| Quantité | Prix |
|---|---|
| 1+ | 3,900 $ |
| 10+ | 3,580 $ |
| 25+ | 3,260 $ |
| 50+ | 3,100 $ |
| 100+ | 2,940 $ |
Informations produit
Aperçu du produit
MCP4812-E/SN is a dual voltage output digital-to-analog converter with internal VREF and SPI interface. It operates from a single 2.7V to 5.5V supply with SPI compatible serial peripheral interface. Device has a high precision internal voltage reference (VREF=2.048V). The device includes double-buffered registers, allowing synchronous updates of two DAC outputs using the LDAC pin. This device also incorporates a Power-on Reset (POR) circuit to ensure reliable powerup. The device utilizes a resistive string architecture, with its inherent advantages of low DNL error, low ratio metric temperature coefficient and fast settling time. The device provides high accuracy and low noise performance for consumer and industrial applications where calibration or compensation of signals are required. Application includes set point or offset trimming, sensor calibration, precision selectable voltage reference, portable instrumentation (battery-powered), calibration of optical communication devices.
- Rail-to-rail output, SPI interface with 20MHz clock support
- Simultaneous latching of the dual DACs with LDAC (active low) pin
- Settling time is 4.5µs typ (Within 1/2LSb of final value from 1/4 to 3/4 full-scale range, +25°C)
- Internal voltage reference range from 2.008 to 2.088V (VOUTA when G = 1x and Code = 0xFFFh, +25°C)
- Temperature coefficient is 125ppm/°C typ (-40°C to 0°C, VDD = 5V, VSS = 0V, VREF = 2.048V)
- Resolution is 10Bits min (VDD = 5V, VSS = 0V, VREF = 2.048V, +25°C)
- INL error is ±0.5LSb typ (VDD = 5V, VSS = 0V, VREF = 2.048V, +25°C)
- DNL is ±0.1LSb typ (VDD = 5V, VSS = 0V, VREF = 2.048V, +25°C)
- Gain error range from -2 to 2% of FSR (VDD = 5V, VSS = 0V, VREF = 2.048V, +25°C)
- 8 pin SOIC package, extended operating temperature range from -40 to 125°C
Spécifications techniques
10bit
SPI
2.7V to 5.5V
8Pins
-40°C
-
MSL 1 - Unlimited
-
2.7V to 5.5V
SOIC
Serial
125°C
AEC-Q100
No SVHC (25-Jun-2025)
Documents techniques (3)
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