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Extremely well-matched reference to output delays across process (3ps part to part), voltage, and temperature (0.03ps/°C). Sub-ps, jitter free reference to output delay adjustment capability (+/- 0.1ps). These features allow for predictable and precise multi-chip clock and SYSREF alignment. JESD204B and JESD204C subclass 1 solutions are supported by pairing the ADF4377 synthesizer with an IC that distributes pairs of reference and SYSREF signals. The ADF4377 integrates all necessary power supply bypass capacitors, saving board space on compact boards. ADF4377 Key Features: Output frequency range: 800 MHz to 12.8 GHz Jitter = 18 fs rms (Integration BW: 100 Hz to 100 MHz) Wideband Noise Floor: -160 dBc/Hz @12 GHz PLL Specifications: -239 dBc/Hz: Normalized In-Band Phase Noise Floor -147 dBc/Hz: Normalized In-Band 1/f Noise Phase Detector Frequency up to 500 MHz Reference to Output Delay Specifications: Part-to-Part Standard Deviation: 3 ps Temperature Drift: 0.03 ps/˚c Multi-chipOutput PhaseAlignment Pricing and Availability Product: ADF4377 Sampling: Now Price Each Per 1,000: $109.00 Packaging: 7 mm x 7 mm, 48 Lead LGA About Analog Devices Analog Devices, Inc. operates at the center of the modern digital economy,

converting real-world phenomena into actionable insight with its comprehensive suite of analog and mixed signal, power management, radio frequency (RF), and digital and sensor technologies. ADI serves 125,000 customers worldwide with more than 75,000 products in the industrial, communications, automotive, and consumer markets. ADI is headquartered in Wilmington, MA. Visit http://www.analog.com. לפרטים נוספים: אנלוג מכשורים ישראל 09-7774300 analog.israel@analog.com Analog Devices’ Secure Authenticator Cryptographically Protects Products and Easily Integrates with 1-Wire® Analog Devices, Inc. (ADI) introduced the DS28E30 1-Wire ECDSA Secure Authenticator, a cost-effective solution to detect and help protect products from counterfeiting or misuse. Combining a fixed-function cryptographic toolbox based on the industry standard FIPS 186 elliptic curve digital signature algorithm (ECDSA), secure storage of keys and application data, and the single contact 1-Wire interface, the device easily integrates into existing or new designs with minimal complexity. Download data sheet, order samples and evaluation boards: http://www.maximintegrated.com/ DS28E30 Watch a video about the DS28E30: https://www.maximintegrated.com/en/ support/videos.html/vd_1_qnc540qq The DS28E30 provides secure

Analog Devices’ Low Jitter Synthesizer Enables Excellent Performance in GSPS Data Converter Solutions Analog Devices, Inc. (ADI) introduced an 800MHz to 12.8GHz synthesizer for high performance ultra-wideband data converter and synchronization applications. The new ADF4377 synthesizer enables excellent signal to-noise performance by providing an ultra-clean clock source to drive the signal sampling process. This allows next generation wideband receivers and transmitters to utilize higher levels of dynamic range, which leads to greater receiver sensitivity and transmitter spectral purity. The performance is achieved by the ADF4377 synthesizer delivering jitter levels below 18fs rms as a consequence of the low normalized in-band phase noise at -239dBc/Hz, -147dBc/Hz normalized 1/f noise and a wideband voltage control oscillator (VCO) noise floor of -160dBc/Hz. Download data sheet, order samples and evaluation boards: http://www. analog.com/ADF4377 Connect with engineers and ADI product experts on EngineerZone™, an online technical support community: http://ez.analog.com The ADF4377 synthesizer is suitable for applications such as radar, instrumentation, and wideband receivers requiring multiple data converters or mixed-signal front-end (MxFE) digitizers to operate together. The ADF4377 significantly simplifies the alignment and calibration routines by allowing groups of data converters to sample their signals in precise alignment with each other. This is fundamental to the operation of next generation ultra-wideband multi channel systems and is achieved by implementing: Automatic reference to output synchronization.

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