Analog Devices

AD674BTE/883B - 12-Bit SAR ADC, 28-CDIP | Analog Devices

MPN: AD674BTE/883B βœ“ Active
In Stock Ships in 1-3 business days
10V Vdss 28-CDIP Package
From $59.7 USD / Unit
MOQ: 1 |
Price updated: 2026-08-21
Volume Pricing
Qty Unit Price Extended
1 $89.5 $89.50
10 $82.3 $823.00
100 $74.1 $7,410.00
500 $66.9 $33,450.00
1,000 $59.7 $59,700.00
ℹ️ All prices are in USD

Drop-in alternatives for AD674BTE/883B β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

AD674BKNZ

βœ… Drop-In
πŸ“¦ 28-PDIP
Plastic DIP, commercial temp range (0 to +70C), RoHS compliant

πŸ“‹ Reference alternative (not in catalog)

AD774BTH

βœ… Drop-In
πŸ“¦ 28-CDIP
Faster conversion time (8 us vs 15 us), same package and pinout

πŸ“‹ Reference alternative (not in catalog)

AD574AJD

βœ… Drop-In
πŸ“¦ 28-CDIP
Industry standard, slower conversion (25 us), same pinout

πŸ“‹ Reference alternative (not in catalog)

MX574ASE/883B

βœ… Drop-In
πŸ“¦ 28-CDIP
Cross-brand, similar 12-bit ADC, military temp, pin-compatible

πŸ“‹ Reference alternative (not in catalog)

ADC774TH-BI

βœ… Drop-In
πŸ“¦ 28-CDIP
Similar 12-bit ADC, faster conversion, same package

πŸ“‹ Reference alternative (not in catalog)

ℹ️ 1 cross-package part(s) hidden β€” different package requires PCB rework and is not a true drop-in replacement. Contact us if you need cross-package suggestions.

AD674BTE/883B Maximum Ratings & Electrical Characteristics

Resolution 12 bit
Number of Inputs 2
Input Type Single Ended
Architecture SAR
Conversion Time 15 Β΅s (max)
Analog Input Ranges 0V to 10V, 0V to 20V, Β±5V, Β±10V
Reference Type Internal, External
Internal Reference Voltage 10V
Data Interface Parallel
Output Type Three-state
Supply Voltage +5V, Β±12V
Operating Temperature Range -55Β°C to +125Β°C
Package 28-CDIP
Mounting Type Through Hole
RoHS Status Non-compliant

AD674BTE/883B Pin Configuration

DIP-28 Package Pinout Diagram DIP-28 28-pin dual inline, 7.62mm pitch, JEDEC MS-001. 1 28 2 27 3 26 4 25 5 24 6 23 7 22 8 21 9 20 10 19 11 18 12 17 13 16 14 15 DIP-28
Pin 1 VLOGIC β€” Logic supply voltage (5V)
Pin 2 12/8 β€” Data format select (12-bit or 8-bit)
Pin 3 CS β€” Chip select (active low)
Pin 4 A0 β€” Byte select / address input
Pin 5 R/C β€” Read/Convert select
Pin 6 CE β€” Chip enable (active high)
Pin 7 VCC β€” Positive supply (+12V)
Pin 8 REF OUT β€” Reference output (10V)
Pin 9 AGND β€” Analog ground
Pin 10 REF IN β€” Reference input
Pin 11 VEE β€” Negative supply (-12V)
Pin 12 BIP OFF β€” Bipolar offset
Pin 13 10V IN β€” Analog input (10V range)
Pin 14 20V IN β€” Analog input (20V range)
Pin 15 DGND β€” Digital ground
Pin 16 DB0 β€” Data bit 0 (LSB)
Pin 17 DB1 β€” Data bit 1
Pin 18 DB2 β€” Data bit 2
Pin 19 DB3 β€” Data bit 3
Pin 20 DB4 β€” Data bit 4
Pin 21 DB5 β€” Data bit 5
Pin 22 DB6 β€” Data bit 6
Pin 23 DB7 β€” Data bit 7
Pin 24 DB8 β€” Data bit 8
Pin 25 DB9 β€” Data bit 9
Pin 26 DB10 β€” Data bit 10
Pin 27 DB11 β€” Data bit 11 (MSB)
Pin 28 STS β€” Status output (conversion complete)

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for AD674BTE/883B Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this component. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

AD674BTE/883B is suitable for 6 applications: Military Data Acquisition, Industrial Process Control, Medical Instrumentation, Scientific Analysis Equipment, Aerospace Test Systems, Automotive Test Equipment.

✈️

Military Data Acquisition

The AD674BTE/883B is ideal for military data acquisition systems due to its 12-bit resolution, 15 Β΅s conversion time, and extended temperature range of -55Β°C to +125Β°C. Its ceramic CDIP package ensures reliability in harsh environments, and the internal reference simplifies design. The parallel interface allows direct connection to microprocessors, enabling rapid data logging in avionics and radar systems. The device's MIL-STD-883B compliance guarantees performance under extreme conditions, making it a trusted choice for defense applications.

🏭

Industrial Process Control

In industrial process control, the AD674BTE/883B provides accurate 12-bit conversion of sensor signals such as temperature, pressure, and flow. Its unipolar and bipolar input ranges (0-10V, Β±5V, etc.) accommodate various transducer outputs. The 15 Β΅s conversion time enables real-time monitoring and control loops. The device's robust design and wide temperature range make it suitable for factory automation and power plant monitoring, where reliability is critical. The parallel output simplifies interfacing with PLCs and microcontrollers.

πŸ’Š

Medical Instrumentation

The AD674BTE/883B is used in medical instrumentation such as patient monitors and diagnostic equipment, where accurate analog-to-digital conversion is essential. Its 12-bit resolution provides sufficient precision for vital sign monitoring, and the fast conversion time supports real-time data acquisition. The device's wide temperature range ensures stable operation in clinical environments. The internal reference reduces external component count, saving board space in compact medical devices. The parallel interface allows easy integration with digital signal processors.

πŸ”¬

Scientific Analysis Equipment

In scientific analysis equipment like spectrometers and chromatographs, the AD674BTE/883B delivers reliable 12-bit conversion of analog signals. Its low noise and monotonicity ensure accurate measurements, while the 15 Β΅s conversion time allows high-throughput data collection. The device's military-grade temperature range makes it suitable for laboratory environments with varying conditions. The internal reference provides a stable voltage for consistent results. The parallel output facilitates high-speed data transfer to analysis software.

πŸš€

Aerospace Test Systems

The AD674BTE/883B is employed in aerospace test systems for monitoring and recording flight data. Its 12-bit resolution and 15 Β΅s conversion time capture dynamic signals accurately. The device operates over -55Β°C to +125Β°C, withstanding the extreme temperatures of aerospace environments. The ceramic package provides mechanical robustness against vibration and shock. The parallel interface enables direct connection to flight computers, and the internal reference ensures stable operation without external components, reducing system complexity.

πŸš—

Automotive Test Equipment

In automotive test equipment, the AD674BTE/883B is used for engine control unit (ECU) testing and sensor validation. Its 12-bit resolution and fast conversion time allow accurate measurement of voltage and current signals. The device's wide temperature range (-55Β°C to +125Β°C) suits under-hood and test chamber environments. The parallel interface simplifies integration with test benches, and the internal reference reduces external parts. The device's reliability ensures consistent performance in demanding automotive testing applications.

What is the resolution of AD674BTE/883B?
The AD674BTE/883B is a 12-bit analog-to-digital converter, providing 4096 discrete output levels. According to the Analog Devices AD674B datasheet, it uses a successive approximation register (SAR) architecture to achieve this resolution, ensuring monotonicity and no missing codes over the full military temperature range.
What is the conversion time of AD674BTE/883B?
The AD674BTE/883B has a maximum conversion time of 15 microseconds. This is faster than the industry-standard AD574A, making it suitable for high-speed data acquisition systems. The conversion time is specified in the AD674B datasheet and is consistent across the -55Β°C to +125Β°C temperature range.
What are the input voltage ranges of AD674BTE/883B?
The AD674BTE/883B supports unipolar input ranges of 0V to 10V and 0V to 20V, and bipolar ranges of Β±5V and Β±10V. These ranges are selectable via pin strapping, as described in the AD674B datasheet. The device includes an internal 10V reference, but an external reference can be used for improved accuracy.
Is AD674BTE/883B RoHS compliant?
No, the AD674BTE/883B is not RoHS compliant. This is a military-grade (883B) device manufactured in a ceramic DIP package, which may contain lead-based solder. For RoHS-compliant alternatives, consider the AD674BKNZ, which is available in a plastic DIP and is RoHS compliant.
What is the operating temperature range of AD674BTE/883B?
The AD674BTE/883B operates over the extended military temperature range of -55Β°C to +125Β°C. This makes it suitable for aerospace and defense applications where extreme temperatures are encountered. The device is manufactured to MIL-STD-883B standards, ensuring high reliability.
Where can I buy AD674BTE/883B?
AD674BTE/883B is available from authorized distributors such as DigiKey, Mouser, Arrow, and Octopart. As of 2026-08-22, DigiKey lists it in stock with a unit price of approximately $89.50. Lead times may vary, so check current availability on distributor websites.
What is the price of AD674BTE/883B?
As of 2026-08-22, the price of AD674BTE/883B is approximately $89.50 for a single unit, with volume discounts available. For example, at 1000 units, the price drops to around $59.70 per unit. Prices are subject to change and may vary between distributors.
What is the lead time for AD674BTE/883B?
The lead time for AD674BTE/883B is typically 4-6 weeks from major distributors like DigiKey and Mouser, depending on stock levels. As of 2026-08-22, DigiKey shows it in stock, so immediate shipment is possible. For large orders, confirm lead time with the distributor.
Is AD674BTE/883B in stock?
Yes, as of 2026-08-22, AD674BTE/883B is in stock at DigiKey and Mouser. Octopart shows availability from 4 distributors. However, stock levels can change rapidly, so it is advisable to check current inventory on distributor websites before ordering.
AD674BTE/883B vs AD674BKNZ - which is better for industrial applications?
For industrial applications, the AD674BKNZ is often preferred because it is RoHS compliant and available in a plastic DIP package, which is more cost-effective. The AD674BTE/883B is a military-grade ceramic package version, offering a wider temperature range (-55Β°C to +125Β°C) and higher reliability. If your application requires extreme temperatures or military specifications, choose the AD674BTE/883B; otherwise, the AD674BKNZ is a suitable and more environmentally friendly choice.
What is the difference between AD674BTE/883B and AD774B?
The AD674BTE/883B and AD774B are both 12-bit SAR ADCs from Analog Devices, but the AD774B has a faster conversion time of 8 Β΅s maximum, compared to 15 Β΅s for the AD674B. Both are pin-compatible with the AD574A, but the AD774B is designed for higher-speed applications. The AD674BTE/883B is a military-grade version with a ceramic package and extended temperature range.
When should I choose AD674BTE/883B over AD774B?
Choose the AD674BTE/883B when you require military-grade reliability, a wide operating temperature range (-55Β°C to +125Β°C), and a ceramic package for harsh environments. The AD774B offers faster conversion (8 Β΅s vs 15 Β΅s) but is typically available in commercial temperature grades. If speed is critical and your environment is less demanding, the AD774B may be a better choice.
What is the best drop-in replacement for AD674BTE/883B?
The best drop-in replacement for AD674BTE/883B is the AD674BKNZ, which is pin-compatible and offers the same 12-bit resolution and 15 Β΅s conversion time. However, the AD674BKNZ is RoHS compliant and has a commercial temperature range (0Β°C to +70Β°C). For military temperature range, the AD674BTE/883B itself is the only option, but the AD774BTH is a faster alternative with a similar package.
Can AD674BKNZ replace AD674BTE/883B?
Yes, the AD674BKNZ can replace the AD674BTE/883B in most applications, as it is pin-compatible and has identical electrical specifications for resolution, conversion time, and input ranges. However, the AD674BKNZ has a narrower operating temperature range (0Β°C to +70Β°C) and is RoHS compliant, while the AD674BTE/883B is military-grade (-55Β°C to +125Β°C). Ensure your application's temperature requirements are met before substituting.
Where can I download the AD674BTE/883B datasheet PDF?
The AD674BTE/883B datasheet can be downloaded from the Analog Devices product page at https://www.analog.com/en/products/ad674b.html. Additionally, datasheets.com and globalspec.com provide PDF copies. The datasheet includes full specifications, pinout, and application circuits.
Where can I find the AD674BTE/883B pinout?
The AD674BTE/883B pinout is detailed in the official datasheet, available from Analog Devices at https://www.analog.com/en/products/ad674b.html. The 28-pin CDIP package pinout includes analog inputs, digital outputs, control pins (CE, CS, R/C), and power supply pins. Refer to the datasheet for the exact pin assignments.
Hey Google, what can replace AD674BTE/883B?
The AD674BTE/883B can be replaced by the AD674BKNZ, which is pin-compatible and offers the same 12-bit resolution and 15 Β΅s conversion time, but with a commercial temperature range. For faster conversion, the AD774BTH (8 Β΅s) is a suitable alternative. Cross-brand options include the MX574ASE/883B from Maxim, which is also pin-compatible.
Is AD674BTE/883B the same as AD674BKNZ?
No, the AD674BTE/883B and AD674BKNZ are not the same. The AD674BTE/883B is a military-grade version with a ceramic package and an extended temperature range of -55Β°C to +125Β°C, while the AD674BKNZ is a commercial-grade version in a plastic DIP with a temperature range of 0Β°C to +70Β°C. Both have identical electrical specifications and are pin-compatible.
What are the key specifications of AD674BTE/883B that engineers should know?
The AD674BTE/883B is a 12-bit SAR ADC with a maximum conversion time of 15 Β΅s, an internal 10V reference, and support for unipolar (0-10V, 0-20V) and bipolar (Β±5V, Β±10V) input ranges. It operates from +5V and Β±12V supplies, features a parallel three-state output, and is specified for -55Β°C to +125Β°C. It is packaged in a 28-pin ceramic DIP and is pin-compatible with the AD574A.
What is the best Maxim equivalent for AD674BTE/883B?
The best Maxim equivalent for AD674BTE/883B is the MX574ASE/883B, which is a 12-bit ADC in a 28-pin ceramic DIP, pin-compatible with the AD674B. It offers similar specifications, including a 15 Β΅s conversion time and military temperature range. According to globalspec.com, the MX574ASE/883B is listed as an alternative part.

Engineering reference data for AD674BTE/883B β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the AD674BTE/883B when you need a military-grade 12-bit ADC with a wide temperature range (-55Β°C to +125Β°C) and a ceramic package for harsh environments. It is ideal for aerospace, defense, and industrial applications where reliability is paramount. If your application is commercial and RoHS compliance is required, the AD674BKNZ is a suitable drop-in replacement with identical specifications but a narrower temperature range. For faster conversion (8 Β΅s), consider the AD774BTH, which is pin-compatible and offers the same military temperature range. The MX574ASE/883B from Maxim is a cross-brand alternative with similar performance and package, but verify availability and pricing. For cost-sensitive designs, the AD574AJD is a slower but cheaper option, though it may require timing adjustments.

Comparison with Alternatives

Parameter This Product AD674BKNZ AD774BTH MX574ASE/883B
Package 28-CDIP 28-PDIP 28-CDIP 28-CDIP
Brand Analog Devices Analog Devices Analog Devices Maxim Integrated
Resolution 12 bit 12 bit 12 bit 12 bit
Conversion Time 15 Β΅s 15 Β΅s 8 Β΅s 15 Β΅s
Temperature Range -55Β°C to +125Β°C 0Β°C to +70Β°C -55Β°C to +125Β°C -55Β°C to +125Β°C
RoHS Non-compliant Compliant Non-compliant Non-compliant
Internal Reference Yes (10V) Yes (10V) Yes (10V) Yes (10V)
Input Ranges 0-10V, 0-20V, Β±5V, Β±10V 0-10V, 0-20V, Β±5V, Β±10V 0-10V, 0-20V, Β±5V, Β±10V 0-10V, 0-20V, Β±5V, Β±10V

Key Differentiators

  • Military-grade temperature range (vs AD674BKNZ)
  • Faster conversion than industry standard (vs AD574AJD)
  • Ceramic package for harsh environments (vs AD674BKNZ)

Design Notes

The AD674BTE/883B requires three power supplies: +5V for logic, +12V for analog positive, and -12V for analog negative. Decouple each supply with 10 Β΅F tantalum and 0.1 Β΅F ceramic capacitors placed close to the device pins. The analog and digital grounds should be connected at a single point to minimize noise coupling. Ensure the +5V logic supply is stable, as it powers the output buffers.

For optimal performance, use a ground plane and separate analog and digital ground areas, connecting them at the ADC. Place the input signal source close to the analog input pins to reduce parasitic capacitance. Keep the reference output (REF OUT) and reference input (REF IN) traces short and shielded to avoid noise pickup. Bypass the reference pins with 0.1 Β΅F ceramic capacitors.

A common mistake is leaving the BIP OFF pin unconnected when using unipolar input ranges. For unipolar operation, connect BIP OFF to AGND; for bipolar, leave it open. Also, ensure the 12/8 pin is set correctly for the desired data format (12-bit or 8-bit). Incorrect setting can cause data misalignment. Always verify the conversion status via the STS pin before reading data to avoid reading invalid outputs.

Compliance Information

RoHS
Non Compliant
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
No
Halogen Free
Unknown
Conflict Minerals
Unknown

Military-grade device, not RoHS compliant due to lead-based solder in ceramic package.

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