UMW TLP250 UMW IGBT Gate Drive Optocoupler Suitable for Fast Switching and Power System Applications
Product Overview
The UMW TLP250 is a 1.5 Amp output current IGBT gate drive optocoupler designed for driving low-power IGBTs and MOSFETs. It features an AlGaAs LED coupled to a photosensitive integrated circuit via infrared light, offering high common mode rejection and wide operating voltage range. This optocoupler is ideal for fast switching drive applications in motor control inverters and high-performance power systems.
Product Attributes
- Brand: UMW
- Product Code: TLP250
- Origin: UTD Semiconductor Co., Limited
- Certifications: DIN/EN/IEC EN60747-5-5
Technical Specifications
| Parameter | Symbol | Min | Typ | Max | Units | Conditions |
|---|---|---|---|---|---|---|
| Forward Input Current | IF | 10 | mA | (2) | ||
| Input Current (ON) | IF(ON) | 10 | mA | (2) | ||
| Input Voltage (OFF) | VF(OFF) | 0.8 | V | |||
| Power Supply Voltage | VCC | 15 | 30 | V | (1) | |
| Operating Temperature | Topr | -20 | 85 | C | ||
| Storage Temperature | Tstg | -55 | 125 | C | ||
| Soldering Temperature | Tsol | 260 | C | (2) | ||
| Forward Input Current (Absolute Max) | IFM | 25 | mA | |||
| Reverse Voltage (Absolute Max) | VR | 5 | V | |||
| Peak Output Current (Absolute Max) | IO(PEAK) | 1.5 | A | (1) | ||
| Supply Voltage (Absolute Max) | VCC | 35 | V | |||
| Output Voltage (Absolute Max) | VO | 35 | V | |||
| Output Isolation Voltage (Absolute Max) | VISO | 5000 | Vrms | |||
| Total Power Consumption (Absolute Max) | Ptot | 200 | mW | |||
| Input forward voltage | VF | 1.2 | 1.8 | V | IF=10mA, TA=25C | |
| Input reverse current | IR | 0.5 | A | VR=5V, TA=25C | ||
| Input capacitance | Ct | 11 | pF | V=0V, f=1MHz, TA=25C | ||
| Output current (High Level) | IOPH | 1.6 | A | VCC1=15V, VEE1=-15V, RL=200, IF=5mA | ||
| Output current (Low Level) | IOPL | 0.8 | A | VCC1=15V,VEE1=-15V,RL=200,IF=0.8mA | ||
| Output voltage (High Level) | VOH | 11 | V | VCC=30V, IF=10mA, TA=25C | ||
| Output voltage (Low Level) | VOL | -12.5 | -14.2 | V | VCC=30V, IF=10mA | |
| Threshold input current | 2 | 5 | mA | VCC=30V, IF=10mA, TA=25C | ||
| Threshold input voltage | 11 | V | VCC=30V, IF=10mA | |||
| Supply current | ICCH | 7.5 | mA | IF=10mA, V8-6=4V | ||
| Supply current | ICCL | 2 | mA | IF=0mA, V6-5=2.5V | ||
| Propagation Delay Time to Low Output Level | tPLH | 100 | 300 | ns | Input signal (f = 250 kHz, duty = 50 %, tr= tf= 5 ns or less). CL is approximately 15 pF which includes probe and stray wiring capacitance. | |
| Propagation Delay Time to High Output Level | tPHL | 100 | 300 | ns | Input signal (f = 250 kHz, duty = 50 %, tr= tf= 5 ns or less). CL is approximately 15 pF which includes probe and stray wiring capacitance. | |
| Pulse Width Distortion | PWD | 100 | ns | |||
| Propagation Delay Difference Between Any Two Parts | PDD | 50 | ns | |||
| Output Rise Time | tr | 35 | ns | Input signal (f = 250 kHz, duty = 50 %, tr= tf= 5 ns or less). CL is approximately 15 pF which includes probe and stray wiring capacitance. | ||
| Output Drop Time | tf | 35 | ns | Input signal (f = 250 kHz, duty = 50 %, tr= tf= 5 ns or less). CL is approximately 15 pF which includes probe and stray wiring capacitance. | ||
| Common Mode Transient Immunity (High Output) | |CMH| | 3 | KV/s | TA=25C, VDD=30V VCM=2000V, IF=7~16mA, VF=0V | ||
| Common Mode Transient Immunity (Low Output) | |CML| | 80 | KV/s | TA=25C, VDD=30V VCM=2000V, IF=7~16mA, VF=0V | ||
| Insulation Thickness | dI | 0.4 | mm | |||
| Peak Isolation Voltage | VIORM | 1500 | Vpeak | |||
| Transient Isolation Voltage | VIOTM | 7000 | Vpeak | |||
| Isolation Voltage | VISO | 5000 | Vrms | For 1 min | ||
| Creepage Distance | DTI | 7 | mm | Measured from input terminals to output terminals, shortest distance path along body | ||
| Clearance Distance | L | 7 | mm | Measured from input terminals to output terminals, shortest distance through air |
2512051655_UMW-TLP250-UMW_C53109739.pdf
Our mission is to offer "High Quality" & "Good Service" & "Fast Delivery" to help our clients to gain more profits.