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Part Name(s) : 7406
Hitachi
Hitachi -> Renesas Electronics
Description : HEX INVERTER BUFFERS/DRIVERS (WITH Open Collector HIGH-VOLTAGE OUTPUTS)

HEX INVERTER BUFFERS/DRIVERS (WITH Open Collector HIGH-VOLTAGE OUTPUTS)

INTE-ElectronicGRAL
Integral Corp.
Description : HEX INVERTER BUFFERS/DRIVERS WITH OPEN-COLLECTOR HIGH-VOLTAGE OUTPUTS

HEX INVERTER BUFFERS/DRIVERS WITH OPEN-COLLECTOR HIGH-VOLTAGE OUTPUTS

The IN7406 monolithic TTL HEX INVERTER BUFFERS/DRIVERS feature HIGH-VOLTAGE open collector OUTPUTS for interfacing WITH high-level circuits (such as MOS) or for driving high-current loads (such as lamps or relays), and are also characterized for use as INVERTER buffers for driving TTL inputs.

• Minimum breakdown Voltages is 30 V
• Maximum sink Current is 40 mÀ
• Converts TTL Voltage Levels to MOS Levels
OPEN-COLLECTOR Driver for Indicator Lamps and Relays
• Inputs Fully Compatible WITH MOST TTL Circuits.

Part Name(s) : IN7406 IN7406D IN7406N
IKSEMICON
IK Semicon Co., Ltd
Description : HEX INVERTER BUFFERS/DRIVERS WITH OPEN-COLLECTOR HIGH-VOLTAGE OUTPUTS

HEX INVERTER BUFFERS/DRIVERS WITH OPEN-COLLECTOR HIGH-VOLTAGE OUTPUTS

The IN7406 monolithic TTL HEX INVERTER BUFFERS/DRIVERS feature HIGH-VOLTAGE open collector OUTPUTS for interfacing WITHhigh-level circuits(such as MOS) or for driving high-currentloads (such as lamps or relays), and are also characterized for use as INVERTER buffers for driving TTL inputs.

• Minimumbreakdown Voltages is30 V 
• Maximumsink Currentis40 mА
• Converts TTL Voltage Levels to MOS Levels
OPEN-COLLECTOR Driver for Indicator Lamps and Relays
• Inputs Fully Compatible WITH MOST TTL Circuits.

Integral
Integral Corp.
Description : HEX INVERTER BUFFERS/DRIVERS WITH OPEN-COLLECTOR HIGH-VOLTAGE OUTPUTS

HEX INVERTER BUFFERS/DRIVERS WITH OPEN-COLLECTOR HIGH-VOLTAGE OUTPUTS

The IN7406 monolithic TTL HEX INVERTER BUFFERS/DRIVERS feature HIGH-VOLTAGE open collector OUTPUTS for interfacing WITH high-level circuits (such as MOS) or for driving high-current loads (such as lamps or relays), and are also characterized for use as INVERTER buffers for driving TTL inputs.

·  Minimum breakdown Voltages is 30 V
·  Maximum sink Current is 40 mÀ
·  Converts TTL Voltage Levels to MOS Levels
·  OPEN-COLLECTOR Driver for Indicator Lamps and Relays
·  Inputs Fully Compatible WITH MOST TTL Circuits.

Hitachi
Hitachi -> Renesas Electronics
Description : HEX INVERTER BUFFERS/DRIVERS (WITH Open Collector HIGH-VOLTAGE OUTPUTS)

HEX INVERTER BUFFERS/DRIVERS (WITH Open Collector HIGH-VOLTAGE OUTPUTS)

Part Name(s) : IN7407D IN7407N IN7407
INTE-ElectronicGRAL
Integral Corp.
Description : HEX BUFFERS/DRIVERS WITH Open Collector HIGH-VOLTAGE OUTPUTS

HEX BUFFERS/DRIVERS WITH Open Collector HIGH-VOLTAGE OUTPUTS

Part Name(s) : IN7407 IN7407D IN7407N
ETC1
Unspecified
Description : HEX BUFFERS/DRIVERS WITH Open Collector HIGH-VOLTAGE OUTPUTS

[IKSEMICON]

HEX BUFFERS/DRIVERS WITH Open Collector HIGH-VOLTAGE OUTPUTS

 

INTE-ElectronicGRAL
Integral Corp.
Description : HEX Inverted Buffers WITH OPEN-COLLECTOR OUTPUTS

HEX Inverted Buffers WITH OPEN-COLLECTOR OUTPUTS

This device contains HEX inverted buffers WITH OPEN-COLLECTOR. It performs the Boolean function Y=A in positive Logic.

• High Output Voltage (30 V)
• High Speed ( tPD = 8.5 ns typical)
• Low Power Dissipation (PD = 18 mW per Gate)

IKSEMICON
IK Semicon Co., Ltd
Description : HEX Inverted Buffers WITH OPEN-COLLECTOR OUTPUTS

HEX Inverted Buffers WITH OPEN-COLLECTOR OUTPUTS

This device contains HEX inverted buffers WITH OPEN-COLLECTOR. It performs the Boolean function Y=A in positive Logic.

• High Output Voltage (30 V)
• High Speed ( tPD = 8.5 ns typical)
• Low Power Dissipation (PD = 18 mW per Gate)

System-Logic
System Logic Semiconductor
Description : HEX Inverted Buffers WITH OPEN-COLLECTOR OUTPUTS

HEX Inverted Buffers WITH OPEN-COLLECTOR OUTPUTS

This device contains HEX inverted buffers WITH OPEN-COLLECTOR. It performs the Boolean function Y=A in positive Logic.

 • High Output Voltage (30 V)
 • High Speed ( tPD = 8.5 ns typical)
 • Low Power Dissipation (PD = 18 mW per Gate)

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