ST2600C..R SERIES 2630A. Features. Typical Applications. Major Ratings and Characteristics. Bulletin I25199 rev. B 02/00 (R-PUK)
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1 ST2600C..R SERIES PHASE CONTROL THYRISTORS Hockey Puk Version Features Double side cooling High surge capability High mean current Fatigue free 2630A Typical Applications DC motor controls Controlled DC power supplies AC controllers Major Ratings and Characteristics (R-PUK) Parameters ST2600C..R Units I T(AV) 2220 T C 80 C I T(AV) 2630 T hs 55 C I T(RMS) 4800 T hs 25 C I 50Hz Hz A I 2 50Hz KA2 60Hz 9640 KA2 s V DRM /V RRM 2000 to 3000 V t q typical 400 µs T J max. 125 C 1
2 ELECTRICAL SPECIFICATIONS Voltage Ratings Voltage V DRM /V RRM, max. repetitive V RSM, maximum non- I DRM /I RRM max. Type number Code peak and off-state voltage repetitive peak T C = 125 C V V ma ST2600C..R On-state Conduction I T(AV) Max. average on-state current 2220 (1440) Case temperature 80 C 180 conduction, half sine wave I T(AV) Max. average on-state current 2630 (1160) A double side (single side [anode side]) Heatsink temperature 55 (85) C I T(RMS) Max. RMS on-state current 4800 A 25 C heatsink temperature double side cooled I TSM Max. peak, one-cycle t = 10ms No voltage non-repetitive surge current t = 8.3ms reapplied A t = 10ms 50% V RRM t = 8.3ms reapplied Sinusoidal half wave, I 2 t Maximum I 2 t for fusing t = 10ms No voltage Initial T C = 125 C 9640 reapplied KA 2 t = 8.3ms s 6770 t = 10ms 50% V RRM 6150 t = 8.3ms reapplied V T(TO) Max. value of threshold voltage 0.89 V T J = T J max. r t Max. value of on-state slope resistance 0.19 mω T J = T J max. V TM Max. on-state voltage 1.45 V I = 2900A, T pk C = 25 C I L Max. (typical) latching current 300 () ma T J = 25 C, V D = 5V Switching di/dt Max. repetitive 50Hz (no repetitive) From 67% V DRM gate drive 20V, 20Ω, t r = 1µs 150 (300) A/µs rate of rise of turned-on current T J = T J max. t d Maximum delay time 2.0 Gate drive 30V, 15Ω, V d = 67% V DRM, T J = 25 C Rise time 0.5µs µs t q Typical turn-off time 400 di RR /dt = 20A/µs, V DR =67% V DRM, dv/dt = 20V/µs linear I T = 800A, t = 1ms, T p J = T J max, V RM = 50V, 2
3 Blocking dv/dt I RRM I DRM Maximum linear rate of rise of off-state voltage Max. peak reverse and off-state leakage current 500 V/µs T J = T J max. to 67% rated V DRM 250 ma T J = 125 C rated V DRM /V RRM applied Triggering P GM Maximum peak gate power 150 t = µs p P G(AV) Maximum average gate power 10 W I GM Max. peak positive gate current 30 A Anode positive with respect to cathode V GM Max. peak positive gate voltage 30 V Anode positive with respect to cathode -V GM Max. peak negative gate voltage 0.25 V Anode negative with respect to cathode I GT Maximum DC gate current required to trigger V GT Maximum gate voltage required to trigger ma V T C = 25 C, V DRM = 5V T C = 25 C, V DRM = 5V V GD DC gate voltage not to trigger 0.25 V T C = 125 C Max. gate current/voltage not to trigger is the max. value which will not trigger any unit with rated V DRM anode-to-cathode applied Thermal and Mechanical Specification T J max. Max. operating temperature 125 On-state (conducting) T stg Max. storage temperature range -55 to 125 C R thj-c Thermal resistance, junction DC operation single side cooled K/W to case DC operation double side cooled R th(c-h) Thermal resistance, case Single side cooled Clamping force 43KN with K/W to heatsink Double side cooled mounting compound F Mounting force ± 10% N (4400) (Kg) wt Approximate weight 1600 g Case style (R-PUK) See Outline Table R thj-c Conduction (The following table shows the increment of thermal resistence R thj-c when devices operate at different conduction angles than DC) Conduction angle Single side Double side Units Conditions T J = T J max K/W
4 Ordering Information Table Device Code ST C 30 R Thyristor 2 - Essential part number 3-0 = Converter grade 4 - C = Ceramic Puk 5 - Voltage code: Code x = V RRM (See Voltage Rating Table) 6 - R = Puk Case 7-0 = Eyelet terminals (Gate and Auxiliary Cathode Unsoldered Leads) 1 = Fast-on terminals (Gate and Auxiliary Cathode Unsoldered Leads) 2 = Eyelet terminals (Gate and Auxiliary Cathode Soldered Leads) 3 = Fast-on terminals (Gate and Auxiliary Cathode Soldered Leads) 8 - Critical dv/dt: None = 500V/µsec (Standard selection) L = 0V/µsec (Special selection) Outline Table (4.4) DIA. MAX (2.9) DIA. MAX. TWO PLACES 37.7 (1.5 ) MAX. GATE 1.5 (0.06) DIA. ANODE HOLE 1.5 (0.06) DIA. MAX (0.2) CATHODE 20 ± ( ) 3.7 (0.15) DIA. NOM. X 2.1 (0.1) DEEP MIN. BOTH ENDS (R-PUK) All dimensions in millimeters (inches) Quote between upper and lower pole pieces has to be considered after application of Mounting Force (see Thermal and Mechanical Specification) 4
5 Maximum Allowable Heatsink Temperature ( C) Maximum Average On-state Power Loss (W) Peak Half Sine Wave On-state Current (A) DC Fig.5 - Maximum Non-Repetitive Surge Current Single and Double Side Cooled 60 (Single Side Cooled) R thj-hs (DC) = K/W 120 Conduction Angle Fig. 1 - Current Ratings Characteristics DC RMS Limit 3000 Conduction Angle T J = 125 C Fig. 3- On-state Power Loss Characteristics At Any Rated Load Condition And With 50% Rated V RRM Applied Following Surge Initial T J = Hz Hz 0.0 s Number Of Equal Amplitude Half Cycle Current Pulses (N) Peak Half Sine Wave On-state Current (A) Maximum Average On-state Power Loss (W) Maximum Allowable Heatsink Temperature ( C) (Double Side Cooled) R thj-hs (DC) = K/W Conduction Angle DC Fig. 2 - Current Ratings Characteristics T = 125 C J Fig. 4- On-state Power Loss Characteristics Maximum Non Repetitive Surge Current Versus Pulse Train Duration. Control Of Conduction May Not Be Maintained. Initial T J= 125 C 50% Rated V RRM Reapplied Pulse Train Duration (s) Fig. 6 - Maximum Non-Repetitive Surge Current Single and Double Side Cooled 5
6 00 Total Stroed Charge - Qrr (µc) I T t p= 3ms dit dt t Qrr I RM (REC) T = 125 C J Q rr max. Q rr min Rate Of Decay Of On-state Current - di/dt (A/µs) Fig. 7 - Stored Charged Transient Thermal Impedance Z thj-hs (K/W) Steady State Value R thj-c = K/W (Single Side Cooled) R = K/W thj-c (Double Side Cooled) (DC Operation) Square Wave Pulse Duration (s) Fig Thermal Impedance Z thj-hs Characteristics Instantaneous Gate Voltage (V) 10 1 (1) PGM = 2W (2) PGM = 4W (3) PGM = 8W (4) PGM = 20W (5) PGM = 50W (6) PGM =W VGD IGD Tj=25 C Tj=125 C Device: Frequency Limited by PG(AV) Instantaneous Gate Current (A) Fig Gate Characteristics Tj=-40 C (5) (1) (2) (6) (3) (4) 6
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Sxx20x & Sxx25x Series RoHS Description Excellent unidirectional switches for phase control applications such as heating and motor speed controls. Standard phase control SCRs are triggered with few milliamperes
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