UPD16347

Features: • 3-ch, 4-ch, 6-ch and 6-ch (3-ch + 3-ch) input port switching is possible using the IBS1 and IBS2 pins• Many outputs: 192-bit output• Clock transfer is switchable via the SDS pin between single edge and double edge• Data control with transfer clock (external) and...

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UPD16347 Picture
SeekIC No. : 004538062 Detail

UPD16347: Features: • 3-ch, 4-ch, 6-ch and 6-ch (3-ch + 3-ch) input port switching is possible using the IBS1 and IBS2 pins• Many outputs: 192-bit output• Clock transfer is switchable via th...

floor Price/Ceiling Price

Part Number:
UPD16347
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: 2024/4/27

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Product Details

Description



Features:

• 3-ch, 4-ch, 6-ch and 6-ch (3-ch + 3-ch) input port switching is possible using the IBS1 and IBS2 pins
• Many outputs: 192-bit output
• Clock transfer is switchable via the SDS pin between single edge and double edge
• Data control with transfer clock (external) and latch
• High-speed data transfer: fCLK = 60 MHz MAX. (at loading of data)
• On-chip chip temperature detection circuit
• High withstanding voltage and high drive output: 80 V MAX., +15/30 mA MAX.
• 3.3 V input interface (VDD1 = 5.0 V)
• High-withstanding-voltage CMOS structure



Specifications

Parameter

Symbol

Rating

Units

Logic and temperature detection supply voltage

VDD1, VDD3

−0.5 to +6.0

V

Driver supply voltage

VDD2

−0.5 to +80

V

Logic input voltage

VI1

−0.5 to VDD1 + 0.5

V

Temperature detection input voltage

VI3

−0.5 to VDD3 + 0.5

V

Operating junction temperature

Tj

+125

Storage temperature

Tstg

−65 to +125




Description

The µ PD16347 is a high-withstanding-voltage CMOS driver designed for use with a flat display panel such as aPDP, VFD, or EL panel. It consists of a 192-bit bi-directional shift register, 192-bit latch and high-withstanding-voltageCMOS driver.  The logic block operates with a 5.0 V power supply and 3.3 V interface so that it can be directlyconnected to a gate array and microcomputer.  The driver block provides a high-withstanding-voltage output: 80 V.

The logic and driver blocks are made of CMOS circuits, consuming lower power.




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