Analog Devices

AD632SH/883B - Precision 4-Quadrant Multiplier | Analog Devices

MPN: AD632SH/883B βœ“ Active
In Stock Ships in 1-3 business days
Β±15 V typical Vdss TO-100-10 Metal Can Package
From $28.75 USD / Unit
MOQ: 1 |
Price updated: 2026-08-21
Volume Pricing
Qty Unit Price Extended
1 $45.32 $45.32
10 $41.87 $418.70
100 $36.54 $3,654.00
500 $32.1 $16,050.00
1,000 $28.75 $28,750.00
ℹ️ All prices are in USD

Drop-in alternatives for AD632SH/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:

AD632TH/883B

βœ… Drop-In
πŸ“¦ TO-100-10
Higher grade version with tighter specifications

πŸ“‹ Reference alternative (not in catalog)

AD632SH

βœ… Drop-In
πŸ“¦ TO-100-10
Non-883B version, same package and function

πŸ“‹ Reference alternative (not in catalog)

AD532SD/883B

βœ… Drop-In
πŸ“¦ TO-100-10
Industry standard predecessor, pin-compatible but lower performance

πŸ“‹ Reference alternative (not in catalog)

AD632BD

βœ… Drop-In
πŸ“¦ TO-100-10
Commercial grade, same package and function

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.

AD632SH/883B Maximum Ratings & Electrical Characteristics

Function Analog Multiplier/Divider
Number of Quadrants 4
Package TO-100-10 Metal Can
Mounting Type Through Hole
Operating Temperature Range -55Β°C to +125Β°C
Supply Voltage Β±15 V typical
Transfer Function W = (X1-X2)(Y1-Y2)/10V + Z
Maximum Gain Γ—10
Nonlinearity Β±0.5% typical
Small-Signal Bandwidth 1 MHz
Output Drive 2 kΞ© minimum load
Z-Input Fully differential, high impedance
Compatibility Pin-for-pin compatible with AD532
Temperature Grade Military
RoHS Status unknown

AD632SH/883B Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin 1 X1 β€” Non-inverting X input
Pin 2 X2 β€” Inverting X input
Pin 3 Y1 β€” Non-inverting Y input
Pin 4 Y2 β€” Inverting Y input
Pin 5 Z β€” Z input (differential high-impedance)
Pin 6 V- β€” Negative power supply
Pin 7 OUT β€” Output
Pin 8 V+ β€” Positive power supply
Pin 9 NC β€” No connection
Pin 10 NC β€” No connection

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for AD632SH/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

AD632SH/883B is suitable for 6 applications: Precision Power Measurement, Analog Computation in Test Equipment, Process Control Systems, Military and Aerospace Signal Conditioning, Audio Processing and Modulation, Automatic Gain Control (AGC).

⚑

Precision Power Measurement

The AD632SH/883B computes the product of voltage and current signals to measure power in AC or DC systems. Its four-quadrant operation and high accuracy (Β±0.5% nonlinearity) enable precise real power measurement in industrial and laboratory equipment. The differential Z-input allows summing multiple power contributions, and the wide temperature range ensures stable operation in harsh environments.

πŸ”§

Analog Computation in Test Equipment

In function generators, spectrum analyzers, and other test instruments, the AD632SH/883B performs analog multiplication for modulation, demodulation, and frequency mixing. Its 1 MHz bandwidth and low noise support accurate signal processing. The gain of up to Γ—10 reduces the need for external amplifiers, simplifying the signal chain. The hermetic TO-100 package ensures reliability in benchtop and field instruments.

🏭

Process Control Systems

The AD632SH/883B is used in process control for computing flow, pressure, and temperature products, enabling PID control algorithms. Its differential inputs reject common-mode noise, and the military temperature range allows deployment in industrial plants with extreme conditions. The device's stability over time reduces recalibration frequency, improving system uptime.

✈️

Military and Aerospace Signal Conditioning

In avionics and defense systems, the AD632SH/883B conditions signals from sensors and computes corrections for navigation and targeting. Its hermetic package and -55Β°C to +125Β°C range meet MIL-STD requirements. The high reliability and long-term stability are critical for mission-critical applications. The device's ability to provide gain up to Γ—10 reduces component count in space-constrained modules.

🎧

Audio Processing and Modulation

The AD632SH/883B can be used in audio applications for ring modulation, tremolo, and dynamic range compression. Its low noise and high linearity preserve audio fidelity. The differential Z-input allows mixing control signals, and the wide bandwidth supports audio frequencies. The through-hole package is suitable for audio equipment where through-hole components are preferred for DIY and repair.

🌐

Automatic Gain Control (AGC)

The AD632SH/883B can be configured as a variable gain amplifier for AGC in communication receivers. By multiplying the signal with a control voltage, it adjusts gain dynamically. Its four-quadrant operation allows both positive and negative control, and the high input impedance minimizes loading. The device's stability ensures consistent performance over temperature.

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What is the AD632SH/883B?
The AD632SH/883B is a precision four-quadrant analog multiplier/divider from Analog Devices. It computes the product of two differential inputs and can also divide, square, and take square roots. It is packaged in a TO-100-10 metal can and operates over the military temperature range of -55Β°C to +125Β°C.
What is the transfer function of the AD632SH/883B?
The transfer function is W = (X1-X2)(Y1-Y2)/10V + Z, where X1, X2, Y1, Y2 are differential inputs and Z is a differential high-impedance input. This allows multiplication, division, and signal summing. According to the AD632 datasheet, the Z-input can be used for offset adjustment or to add signals.
Is the AD632SH/883B pin-compatible with the AD532?
Yes, the AD632SH/883B is pin-for-pin compatible with the industry-standard AD532, but with improved specifications. It offers a fully differential high-impedance Z-input and can provide gains up to Γ—10, often eliminating the need for separate instrumentation amplifiers.
What is the operating temperature range of the AD632SH/883B?
The AD632SH/883B operates over the military temperature range of -55Β°C to +125Β°C. This makes it suitable for aerospace, defense, and other high-reliability applications where extreme temperatures are encountered.
What is the package type of the AD632SH/883B?
The AD632SH/883B is available in a TO-100-10 metal can package, which is a through-hole, round, 10-terminal package. The metal can provides hermetic sealing, offering protection against moisture and contaminants, which is critical for military and industrial environments.
What are the key specifications of the AD632SH/883B that engineers should know?
Key specifications include: four-quadrant multiplication, transfer function W = (X1-X2)(Y1-Y2)/10V + Z, maximum gain of Γ—10, typical nonlinearity of Β±0.5%, small-signal bandwidth of 1 MHz, and operation over -55Β°C to +125Β°C. It is pin-compatible with the AD532 and comes in a TO-100-10 package.
Where can I buy the AD632SH/883B online?
The AD632SH/883B is available from authorized distributors such as DigiKey and Mouser. As of 2026-08-22, DigiKey lists it as active with stock available. You can also check Octopart for pricing and availability from multiple distributors.
What is the price of the AD632SH/883B?
As of 2026-08-22, the unit price for the AD632SH/883B is approximately $45.32 at quantity 1, with volume pricing decreasing to around $28.75 at quantity 1000. Prices vary by distributor and availability.
What is the lead time for the AD632SH/883B?
Lead time for the AD632SH/883B is typically 4-6 weeks from distributors like DigiKey, depending on stock levels. As of 2026-08-22, DigiKey shows it as 'ships today' for immediate orders, but for larger quantities, lead time may extend.
Is the AD632SH/883B in stock?
As of 2026-08-22, the AD632SH/883B is in stock at DigiKey and can ship today. Availability may vary by distributor, so it is recommended to check current stock on Octopart or directly with suppliers.
AD632SH/883B vs AD532SD/883B - which is better for precision analog computation?
The AD632SH/883B is an improved version of the AD532, offering a fully differential high-impedance Z-input and higher gain capability (up to Γ—10). For precision analog computation, the AD632 provides better flexibility and often eliminates the need for additional instrumentation amplifiers, making it the preferred choice.
What is the difference between AD632SH and AD632TH/883B?
The AD632SH and AD632TH/883B are both TO-100-10 packaged multipliers, but the AD632TH/883B is a higher-grade version with tighter specifications and extended temperature range. The AD632SH/883B is the military-grade variant, while the AD632TH/883B may offer different performance characteristics.
When should I choose the AD632SH/883B over the AD532?
Choose the AD632SH/883B when you need improved specifications such as a fully differential high-impedance Z-input, higher gain (up to Γ—10), and better long-term stability. It is pin-compatible with the AD532, so it can be a drop-in upgrade in existing designs.
What is the best drop-in replacement for the AD632SH/883B?
The AD632SH/883B is pin-compatible with the AD532, so the AD532SD/883B can be a drop-in replacement, though with slightly lower performance. Other alternatives include the AD632TH/883B (same package, higher grade) and the AD632BD (different package, but functionally similar).
Where can I download the AD632SH/883B datasheet PDF?
The AD632SH/883B datasheet is available from Analog Devices at https://www.analog.com/media/en/technical-documentation/data-sheets/AD632.pdf. It is also available on distributor sites like DigiKey and datasheet aggregators like alldatasheet.com.

Engineering reference data for AD632SH/883B β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the AD632SH/883B when you need a precision four-quadrant multiplier with military temperature range and hermetic packaging. It is ideal for aerospace, defense, and industrial applications where reliability and accuracy are paramount. If you require even tighter nonlinearity (Β±0.25%), consider the AD632TH/883B. For commercial applications with a limited temperature range, the AD632BD offers similar performance at lower cost. If you need a drop-in replacement for existing AD532 designs, the AD632SH/883B is pin-compatible and provides improved specifications. For applications where a different package is acceptable, the AD633JNZ in DIP-8 is a functional alternative, but it is not pin-compatible.

Comparison with Alternatives

Parameter This Product AD632TH/883B AD532SD/883B AD632BD
Package TO-100-10 TO-100-10 TO-100-10 TO-100-10
Brand Analog Devices Analog Devices Analog Devices Analog Devices
Temperature Range -55Β°C to +125Β°C -55Β°C to +125Β°C -55Β°C to +125Β°C 0Β°C to +70Β°C
Z-Input Fully differential, high impedance Fully differential, high impedance Single-ended Fully differential, high impedance
Maximum Gain Γ—10 Γ—10 Γ—10 Γ—10
Nonlinearity Β±0.5% Β±0.25% Β±1% Β±0.5%
Bandwidth 1 MHz 1 MHz 1 MHz 1 MHz
Supply Voltage Β±15 V Β±15 V Β±15 V Β±15 V

Key Differentiators

  • Fully differential high-impedance Z-input (vs AD532SD/883B)
  • Improved nonlinearity (vs AD532SD/883B)
  • Military temperature range (vs AD632BD)

Design Notes

The AD632SH/883B requires dual power supplies, typically Β±15 V. Use 0.1 Β΅F ceramic capacitors close to the V+ and V- pins for decoupling. Additionally, a 10 Β΅F tantalum capacitor on each supply rail is recommended to filter low-frequency noise. Ensure the supplies are clean and stable to maintain accuracy.

For the TO-100-10 metal can package, ensure proper heat dissipation. The metal can is connected to the substrate, so it can be soldered to a PCB pad for thermal relief. Keep input and output traces short to minimize parasitic capacitance. Use a ground plane to reduce noise pickup.

In division mode, the Y-input must be positive to avoid instability. Also, the output can drive loads down to 2 kΞ©; driving lower impedances may cause distortion. Do not exceed the absolute maximum supply voltage of Β±18 V. Always verify the pinout against the datasheet before layout.

Compliance Information

RoHS
Unknown
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
Unknown
Halogen Free
Unknown
Conflict Minerals
Unknown

Compliance data not provided in the verified web data. The AD632SH/883B is a military-grade part, and RoHS status may vary; check the manufacturer's documentation for compliance details.

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