MAXIM Manuals (Industrial)
MAXIM MAX220 MAX249 Manual
The MAX220–MAX249 family of line drivers/receivers is intended for all EIA/TIA-232E and V.28/V.24 communica- tions interfaces, particularly applications where ±12V is not available. These parts are especially useful in battery-powered sys- tems, since their low-power shutdown mode reduces power dissipation to less than 5µW. The MAX225, MAX233, MAX235, and MAX245/MAX246/MAX247 use no external components and are recommended for appli- cations where printed circuit board space is critical.
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MAXIM MAX3570/MAX3571/MAX3573 Manual
MAX3570/MAX3571/MAX3573 low-cost, wideband, dual-conversion tuner chips are designed for digital TV receivers. Each chip integrates all necessary RF functional modules, including an integrated HI-IF filter, a fully integrated VCO, and an IF VGA. The operating frequency ranges from 50MHz to 878MHz, while providing more than 60dB of RF and IF controllable gain range. MAX3570/MAX3571 have IF frequencies centered at 44MHz, while MAX3573 has IF output centered at 36MHz. All three chips include a variable-gain RF front end with a noise figure of only 8dB. A dual synthesizer produces two LO frequencies and provides excellent phase noise performance with phase noise of -86dBc/Hz at 10kHz offset. The integrated HI-IF filter has a 55dBc (typ.) image rejection. Only one IF SAW filter, passive loop filter and crystal oscillator are needed to build a complete single-chip tuner. MAX3570 chip programming and configuration are accomplished by a 3-wire serial interface, while MAX3571/MAX3573 chip programming and configuration are accomplished by a 2-wire serial interface. MAX3570/MAX3571/MAX3573 are packaged in a 48-pin QFN-EP package and are capable of operating in the commercial temperature range (0°C to +70°C).
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MAXIM OP07 DATA SHEET
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MAXIM OP07 handbook(1)
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MAXIM MAX753/MAX754 LCD Contrast Controllers Manual
MAX753/MAX754 are MAXIM's ICs designed specifically for backlit notebook computer applications. It can drive cold cathode fluorescent lamps (CCFLs) and provide the LCD backplane bias (contrast) power for color or monochrome LCD panels.
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MAXIM ET9224 intelligence card Interface Manual
This document introduces a product from Maxim Integrated Products, which has features such as wide temperature range and multiple pin package options.
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MAXIM DS8113 intelligence card Interface Manual
The DS8113 is a smart card interface from Maxim that supports 5V, 3V, and 1.8V smart cards and provides low power consumption modes. It supports ISO 7816, EMV, and GSM11-11 applications.
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MAXIM DS8023 intelligence card Interface Manual
The DS8023-RJX+ / DS8023-RRX+ is a low-power single-channel 1.8V voltage reference from Maxim Integrated that provides high accuracy, low noise, and low power consumption.
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MAXIM DS1225AB/AD 64k Nonvolatile SRAM Manual
This document describes the features and characteristics of DS1225AB and DS1225AD, two models of non-volatile static RAM. These RAMs have a minimum data retention of 10 years and automatically protect data during power loss. They can directly replace 8k x 8 volatile static RAM or EEPROM, with unlimited write cycles and low-power CMOS design. They come in a standard 28-pin DIP package with read and write access times of 70 ns. Additionally, they support a full voltage range and an optional industrial temperature range.
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MAXIM MAX7311 Manual
The MAX7311 2-wire-interfaced expander provides 16-bit parallel input/output (I/O) port expansion for SMBus™ and I2C™ applications. The MAX7311 consists of input port registers, output port registers, polarity inversion registers, configuration registers, a bus timeout register, and an I2C-compatible serial interface logic compatible with SMBus. The system master can invert the MAX7311 input data by writing to the active-high polarity inversion register. The system master can enable or disable bus timeout by writing to the bus timeout register. Any of the 16 I/O ports can be configured as an input or output. A power-on reset (POR) initializes the 16 I/Os as inputs. Three address select pins configure one of 64 slave ID addresses. The MAX7311 supports hot insertion. All port pins, the INT output, SDA, SCL and the slave address inputs AD0–2 remain high impedance in power down (V+ = 0V) with up to 6V asserted upon them. The MAX7311 is available in 24-pin SO, SSOP, TSSOP, and thin QFN packages and is specified over the -40°C to +125°C automotive temperature range.
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MAXIM MAX7328/MAX7329 I2C Port Expanders with Eight I/O Ports Manual
The MAX7328/MAX7329 are 2-wire serial-interfaced peripherals with eight I/O ports. Any port can be used as a logic input or an open-drain output. All input ports are continuously monitored for state changes (transition detection).
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MAXIM MX7520/MX7521 MOS 10 12 Bit Multiplying D/A Converters Manual
Package Information
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MAXIM DS3231 Extremely Accurate I2C-Integrated RTC/TCXO/Crystal Manual
The DS3231 is a low-cost, extremely accurate I2C real-time clock (RTC) with an integrated temperature-compensated crystal oscillator (TCXO) and crystal. The device incorporates a battery input, and maintains accu- rate timekeeping when main power to the device is inter- rupted. The integration of the crystal resonator enhances the long-term accuracy of the device as well as reduces the piece-part count in a manufacturing line. The DS3231 is available in commercial and industrial temperature ranges, and is offered in a 16-pin, 300-mil SO package. The RTC maintains seconds, minutes, hours, day, date, month, and year information. The date at the end of the month is automatically adjusted for months with fewer than 31 days, including corrections for leap year. The clock operates in either the 24-hour or 12-hour format with an AM/PM indicator. Two programmable time-of- day alarms and a programmable square-wave output are provided. Address and data are transferred serially through an I2C bidirectional bus. A precision temperature-compensated voltage refer- ence and comparator circuit monitors the status of VCC to detect power failures, to provide a reset output, and to automatically switch to the backup supply when nec- essary. Additionally, the RST pin is monitored as a pushbutton input for generating a µP reset. Applications Servers Utility Power Meters Telematics GPS
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MAXIM MAX2828/MAX2829 Single-/Dual-Band 802.11a/b/g World-Band Transceiver ICs Manual
The product is a RF transceiver IC for 802.11a/b/g wireless radios.
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MAXIM MAX731/MAX752 +5V/Adjustable Strp-Up Current-Mode DC-DC Converters Manual
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MAXIM DS5002FP Secure Microprocessor Chip Manual
Maxim DS5002FP Secure Microprocessor
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MAXIM DS9105 iButton Number Set Manual
The document describes the features and characteristics of the DS9105 series iButton products, including DS1982-based iButtons, 128 bytes of user-programmable EPROM, available as a set of 12 or individual buttons.
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MAXIM MX7545 CMOS 12-Bit Buffered Multiplying DAC Manual
The document provides information about Maxim Integrated Products, including pricing, delivery, and ordering information. Contact Maxim/Dallas Direct! at 1-888-629-4642 or visit Maxim's website for more details.
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MAXIM DS1847 Dual Temperature-Controlled NV Variable Resistor Manual
The DS1847 is a temperature-controlled nonvolatile (NV) variable resistor produced by Texas Instruments. It consists of two 256-position linear variable resistors. The device can access temperature data and device control via a 2-wire serial bus, and it operates from 3V or 5V supplies. The operating temperature range is -40°C to +95°C, and the packaging types are 14-pin TSSOP and 16-ball CSBGA.
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MAXIM DS26303 3.3V E1/T1/J1 Short-Haul Octal Line Interface Unit Manual
The DS26303 is an 8-channel short-haul line interface unit (LIU) that supports E1/T1/J1 from a single 3.3V power supply. A wide variety of applications are supported through internal termination or external termination. A single bill of material can support E1/T1/J1 with minimum external components. Redundancy is supported through nonintrusive monitoring, optimal high-impedance modes, and configurable 1:1 or 1+1 backup enhancements. An on-chip synthesizer generates the E1/T1/J1 clock rates by a single master clock input of various frequencies. Two clock output references are also offered.
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