Peregrine Semiconductor Unveils New Power Management Products

Point-of-Load DC-DC Buck Regulators Target High-Reliability Space Systems

San Diego, California, April 18, 2012 – Peregrine Semiconductor Corporation (Peregrine), a fabless provider of high-performance radio-frequency (RF) integrated circuits (ICs), today announced that its first power management products, the UltraCMOS®-based Point-of-Load (POL) DC-DC Buck Regulators with integrated switches, are available for sampling. The trio of radiation-hardened highly integrated devices, PE99151, PE99153 and PE99155 — which are the company’s initial offering in the power management arena — benefit from inherent advantages brought by Peregrine’s CMOS-on-sapphire technology and the company’s decades-long experience with high-reliability space applications.

The new PE9915x POL DC-DC synchronous buck regulators are believed by Peregrine to be the industry’s smallest space-grade monolithic non-isolated distributed power solution, replacing traditional multi-chip modules that power field-programmable gate array (FPGA), digital signal processor (DSP), ASIC and SRAM power management designs. The combination of small size, high levels of integration and efficiency lowers total system weight and associated costs. Attributes including Single Event Effects (SEE) immunity to a Linear Energy Transfer (LET) greater than 90 MeVcm2/mg and radiation hardness of greater than 100 KRad (total dose tolerance) make the UltraCMOS POL DC-DC buck regulators well-suited for space, defense and commercial/industrial applications such as space systems, military radios, radar, engine control module (ECM), down hole drilling and other high-reliability systems.

“This is a natural evolution for the Peregrine portfolio based on the success of our rad-hard switches, frequency synthesizers and prescalers in the demanding high-reliability market,” said Dave Shepard, vice president and general manager for Peregrine’s High Performance Solutions business unit. “Peregrine continues to develop products for the high-reliability markets leveraging its ‘Rad Hard by Process’ approach, simplifying the design and improving the overall environmental performance,” Shepard added.

The new PE9915x devices are designed to operate from a wide 5V bus rail and provide an output voltage of 1.0V to 3.6V supply rails for analog, digital and RF payloads while delivering up to 2A, 6A or 10A of continuous output current. The devices operate over an input voltage range of 4.6V to 6V with a switching frequency range from 100 kHz to 5 MHz, achieving high peak efficiency of greater than 93% through monolithic integration by reducing switch loss. Additionally, the internal oscillator operates at 500 kHz or 1 MHz allowing designers to trade-off between peak efficiency and external components size.

“There are several features in our new POL DC-DC buck regulators that provide design flexibility to engineers, which is important when making decisions and trade-offs for optimized system performance,” stated Anup Singh, product manager for Peregrine’s high-reliability product line.

Another feature of the PE9915x devices is an external resistor which provides adjustable slope compensation to optimize closed loop bandwidth across output voltage and switching frequency range. Loop compensation is externally adjustable to meet preferred gain/phase margin and application transient response while still maintaining stability of the overall design.

Complex start-up conditions and sequencing requirements are addressed simply with the PE9915x soft-start function and the integrated power-good-enable feature. The adjustable soft-start feature controls the rate of load ramp and allows limitation for both the output voltage ramp rate as well as the inrush current rate. If higher output current is needed, two or more devices rated at the same output current and operating at the same frequency may be connected in a parallel configuration to enable a technique known as current sharing. An internal under voltage lockout (UVLO) feature prevents the PE9915x devices from powering up before input voltage rises above the UVLO threshold limit.

The PE99151, PE99153 and PE99155, offered as die or in the small 32-lead ceramic QFP package, are sampling now with flight parts available in July 2012. Pricing is provided through Peregrine’s worldwide sales management; an export license is required to ship these parts outside the United States. More information is available at dcdc.psemi.com.

About Peregrine Semiconductor

Peregrine Semiconductor is a fabless provider of high performance radio frequency integrated circuits, or RFICs. Our solutions leverage our proprietary UltraCMOS® technology, which enables the design, manufacture and integration of multiple RF, mixed-signal and digital functions on a single chip. Our products deliver what we believe is an industry leading combination of performance and monolithic integration, and target a broad range of applications in the aerospace and defense, broadband, industrial, mobile wireless device, test and measurement equipment, and wireless infrastructure markets. UltraCMOS technology combines the ability to achieve the high levels of performance of traditional specialty processes, with the fundamental benefits of standard CMOS, the most widely used semiconductor process technology. UltraCMOS technology utilizes a synthetic sapphire substrate, a near-perfect electrical insulator, providing low parasitic capacitance and enabling high signal isolation and excellent broadband linearity. These attributes result in RF devices with excellent high-frequency performance and power handling performance, reduced crosstalk between frequencies, and enhanced network efficiency. We have engineered design advancements, including our patented HaRP™ technology which significantly improves harmonic and linearity performance, and our patent-pending DuNE™ technology, a circuit design technique that we have used to develop our advanced digitally tunable capacitor (DTC) products. We offer a broad portfolio of high performance RFICs including switches, digital attenuators, mixers/upconverters, prescalers, and digitally tunable capacitors, or DTCs, and DC-DC converter products, and we are currently developing power amplifiers, or PAs. Our products are sold worldwide through our direct sales and field applications engineering staff and our network of independent sales representatives and distribution partners. Additional information is available on the Company website at www.psemi.com.

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The Peregrine Semiconductor name, logo and UltraCMOS are registered trademarks and HaRP and DuNE are trademarks of Peregrine Semiconductor Corporation. All other trademarks are the property of their respective owners.

Markets

Power Management

  • High Linearity RF Switches

    Industry-leading linearity and RF performance
    HaRP™ technology enhancement reduces gate lag and insertion loss drift
    Monolithic CMOS solution that integrates RF, analog and digital
    Best-in-class ESD and reliability
  • High Isolation RF Switches

    Industry-leading isolation and RF performance
    HaRP™ technology enhancement reduces gate lag and insertion loss drift
    Monolithic CMOS solution that integrates RF, analog and digital
    Best-in-class ESD and reliability
  • Low Insertion Loss RF Switches

    Industry-leading insertion loss and RF performance
    HaRP™ technology enhancement reduces gate lag and insertion loss drift
    Monolithic CMOS solution that integrates RF, analog and digital
    Best-in-class ESD and reliability
  • Antenna Tuning Switches

    Industry-leading RF power handling and ruggedness
    Best-in-class harmonic and linearity
    Small form factor with robust ESD and reliability
  • 75Ω Wired Broadband Switches

    Unmatched linearity performance for DOCSIS 3.1
    HaRP™ technology enhancement reduces gate lag and insertion loss drift
    Monolithic CMOS solution that integrates RF, analog and digital
    Best-in-class ESD ratings and reliability
  • Broadband RF Switches

    Wideband support with a frequency range from 0 Hz to 67 GHz
    Industry-leading insertion loss, isolation, linearity and settling time
    HaRP™ technology enhancement reduces gate lag and insertion loss drift
    Best-in-class ESD and reliability
  • High Power Switches

    Industry-leading power handling and RF performance
    HaRP™ technology enhancement reduces gate lag and insertion loss drift
    Monolithic CMOS solution that integrates RF, analog and digital
    Best-in-class ESD and reliability
  • Automotive Switches

    AEC-Q100 Grade 2-certified supporting temperatures up to +105°C
    HaRP™ technology enhancement reduces gate lag and insertion loss drift
    Monolithic CMOS solution that integrates RF, analog and digital
    Best-in-class ESD and reliability
  • Extended Temperature RF Switches

    Wide temperature range support from -55°C to +125°C
    HaRP™ technology enhancement reduces gate lag and insertion loss drift
    Monolithic CMOS solution that integrates RF, analog and digital
    Best-in-class ESD and reliability
  • 75Ω Wired Broadband RF Digital Step Attenuators

    High linearity, fast switching time with wide bandwidth
    Best-in-class attenuation error with fine attenuation steps
    Monolithic CMOS solution that integrates RF, analog and digital
    Excellent ESD protection and reliability
  • Glitchless RF Digital Step Attenuators

    High linearity, fast switching time with wide bandwidth
    Best-in-class attenuation error with fine attenuation steps
    Monolithic CMOS solution that integrates RF, analog and digital
    Excellent ESD protection and reliability
  • General-purpose RF Digital Step Attenuators

    High linearity, fast switching time with wide bandwidth
    Best-in-class attenuation error with fine attenuation steps
    Monolithic CMOS solution that integrates RF, analog and digital
    Excellent ESD protection and reliability
  • 2.4 GHz IoT FEMs

    Industry-leading monolithic Wi-Fi RF front-end solutions
    High linearity performance for Wi-Fi 6 and W-Fi 6E
    Compact form factors integrating high-performance RF, analog and digital
    Best-in-class ESD and reliability
  • Phase Shifters

    Ideal solutions for optimizing transmission phase angle
    Low root-mean-square (RMS) phase and amplitude error with fine phase resolution
    Digital control interface with parallel and serial programming options
    Best-in-class ESD and reliability
  • Monolithic Phase & Amplitude Controllers (MPACs)

    Reliable phase and amplitude control for next-generation communications
    Monolithic CMOS solution that integrates RF, analog and digital
    Integrated solution for Doherty power amplifier optimization (MPAC–Doherty)
  • Digital Tunable Capacitors (DTCs)

    Small form factor with high Q
    Monolithically integrated impedance tuning solution
    Wide-band tuning coverage, minimum mismatch losses, high linearity and fast switching speed
    Best-in-class ESD and reliability
  • Power Limiters

    Highly integrated solutions, smaller and more reliable than PIN-diode solutions
    Adjustable threshold control for maximum design flexibility
    High power handling and linearity required for wide-dynamic-range designs
    Fast response and recovery times for instantaneous protection and rapid return
  • Prescalers

    Exceptional performance with high-frequency support up to 13.5 GHz
    Low phase noise performance and low power consumption solutions
    Bare-die solutions for a wide variety of compact high-performance applications
    Best-in-class ESD and reliability
  • Mixers

    Broadband quad MOSFET array cores for high performance
    Industry-leading linearity, isolation and low conversion loss
    Available in MSOP, DFN and QFN packages
    Best-in-class ESD and reliability
  • Switch LNA

    Integrates dual-channel LNA with bypass function & high-power switch
    20W average RF input power
    Low noise figure of 0.9 dB
    +105°C operating temperature

Power Management

RF Mixers & Limiters

Front End Modules

RF Phase & Amplitude Control

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