IND16337

Features: • Built in four 16-bit bi-directional shift register circuits• Data control with transfer clock (external) and latch• High-speed data transfer (fmax. = 20 MHz MIN. at cascade connection)• Wide operating temperature range (TA = 40 to +85)• High withstand outp...

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SeekIC No. : 004375461 Detail

IND16337: Features: • Built in four 16-bit bi-directional shift register circuits• Data control with transfer clock (external) and latch• High-speed data transfer (fmax. = 20 MHz MIN. at cas...

floor Price/Ceiling Price

Part Number:
IND16337
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: 2024/12/21

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Product Details

Description



Features:

• Built in four 16-bit bi-directional shift register circuits
• Data control with transfer clock (external) and latch
• High-speed data transfer (fmax. = 20 MHz MIN. at cascade connection)
• Wide operating temperature range (TA = 40 to +85)
• High withstand output voltage (150 V, 40 mA MAX.)
• 5-V CMOS input interface
• High withstand voltage CMOS structure
• Capable of reversing all driver outputs by PC pin



Pinout

  Connection Diagram


Specifications

Parameter Symbol Ratings Unit
Logic Block Supply Voltage

Driver Block Supply Voltage

Logic Block Input Voltage
VDD1

VDD2

VI
0.5 to +7.0

0.5 to +150

0.5 to VDD1 + 0.5

V

V

V

Driver Block Output Current

Power Dissipation
IO2
PD
40

1300Note
mA

mW
Operating Ambient Temperature

Storage Temperature
TA

Tstg
40 to +85

65 to +150





Description

The IND16337 is a high-voltage CMOS driver designed for flat display panels such as PDPs, VFDs and ELs. It consists of a 64-bit bi-directional shift register (16 bit × 4 circuits), 64-bit latch and high-voltage CMOS driver. The logic block is designed to operate at 5-V power supply, enabling direct connection to a microcontroller. In addition, the IND16337 achieves low power dissipation by employing CMOS structure while having a high withstand voltage output (150 V, 40 mA MAX.)




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