EL5162IS-T13 Equivalent & Substitute Parts

Part Overview

The EL5162IS-T13 is a Current Feedback Amplifier (CFA) manufactured by Renesas Electronics Corporation, housed in an 8-SOIC surface mount package. This single-circuit operational amplifier is designed for high-speed signal processing applications requiring wide bandwidth and fast slew rate performance. The EL5162IS-T13 is classified as obsolete, making identification of functionally equivalent substitute components essential for design continuity, production support, and long-term system reliability. Substitute parts must maintain compatibility across electrical performance parameters, package form factor, and operating conditions.

Substiute Parts

EL5162IS-T13
Renesas Electronics CorporationIn Stock: 961EL5162IS-T13 Datasheet
EL5162IS-T13
Current Part
AD8011ARZ-REEL7
Analog Devices Inc.In Stock: 5692AD8011ARZ-REEL7 Datasheet
AD8011ARZ-REEL7
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OPA684ID
Texas InstrumentsIn Stock: 1450OPA684ID Datasheet
OPA684ID
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OPA684IDR
Texas InstrumentsIn Stock: 5865OPA684IDR Datasheet
OPA684IDR
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Key Parameters

Parameter Value Unit
Amplifier Type Current Feedback
Number of Circuits 1
Slew Rate 4000 V/µs
-3dB Bandwidth 500 MHz
Current - Input Bias 2 µA
Voltage - Input Offset 1.5 mV
Current - Supply 1.5 mA
Voltage - Supply Span (Min) 5 V
Voltage - Supply Span (Max) 12 V
Operating Temperature Range -40 to 85 °C
Package / Case 8-SOIC (0.154", 3.90mm Width)
Mounting Type Surface Mount
Moisture Sensitivity Level (MSL) 1 (Unlimited)

Substitute Part Grouping Explanation

Substitute parts for the EL5162IS-T13 are qualified based on the following criteria:

Mandatory Compatibility Parameters:

  • Amplifier Type: Current Feedback (single circuit configuration)
  • Package / Case: 8-SOIC form factor with 0.154" (3.90mm) width
  • Mounting Type: Surface Mount
  • Operating Temperature Range: -40°C to 85°C minimum
  • Voltage Supply Span: Minimum 5V to maximum 12V overlap

Performance Parameters for Substitution:

  • Slew Rate: Substitute must meet or exceed 4000V/µs
  • -3dB Bandwidth: Substitute must meet or exceed 500 MHz
  • Current - Input Bias: Substitute must not exceed 2 µA
  • Voltage - Input Offset: Substitute must not exceed 1.5 mV
  • Current - Supply: Substitute must not exceed 1.5 mA

The three substitute parts listed (AD8011ARZ-REEL7, OPA684ID, OPA684IDR) share identical package specifications and operating temperature ranges with the EL5162IS-T13. However, each substitute exhibits different performance trade-offs relative to the main part specifications.

Parameter Comparison

Parameter EL5162IS-T13 AD8011ARZ-REEL7 OPA684ID OPA684IDR Unit
Manufacturer Renesas Electronics Analog Devices Inc. Texas Instruments Texas Instruments
Product Status Obsolete Active Active Active
Amplifier Type Current Feedback Current Feedback Current Feedback Current Feedback
Number of Circuits 1 1 1 1
Slew Rate 4000 3500 820 820 V/µs
-3dB Bandwidth 500 400 210 210 MHz
Current - Input Bias 2 5 5 5 µA
Voltage - Input Offset 1.5 2 1.5 1.5 mV
Current - Supply 1.5 1.3 1.7 1.7 mA
Voltage - Supply Span (Min) 5 3 5 5 V
Voltage - Supply Span (Max) 12 12 12 12 V
Operating Temperature Range -40 to 85 -40 to 85 -40 to 85 -40 to 85 °C
Package / Case 8-SOIC (0.154", 3.90mm) 8-SOIC (0.154", 3.90mm) 8-SOIC (0.154", 3.90mm) 8-SOIC (0.154", 3.90mm)
Mounting Type Surface Mount Surface Mount Surface Mount Surface Mount
RoHS Status Non-compliant ROHS3 Compliant ROHS3 Compliant ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited) 1 (Unlimited) 2 (1 Year) 2 (1 Year)

Engineering Selection Recommendations

AD8011ARZ-REEL7 (Analog Devices Inc.): The AD8011ARZ-REEL7 is an active product with ROHS3 compliance and unlimited moisture sensitivity rating. This substitute exhibits reduced slew rate (3500V/µs versus 4000V/µs) and reduced bandwidth (400 MHz versus 500 MHz) relative to the EL5162IS-T13. Input bias current is elevated to 5 µA. Supply current is reduced to 1.3 mA. The minimum supply voltage is 3V, providing broader supply range compatibility. Selection of this substitute is appropriate for applications where the reduced performance parameters are acceptable and where RoHS3 compliance is required.

OPA684ID (Texas Instruments): The OPA684ID is an active product with ROHS3 compliance and 1-year moisture sensitivity rating. This substitute exhibits significantly reduced slew rate (820V/µs) and bandwidth (210 MHz) relative to the EL5162IS-T13. Input bias current is elevated to 5 µA. Supply current is increased to 1.7 mA. Output current per channel is specified at 160 mA. The gain bandwidth product is 1.9 GHz. Selection of this substitute is appropriate only for applications where the substantially reduced bandwidth and slew rate specifications are compatible with system requirements.

OPA684IDR (Texas Instruments): The OPA684IDR is functionally identical to the OPA684ID but supplied in Tape & Reel (TR) packaging format. All electrical specifications, compliance certifications, and performance parameters are equivalent to the OPA684ID. Selection between OPA684ID and OPA684IDR depends on packaging and procurement requirements.

Compliance Considerations: All three substitute parts are ROHS3 compliant, whereas the EL5162IS-T13 is RoHS non-compliant. This distinction is significant for applications subject to RoHS regulatory requirements. The AD8011ARZ-REEL7 and OPA684ID/OPA684IDR all maintain REACH Unaffected status consistent with the main part.

Frequently Asked Questions (FAQ)

Q: Can the AD8011ARZ-REEL7 be used as a direct replacement for the EL5162IS-T13?

A: The AD8011ARZ-REEL7 shares the same 8-SOIC package, operating temperature range, and supply voltage specifications. However, the slew rate is reduced from 4000V/µs to 3500V/µs, and bandwidth is reduced from 500 MHz to 400 MHz. Direct substitution is valid only if the application can tolerate these reduced performance parameters.

Q: What are the key differences between OPA684ID and OPA684IDR?

A: OPA684ID and OPA684IDR are electrically identical. The primary difference is packaging format: OPA684ID is supplied in Tube packaging, while OPA684IDR is supplied in Tape & Reel (TR) format. Selection depends on procurement and assembly process requirements.

Q: Why does the OPA684 series show significantly lower bandwidth than the EL5162IS-T13?

A: The OPA684ID and OPA684IDR are specified with 210 MHz bandwidth and 820V/µs slew rate, substantially lower than the EL5162IS-T13 specifications of 500 MHz and 4000V/µs. These parts are suitable for lower-frequency applications but are not appropriate for high-speed signal processing requiring the full performance envelope of the EL5162IS-T13.

Q: Are all substitute parts RoHS compliant?

A: Yes. All three substitute parts (AD8011ARZ-REEL7, OPA684ID, OPA684IDR) are ROHS3 compliant. The original EL5162IS-T13 is RoHS non-compliant. This distinction is critical for applications subject to RoHS regulatory requirements.

Q: What is the moisture sensitivity difference between the main part and substitutes?

A: The EL5162IS-T13 and AD8011ARZ-REEL7 are both rated MSL 1 (Unlimited). The OPA684ID and OPA684IDR are rated MSL 2 (1 Year), indicating more stringent moisture handling requirements during storage and assembly.

Q: Can the AD8011ARZ-REEL7 operate at lower supply voltages than the EL5162IS-T13?

A: Yes. The AD8011ARZ-REEL7 minimum supply voltage is 3V, compared to 5V for the EL5162IS-T13. Both parts support maximum supply voltage of 12V. The broader supply range of the AD8011ARZ-REEL7 may provide design flexibility in certain applications.

Q: What is the input bias current difference, and does it matter?

A: The EL5162IS-T13 specifies 2 µA input bias current, while all three substitutes specify 5 µA. For applications with high-impedance input sources or precision transimpedance configurations, this 2.5x increase in input bias current may require circuit design modifications to maintain performance specifications.

Q: Are there any supply current differences that affect power consumption?

A: The EL5162IS-T13 draws 1.5 mA supply current. The AD8011ARZ-REEL7 draws 1.3 mA (lower), while OPA684ID and OPA684IDR draw 1.7 mA (higher). For battery-powered or power-constrained applications, these differences may be significant.

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