MAX378

Features: ·Fault Input Voltage ±75V with Power Supplies Off·Fault Input Voltage ±60V with ±15V Power Supplies·All Switches Off with Power Supplies Off·On Channel Turns OFF if Overvoltage Occurs on Input or Output·Only Nanoamperes of Input Current Under All Fault Conditions·No Increase in Supply Cu...

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SeekIC No. : 004410166 Detail

MAX378: Features: ·Fault Input Voltage ±75V with Power Supplies Off·Fault Input Voltage ±60V with ±15V Power Supplies·All Switches Off with Power Supplies Off·On Channel Turns OFF if Overvoltage Occurs on I...

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Part Number:
MAX378
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/27

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Product Details

Description



Features:

·Fault Input Voltage ±75V with Power Supplies Off
·Fault Input Voltage ±60V with ±15V Power Supplies
·All Switches Off with Power Supplies Off
·On Channel Turns OFF if Overvoltage Occurs on Input or Output
·Only Nanoamperes of Input Current Under All Fault Conditions
·No Increase in Supply Currents Due to Fault Conditions
·Latchup-Proof Construction
·Operates from ±4.5V to ±18V Supplies
·All Digital Inputs are TTL and CMOS Compatible
·Low-Power Monolithic CMOS Design



Application

Data Acquisition Systems
Industrial and Process Control Systems
Avionics Test Equipment
Signal Routing Between Systems



Pinout

  Connection Diagram


Specifications

Voltage between Supply Pins ......................................+44V
V+ to Ground ...............................................................+22V
V- to Ground..................................................................-22V
Digital Input Overvoltage:
V+..................................................................................+4V
V- ...................................................................................-4V
Analog Input with Multiplexer Power On.....................±65V
Recommended V+........................................................+15V
Power Supplies V- ........................................................-15V
Analog Input with Multiplexer Power Off.....................±80V
Continuous Current, IN or OUT....................................20mA
Peak Current, IN or OUT
(Pulsed at 1ms, 10% duty cycle max) ..........................40mA
Power Dissipation (Note 1) (CERDIP) .........................1.28W
Operating Temperature Range:
MAX378/379C.....................................................0 to +70
MAX378/379E .................................................-40 to +85
MAX378/379M ...............................................-55 to +125
Storage Temperature Range ................ ........-65 to +150



Description

The MAX378 8-channel single-ended (1-of-8) multiplexer and the MAX379 4-channel differential (2-of-8) multiplexer use a series N-channel/P-channel/N-channel structure to provide significant fault protection. If the power supplies to the MAX378/MAX379 are inadvertently turned off while input voltages are still applied, all channels in the muxes are turned off, and only a few nanoamperes of leakage current will flow into the inputs. This protects not only the MAX378/MAX379 and the circuitry they drive, but also the sensors or signal sources that drive the muxes.

The series N-channel/P-channel/N-channel protection structure of MAX378 has two significant advantages over the simple current-limiting protection scheme of the industry's firstgeneration fault-protected muxes. First, the Maxim protection scheme limits fault currents to nanoamp leakage values rather than many milliamperes. This prevents damage to sensors or other sensitive signal sources. Second, the MAX378/MAX379 fault-protected muxes can withstand a continuous ±60V input, unlike the first generation, which had a continuous ±35V input limitation imposed by power dissipation considerations.

All digital inputs of MAX378 have logic thresholds of 0.8V and 2.4V, ensuring both TTL and CMOS compatibility without requiring pull-up resistors. Break-before-make operation is guaranteed. Power dissipation is less than 2mW.




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