Applications

Datasheet

IS-1825ASRH
High-Speed, Dual Output PWM

Typical Diagram

enlarge +typical diagram

Key Features

    • Electrically Screened to DLA SMD # 5962 -02511
    • QML Qualified per MIL-PRF-38535 Requirements
    • Radiation Environment
      • Total Dose: 300krad(SI) (max)
      • Latch-up Immune: Dielectrically Isolated
      • SEU immune: LET = 35MeV/mg/cm2(max)
    • Oscillator Frequency: 1MHz(max)
    • High Output Drive Current: 1A peak(typ)
    • Low Start-up Current: 300µA(max)
    • Undervoltage Lockout
      • Start Threshold: 8.8V(max)
      • Stop Threshold: 7.6V(min)
      • Hysteresis: 300mV(min)
    • Improved Soft-Start Function Compared with Commercial 1825A/1823A Types
    • Pulse-by-Pulse Current Limiting
    • Latched Overcurrent Comparator with Full Cycle Restart
    • Programmable Leading Edge Blanking

Description

The single event and total dose hardened IS-1825ASRH, IS-1825ASEH and ISL71823ASRH pulse width modulators are designed to be used in high frequency, switching power supplies in either voltage or current-mode configurations. Both designs include a precision voltage reference, a low power start-up circuit, a high frequency oscillator, a wide-band error amplifier and a fast current-limit comparator.

The IS-1825ASRH, IS-1825ASEH features dual, alternating outputs operating from zero to less than 50% duty-cycle, while the ISL71823ASRH features dual, in-phase outputs operating from zero to less than 100% duty cycle.

Constructed with the Intersil Rad-hard Silicon Gate (RSG) dielectrically isolated BiCMOS process, these devices are immune to single event latch-up and have been specifically designed to provide a high level of immunity to single event transients. All specified parameters are guaranteed and tested for 300krad(Si) total dose performance.

Detailed Electrical Specifications for these devices are contained in SMD 5962-02511. A "hot-link" is provided on our website for downloading the SMD.

Applications

    • Voltage or Current-Mode Switching Power Supplies
    • Control of High Current MOSFET Drivers
    • Motor Speed and Direction Control

Design Tip

Are the Schottky clamp diodes required on the outputs when not driving MOSFETs?

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