MSC1210Y5PAGR >
MSC1210Y5PAGR
Texas Instruments
IC ADC/DAC 24BIT 1K 64TQFP
2705 Pcs New Original In Stock
ADC and DAC: MCU Based 24 b 1k Serial, Parallel 64-TQFP (10x10)
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MSC1210Y5PAGR Texas Instruments
5.0 / 5.0 - (509 Ratings)

MSC1210Y5PAGR

Product Overview

1343287

DiGi Electronics Part Number

MSC1210Y5PAGR-DG

Manufacturer

Texas Instruments
MSC1210Y5PAGR

Description

IC ADC/DAC 24BIT 1K 64TQFP

Inventory

2705 Pcs New Original In Stock
ADC and DAC: MCU Based 24 b 1k Serial, Parallel 64-TQFP (10x10)
Quantity
Minimum 1

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In Stock (All prices are in USD)
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MSC1210Y5PAGR Technical Specifications

Category Data Acquisition, ADCs/DACs - Special Purpose

Manufacturer Texas Instruments

Packaging -

Series -

Product Status Active

Type ADC and DAC: MCU Based

Number of Channels 8

Resolution (Bits) 24 b

Sampling Rate (Per Second) 1k

Data Interface Serial, Parallel

Voltage Supply Source Analog and Digital

Voltage - Supply 2.7V ~ 5.25V

Operating Temperature -40°C ~ 125°C

Mounting Type Surface Mount

Package / Case 64-TQFP

Supplier Device Package 64-TQFP (10x10)

Base Product Number MSC1210

Datasheet & Documents

HTML Datasheet

MSC1210Y5PAGR-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 4 (72 Hours)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8542.39.0001

Additional Information

Standard Package
1,500

Reviews

5.0/5.0-(Show up to 5 Ratings)
夢***者
de desembre 02, 2025
5.0
物流配送非常準時,包裝也都很完整,沒有任何損壞,非常滿意。
Fre***tart
de desembre 02, 2025
5.0
We value their quick and effective support for any post-purchase concerns.
SkyH***Hope
de desembre 02, 2025
5.0
Their products demonstrate high resilience, making them ideal for industrial repair environments.
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Frequently Asked Questions (FAQ)

What are the key design-in risks when using the MSC1210Y5PAGR in a high-temperature industrial environment near 125°C?

When integrating the MSC1210Y5PAGR in high-temperature applications close to its 125°C operating limit, thermal drift in the internal reference and reduced ADC linearity are significant risks. To mitigate this, use an external precision voltage reference and verify performance under actual operating conditions. Additionally, ensure proper PCB heat dissipation by connecting the exposed thermal pad to a solid ground plane and minimizing nearby heat sources. Monitor internal die temperature using the on-chip temperature sensor if available in your configuration to prevent long-term reliability degradation.

How does the MSC1210Y5PAGR compare to the ADUC847 when selecting a 24-bit ADC with integrated MCU for sensor signal conditioning?

Compared to the ADUC847, the MSC1210Y5PAGR offers similar 24-bit sigma-delta ADC performance but provides better integration for parallel interface designs and supports a wider supply voltage range (2.7V–5.25V). The ADUC847 has more embedded flash and better analog front-end flexibility for multi-sensor systems, whereas the MSC1210Y5PAGR excels in high-noise environments due to its robust digital filtering and on-chip calibration. Choose the MSC1210Y5PAGR when deterministic real-time control with parallel I/O is required, but consider the ADUC847 for complex calibration routines requiring more onboard program memory.

Can the MSC1210Y5PAGR replace the ADS1213 in an existing low-power remote monitoring system without redesigning the power supply?

Replacing the ADS1213 with the MSC1210Y5PAGR in a low-power system requires careful evaluation—while both support 2.7V–5.5V supplies, the MSC1210Y5PAGR consumes significantly more power due to its integrated 8051-core MCU and dual analog sections. The ADS1213 idles at ~150μA, whereas the MSC1210Y5PAGR typically draws 5–8mA during active conversion and MCU operation. If power budget is critical, avoid direct substitution unless duty cycling the MSC1210Y5PAGR aggressively or upgrading the power source. Consider using the MSC1210Y5PAGR only when MCU integration justifies higher power use.

What are the signal integrity challenges when routing analog inputs to the MSC1210Y5PAGR in a mixed-signal PCB layout?

The MSC1210Y5PAGR's 24-bit resolution demands strict signal integrity practices: route analog traces away from digital switching paths, especially the parallel data bus, to prevent coupling noise that degrades SNR. Use guard rings around sensitive analog inputs and keep trace lengths matched and short. Implement separate analog and digital ground planes tied at a single star point, and place a low-ESR ceramic capacitor (100nF) close to each AVDD pin. Avoid sharing return paths with digital loads to minimize ground bounce, which can introduce non-linearity in precision measurements.

What long-term reliability concerns should be addressed when using the MSC1210Y5PAGR in field-deployed environmental monitoring equipment?

For field-deployed systems, long-term reliability of the MSC1210Y5PAGR hinges on managing thermal cycling, moisture ingress, and ESD exposure. Its MSL-4 rating requires reflow within 72 hours of dry pack opening to prevent popcorning. Conformal coating is advised in humid environments. Also, monitor parameter drift—especially offset and gain—over time due to prolonged exposure to temperature extremes. Design in periodic calibration routines using known reference inputs, and protect analog pins with TVS diodes and RC filters to extend operational life beyond 10 years in harsh conditions.

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