Data
Figure 18: SMB Foot Print Dimensions

(in millimeters)
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