HS-565ARH-T

Features: • qml Class T, Per MIL-PRF-38535• Radiation Performance - Gamma Dose () 1 x 105 RAD(Si) - No Latch-Up, Dielectrically Isolated Device Islands• DAC and Reference on a Single Chip• Pin Compatible with AD-565A and HI-565A• Very High Speed: Settles to 0.50 LSB i...

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SeekIC No. : 004365809 Detail

HS-565ARH-T: Features: • qml Class T, Per MIL-PRF-38535• Radiation Performance - Gamma Dose () 1 x 105 RAD(Si) - No Latch-Up, Dielectrically Isolated Device Islands• DAC and Reference on a Sing...

floor Price/Ceiling Price

Part Number:
HS-565ARH-T
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: 2024/11/20

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Product Details

Description



Features:

• qml Class T, Per MIL-PRF-38535
• Radiation Performance
    - Gamma Dose () 1 x 105 RAD(Si)
    - No Latch-Up, Dielectrically Isolated Device Islands
• DAC and Reference on a Single Chip
• Pin Compatible with AD-565A and HI-565A
• Very High Speed: Settles to 0.50 LSB in 500ns Max
• Monotonicity Guaranteed Over Temperature
• 0.50 LSB Max Nonlinearity Guaranteed Over Temperature
• Low Gain Drift (Max., DAC Plus Reference) 50ppm/
• ±0.75 LSB Accuracy Guaranteed Over Temperature (±0.125 LSB Typical at 25)



Pinout

  Connection Diagram


Description

Intersil's Satellite Applications FlowTM (SAF) devices HS-565ARH-T are fully tested and guaranteed to 100kRAD total dose. This QML Class T device is processed to a standard flow intended to meet the cost and shorter lead-time needs of large volume satellite manufacturers, while maintaining a high level of reliability.

The HS-565ARH-T is a fast, radiation hardened 12-bit current output, digital-to-analog converter. The monolithic chip includes a precision voltage reference, thin-film R-2R ladder, reference control amplifier and twelve high-speed bipolar current switches.

The HS-565ARH-T Intersil Semiconductor Dielectric Isolation process provides latch-up free operation while minimizing stray capacitance and leakage currents, to produce an excellent combination of speed and accuracy. Also, ground currents are minimized to produce a low and constant current through the ground terminal, which reduces error due to codedependent ground currents.

HS-565ARH-T die are laser trimmed for a maximum integral nonlinearity error of ±0.25 LSB at 25oC. In addition, the low noise buried zener reference is trimmed both for absolute value and minimum temperature coefficient.




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