Applications

Datasheet

HS-1135RH
Current Feedback Amp W/VIO Adjust

Typical Diagram

enlarge +typical diagram

Key Features

    • Electrically Screened to SMD # 5962-96767
    • QML Qualified per MIL-PRF-38535 Requirements
    • User Programmable Output Voltage Limiting
    • Fast Overdrive Recovery <1ns (Typ)
    • Low Supply Current 6.9mA (Typ)
    • Wide -3dB Bandwidth 360MHz (Typ)
    • High Slew Rate 1200V/µs (Typ)
    • High Input Impedance 2MΩ (Typ)
    • Excellent Gain Flatness (to 50MHz) ±0.07dB (Typ)
    • Total Gamma Dose 300kRAD(Si)
    • Latch Up None (DI Technology)

Description

The HS-1135RH is a radiation hardened, high speed, low power current feedback amplifier built with Intersil's proprietary complementary bipolar UHF-1 (DI bonded wafer) process. They are QML approved and processed in full compliance with MIL-PRF-38535. This amplifier features user programmable output limiting, via the VH and VL pins.

The HS-1135RH is the ideal choice for high speed, low power applications requiring output limiting (e.g., flash A/D drivers), especially those requiring fast overdrive recovery times. The limiting function allows the designer to set the maximum and minimum output levels to protect downstream stages from damage or input saturation. The sub-nanosecond overdrive recovery time ensures a quick return to linear operation following an overdrive condition.

Component and composite video systems also benefit from this op amp's performance, as indicated by the gain flatness, and differential gain and phase specifications.

Specifications for Rad Hard QML devices are controlled by the Defense Supply Center in Columbus (DSCC). The SMD numbers listed here must be used when ordering. Detailed Electrical Specifications for these devices are contained in SMD 5962-96767. A "hot-link" is provided on our website for downloading.

Applications

    • Flash A/D Driver
    • Video Switching and Routing
    • Pulse and Video Amplifiers
    • Wideband Amplifiers
    • RF/IF Signal Processing
    • Imaging Systems

Alternatives

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