X0202MN ,1.25A SCRSapplicationswhere the available gate current is limited, such asground fault circuit interruptors, ..
X0202MN ,1.25A SCRSapplicationswhere the available gate current is limited, such asground fault circuit interruptors, ..
X0202MN 5BA4 ,1.25A SCRSapplicationswhere the available gate current is limited, such asground fault circuit interruptors, ..
X0202MN5BA4 ,SENSITIVE qate SCRs, 1.25A, 600Vapplicationswhere the available gate current is limited, such asground fault circuit interruptors, ..
X0202NA ,1.25A SCRSFEATURES:ASymbol Value UnitGI1.25 AT(RMS)KV /V600 and 800 VDRM RRMI50 to 200 μAGTDESCRIPTIONThanks ..
X0202NN ,1.25A SCRSapplicationswhere the available gate current is limited, such asground fault circuit interruptors, ..
XC6109C20ANR , Voltage Detector with Delay Type Capacitor
XC6109C22ANR , Voltage Detector with Delay Type Capacitor
XC6109C23ANR , Voltage Detector with Delay Type Capacitor
XC6109C27ANR , Voltage Detector with Delay Type Capacitor
XC6109C30ANR , Voltage Detector with Delay Type Capacitor
XC6109N18ANR , Voltage Detector with Delay Type Capacitor
X0202MA-X0202MN-X0202NA-X0202NN-X0205MA-X0205MN-X0205NA
1.25A SCRS
1/6
X02 Series
SENSITIVE 1.25A SCRs
September 2000 - Ed: 3
MAIN FEATURES:
DESCRIPTIONThanks to highly sensitive triggering levels, the
X02 SCR series is suitable for all applications
where the available gate current is limited, such as
ground fault circuit interruptors, overvoltage
crowbar protection in low power supplies,
capacitive ignition circuits, ...
Available in though-hole or surface-mount
packages, these devices are optimized in forward
voltage drop and inrush current capabilities, for
reduced power losses and high reliability in harsh
environments.
ABSOLUTE RATINGS (limiting values)
X02 Series2/6
ELECTRICAL CHARACTERISTICS (Tj = 25°C, unless otherwise specified)
THERMAL RESISTANCESS = Copper surface under tab
PRODUCT SELECTOR
X02 Series3/6
ORDERING INFORMATION
OTHER INFORMATION
Note: xx = sensitivity, y = voltage
Fig. 1: Maximum average power dissipation
versus average on-state current.
Fig. 2-1: Average and D.C. on-state current
versus lead temperature (SOT-223/TO-92).
X02 Series4/6
Fig. 2-2: Average and D.C. on-state current
versus ambient temperature (device mounted on
FR4 with recommended pad layout) (SOT -223/
TO-92).
Fig. 3: Relative variation of thermal impedancejunction to ambient versus pulse duration
(SOT -223/TO-92).
Fig. 4: Relative variation of gate trigger current,holding current and latching current versus
junction temperature (typical values).
Fig. 5: Relative variation of holding current
versus gate-cathode resistance (typical values).
Fig. 6: Relative variation of dV/dt immunity
versus gate-cathode resistance (typical values).
Fig. 7: Relative variation of dV/dt immunityversus gate-cathode capacitance (typical values).
X02 Series5/6
Fig. 8: Surge peak on-state current versusnumber of cycles.
Fig. 9: Non-repetitive surge peak on-state
current for a sinusoidal pulse with width<10 ms, and corresponding value of I²t.
Fig. 10: On-state characteristics (maximumvalues).
Fig. 11: Thermal resistance junction to ambientversus copper surface under tab (Epoxy printed
circuit board FR4, copper thickness: 35 μm)
(SOT -223).
PACKAGE MECHANICAL DATATO-92 (Plastic)
X02 Series6/6
FOOTPRINT DIMENSIONS (in millimeters)SOT -223 (Plastic)
PACKAGE MECHANICAL DATASOT -223 (Plastic)
. consequences
of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted
by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject
to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not
authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics.
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