MAXIM Manuals (Industrial)

MAXIM MAX4901 MAX4905 Manual

MAX4901-MAX4905 low RON, dual-SPST/single-SPDT clickless switches with negative rail capability, can realize distortion-free signal throughput to VCC -5.5V, can be used for headphone detection or mute/send key function.

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maxim MAX481E/MAX483E/MAX485E/MAX487E MAX491E/MAX1487E Manual(1)

The MAX481E, MAX483E, MAX485E, MAX487E–MAX491E, and MAX1487E are low-power transceivers for RS-485 and RS-422 communications in harsh environments. Each driver output and receiver input is protected against ±15kV electro-static discharge (ESD) shocks, without latchup. These parts contain one driver and one receiver. The MAX483E, MAX487E, MAX488E, and MAX489E feature reduced slew-rate drivers that minimize EMI and reduce reflections caused by improperly terminated cables, thus allowing error-free data transmission up to 250kbps. The driver slew rates of the MAX481E, MAX485E, MAX490E, MAX491E, and MAX1487E are not limited, allowing them to transmit up to 2.5Mbps. These transceivers draw as little as 120µA supply current when unloaded or when fully loaded with disabled drivers (see Selection Table). Additionally, the MAX481E, MAX483E, and MAX487E have a low-current shutdown mode in which they consume only 0.5µA. All parts operate from a single +5V supply. Drivers are short-circuit current limited, and are protected against excessive power dissipation by thermal shutdown circuitry that places their outputs into a high-impedance state. The receiver input has a fail-safe feature that guaran- tees a logic-high output if the input is open circuit. The MAX487E and MAX1487E feature quarter-unit-load receiver input impedance, allowing up to 128 transceivers on the bus. The MAX488E–MAX491E are designed for full-duplex communications.

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maxim MAX4899E/MAX4899AE Manual

This product is a dual 3:1 multiplexer with two digital inputs to control the analog signal path. Typical applications include switching a USB connector between USB and other operations such as serial communications, audio, and video.

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maxim MAX4890E/MAX4892E Manual

The document is the datasheet of MAX4890E/MAX4892E. It introduces the functions, features, applications, and usage methods of MAX4890E/MAX4892E.

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maxim MAX4890/MAX4891/MAX4892 Manual

The MAX4890/MAX4891/MAX4892 high-speed analog switches meet the needs of 10/100/1000 Base-T applications. These devices switch the signals from two interface transformers and connect the signals to a sin- gle 10/100/1000 Base-T Ethernet PHY, simplifying docking station design and reducing manufacturing costs. The MAX4890/MAX4891/MAX4892 can also route signals from a common interface transformer to two different boards in board-redundancy applications. The MAX4890/MAX4891/MAX4892 switches provide an extremely low capacitance and on-resistance to meet Ethernet insertion and return-loss specifications. The MAX4891/MAX4892 feature one and three built-in LED switches, respectively. The MAX4890/MAX4891/MAX4892 are available in space-saving 32- and 36-lead TQFN packages, significantly reducing the required PC board area. These devices operate over the -40°C to +85°C tem- perature range. Applications Notebooks and Docking Stations Servers and Routers with Ethernet Interfaces Board-Level Redundancy Protection SONET/SDH Signal Routing T3/E3 Redundancy Protection Video Switching

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maxim MAX481/MAX483/MAX485/MAX487 MAX491/MAX1487 Guide

Introduces the features and characteristics of MAX481, MAX483, MAX485, MAX487-MAX491, and MAX1487

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maxim MAX4888/MAX4889 Manual

The MAX4888/MAX4889 are high-speed passive switches used to route PCI Express data between two destinations. The MAX4888 is suitable for switching two half lanes of PCIe data, while the MAX4889 is suitable for switching four half lanes of PCIe data. They feature a single digital control input, support power supply voltage from 1.65V to 3.6V, and have low skew and low quiescent current.

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maxim MAX4887 Manual

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maxim MAX4886 Manual

The MAX4886 high-speed analog switch is ideal for HDMI/DVI switching applications, permitting 2:1 or 1:2 switching. The MAX4886 contains four differential pairs of 1:2 or 2:1 switches for RGB and clocking signals. The MAX4886 connects either one monitor to one of two digital video signals, or one HDMI/DVI source to one of two loads (sink). The MAX4886 set of differential switches is based on an nFET architecture with internal charge pump for gate overdrive. This advanced architecture results in an extremely low capacitance and on-resistance needed for the excellent return loss requirements for digital switching. An efficient internal charge-pump design offers very low quiescent current for power-sensitive notebook designs. The MAX4886 features 8Ω (typ) on-resistance and 2.5pF on-capacitance switches for routing RGB and CLK video signals. The MAX4886 is a high-frequency companion device to the MAX4929. These two devices combined perform the full 2:1 HDMI/DVI switching function. The MAX4886 is available in a space-saving, 42-pin, 3.5mm x 9.0mm TQFN package and operates over the extended -40°C to +85°C temperature range.

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maxim MAX4885 Manual

The MAX4885 is a multiplexer from Texas Instruments that can be used with VGA signals in a 1:2 or 2:1 configuration. The device provides switching for RGB, DDC, and HSYNC/VSYNC signals. It also features a low-noise charge pump and level-shifting buffers. The MAX4885 is available in a 32-pin TQFN package and is specified over the extended temperature range of -40°C to +85°C.

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maxim MAX4880 Manual

The MAX4880 is an overvoltage-protection controller with an internal current-limited switch that can be configured as a low-cost battery charger. It features overvoltage and undervoltage lockout functions, notifying the processor through a low-level signal. The internal current-limited switch limits the charge current flowing to the battery. It also has a switch control input and a built-in startup delay. The MAX4880 is suitable for applications such as cell phones, digital still cameras, PDAs, and MP3 players.

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maxim MAX481E/MAX483E/MAX485E/MAX487E MAX491E/MAX1487E Manual

The MAX481E, MAX483E, MAX485E, MAX487E-MAX491E, and MAX1487E are low-power transceivers for RS-485 and RS-422 communications in harsh environments. Each driver output and receiver input is protected against ±15kV electro-static discharge (ESD) shocks, without latchup. These parts contain one driver and one receiver. The MAX483E, MAX487E, MAX488E, and MAX489E feature reduced slew-rate drivers that minimize EMI and reduce reflections caused by improperly terminated cables, thus allowing error-free data transmission up to 250kbps. The driver slew rates of the MAX481E, MAX485E, MAX490E, MAX491E, and MAX1487E are not limited, allowing them to transmit up to 2.5Mbps. These transceivers draw as little as 120µA supply current when unloaded or when fully loaded with disabled drivers (see Selector Guide). Additionally, the MAX481E, MAX483E, and MAX487E have a low-current shutdown mode in which they consume only 0.5µA. All parts operate from a single +5V supply. Drivers are short-circuit current limited, and are protected against excessive power dissipation by thermal shutdown circuitry that places their outputs into a high-impedance state. The receiver input has a fail-safe feature that guarantees a logic-high output if the input is open circuit. The MAX487E and MAX1487E feature quarter-unit-load receiver input impedance, allowing up to 128 transceivers on the bus. The MAX488E-MAX491E are designed for full-duplex communication.

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maxim MAX7409/MAX7410/MAX7413/MAX7414 Manual

The MAX7409/MAX7410/MAX7413/MAX7414 5th-order, lowpass, switched-capacitor filters operate from a single +5V (MAX7409/MAX7410) or +3V (MAX7413/ MAX7414) supply. These devices draw only 1.2mA of supply current and allow corner frequencies from 1Hz to 15kHz, making them ideal for low-power post-DAC filtering and anti-aliasing applications. They feature a shutdown mode, which reduces the supply current to 0.2µA. Two clocking options are available on these devices: self-clocking (through the use of an external capacitor) or external clocking for tighter corner-frequency control. An offset adjust pin allows for adjustment of the DC out- put level. The MAX7409/MAX7413 Bessel filters provide low over- shoot and fast settling, while the MAX7410/MAX7414 Butterworth filters provide a maximally flat passband response. Their fixed response simplifies the design task to selecting a clock frequency.

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maxim MAX7408/MAX7411/MAX7412/MAX7415 Manual

MAX7408/MAX7411/MAX7412/MAX7415 are 5th-order lowpass elliptic switched-capacitor filters (SCFs) that operate from a single +5V (MAX7408/MAX7411) or +3V (MAX7412/MAX7415) supply. The devices draw only 1.2mA of supply current and allow corner frequencies from 1Hz to 15kHz, making them ideal for low-power post-DAC filtering and anti-aliasing applications.

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maxim MAX741 Manual

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maxim MAX7401/MAX7405 Manual

The MAX7401/MAX7405 8th-order, lowpass, Bessel, switched-capacitor filters operate from a single +5V (MAX7401) or +3V (MAX7405) supply. These devices draw only 2mA of supply current and allow cor- ner frequencies from 1Hz to 5kHz, making them ideal for low-power post-DAC filtering and anti-aliasing appli- cations.

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maxim MAX7400/MAX7403/MAX7404/MAX7407 Manual

The MAX7400/MAX7403/MAX7404/MAX7407 8th-order, lowpass, elliptic, switched-capacitor filters (SCFs) are low-power, single-supply devices that operate from a single +5V (MAX7400/MAX7403) or +3V (MAX7404/MAX7407) supply.

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maxim MAX737 MAX738 MAX739 MAX759 Manual

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MAXIM MAX730A/MAX738A/MAX744A Manual(1)

The MAX730A/MAX738A/MAX744A are 5V-output CMOS, step-down switching regulators. The MAX738A/ MAX744A accept inputs from 6V to 16V and deliver 750mA. The MAX744A guarantees 500mA load capability for inputs above 6V and has tighter oscillator frequency limits for low-noise (radio) applications. The MAX730A accepts inputs between 5.2V and 11V and delivers 450mA for inputs above 6V. Typical efficiencies are 85% to 96%. Quiescent supply current is 1.7mA and only 6µA in shutdown. Pulse-width modulation (PWM) current-mode control provides precise output regulation and excellent transient responses. Output voltage accuracy is guaranteed to be ±5% over line, load, and temperature variations. Fixed-frequency switching allows easy filtering of output ripple and noise, as well as the use of small external components. These regulators require only a single inductor value to work in most applications, so no inductor design is necessary. The MAX730A/MAX738A/MAX744A also feature cycle- by-cycle current limiting, overcurrent limiting, undervolt- age lockout, and programmable soft-start protection.

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