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6 Channels Texas Instruments Electronic Components 11ns ISO6760FDWR

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6 Channels Texas Instruments Electronic Components 11ns ISO6760FDWR

6 Channels Texas Instruments Electronic Components 11ns ISO6760FDWR
6 Channels Texas Instruments Electronic Components 11ns ISO6760FDWR 6 Channels Texas Instruments Electronic Components 11ns ISO6760FDWR 6 Channels Texas Instruments Electronic Components 11ns ISO6760FDWR 6 Channels Texas Instruments Electronic Components 11ns ISO6760FDWR 6 Channels Texas Instruments Electronic Components 11ns ISO6760FDWR

Large Image :  6 Channels Texas Instruments Electronic Components 11ns ISO6760FDWR

Product Details:
Place of Origin: N/S
Brand Name: Texas Instruments
Certification: /
Model Number: ISO6760FDWR
Payment & Shipping Terms:
Minimum Order Quantity: 1PCS
Price: Negotiation
Delivery Time: 2-7 work days
Payment Terms: T/T
Supply Ability: 9999999+PCS
Detailed Product Description
Item Type: 90W Led Street Light Cob Components Led Street Light All In One Working Temperature(℃): -30 - 50
Input Voltage(v): AC100-277V Lamp Luminous Flux(lm): 9600
Cri (ra>): 90
High Light:

6 Channels Texas Instruments Electronic Components

,

11ns Texas Instruments Electronic Components

,

ISO6760FDWR

LED Lighting Components Texas Instruments/TI ISO6760FDWR

Integrated isolated power No
Number of channels (#) 6
Forward/reverse channels 6/0
Isolation rating (Vrms) 5000
Data rate (Max) (Mbps) 50
Rating Catalog
Surge voltage capability (Vpk) 10000
Current consumption per channel (DC) (Typ) (mA) 1.26
Current consumption per channel (1 Mbps) (Typ) (mA) 1.95
Operating temperature range (C) -40 to 125
Default output High, Low
Supply voltage (Max) (V) 5.5
Supply voltage (Min) (V) 1.71
Propagation delay (Typ) (ns) 11

 

Features for the ISO6760

  • 50 Mbps data rate
  • Robust isolation barrier:
    • High lifetime at 1500 VRMS working voltage
    • Up to 5000 VRMS isolation rating
    • Up to 10 kV surge capability
    • ±130 kV/µs typical CMTI
  • Wide supply range: 1.71 V to 1.89 V and 2.25 V to 5.5 V
  • 1.71 V to 5.5 V level translation
  • Default output high (ISO676x) and low (ISO676xF) options
  • Wide temperature range: –40°C to 125°C
  • 1.6 mA per channel typical at 1 Mbps
  • Low propagation delay: 11 ns typical
  • Robust electromagnetic compatibility (EMC)
    • System-level ESD, EFT, and surge immunity
    • Low emissions
  • Wide-SOIC (DW-16) Package
  • Safety-Related Certifications (pending):
    • DIN VDE V 0884-11:2017-01
    • UL 1577 component recognition program
    • IEC 62368-1, IEC 61010-1, IEC 60601-1 and GB 4943.1-2011 certifications

Description for the ISO6760

The ISO676x devices are high-performance, six-channel digital isolators ideal for cost-sensitive applications requiring up to 5000 VRMS isolation ratings per UL 1577. These devices are also certified by VDE, TUV, CSA, and CQC.

The ISO676x devices provide high electromagnetic immunity and low emissions at low power consumption, while isolating CMOS or LVCMOS digital I/Os. Each isolation channel has a logic input and output buffer separated by TI’s double capacitive silicon dioxide (SiO2) insulation barrier. The ISO676x family of devices is available in all possible pin configurations such that all six channels are in the same direction, or one, two, or three channels are in reverse direction while the remaining channels are in forward direction. In the event of input power or signal loss, the default output is high for devices without suffix F and low for devices with suffix F. See Device Functional Modes section for further details.

Used in conjunction with isolated power supplies, these devices help prevent noise currents on data buses, such as UART, SPI, RS-485, RS-232, and CAN from damaging sensitive circuitry. Through innovative chip design and layout techniques, the electromagnetic compatibility of the ISO676x devices has been significantly enhanced to ease system-level ESD, EFT, surge, and emissions compliance. The ISO676x family of devices is available in a 16-pin SOIC wide-body (DW) package and is a pin-to-pin upgrade to the older generations.

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