HCPL-5301

Logic Output Optocouplers 450ns PWD 30%CTR Hermetically sealed

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SeekIC No. : 0089917 Detail

HCPL-5301: Logic Output Optocouplers 450ns PWD 30%CTR Hermetically sealed

floor Price/Ceiling Price

US $ 45.03~64.33 / Piece | Get Latest Price
Part Number:
HCPL-5301
Mfg:
Avago Technologies
Supply Ability:
5000

Price Break

  • Qty
  • 0~5
  • 5~25
  • 25~100
  • Unit Price
  • $64.33
  • $48.25
  • $45.03
  • Processing time
  • 15 Days
  • 15 Days
  • 15 Days
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Total Cost: $ 0.00

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Upload time: 2024/4/26

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Product Details

Quick Details

Output Type : Open Collector Maximum Propagation Delay Time : 750 ns
Maximum Forward Diode Voltage : 1.8 V Maximum Reverse Diode Voltage : 5 V
Maximum Forward Diode Current : 20 mA Maximum Continuous Output Current : 15 mA
Maximum Power Dissipation : 145 mW Maximum Operating Temperature : + 125 C
Minimum Operating Temperature : - 55 C Package / Case : DIP-8    

Description

Isolation Voltage :
Packaging :
Maximum Power Dissipation : 145 mW
Maximum Operating Temperature : + 125 C
Maximum Forward Diode Voltage : 1.8 V
Maximum Reverse Diode Voltage : 5 V
Output Type : Open Collector
Package / Case : DIP-8
Maximum Forward Diode Current : 20 mA
Maximum Continuous Output Current : 15 mA
Minimum Operating Temperature : - 55 C
Maximum Propagation Delay Time : 750 ns


Features:

Performance Specified Over Full Military Temperature Range: -55°C to +125°C
Fast Maximum Propagation Delays
tPHL = 450ns,
tPLH = 650ns
Minimized Pulse Width Distortion (PWD = 450 ns)
High Common Mode Rejection (CMR): 10kV/s at VCM= 1000V
CTR> 30% at IF = 10 mA
1500 Vdc Withstand Test Voltage
Manufactured and Tested on a MIL-PRF-38534 Certified Line
Hermetically Sealed Packages
Dual Marked with Device Part Number and DSCC Drawing Number
QML-38534, Class H and K
HCPL-4506 Function Compatibility





Application

• Military and Space
• High Reliability Systems
• Harsh Industrial Environments
• Transportation, Medical, and Life Critical Systems
• IPM Isolation
• Isolated IGBT/MOSFET Gate Drive
• AC and Brushless DC Motor Drives
• Industrial Inverters





Specifications

Storage Temperature (TS).............................................................................................................-65 to 150°C
Operating Temperature (TA).........................................................................................................-55 to 125°C
Junction Temperature (TJ)........................................................................................................................175°C
Average Input Current (IF(AVG))...............................................................................................................25 mA
Peak Input Current (50% duty cycle, 1 ms pulse width) (IF(PEAK))........................................................50 mA
Peak Transient Input Current (<1 µs pulse width, 300 pps) (IF(TRAN)).....................................................1.0 A
Reverse Input Voltage (Pin 3-2) (VR)............................................................................................................5 V
Average Output Current (Pin 6) (IO(AVG))................................................................................................15 mA
Resistor Voltage (Pin 7) (V7).........................................................................................................-0.5 V to VCC
Output Voltage (Pin 6-5) (VO)..........................................................................................................-0.5 to 30 V
Supply Voltage (Pin 8-5) (VCC).........................................................................................................-0.5 to 30 V
Output Power Dissipation (PO)..............................................................................................................100 mW
Total Power Dissipation (PT)..................................................................................................................145 mW
Lead Solder Temperature (soldering, 10 seconds)..................................................................................260°C





Description

The HCPL-5301 is a high reliability Class H hermetically sealed optocoupler in an 8-Pin ceramic DIP package with gold plated leads. Solder dipped leads and various lead form options are also available. See the datasheet for details.
The HCPL-5301 is manufactured and tested on a MIL-PRF-38534 certified line and included in the DSCC Qualified Manufacturers List QML-38534 for Hybrid Microcircuits. The product is capable of operation and storage over the full military temperature range and may also be purchased as either commercial grade, with full MIL-PRF-38534 Class K level testing, or from the DSCC Standard Microcircuit Drawing (SMD) 5962-96852.
The HCPL-5301 consists of a GaAsP LED optically coupled to an integrated high gain photodetector. Minimized propagation delay difference between devices make these HCPL-5301 optocouplers excellent solutions for improving inverter efficiency through reduced switching dead time. An on chip 20 kohm output pull-up resistor can be enabled by shorting pins 6 and 7, thus eliminating the need for an external pull-up resistor in common IPM applications. Specifications and performance plots are contained in the datasheet for typical IPM applications.



The HCPL-5301 devices consist of a GaAsP LED optically coupled to an integrated high gain photo detector in a hermetically sealed package. The products are capable of operation and storage over the full military temperature ange and can be purchased as either standard product or with full MIL-PRF-38534 Class Level H or K testing or from the DSCC Drawing 5962-96852. All devices are manufactured and tested on a MIL-PRF-38534 certified line and are included in the DSCC Qualified Manufacturers List QML-38534 for Hybrid Micro-circuits. Minimized propagation delay difference between devices make these optocouplers excellent solutions for improving inverter efficiency through reduced switching dead time. An on chip 20 kΩoutput pull-up resistor can be enabled by shorting output pins 6 and 7, thus eliminating the need for an external pull-up resistor in common IPM applica- tions. Specifications and performance plots are given for typical IPM applications.




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