CR03AM KERSEMI | Alldatasheet
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φ5.0 MAX 4.4 5.0 MAX12.5 MIN
3.9 MAX
1.3 1.25 1.25 CIRCUMSCRIBE CIRCLE φ0.7 13 2 OUTLINE DRAWING Dimensions in mm JEDEC : TO-92 1/CR 2/CR CATHODE ANODE GATE CR03AM CR03AM APPLICATION Leakage protector, timer, gas ignitor Symbol I T (RMS) I T (AV) I TSM I P GM P G (AV) V FGM V RGM I FGM T j T stg Parameter RMS on-state current Average on-state current Surge on-state current I for fusing Peak gate power dissipation Average gate power dissipation Peak gate forward voltage Peak gate reverse voltage Peak gate forward current Junction temperature Storage temperature Weight Conditions Commercial frequency, sine half wave, 180° conduction, T a =47°C 60Hz sine half wave 1 full cycle, peak value, non-repetitive Value corresponding to 1 cycle of half wave 60Hz, surge on-state current Typical value Unit A A A A s W W V V A g Ratings 0.47 0.3 1.6 0.5 0.1 0.3 –40 ~ +110 –40 ~ +125 0.23 T (AV) DRM GT Symbol V RRM V RSM V R (DC) V DRM V DSM V D (DC) Parameter Repetitive peak reverse voltage Non-repetitive peak reverse voltage DC reverse voltage Repetitive peak off-state voltage Non-repetitive peak off-state voltage DC off-state voltage Voltage class Unit V V V V V V MAXIMUM RATINGS 400 500 320 400 500 320 600 800 480 600 800 480 www.kersemi.com
I GS I GT DC 60Ω V GT TUT 1kΩ R GK SWITCH 1 : I GT measurement SWITCH 2 : V GT measurement (Inner resistance of voltage meter is about 1kΩ ) ]3. I GT , V GT measurement circuit. SWITCH CR03AM
ELECTRICAL CHARACTERISTICS
I RRM I DRM V TM V GT V GD I GT I H R th (j-a) Test conditions T j =110°C, V RRM applied T j =110°C, V DRM applied, R GK =1kW T a =25°C, I TM =4A, instantaneous value T j =25°C, V D =6V, I T =0.1A Tj=110°C, V D =1/2V DRM , R GK =1kW T j =25°C, V D =6V, I T =0.1A T j =25°C, V D =12V, R GK =1kW Junction to ambient Unit mA mA V V V mA mA °C/W Typ. 1.5 Parameter Repetitive peak reverse current Repetitive peak off-state current On-state voltage Gate trigger voltage Gate non-trigger voltage Gate trigger current Holding current Thermal resistance Limits Min. 0.2 Max. 0.1 0.1 1.8 0.8 100 ] 2 180 ]2. If special values of I GT are required, choose at least two items from those listed in the table below. (Example: AB, BC) B 20 ~ 50 C 40 ~ 100 Item I GT (mA) A 1 ~ 30 The above values do not include the current flowing through the 1kW resistance between the gate and cathode. PERFORMANCE CURVES T a = 25°C 23 5 7 1 0 23 5 7 1 0 MAXIMUM ON-STATE CHARACTERISTICS ON-STATE CURRENT (A) ON-STATE VOLTAGE (V) RATED SURGE ON-STATE CURRENT SURGE ON-STATE CURRENT (A) CONDUCTION TIME (CYCLES AT 60Hz) www.kersemi.com
V FGM = 6V V GT = 0.8V j = 25°C) I GT = 100µA j = 25°C) P GM = 0.5W P G(AV) = 0.1W V GD = 0.2V I FGM = 0.3A 2310 57 1 0 23 57 1 0 23 57 1 0 200 100 120 140 160 180 2310 571 0 23 57 1 0 23 57 1 0 60–20–40 0 20 40 80 100 120 TYPICAL EXAMPLE 1.0 0.8 0.7 0.6 0.3 0.4 0.1 0–60–40 –20 20 80 140 120 0.2 0.5 0.9 06 0 40 100 160 120 140 100 θ = 30° 60° 120° 90° 180° θ 360° RESISTIVE, INDUCTIVE LOADS NATURAL CONVECTION 0.3 0.2 0.1 0.4 0 0.50.40 0.1 0.2 0.3 0.5 θ = 30° 60° 120° 90° 180° θ 360° RESISTIVE, INDUCTIVE LOADS MAXIMUM AVERAGE POWER DISSIPATION (SINGLE-PHASE HALF WAVE) AVERAGE POWER DISSIPATION (W) AVERAGE ON-STATE CURRENT (A) GATE TRIGGER VOLTAGE VS. JUNCTION TEMPERATURE GATE TRIGGER VOLTAGE (V) JUNCTION TEMPERATURE ( °C) MAXIMUM TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (JUNCTION TO AMBIENT) TRANSIENT THERMAL IMPEDANCE ( °C/W) TIME (s) GATE CHARACTERISTICS GATE VOLTAGE (V) GATE CURRENT (mA) GATE TRIGGER CURRENT VS. JUNCTION TEMPERATURE JUNCTION TEMPERATURE ( °C) 100 (%)GATE TRIGGER CURRENT (T j =t°C ) GATE TRIGGER CURRENT (T j =25°C ) ALLOWABLE AMBIENT TEMPERATURE VS. AVERAGE ON-STATE CURRENT (SINGLE-PHASE HALF WAVE) AMBIENT TEMPERATURE ( °C) AVERAGE ON-STATE CURRENT (A) DISTRIBUTION I GT (25°C) = 35µA TYPICAL EXAMPLE www.kersemi.com
0 120–40 04 0 8 0–20 20 60 100 R GK = 1kΩ TYPICAL EXAMPLE 2310 571 0 23 57 1 0 23 57 1 0 160 100 120 140 T j = 110°C TYPICAL EXAMPLE 0.3 0.2 0.1 0.5 0.4 θ = 30° 60° 120° 90° 180° θ θ 360° RESISTIVE LOADS 0.3 0.2 0.1 0.5 0.4 θ = 30° 60° 90° 180° 270° DC 120° θ 360° RESISTIVE, INDUCTIVE LOADS 160 120 140 100 0 0.50 0.2 0.40.1 0.3 θ 360° θ = 30° 120° 180° DC 270° 60° 90° NATURAL CONVECTION RESISTIVE, INDUCTIVE LOADS 160 120 140 100 60° 120° 180° θ = 30° 90° θ θ 360° RESISTIVE LOADS NATURAL CONVECTION MAXIMUM AVERAGE POWER DISSIPATION (SINGLE-PHASE FULL WAVE) AVERAGE POWER DISSIPATION (W) AVERAGE ON-STATE CURRENT (A) (SINGLE-PHASE FULL WAVE) AMBIENT TEMPERATURE ( °C) AVERAGE ON-STATE CURRENT (A) MAXIMUM AVERAGE POWER DISSIPATION (RECTANGULAR WAVE) AVERAGE POWER DISSIPATION (W) AVERAGE ON-STATE CURRENT (A) ALLOWABLE AMBIENT TEMPERATURE VS. AVERAGE ON-STATE CURRENT (RECTANGULAR WAVE) AMBIENT TEMPERATURE ( °C) AVERAGE ON-STATE CURRENT (A) BREAKOVER VOLTAGE VS. GATE TO CATHODE RESISTANCE GATE TO CATHODE RESISTANCE (k Ω ) 100 (%)BREAKOVER VOLTAGE (R GK = rkΩ ) BREAKOVER VOLTAGE (R GK = 1kΩ ) BREAKOVER VOLTAGE VS. JUNCTION TEMPERATURE JUNCTION TEMPERATURE ( °C) 100 (%)BREAKOVER VOLTAGE (T j = t°C ) BREAKOVER VOLTAGE (T j = 25°C ) www.kersemi.com
T j = 25°C R GK = 1kΩ T j = 110°C 23 410 57 1 0 24 35 7 1 0 2310 57 2 3 571 0 23 5 7 1 0 100 200 300 400 500 160 120 140 100 0 120–40 04 0 8 0–20 20 60 100 TYPICAL EXAMPLE 60–20–40–60 0 20 40 80 100120140 R GK = 1kΩ HOLDING CURRENT VS. JUNCTION TEMPERATURE HOLDING CURRENT (mA) JUNCTION TEMPERATURE ( °C) HOLDING CURRENT VS. GATE TO CATHODE RESISTANCE HOLDING CURRENT (mA) GATE TO CATHODE RESISTANCE (k Ω ) GATE TRIGGER CURRENT VS. GATE CURRENT PULSE WIDTH GATE TRIGGER CURRENT ( µA) GATE TRIGGER PULSE WIDTH ( µs) BREAKOVER VOLTAGE VS. RATE OF RISE OF OFF-STATE VOLTAGE RATE OF RISE OF OFF-STATE VOLTAGE (V/ µs) 100 (%)BREAKOVER VOLTAGE (dv/dt = vV/µ s) BREAKOVER VOLTAGE (dv/dt = 1V/µ s) REPETITIVE PEAK REVERSE VOLTAGE VS. JUNCTION TEMPERATURE JUNCTION TEMPERATURE ( °C) 100 (%)REPETITIVE PEAK REVERSE VOLTAGE (T j =t°C ) REPETITIVE PEAK REVERSE VOLTAGE (T j =25°C ) DISTRIBUTION I GT (25°C) = 35µA TYPICAL EXAMPLE V D = 12V, T j = 25°C # 2 # 1 TYPICAL EXAMPLE I GT (25°C) I H (1kΩ ) # 1 10µA 1.0mA # 2 26µA 1.1mA T j = 25°C TYPICAL EXAMPLE I GT (DC) # 1 16µA # 2 65µA # 1 # 2 www.kersemi.com