MAX687CPA - High-Accuracy, Low-Dropout Linear Regulators
MAX687CSA - High-Accuracy, Low-Dropout Linear Regulators
MAX687CUA - High-Accuracy, Low-Dropout Linear Regulators
MAX687EPA - High-Accuracy, Low-Dropout Linear Regulators
MAX687ESA - High-Accuracy, Low-Dropout Linear Regulators
MAX687EVKIT - MAX688EVKIT Evaluation Kit For The MAX687/MAX688/MAX689
MAX687-MAX689 - High-Accuracy, Low-Dropout Linear Regulators
MAX688 - High-Accuracy, Low-Dropout Linear Regulators
MAX6880 - Dual-/Triple-Voltage, Power-Supply Sequencers/Supervisors The MAX6880–MAX6883 dual-/triple-voltage monitors are designed to sequence power supplies during power-up condition. When all of the voltages exceed their respective thresholds, these devices turn on voltages to the system sequentially, enhancing n-channel MOSFETs used as switches. The time between each sequenced voltage is determined by an external capacitor, thus allowing flexibility in delay timing. The MAX6880/MAX6881 sequence three voltages and
MAX6880ETG - Dual-/Triple-Voltage, Power-Supply Sequencers/Supervisors The MAX6880–MAX6883 dual-/triple-voltage monitors are designed to sequence power supplies during power-up condition. When all of the voltages exceed their respective thresholds, these devices turn on voltages to the system sequentially, enhancing n-channel MOSFETs used as switches. The time between each sequenced voltage is determined by an external capacitor, thus allowing flexibility in delay timing. The MAX6880/MAX6881 sequence three voltages and
MAX6881 - Dual-/Triple-Voltage, Power-Supply Sequencers/Supervisors The MAX6880–MAX6883 dual-/triple-voltage monitors are designed to sequence power supplies during power-up condition. When all of the voltages exceed their respective thresholds, these devices turn on voltages to the system sequentially, enhancing n-channel MOSFETs used as switches. The time between each sequenced voltage is determined by an external capacitor, thus allowing flexibility in delay timing. The MAX6880/MAX6881 sequence three voltages and
MAX6881ETE - Dual-/Triple-Voltage, Power-Supply Sequencers/Supervisors The MAX6880–MAX6883 dual-/triple-voltage monitors are designed to sequence power supplies during power-up condition. When all of the voltages exceed their respective thresholds, these devices turn on voltages to the system sequentially, enhancing n-channel MOSFETs used as switches. The time between each sequenced voltage is determined by an external capacitor, thus allowing flexibility in delay timing. The MAX6880/MAX6881 sequence three voltages and
MAX6882 - Dual-/Triple-Voltage, Power-Supply Sequencers/Supervisors The MAX6880–MAX6883 dual-/triple-voltage monitors are designed to sequence power supplies during power-up condition. When all of the voltages exceed their respective thresholds, these devices turn on voltages to the system sequentially, enhancing n-channel MOSFETs used as switches. The time between each sequenced voltage is determined by an external capacitor, thus allowing flexibility in delay timing. The MAX6880/MAX6881 sequence three voltages and
MAX6882ETE - Dual-/Triple-Voltage, Power-Supply Sequencers/Supervisors The MAX6880–MAX6883 dual-/triple-voltage monitors are designed to sequence power supplies during power-up condition. When all of the voltages exceed their respective thresholds, these devices turn on voltages to the system sequentially, enhancing n-channel MOSFETs used as switches. The time between each sequenced voltage is determined by an external capacitor, thus allowing flexibility in delay timing. The MAX6880/MAX6881 sequence three voltages and
MAX6883 - Dual-/Triple-Voltage, Power-Supply Sequencers/Supervisors The MAX6880–MAX6883 dual-/triple-voltage monitors are designed to sequence power supplies during power-up condition. When all of the voltages exceed their respective thresholds, these devices turn on voltages to the system sequentially, enhancing n-channel MOSFETs used as switches. The time between each sequenced voltage is determined by an external capacitor, thus allowing flexibility in delay timing. The MAX6880/MAX6881 sequence three voltages and
MAX6883ETE - Dual-/Triple-Voltage, Power-Supply Sequencers/Supervisors The MAX6880–MAX6883 dual-/triple-voltage monitors are designed to sequence power supplies during power-up condition. When all of the voltages exceed their respective thresholds, these devices turn on voltages to the system sequentially, enhancing n-channel MOSFETs used as switches. The time between each sequenced voltage is determined by an external capacitor, thus allowing flexibility in delay timing. The MAX6880/MAX6881 sequence three voltages and
MAX6946 - The MAX6946/MAX6947 I2C*-/SMBus™-compatible, serial-interfaced peripherals provide microprocessors with 10 I/O ports rated to 7V.Each port can be configured asA 2.5mA to 20mA constant-current LED driver (static or PWM),A 1.25mA to 10mA constant-current LED driver (static or PWM), an open-drain logic output, or an overvoltage-protected Schmitt logic input.Analog and switching LED intensity control includes individual 8-bit PWM control per output, individual 1-bit analog current control (half/full scale) pe
MAX6947 - The MAX6946/MAX6947 I2C*-/SMBus™-compatible, serial-interfaced peripherals provide microprocessors with 10 I/O ports rated to 7V.Each port can be configured asA 2.5mA to 20mA constant-current LED driver (static or PWM),A 1.25mA to 10mA constant-current LED driver (static or PWM), an open-drain logic output, or an overvoltage-protected Schmitt logic input.Analog and switching LED intensity control includes individual 8-bit PWM control per output, individual 1-bit analog current control (half/full scale) pe
MAX694AC - P Reset ic With Watchdog and Battery Switchover
MAX694AE - P Reset ic With Watchdog and Battery Switchover
MAX694AM - P Reset ic With Watchdog and Battery Switchover
MAX694C - P Reset ic With Watchdog and Battery Switchover