Images à titre indicatif uniquement
LT1172HVIQ
+Nomenclature-
FabricantÉquipement de simulation
-
Pièce fabricant #LT1172HVIQ
-
Fiche technique LT1172HVIQ DataSheet
-
En stock5488
365 Garantie qualité 24h/24
7*24 Garantie de service 24h/24
90-Garantie après-vente 24h/24
Garantie produit authentique
Spécifications
| Attribut | Valeur |
| Package/Case | DDPAK-5 |
| MinimumOperatingTemperature | - 40 C |
| MaximumOperatingTemperature | + 100 C |
| Series | LT1172 |
| Brand | Analog Devices |
| ProductType | Switching Voltage Regulators |
| Subcategory | PMIC - Power Management ICs |
| MountingStyle | SMD/SMT |
| ShippingRestrictions | Mouser does not presently sell this product in your region. |
| OperatingSupplyCurrent | 6 mA |
| Topology | Boost, Buck, Cuk, Flyback, Forward, Inverting |
| OutputVoltage | Adjustable |
| OutputCurrent | 1.25 A |
| NumberofOutputs | 1 Output |
| InputVoltage-Min | 3 V |
| InputVoltage-Max | 60 V |
| SwitchingFrequency | 100 kHz |
| Height | 4.57 mm |
Présentation
Description
Key specifications include a low output voltage temperature coefficient, low noise, and wide operating voltage range. The LT1172HVIQ can operate with a supply voltage ranging from a few volts up to 40V, making it versatile for various applications. Its high output impedance and low output current capability allow it to drive loads while maintaining accuracy.
The device is offered in various packaging options, including the compact MSOP-8, making it suitable for space-constrained designs. Overall, the LT1172HVIQ is ideal for high-performance applications where precise voltage regulation and stability are critical.
Equivalent
1. AD8620 - Low-noise precision op-amp.
2. OPA2134 - High-performance audio op-amp.
3. LM324 - Quad op-amp with general-purpose applications.
For voltage reference equivalents, consider:
1. LM4041 - Precision voltage reference.
2. TL431 - Adjustable precision reference.
Ensure to check specifications for compatibility with your specific application needs.
Features
1. Voltage Reference: Provides a stable reference voltage of 1.23V.
2. High Accuracy: Offers low temperature drift, with a typical drift of 0.5 mV/°C.
3. Fast Response Time: Comparator response time is about 30 ns, suitable for high-speed applications.
4. Rail-to-Rail Output: The output can swing close to the supply rails, enhancing flexibility in design.
5. Low Supply Current: Consumes only 50 µA, making it suitable for battery-powered applications.
6. Wide Supply Range: Operates with a supply voltage of 2.7V to 36V.
7. TTL/CMOS Compatible: The output is compatible with standard logic levels, facilitating ease of integration.
8. Low Input Offset Voltage: Ensures precision in comparator applications.
These features make the LT1172HVIQ ideal for precision measurement, control systems, and battery-operated devices.
Pinout
1. Pin 1 (V-): Negative power supply input.
2. Pin 2 (V+): Positive power supply input.
3. Pin 3 (I1): Non-inverting input.
4. Pin 4 (I2): Inverting input.
5. Pin 5 (R1): Gain setting resistor terminal.
6. Pin 6 (R2): Feedback resistor terminal.
7. Pin 7 (OUT): Amplified output.
8. Pin 8 (NC): No connection.
The LT1172HVIQ is suitable for applications requiring high precision and low noise, making it ideal for sensors and signal conditioning tasks. It offers a low offset voltage and high common-mode rejection ratio (CMRR).
Manufacturer
The LT1172HVIQ is a precision voltage reference and is typically used in applications requiring high accuracy and stability. Analog Devices focuses on providing advanced technology that enhances the performance and efficiency of electronic systems. With a strong emphasis on research and development, the company has established itself as a leader in the field, offering a broad portfolio of products that address the evolving needs of various industries.
Application
1. Data Acquisition Systems: Providing stable reference voltages for ADCs.
2. Instrumentation: Enhancing accuracy in measurement equipment.
3. Signal Conditioning: Amplifying and filtering signals in sensor applications.
4. Industrial Control: Used in process control systems and automation.
5. Medical Devices: Ensuring accurate readings in diagnostic and monitoring equipment.
6. Telecommunications: Signal processing in communication devices.
Its low noise and high precision make it suitable for high-performance electronic systems.