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Part Name(s) : H11AA1 H11AA2 H11AA3 H11AA4 Motorola
Motorola => Freescale
Description : 6-PIN DIP OPTOISOLATORS AC INPUT/TRANSISTOR OUTPUT View

The H11AA1, H11AA2, H11AA3, H11AA4 devices consist of two gallium–arsenide infrared emitting diodes connected in inverse parallel, optically coupled to a monolithic silicon phototransistor detector.

• Built–In Protection for Reverse Polarity
• Guaranteed CTR Minimum Values as High as 100%
• Guaranteed Minimum/Maximum Symmetry Limits
• To order devices that are tested and marked per
   VDE 0884 requirements, the suffix ”V” must be
   included at end of part number. VDE 0884 is a test option.

Applications
• Detecting or Monitoring AC Signals
AC Line/Digital Logic Isolation
• Programmable Controllers
• InterfACing and coupling systems
   of different potentials and impedances
AC/DC — Input Modules

Part Name(s) : MOC8111 MOC8112 MOC8113 Motorola
Motorola => Freescale
Description : 6-PIN DIP OPTOISOLATORS Transistor OUTPUT(No Base Connection) View

6-PIN DIP OPTOISOLATORS Transistor OUTPUT(No Base Connection)

The MOC8111, MOC8112 and MOC8113 devices consist of a gallium arsenide infrared emitting diode optically coupled to a monolithic silicon phototransistor detector. The internal base–to–Pin 6 connection has been eliminated for improved noise immunity.

• To order devices that are tested and marked per VDE 0884 requirements, the
   suffix ”V” must be included at end of part number. VDE 0884 is a test option.
  
Applications
• Appliances, Measuring Instruments
• Regulation and FeedbACk Control
• Programmable Controllers
• InterfACing and coupling systems of different potentials and impedances
• General Purpose Switching Circuits
• High Noise Environments

Part Name(s) : MOC3010 MOC3011 MOC3012 MOC3010V MOC3011V MOC3012V Motorola
Motorola => Freescale
Description : 6-PIN DIP Random-Phase OPTOISOLATORS TriAC Driver OUTPUT View

6-PIN DIP Random-Phase OPTOISOLATORS TriAC Driver OUTPUT (250 Volts Peak)

The MOC3010 Series consists of gallium arsenide infrared emitting diodes, optically coupled to silicon bilateral switch and are designed for applications requiring isolated triAC triggering, low–current isolated AC switching, high electrical isolation (to 7500 VAC peak), high detector standoff voltage, small size, and low cost.

• To order devices that are tested and marked per VDE 0884 requirements, the suffix ”V” must be included at end of part number. VDE 0884 is a test option. Recommended for 115 VAC(rms) Applications:
• Solenoid/Valve Controls
• Lamp Ballasts
• InterfACing Microprocessors to 115 VAC Peripherals
• Motor Controls
• Static AC Power Switch
• Solid State Relays
• Incandescent Lamp Dimmers

 

Part Name(s) : MOC3081 MOC3082 MOC3083 Motorola
Motorola => Freescale
Description : 6-PIN DIP Zero-Cross OPTOISOLATORS TriAC Driver OUTPUT View

6-PIN DIP Zero-Cross OPTOISOLATORS TriAC Driver OUTPUT (800 Volts Peak)

The MOC3081, MOC3082 and MOC3083 devices consist of gallium arsenide infrared emitting diodes optically coupled to monolithic silicon detectors performing the function of Zero Voltage Crossing bilateral triAC drivers.
They are designed for use with a triAC in the interfACe of logic systems to equipment powered from 240 VAC lines, such as solid–state relays, industrial controls, motors, solenoids and consumer appliances, etc.

• Simplifies Logic Control of 240 VAC Power
• Zero Voltage Crossing
• dv/dt of 1500 V/µs Typical, 600 V/µs Guaranteed
• To order devices that are tested and marked per VDE 0884 requirements, the
   suffix ”V” must be included at end of part number. VDE 0884 is a test option.
  
Recommended for 240 VAC(rms) Applications:
• Solenoid/Valve Controls
• Temperature Controls
• Lighting Controls
• E.M. ContACtors
• Static Power Switches
AC Motor Starters
AC Motor Drives
• Solid State Relays


Part Name(s) : MOC5007 MOC5008 MOC5009 Motorola
Motorola => Freescale
Description : 6-PIN DIP OPTOISOLATORS Logic OUTPUT View

6-PIN DIP OPTOISOLATORS Logic OUTPUT

The MOC5007, MOC5008 and MOC5009 have a gallium arsenide IRED optically coupled to a high–speed integrated detector with Schmitt trigger OUTPUT. Ideal for applications requiring electrical isolation, fast response time, noise immunity and digital logic compatibility.

• Guaranteed Switching Times — ton, toff 4 < µs
• Built–In ON/OFF Threshold Hysteresis
• High Data Rate, 1 MHz Typical (NRZ)
• Wide Supply Voltage Capability
• Microprocessor Compatible Drive
• To order devices that are tested and marked per VDE 0884 requirements, the
   suffix ”V” must be included at end of part number. VDE 0884 is a test option.

Applications
• InterfACing Computer Terminals to Peripheral Equipment
• Digital Control of Power Supplies
• Line Receiver — Eliminates Noise
• Digital Control of Motors and Other Servo MAChine Applications
• Logic to Logic Isolator
• Logic Level Shifter — Couples TTL to CMOS

Part Name(s) : H11B1 H11B3 Motorola
Motorola => Freescale
Description : 6-PIN DIP OPTOISOLATORS Darlington OUTPUT(Low Input Current) View

The H11B1 and H11B3 devices consist of a gallium arsenide infrared emitting diode optically coupled to a monolithic silicon photodarlington detector. They are designed for use in applications requiring high OUTPUT current (IC) at low LED input currents (IF).

• High Sensitivity to Low Input Drive Current (IF = 1 mA)
• To order devices that are tested and marked per VDE 0884 requirements, the
   suffix ”V” must be included at end of part number. VDE 0884 is a test option.

Applications
• Appliances, Measuring Instruments
• I/O InterfACes for Computers
• Programmable Controllers
• InterfACing and coupling systems of different potentials and impedances
• Solid State Relays
• Portable Electronics

Part Name(s) : MOC8101 MOC8102 MOC8103 MOC8104 MOC8105 Motorola
Motorola => Freescale
Description : 6-PIN DIP OPTOISOLATORS for Power Supply Applications(No Base Connection) View

6-PIN DIP OPTOISOLATORS for Power Supply Applications(No Base Connection)

The MOC8101, MOC8102, MOC8103, MOC8104 and MOC8105 devices consist of a gallium arsenide LED optically coupled to a silicon phototransistor in a dual–in–line pACkage.

• Closely Matched Current Transfer Ratio (CTR) Minimizes Unit–to–Unit Variation
• Narrow (CTR) Windows that translate to a Narrow and Predictable Open Loop Gain
   Window
• Very Low Coupled CapACitance along with No Chip to Pin 6 Base Connection for
   Minimum Noise Susceptibility
• To order devices that are tested and marked per VDE 0884 requirements, the
   suffix “V” must be included at end of part number. VDE 0884 is a test option.
  
Applications
• Switchmode Power Supplies (FeedbACk Control)
AC Line/Digital Logic Isolation
• InterfACing and coupling systems of different potentials and impedances

Part Name(s) : H11D1 H11D2 Motorola
Motorola => Freescale
Description : 6-PIN DIP OPTOISOLATORS High Voltage Transistor OUTPUT(300 Volts) View

The H11D1 and H11D2 consist of gallium arsenide infrared emitting diodes optically coupled to high voltage, silicon, phototransistor detectors in a standard 6–pin DIP pACkage. They are designed for high voltage applications and are particularly useful in copy mAChines and solid state relays.
   
• To order devices that are tested and marked per VDE 0884 requirements, the
    suffix ”V” must be included at end of part number. VDE 0884 is a test option.
   
Applications
• Copy MAChines
• InterfACing and coupling systems of different potentials and impedances
• Monitor and Detection Circuits
• Solid State Relays
   

Part Name(s) : MOC8204 MOC8205 MOC8206 Motorola
Motorola => Freescale
Description : 6-PIN DIP OPTOISOLATORS High Voltage Transistor OUTPUT(400 Volts) View

The MOC8204, MOC8205 and MOC8206 devices consist of gallium arsenide infrared emitting diodes optically coupled to high voltage, silicon, phototransis tor detectors in a standard 6–pin DIP pACkage. They are designed for high voltage applications and are particularly useful in copy mAChines and solid state relays.

• To order devices that are tested and marked per VDE 0884 requirements, the
   suffix ”V” must be included at end of part number. VDE 0884 is a test option.
  
Applications
• Copy MAChines
• InterfACing and coupling systems of different potentials and impedances
• Monitor and Detection Circuits
• Solid State Relays

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