TYN612RG ,12A SCRSFEATURES:ASymbol Value UnitGI12 AT(RMS)KAAV /V600 to 1000 VDRM RRMI0.2 to 15 mA KGT K AAGGDESCRIPTI ..
TYN612RG ,12A SCRSTN12, TS12 and TYNx12 Series®SENSITIVE & STANDARD 12A SCRs MAIN
TYN612T ,12A SCRSapplications such as overvoltage crowbarprotection, motor control circuits in power toolsand kitche ..
TYN612TRG ,12A SCRSFEATURES:ASymbol Value UnitGI12 AT(RMS)KAAV /V600 to 1000 VDRM RRMI0.2 to 15 mA KGT K AAGGDESCRIPTI ..
TYN616 ,16A SCRSTN16 and TYNx16 Series®STANDARD 16A SCRs MAIN
TYN616RG ,Thyristors, 16A, 600Vapplications.(TYN)Using clip assembly technology, they provide asuperior performance in surge curre ..
UCC28060DG4 ,Natural Interleaved Dual-Phase Transition-Mode PFC Controller 16-SOIC -40 to 125FEATURES• Cost Savings234• Easy Phase Management FacilitatesCompliance to Light-Load Efficient Stan ..
UCC28060DR ,Natural Interleaved Dual-Phase Transition-Mode PFC Controller 16-SOIC -40 to 125.(2) SOIC (D) package is available taped and reeled by adding R to the above part number. Reeled qu ..
UCC28060DRG4 ,Natural Interleaved Dual-Phase Transition-Mode PFC Controller 16-SOIC -40 to 125Block Diagram 9• Typical Characteristics 10• Application Information 17• Design Example 23• Additio ..
UCC28061 ,Natural Interleaving(TM) Transition-Mode PFC Controller with Improved Audible Noise Immunity ..... SLUS837A–JUNE 2008–REVISED JULY 2009(1)ABSOLUTE
UCC28061D ,Natural Interleaving(TM) Transition-Mode PFC Controller with Improved Audible Noise Immunity 16-SOIC -40 to 125maximum ratings may cause permanent damage to the device. These are stress ratingsonly and function ..
UCC28061DG4 ,Natural Interleaving(TM) Transition-Mode PFC Controller with Improved Audible Noise Immunity 16-SOIC -40 to 125.(2) SOIC (D) package is available taped and reeled by adding R to the above part number. Reeled qu ..
TN1215-600B-TR-TN1215-600GTR-TN1215-600G-TR-TS1220-TS1220-600B-TR-TYN1012RG-TYN1012TRG-TYN612RG-TYN612TRG
12A SCRS
1/10
TN12, TS12 and TYNx12 Series
SENSITIVE & STANDARD 12A SCRs
September 2000 - Ed: 3
MAIN FEATURES:
DESCRIPTIONAvailable either in sensitive (TS12) or standard
(TYN, TN12...) gate triggering levels, the 12A SCR
series is suitable to fit all modes of control found in
applications such as overvoltage crowbar
protection, motor control circuits in power tools
and kitchen aids, in-rush current limiting circuits,
capacitive discharge ignition, voltage regulation
circuits...
Available in though-hole or surface-mount
packages, they provide an optimized performance
in a limited space area.
ABSOLUTE RATINGS (limiting values)
TN12, TS12 and TYNx12 Series2/10
ELECTRICAL CHARACTERISTICS (Tj = 25°C, unless otherwise specified) SENSITIVE STANDARD
THERMAL RESISTANCESS = Copper surface under tab
TN12, TS12 and TYNx12 Series3/10
PRODUCT SELECTOR
ORDERING INFORMATION
TN12, TS12 and TYNx12 Series4/10
OTHER INFORMATION
Note: x = voltage
Fig. 1: Maximum average power dissipation
versus average on-state current.
Fig. 2-1: Average and D.C. on-state currentversus case temperature.
Fig. 2-2: Average and D.C. on-state currentversus ambient temperature (device mounted on
FR4 with recommended pad layout) (DPAK and2 PAK).
Fig. 3-1: Relative variation of thermal impedancejunction to case versus pulse duration.
TN12, TS12 and TYNx12 Series5/10
Fig. 3-2: Relative variation of thermal
impedance junction to ambient versus pulse
duration (recommended pad layout, FR4 PC
board).
Fig. 4-1: Relative variation of gate trigger
current, holding current and latching versus
junction temperature for TS12 series.
Fig. 4-2: Relative variation of gate trigger
current, holding current and latching current
versus junction temperature for TN12 & TYN
series.
Fig. 5: Relative variation of holding current
versus gate-cathode resistance (typical values)
for TS12 series.
Fig. 6: Relative variation of dV/dt immunity
versus gate-cathode resistance (typical values)
for TS12 series.
Fig. 7: Relative variation of dV/dt immunityversus gate-cathode capacitance (typical values)
for TS12 series.
TN12, TS12 and TYNx12 Series6/10
Fig. 8: Surge peak on-state current versusnumber of cycles (TS12/TN12/TYN).
Fig. 9: Non-repetitive surge peak on-state
current for a sinusoidal pulse with width<10 ms, and corresponding values 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) .