Catalog(4 parts)
Part | Package / Case | Type | Current - Quiescent (Max)▲▼ | Mounting Type | Output Type | Voltage - Input Offset (Max)▲▼ | Propagation Delay (Max)▲▼ | Voltage - Supply, Single/Dual (±)▲▼ | Voltage - Supply, Single/Dual (±)▲▼ | Number of Elements▲▼ | Supplier Device Package | Current - Input Bias (Max)▲▼ | CMRR, PSRR (Typ)▲▼ | Current - Output (Typ)▲▼ | Operating Temperature▲▼ | Operating Temperature▲▼ |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
SC-74A, SOT-753 | General Purpose | 7.500000265281415e-7 A | Surface Mount | CMOS, Push-Pull | 0.003000000026077032 V | 0.000029999999242136255 s | 5.5 V | 1.7999999523162842 V | 1 ul | SOT-23-5 | 3.99999992980668e-13 A | 82 ul, 98 ul | 0.01899999938905239 A | -40 °C | 85 °C | |
5-TSSOP, SC-70-5, SOT-353 | General Purpose | 7.500000265281415e-7 A | Surface Mount | CMOS, Push-Pull | 0.003000000026077032 V | 0.000029999999242136255 s | 5.5 V | 1.7999999523162842 V | 1 ul | SC-70-5 | 3.99999992980668e-13 A | 82 ul, 98 ul | 0.01899999938905239 A | -40 °C | 85 °C | |
SC-74A, SOT-753 | General Purpose | 7.500000265281415e-7 A | Surface Mount | CMOS, Push-Pull | 0.003000000026077032 V | 0.000029999999242136255 s | 5.5 V | 1.7999999523162842 V | 1 ul | SOT-23-5 | 3.99999992980668e-13 A | 82 ul, 98 ul | 0.01899999938905239 A | -40 °C | 85 °C | |
5-TSSOP, SC-70-5, SOT-353 | General Purpose | 7.500000265281415e-7 A | Surface Mount | CMOS, Push-Pull | 0.003000000026077032 V | 0.000029999999242136255 s | 5.5 V | 1.7999999523162842 V | 1 ul | SC-70-5 | 3.99999992980668e-13 A | 82 ul, 98 ul | 0.01899999938905239 A | -40 °C | 85 °C |
Key Features
• (For V+= 1.8 V, Typical Unless Otherwise Noted)Ultra-Low Power Consumption: 580 nAWide Supply Voltage Range: 1.8 V to 5.5 VPropagation Delay: 4.5 µsPush-Pull Output Current Drive at 5 V 19 mATemperature Range: −40°C to 125°CRail-to-Rail InputTiny 5-Pin SOT-23 and SC70 Packages(For V+= 1.8 V, Typical Unless Otherwise Noted)Ultra-Low Power Consumption: 580 nAWide Supply Voltage Range: 1.8 V to 5.5 VPropagation Delay: 4.5 µsPush-Pull Output Current Drive at 5 V 19 mATemperature Range: −40°C to 125°CRail-to-Rail InputTiny 5-Pin SOT-23 and SC70 Packages
Description
AI
The LPV7215 device is an ultra-low-power comparator with a typical power supply current of 580 nA. It has the best-in-class power supply current versus propagation delay performance available among TI’s low-power comparators. The propagation delay is as low as 4.5 µs with 100-mV overdrive at 1.8-V supply.
Designed to operate over a wide range of supply voltages, from 1.8 V to 5.5 V, with ensured operation at 1.8 V, 2.7 V, and 5 V, the LPV7215 is ideal for use in a variety of battery-powered applications. With rail-to-rail common-mode voltage range, the LPV7215 is well suited for single-supply operation.
Featuring a push-pull output stage, the LPV7215 allows for operation with absolute minimum power consumption when driving any capacitive or resistive load.
Available in a choice of space-saving packages, the LPV7215 is ideal for use in handheld electronics and mobile phone applications. The LPV7215 is manufactured with TI's advanced VIP50 process.
The LPV7215 device is an ultra-low-power comparator with a typical power supply current of 580 nA. It has the best-in-class power supply current versus propagation delay performance available among TI’s low-power comparators. The propagation delay is as low as 4.5 µs with 100-mV overdrive at 1.8-V supply.
Designed to operate over a wide range of supply voltages, from 1.8 V to 5.5 V, with ensured operation at 1.8 V, 2.7 V, and 5 V, the LPV7215 is ideal for use in a variety of battery-powered applications. With rail-to-rail common-mode voltage range, the LPV7215 is well suited for single-supply operation.
Featuring a push-pull output stage, the LPV7215 allows for operation with absolute minimum power consumption when driving any capacitive or resistive load.
Available in a choice of space-saving packages, the LPV7215 is ideal for use in handheld electronics and mobile phone applications. The LPV7215 is manufactured with TI's advanced VIP50 process.