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SI7210-B-10-IM2, Silicon Labs

SI7210-B-10-IM2, Silicon Labs

The Silicon Labs Si7210 series Hall effect magnetic sensors incorporates a chopper-stabilized Hall element with a low-noise analogue amplifier, I2C interface, 13-bit analogue-to-digital converter. It includes digital signal processing to provide exact satisfaction for temperature and offset drift. High-precision 13-bit signal path It gives an output bandwidth up to 20kHz Wide 1.7 to 5.5 V power supply voltage Temperature sensor data also available by I2°C Low 50nA sleep mode current consumption
New items
Si5332-12EX-EVB, Silicon Labs

Si5332-12EX-EVB, Silicon Labs

Based on Silicon Labs proprietary MultiSynth™ flexible frequency synthesis technology, the Si5332 generates any combination of output frequencies with excellent jitter performance (230 fs rms). The device's highly flexible architecture enables a single device to generate a wide range of integer and non-integer related frequencies on up to 12 differential clock outputs with 0 ppm frequency synthesis error. Any-Frequency 6/8/12-output programmable clock generators MultiSynth technology enables any frequency synthesis on any output up to 250 MHz Highly configurable output path featuring a cross point mux Up to three independent fractional synthesis output paths Up to five independent integer dividers Embedded 50 MHz crystal option Down and center spread spectrum Pb-free, RoHS-6 compliant
New items
Si86xxTISO-KIT, Silicon Labs

Si86xxTISO-KIT, Silicon Labs

Si86xxxT Multi-Channel Digital Isolator Evaluation Kit The Silicon Labs Si86xxTISO-Kit enables you to quickly evaluate the capabilities and functionality of the Si8642ET. Drive inputs to logic high or low or inject signals into the header pins. The Si86xxxT family of multi-channel digital isolators from Silicon Labs feature low propagation delay (10 ns) and skew (1 ns), low emissions, high noise immunity together with high reliability and a long lifetime. The Silicon Labs Si864xxT-ISO Kit includes: - Si864xxT-EVB evaluation board - Si8642ET-IS 4-channel digital isolator with a data rate of up to 150 Mbps and 10 kV surge protection. Digital Isolators, Silicon Laboratories The Silicon Labs broad range of Digital Isolation products offers significant improvements over older isolation technologies such as opto-couplers. They demonstrate lower power consumption, greater reliability and higher performance, and are generally smaller in size and lower in cost. These CMOS-based devices exhibit stable operating characteristics over a wide temperature range and do not suffer from the lifespan limitations of opto-coupled devices.
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EZR32LG230F256R69G-C0, Silicon Labs

EZR32LG230F256R69G-C0, Silicon Labs

The Silicon Laboratories EZR32LG230 Wireless MCU family with ARM Cortex-M3 CPU has 41 general purpose I/O pins. It delivers a high-performance, also low-energy wireless solution integrated into a small form factor package. Ultra-low power wireless MCU Low transmit and receive currents Also ultra-low power standby and sleep modes It includes rich set of peripherals including 12-bit ADC and DAC, multiple communication interfaces (UART, SPI, I2C), multiple GPIO and timers Fast wake-up time Low energy sensor interface (LESENSE)
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Si5332-32SKT-DK, Silicon Labs

Si5332-32SKT-DK, Silicon Labs

When used with ClockBuilder Pro software, the ClockBuilder Pro Field Programmer makes it simple for systems designers to develop, program, and debug any Si5332, Si534x, or Si538x clock device “in-system,” or in one of the convenient QFN sockets. The field programmer supports I2C or SPI interfaces to the host system, and SPI to the field programmer's QFN socket boards.
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Si52204-A01AGM, Silicon Labs

Si52204-A01AGM, Silicon Labs

The Si522xx is the industry's highest performance and lowest power PCI Express clock generator family for 1.5–1.8 V PCIe Gen1/2/3/4 and SRIS applications. The Si52212, Si52208, and Si52204 can source twelve, eight, and four 100 MHz PCIe differential clock outputs, respectively, plus one 25 MHz LVCMOS reference clock output. The Si52202 can source two 100 MHz PCIe clock outputs only. All differential clock outputs are compliant to PCIe Gen1/2/3/4 common clock and separate reference clock architectures specifications. Individual hardware control pins and I2C controls for Output Enable, Spread Spectrum Enable and Frequency Select Triangular spread spectrum for EMI reduction, down spread 0.25% or 0.5% Internal 100 Ω or 85 Ω line matching Adjustable output slew rate 25 MHz crystal input or clock input I2C support with readback capabilities
New items
EZR32WG330F256R69G-C0, Silicon Labs

EZR32WG330F256R69G-C0, Silicon Labs

The Silicon Laboratories EZR32WG330 Wireless MCU family with ARM Cortex-M4 CPU has 38 general purpose I/O pins. It delivers a high-performance, also low-energy wireless solution integrated into a small form factor package. Ultra-low power wireless MCU Low transmit and receive currents Also ultra-low power standby and sleep modes It includes rich set of peripherals including 12-bit ADC and DAC, multiple communication interfaces (UART, SPI, I2C), multiple GPIO and timers Fast wake-up time Low energy sensor interface (LESENSE)
New items
RD-0001-0201, Silicon Labs

RD-0001-0201, Silicon Labs

ZigBee WiFi/Ethernet Gateway Reference Design The Silicon Labs ZigBee Wi-Fi/Ethernet Gateway Reference Design (RD-0001-0201) adds ZigBee connectivity to your Wi-Fi or Ethernet network. With the addition of another reference design, you can quickly demonstrate wireless lighting, contact sensors and capacitive touch switches. It runs on Debian Linux which can be emulated on a MAC or PC, details of which are in the video. Connect to the gateway and its connected devices using any web browser connected to your local area network (LAN) such as a PC, MAC, tablet or mobile phone. Suggested reference designs to accompany this gateway: - ZigBee Lighting Reference Design (RD-0020-0601 and RD-0035-0601) - ZigBee Contact Sensor Reference Design (RD-0030-0201) - ZigBee Capacitive Sense Dimmer Switch Reference Design (RD-0039-0201). WPAN (IEEE 802.15.4) - Silicon Labs
New items
SI7210-B-12-IM2, Silicon Labs

SI7210-B-12-IM2, Silicon Labs

The Silicon Labs Si7210 series Hall effect magnetic sensors incorporates a chopper-stabilized Hall element with a low-noise analogue amplifier, I2C interface, 13-bit analogue-to-digital converter. It includes digital signal processing to provide exact satisfaction for temperature and offset drift. High-precision 13-bit signal path It gives an output bandwidth up to 20kHz Wide 1.7 to 5.5 V power supply voltage Temperature sensor data also available by I2°C Low 50nA sleep mode current consumption
New items
SI7210-B-15-IM2, Silicon Labs

SI7210-B-15-IM2, Silicon Labs

The Silicon Labs Si7210 series Hall effect magnetic sensors incorporates a chopper-stabilized Hall element with a low-noise analogue amplifier, I2C interface, 13-bit analogue-to-digital converter. It includes digital signal processing to provide exact satisfaction for temperature and offset drift. High-precision 13-bit signal path It gives an output bandwidth up to 20kHz Wide 1.7 to 5.5 V power supply voltage Temperature sensor data also available by I2°C Low 50nA sleep mode current consumption
New items
Si5332-6EX-EVB, Silicon Labs

Si5332-6EX-EVB, Silicon Labs

Based on Silicon Labs proprietary MultiSynth™ flexible frequency synthesis technology, the Si5332 generates any combination of output frequencies with excellent jitter performance (230 fs rms). The device's highly flexible architecture enables a single device to generate a wide range of integer and non-integer related frequencies on up to 12 differential clock outputs with 0 ppm frequency synthesis error. Any-Frequency 6/8/12-output programmable clock generators MultiSynth technology enables any frequency synthesis on any output up to 250 MHz Highly configurable output path featuring a cross point mux Up to three independent fractional synthesis output paths Up to five independent integer dividers Embedded 50 MHz crystal option Down and center spread spectrum Pb-free, RoHS-6 compliant
New items
545AAA100M000BAG, Silicon Labs

545AAA100M000BAG, Silicon Labs

The Si545 Ultra Series™ oscillator utilizes Silicon Laboratories’ advanced 4th generation DSPLL® technology to provide an ultra-low jitter, low phase noise clock at any output frequency. The device is factory-programmed to any frequency from 0.2 to 1500 MHz with <1 ppb resolution and maintains exceptionally low jitter for both integer and fractional frequencies across its operating range. The Si545 offers excellent reliability and frequency stability as well as guaranteed aging performance. On-chip power supply filtering provides industry-leading power supply noise rejection, simplifying the task of generating low jitter clocks in noisy systems that use switched- mode power supplies. Offered in a small, industry-standard 3.2 ´ 5 mm footprint, the Si545 has a dramatically simplified supply chain that enables Silicon Labs to ship custom frequency samples 1-2 weeks after receipt of order. Unlike a traditional XO, where a different crystal is required for each output frequency, the Si545 uses one simple crystal and a DSPLL IC-based approach to provide the desired output frequency. This process also guarantees 100% electrical testing of every device. The Si545 is factory-configurable for a wide variety of user specifications, including frequency, output format, and OE pin location/polarity. Specific configurations are factory-programmed at time of shipment, eliminating the long lead times associated with custom oscillators. Available with any frequency from 0.2 MHz to 1500 MHz Ultra low jitter: 80 fs Type RMS (12 kHz - 20 MHz) Excellent PSRR and supply noise immunity: -80 dBc Type 3x tighter stability than SAW oscillators 3.3 V, 2.5 V and 1.8 V VDD supply operation from the same part number LVPECL, LVDS, CML, HCSL, CMOS, and Dual CMOS output options 3.2 ´ 5 mm package footprint Samples available with 1-2 week lead times