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AD654JR
+NomenclatureIC V/F CONV 500KHZ 8SOIC
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FabricantAnalog Equipment GmbH.
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Pièce fabricant #AD654JR
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Fiche technique AD654JR DataSheet
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Package 8-SOIC
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En stock4293
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Spécifications
| Attribut | Valeur |
| Package | Tube,Tube |
| ProductStatus | Obsolete |
| Type | Voltage to Frequency |
| Frequency-Max | 500 kHz |
| FullScale | ±50ppm/°C |
| Linearity | ±0.2% |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
Présentation
Description
An introduction to a course like AD654JR would typically outline the primary objectives, core topics, and skills covered. It might include an overview of key areas of focus such as theoretical foundations, practical applications, or relevant technologies. The introduction would also likely detail the structure of the course, including the types of lectures, workshops, or practical sessions involved. Additionally, it might highlight any prerequisites necessary for enrollment and the expected outcomes upon completion, such as specific competencies or knowledge areas that students will have developed. Finally, it would typically provide information on assessment methods and essential resources or materials needed for the course.
For a more accurate description, additional information about the course or topic would be needed.
Equivalent
1. LM331 from Texas Instruments - A popular voltage-to-frequency and frequency-to-voltage converter.
2. LM231 from Texas Instruments - Similar to the LM331 with voltage-to-frequency and frequency-to-voltage capabilities.
3. XR4151 from MaxLinear - An older but similar VFC device.
4. MAX038 from Maxim Integrated - Though more focused on waveform generation, it can be configured for similar applications.
Always check specifics like package type and performance features to ensure compatibility.
Features
1. Wide Input Voltage Range: It can handle input voltages from 0V to 10V, making it versatile for various applications.
2. High Linearity: Offers excellent linearity with low offset, ensuring accurate voltage-to-frequency conversion.
3. Frequency Range: Supports a wide frequency output range from a few Hertz to several hundred kilohertz, adaptable to different use cases.
4. Low Power Consumption: Designed for efficiency, it consumes minimal power, making it suitable for battery-operated devices.
5. Temperature Stability: Provides reliable performance across a wide temperature range, maintaining accuracy in various environmental conditions.
6. Compact Package: Available in a small, easy-to-handle package, facilitating integration into various electronics projects.
7. Ease of Use: Simple to implement with minimal external components required, streamlining the design process.
These features make the AD654JR suitable for applications such as analog-to-digital conversion, data acquisition systems, and remote sensing devices.
Pinout
1. Pin 1 (FREQ OUT): Frequency output. This pin outputs a frequency proportional to the input voltage.
2. Pin 2 (V-): Negative power supply. This pin connects to the negative power supply voltage.
3. Pin 3 (GND): Ground. This pin should be connected to the system ground.
4. Pin 4 (VIN): Voltage input. This pin accepts the analog voltage input that needs to be converted to a frequency.
5. Pin 5 (RSET): Resistor set. This pin is used with an external resistor to set the full-scale frequency.
6. Pin 6 (IOUT): Current output. This pin outputs a current proportional to the input voltage.
7. Pin 7 (CAP): Capacitor connection. An external capacitor is connected here to set the frequency response characteristics.
8. Pin 8 (V+): Positive power supply. This pin connects to the positive power supply voltage.
These pins together enable the AD654JR to perform precision voltage-to-frequency conversion in various applications.