Abbildungen dienen nur als Referenz
TLV9051IDCKR
+StücklisteIC OPAMP GP 1 CIRCUIT SC70-5
-
HerstellerTexas Instruments
-
Herstellerteil #TLV9051IDCKR
-
Auf Lager7753
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Part Status | Active |
| Base Product Number | TLV9051 |
| Amplifier Type | Standard (General Purpose) |
| Number of Circuits | 1 |
| Output Type | Rail-to-Rail |
| Slew Rate | 15V/µs |
| Gain Bandwidth Product | 5 MHz |
| Current - Input Bias | 2 pA |
| Voltage - Input Offset | 330 µV |
| Supply Current | 330µA |
| Voltage - Supply Span (Min) | 1.8 V |
| Voltage - Supply Span (Max) | 5.5 V |
| Operating Temperature | -40°C ~ 125°C |
| Mounting Type | Surface Mount |
| Package / Case | 5-TSSOP, SC-70-5, SOT-353 |
| Supplier Device Package | SC-70-5 |
| Packaging | Cut Tape (CT), Tape & Reel (TR) |
| Current - Output / Channel | 50 mA |
Übersicht
Description
Key features include a wide bandwidth of 1 MHz and a slew rate of 0.5 V/µs, which allow for efficient signal processing in various applications. The op-amp has a low input bias current, which minimizes errors due to input loading and is beneficial in precision applications.
The TLV9051IDCKR offers rail-to-rail input and output, enhancing its dynamic range and making it versatile for different signal levels. It is housed in a compact SC70-6 package, which is advantageous for space-constrained designs. The device is suitable for use in sensor signal conditioning, active filters, and general-purpose amplification tasks where low power and reliable performance are crucial.
Equivalent
1. LMV321 - from ON Semiconductor or Texas Instruments.
2. MCP6001 - from Microchip Technology.
3. OPA348 - from Texas Instruments.
4. AD8601 - from Analog Devices.
These alternatives may vary slightly in specifications, so it's important to compare parameters like bandwidth, supply voltage range, and slew rate to ensure compatibility with your application.
Features
1. Low Power Consumption: It operates with a low quiescent current of approximately 60 µA, making it suitable for battery-powered applications.
2. Wide Supply Voltage Range: The amplifier supports a supply voltage range from 1.8 V to 5.5 V, offering flexibility for various applications.
3. Rail-to-Rail Input and Output: It allows the input and output voltage to swing close to the supply rails, enhancing dynamic range in low voltage applications.
4. Low Input Offset Voltage: The low input offset voltage ensures high precision in signal conditioning tasks.
5. Slew Rate: With a typical slew rate of 1.5 V/µs, it is capable of handling moderate frequency signals effectively.
6. Low Input Bias Current: This feature aids in minimizing errors in high-impedance sensor applications.
7. Small Package: Available in a small SC70 package, it saves space on the PCB.
These features make the TLV9051IDCKR ideal for use in portable electronics, sensor signal conditioning, and various other low-power applications.
Pinout
The pin configuration is as follows:
1. V+ (Supply Voltage Positive) - This is the pin for the positive power supply voltage.
2. Inverting Input (IN-) - The inverting input where the input signal is applied for differential amplification.
3. Non-inverting Input (IN+) - The non-inverting input where the input signal is applied.
4. Output - The pin where the amplified signal is output.
5. V- (Supply Voltage Negative or Ground) - This is the pin for the negative power supply voltage or ground.
The TLV9051IDCKR is designed for low-power applications, featuring low quiescent current, and is suitable for use in battery-powered devices, sensor signal conditioning, and other general-purpose amplification needs.
Manufacturer
Application
1. Sensor Signal Conditioning: Amplifying signals from sensors like temperature, pressure, and light sensors.
2. Battery-Powered Devices: Suitable for low-power applications due to its low quiescent current.
3. Consumer Electronics: Used in audio and video equipment for signal amplification.
4. Portable Medical Devices: Useful in devices requiring low-power, high-precision amplifiers.
5. Instrumentation: Employed in precision measurement applications.
6. Internet of Things (IoT): Ideal for energy-efficient IoT devices.
These applications leverage the device's low power consumption, small package size, and reliable performance.