AD7533 10-bit Multiplying DAC

Analog Devices Signal_Chain — specifications, applications, sourcing support and RFQ.

AD7533 10-bit Multiplying DAC

RFQ Available Sourcing Support Alternative Matching RoHS
Part Number
AD7533
Manufacturer
Analog Devices
Package
16-lead PDIP, package no. E16.3
Category
Signal Chain
Product Type
Operational Amplifier

Quick Sourcing Note

AD7533 from Analog Devices is a Signal_Chain 10-bit multiplying DAC supplied in a 16-lead PDIP, package no. E16.3. It supports binary/offset binary input coding, TTL/CMOS compatible digital inputs, and four-quadrant multiplication. Key parameters include guaranteed monotonicity, 600 ns maximum output current settling time at TA=25°C, 5 kOhm to 20 kOhm reference input resistance, +5 V to +16 V operating supply range, and 2 mA maximum supply current at TA=25°C. The AD7533JN, AD7533KN, and AD7533LN options cover 0.2%, 0.1%, and 0.05% linearity grades for 0°C to 70°C operation.

Specifications

TypeDescription
Part NumberAD7533
ManufacturerAnalog Devices
Product TypeOperational Amplifier
CategorySignal Chain
Package / Case16-lead PDIP, package no. E16.3
Resolution10 bits; AD7533, V+=+15 V, VREF=+10 V, VOUT1=VOUT2=0 V
Integral/Differential Nonlinearity0.2% FSR max; AD7533J grade, -10 V <= VREF <= +10 V, VOUT1=VOUT2=0 V
Integral/Differential Nonlinearity0.1% FSR max; AD7533K grade, -10 V <= VREF <= +10 V, VOUT1=VOUT2=0 V
Integral/Differential Nonlinearity0.05% FSR max; AD7533L grade, -10 V <= VREF <= +10 V, VOUT1=VOUT2=0 V
MonotonicityGuaranteed; AD7533
Gain Error1.4% FSR max at TA=25°C; 1.8% FSR max over temperature; all digital inputs high, using internal feedback resistor
Nonlinearity Temperature Coefficient2 ppm FSR/°C max; -10 V <= VREF <= +10 V
Gain Error Temperature Coefficient10 ppm FSR/°C max; AD7533
Output Leakage Current50 nA max at TA=25°C; 200 nA max over temperature; either output, VOUT1=VOUT2=0 V
Power Supply Rejection0.005% FSR/% ΔV+ max at TA=25°C; 0.008% FSR/% ΔV+ max over temperature; V+=14.0 V to 15.0 V
Output Current Settling Time600 ns max at TA=25°C; 800 ns max over temperature; to 0.2% FSR, RL=100 ohm
Feedthrough Error0.05 LSB max at TA=25°C; 0.1 LSB max over temperature; VREF=20 VP-P, 200 kHz sine wave, all digital inputs low
Reference Input Resistance5 kOhm min; 20 kOhm max; pin 15, all digital inputs high, IOUT1 at ground
Reference Input Resistance Temperature Coefficient-300 ppm/°C; AD7533 reference input
Output Capacitance COUT1100 pF max; all digital inputs high
Output Capacitance COUT235 pF max; all digital inputs high
Output Capacitance COUT135 pF max; all digital inputs low
Output Capacitance COUT2100 pF max; all digital inputs low
Digital Input Low Threshold0.8 V max; VIL
Digital Input High Threshold2.4 V min; VIH
Digital Input Current±1 µA max; VIN=0 V or +15 V, IIL/IIH
Input CodingBinary/Offset Binary; see tables 1 and 3 referenced in datasheet
Digital Input Capacitance4 pF max; AD7533
Power Supply Voltage Range+5 V to +16 V; accuracy tested and guaranteed at V+=+15 V only
Supply Current I+2 mA max at TA=25°C; 2.5 mA max over temperature; all digital inputs high or low, excluding ladder network
Supply Voltage Absolute Maximum+17 V max; V+ to GND
Reference Voltage Absolute Maximum-25 V; VREF absolute maximum rating
Digital Input Voltage Range Absolute MaximumGND to V+; digital input voltage range
Output Voltage Compliance-100 mV to V+; absolute maximum rating
Operating Temperature Range0°C to 70°C; AD7533 JN, KN, LN versions
Thermal Resistance Junction-to-Ambient100°C/W typical; PDIP package, component mounted on evaluation PC board in free air
Maximum Junction Temperature150°C; plastic package
Storage Temperature Range-65°C to 150°C; maximum storage temperature
Lead Temperature300°C max; soldering, 10 s
Ordering OptionAD7533JN; 0.2% linearity, 0°C to 70°C, 16-lead PDIP E16.3
Ordering OptionAD7533KN; 0.1% linearity, 0°C to 70°C, 16-lead PDIP E16.3
Ordering OptionAD7533LN; 0.05% linearity, 0°C to 70°C, 16-lead PDIP E16.3
Supply Range Feature+5 V to +15 V; feature list operating supply range
Multiplication CapabilityFour-quadrant multiplication; AD7533 multiplying DAC operation
Logic CompatibilityTTL/CMOS compatible; digital input interface
Static Discharge ProtectionInput protection clamps to V+ and GND; protection from static discharge damage
Datasheet Statusrequest_only

Product Overview

The AD7533 is an Analog Devices 10-bit multiplying DAC for Signal_Chain designs requiring binary/offset binary digital control and current-output DAC behavior. The device is specified with 10-bit resolution, guaranteed monotonicity, and grade-dependent integral/differential nonlinearity of 0.2% FSR max for AD7533J, 0.1% FSR max for AD7533K, and 0.05% FSR max for AD7533L under the stated reference and output conditions.

The DAC supports four-quadrant multiplication and operates from a +5 V to +16 V supply range, with accuracy tested and guaranteed at V+=+15 V only. Digital inputs are TTL/CMOS compatible, with VIL of 0.8 V max, VIH of 2.4 V min, ±1 µA maximum input current, and 4 pF maximum input capacitance.

The package is a 16-lead PDIP, package no. E16.3, with ordering options AD7533JN, AD7533KN, and AD7533LN for 0°C to 70°C operation. Assembly-related limits include 100°C/W typical junction-to-ambient thermal resistance on an evaluation PC board in free air, 150°C maximum junction temperature, -65°C to 150°C storage temperature, and 300°C maximum lead temperature for 10 s soldering.

Key Features

  • 10-bit multiplying DAC architecture
  • Guaranteed monotonicity across AD7533 specifications
  • 0.05% FSR max nonlinearity in AD7533L grade
  • 600 ns max settling time at TA=25°C
  • Binary/offset binary digital input coding
  • TTL/CMOS compatible digital input interface
  • Four-quadrant multiplication capability
  • +5 V to +16 V operating supply range
  • 5 kOhm to 20 kOhm reference input resistance
  • Input protection clamps to V+ and GND

Typical Applications

  • Four-quadrant multiplication circuits
  • Binary-controlled signal conversion
  • Offset-binary signal conversion
  • TTL/CMOS logic DAC interfaces
  • Current-output DAC signal paths
  • 0°C to 70°C PDIP assemblies

Procurement Notes

When requesting a quote for AD7533, buyers should confirm the manufacturer, package or case, required quantity, target date code, compliance documents, packing method, destination country and expected delivery schedule.

If alternatives are acceptable, buyers should share the approved vendor list, required electrical or optical limits, package constraints and qualification requirements. Any alternative part should be reviewed by the buyer's engineering team before production use.

For analog and signal-chain sourcing, supply voltage, bandwidth, accuracy, noise level, package, temperature grade, input/output configuration and qualification requirements should be verified before approval.

FAQ

What type of converter is the AD7533?

The AD7533 is a 10-bit multiplying DAC from Analog Devices. The extracted datasheet facts identify it as a Signal_Chain component with binary/offset binary input coding and four-quadrant multiplication capability.

Which package is specified for AD7533 ordering options?

The AD7533 ordering options AD7533JN, AD7533KN, and AD7533LN are specified for a 16-lead PDIP package, package no. E16.3, with 0°C to 70°C operating temperature range.

How do AD7533J, AD7533K, and AD7533L linearity grades differ?

The extracted facts list integral/differential nonlinearity limits of 0.2% FSR max for AD7533J, 0.1% FSR max for AD7533K, and 0.05% FSR max for AD7533L under the stated reference and output conditions.

What supply range is specified for the AD7533?

The operating supply range is listed as +5 V to +16 V, while the feature list states +5 V to +15 V. The extracted facts also state that accuracy is tested and guaranteed at V+=+15 V only.

What digital input levels does the AD7533 support?

The AD7533 digital input interface is listed as TTL/CMOS compatible. The extracted specifications include 0.8 V maximum for VIL, 2.4 V minimum for VIH, ±1 µA maximum input current, and 4 pF maximum digital input capacitance.

Technical Review & Sourcing Note

Prepared by LDeepAI Component Sourcing Team. Reviewed for RFQ, documentation and alternative sourcing use. Last updated: August 17, 2026.

This page is based on manufacturer datasheet information and LDeepAI sourcing review. Specifications should be verified against the official manufacturer datasheet before final procurement or design approval. Final electrical, optical and reliability approval should be confirmed by the buyer's engineering team.

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