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HCPL-T250 Input Threshold Current (IFLH): (Max.) Supply Current (


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Output Current IGBT Gate Drive Optocoupler Technical Data
HCPL-T250
Input Threshold Current (IFLH): (Max.) Supply Current (ICC): (Max.) Supply Voltage (VCC): 15-35 Output Current (IO): (Min.) Switching Time (tPLH/tPHL): (Max.) Isolation Voltage (VISO): 2500 Vrms (Min.) Recognized: File E55361 Approved 0884 Approved with VIORM Vpeak kV/µs Minimum Common Mode Rejection (CMR) 1500 Creepage Distance: Clearance:
Description
HCPL-T250 contains GaAs LED. optically coupled integrated circuit with power output stage. This optocoupler ideally suited driving power IGBTs MOSFETs used motor control inverter applications. high operating voltage range output stage provides drive voltages required gate controlled devices. voltage current supplied this optocoupler makes ideally suited directly driving IGBTs with ratings 1200 V/25 IGBTs with higher ratings, HCPL-T250 used drive discrete power stage which drives IGBT gate.
Functional Diagram
ANODE CATHODE
SHIELD
Truth Table
Vout
HIGH
Ordering Information
Specify Part Number followed Option Number. Example: HCPL-T250 #XXX Option Standard Package, tube. 0884 IORM Vpeak Option, tube. Gull Wing Surface Mount Option, tube. Tape Reel Packaging Option, 1000 reel.
Applications
IGBT/MOSFET Gate Drive AC/Brushless Motor Drives Industrial Inverters Switch Mode Power Supplies
bypass capacitor must connected between pins
CAUTION: advised that normal static precautions taken handling assembly this component prevent damage and/or degradation which induced ESD.
Package Outline Drawings
Standard Package
9.65 0.25 (0.380 0.010)
7.62 0.25 (0.300 0.010) 6.35 0.25 (0.250 0.010) DATE CODE
T250 YYWW
1.19 (0.047) MAX.
1.78 (0.070) MAX.
4.70 (0.185) MAX. 0.51 (0.020) MIN. 2.92 (0.115) MIN. TYP.
0.254
0.076 0.051 0.003) (0.010 0.002)
1.080 0.320 (0.043 0.013)
0.65 (0.025) MAX. 2.54 0.25 (0.100 0.010)
DIMENSIONS MILLIMETERS (INCHES).
Gull Wing Surface Mount Option
LOCATION (FOR REFERENCE ONLY) 9.65 0.25 (0.380 0.010)
1.016 (0.040) 1.194 (0.047)
4.826 TYP. (0.190) 6.350 0.25 (0.250 0.010) 9.398 (0.370) 9.908 (0.390)
1.194 (0.047) 1.778 (0.070) 1.780 (0.070) MAX. 9.65 0.25 (0.380 0.010) 7.62 0.25 (0.300 0.010)
0.381 (0.016) 0.635 (0.025)
1.19 (0.047) MAX.
4.19 MAX. (0.165)
0.076 0.051 0.003) (0.010 0.002) 0.254
1.080 0.320 (0.043 0.013) 2.540 (0.100)
0.635 0.130 (0.025 0.005)
0.635 0.25 (0.025 0.010) NOM.
DIMENSIONS MILLIMETERS (INCHES). LEAD COPLANARITY 0.10 (0.004 inches).
Regulatory Information
HCPL-T250 been approved following organizations: Recognized under 1577, Component Recognition Program, File E55361.
Approved under Component Acceptance Notice File 88324. Approved under 0884/06.92 with VIORM Vpeak.
Insulation Safety Related
Parameter Minimum External (Clearance) Minimum External Tracking (Creepage) Minimum Internal Plastic (Internal Clearance) Tracking Resistance (Comparative Tracking Index) Isolation Group Symbol L(101) Value Units Conditions Measured from input terminals output terminals, shortest distance through air. Measured from input terminals output terminals, shortest distance path along body. Insulation thickness between emitter detector; also known distance through insulation 112/VDE 0303 Part Material Group (DIN 0110, 1/89, Table
L(102)
0.08
IIIa
Volts
Absolute Maximum Ratings (Compared with HCPL-3120)
Parameter Operating Temperature "High" Peak Output Current "High" Peak Output Current Storage Temperature Average Input Current Peak Transient Input Current Pulse Width, pps) Reverse Input Voltage Supply Voltage Output Voltage Output Power Dissipation Lead Solder Temperature Solder Reflow Temperature Profile Symbol IOH(PEAK) IOL(PEAK) IF(AVG) IF(TRAN) (VCC VEE) Units HCPL-3120 Min. Max. HCPL-T250 Min. Max. Note
260°C sec., below seating plane Package Outline Drawings section
Notes: Maximum pulse width maximum duty cycle 0.2%. HCPL-3120 Applications section additional details limiting OH(PEAK). Derate linearly above 70°C free-air temperature rate mA/°C. Derate lineraly above 70°C free-air temperature rate mW/°C.
Recommended Operating Conditions
Parameter Power Supply Voltage Input Current (ON) Input Voltage (OFF) Symbol IF(ON) VF(OFF) Min. -3.0 Max. Units
Electrical Specifications (Compared with HCPL-3120)
Over recommended operating conditions (IF(ON) VF(OFF) -3.0 Ground) unless otherwise specified.
Parameter Input Forward Voltage Temperature Coefficient Forward Voltage Input Reverse Current Input Capacitance High Level Output Current Level Output Current High Level Output Voltage Level Output Voltage Symbol Units Min. HCPL-3120 Typ.* Max. -1.6 Min. HCPL-T250 Typ.* Max. -2.0 Test Conditions Note
N.A. N.A.
-100
+0.1 +0.5
+0.8 +2.5 Output Open Output Open -3.0 +0.8
High Level ICCH Supply CurrentntSupply Current Level ICCL Supply Current Threshold Input Current High Threshold Input Voltage High Supply Voltage Capacitance (Input-Output) Resistance (Input-Output) IFLH
VFHL
CI-0 RI-0
1012
1012
*All typical values 25°C unless otherwise noted.
Switching Specifications (AC) (Compared with HCPL-3120)
Over recommended operating conditions 100°C, F(ON) VF(OFF) -3.0 Ground) unless otherwise specified.
HCPL-3120 (-40°C 100°C) Parameter Symbol Units Propagation Delay tPHL Time High Output Level Propagation Delay Time Output Level Output Rise Time Output Fall Time Pulse Width Distortion TPLH Min. Typ.* 0.27 HCPL-T250 (-20°C 70°C) Typ.* 0.27 Test Max. Conditions kHz, Duty Cycle Note
Max. Min.
-0.35
0.35
N.A. N.A. N.A. N.A. N.A.
Propagation (tPHL Delay Difference tPLH) Between Parts Output High |CMH Level Common Mode Transient Immunity
kV/µs
25°C HCPL -3120 HCPL -T250 1500
Output Level Common Mode Transient Immunity
|CML
kV/µs
25°C HCPL -3120 HCPL -T250 1500
*All typical values 25°C unless otherwise noted. Notes: difference between tPLH between HCPL-3120 parts under same test condition. Common mode transient immunity high state maximum tolerable dVCM/dt common mode pulse, VCM, assure that output will remain high state (i.e., 15.0 Common mode transient immunity state maximum tolerable dVCM common mode pulse, VCM, assure that output will remain state (i.e.,
www.semiconductor.agilent.com Data subject change. Copyright 1999 Agilent Technologies 5968-0977E (11/99)

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