IRAM136-1060B >
IRAM136-1060B
Infineon Technologies
IC HYBRID PWR 10A 600V ADV SIP05
3715 Pcs New Original In Stock
Power Driver Module IGBT 3 Phase 600 V 10 A 29-PowerSSIP Module, 21 Leads, Formed Leads
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IRAM136-1060B Infineon Technologies
5.0 / 5.0 - (452 Ratings)

IRAM136-1060B

Product Overview

6926635

DiGi Electronics Part Number

IRAM136-1060B-DG
IRAM136-1060B

Description

IC HYBRID PWR 10A 600V ADV SIP05

Inventory

3715 Pcs New Original In Stock
Power Driver Module IGBT 3 Phase 600 V 10 A 29-PowerSSIP Module, 21 Leads, Formed Leads
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 1 14.0140 14.0140
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IRAM136-1060B Technical Specifications

Category Power Driver Modules

Manufacturer Infineon Technologies

Packaging -

Series iMOTION™

Product Status Obsolete

Type IGBT

Configuration 3 Phase

Current 10 A

Voltage 600 V

Voltage - Isolation 2000Vrms

Mounting Type Through Hole

Package / Case 29-PowerSSIP Module, 21 Leads, Formed Leads

Datasheet & Documents

HTML Datasheet

IRAM136-1060B-DG

Environmental & Export Classification

Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8542.39.0001

Additional Information

Other Names
SP001535454
2156-IRAM136-1060B-IT
ONSINFIRAM136-1060B
Standard Package
110

Alternative Parts

View Details
PART NUMBER
MANUFACTURER
QUANTITY AVAILABLE
DiGi PART NUMBER
UNIT PRICE
SUBSTITUTE TYPE
IKCM20L60GDXKMA1
Infineon Technologies
89301
IKCM20L60GDXKMA1-DG
0.1300
MFR Recommended

Reviews

5.0/5.0-(Show up to 5 Ratings)
Gold***unset
de desembre 02, 2025
5.0
DiGi Electronics provides exceptional after-sales support that truly addresses customer concerns efficiently.
Celest***Journey
de desembre 02, 2025
5.0
The careful packaging process assured that the product arrived pristine and intact.
Oce***ist
de desembre 02, 2025
5.0
I appreciate how transparent DiGi Electronics is about their pricing; there are no hidden charges, which makes my purchasing decision much easier.
Celes***lSaga
de desembre 02, 2025
5.0
Navigation is smooth, with no frustrating dead-ends or confusing links.
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Frequently Asked Questions (FAQ)

Can the IRAM136-1060B be safely used in new motor control designs given its obsolete status, and what are the long-term supply chain risks?

While the IRAM136-1060B is listed as obsolete, it may still be used in new designs if sufficient inventory (such as the 3641 pcs available) supports the product lifecycle. However, relying on the IRAM136-1060B introduces significant supply chain risk due to discontinued production. For long-term reliability and sustainment, consider redesigning with active-pin-compatible alternatives like the IKCM20L60GDXKMA1, which offers similar 600V, 10A three-phase IGBT performance in a modern, supported module. Always confirm lifetime buy options or authorized redistribution sources to mitigate counterfeit risk when using obsolete parts.

How does the IRAM136-1060B handle shoot-through current in three-phase inverter applications, and what gate driving precautions should be taken?

The IRAM136-1060B integrates gate drivers with built-in dead-time control to help reduce shoot-through risk in three-phase inverter topologies. However, because it does not enforce active shoot-through protection, external MCU or control logic must implement sufficient dead-time (typically 0.5–1.0 µs) to prevent overlapping high-side and low-side conduction. Ensure clean gate drive signals with low-inductance PCB layout and proper bypassing of VDD and VBS pins to avoid parasitic turn-on. Poor layout can negate the internal driver’s noise immunity, increasing failure risk in high-dI/dt environments.

Is the IRAM136-1060B suitable for use in industrial motor drives operating above 85°C ambient temperature, and how should thermal derating be applied?

The IRAM136-1060B is rated for operation up to 125°C junction temperature, but thermal performance depends heavily on heatsinking and PCB design. In ambient temperatures above 85°C, significant derating is required—output current should be reduced below 10A to stay within thermal limits. Use a thermal pad with low thermal resistance (<2°C/W) and ensure at least 2 oz copper on the PCB with thermal vias to internal ground planes. Monitor case temperature during testing; sustained operation above 100°C case temperature increases long-term failure risk, especially in sealed or high-humidity environments.

What are the key differences in PCB footprint and isolation requirements between the IRAM136-1060B and its potential substitute IKCM20L60GDXKMA1?

The IRAM136-1060B uses a 29-PowerSSIP with formed leads and requires a through-hole PCB mount with creepage/clearance designed for 2000Vrms isolation. The IKCM20L60GDXKMA1 uses a molded DIP-style package with similar pinout but may have tighter creepage between high-voltage nodes. When replacing, verify that the new footprint maintains ≥8 mm creepage distance and use slots under the module to enhance isolation. Additionally, the IKCM20L60GDXKMA1 has integrated NTC sensing—absent in the IRAM136-1060B—requiring circuit adjustments if thermal monitoring is not already implemented.

How does the IRAM136-1060B handle overcurrent events, and what external protection circuits are recommended for reliable motor phase fault handling?

The IRAM136-1060B lacks internal overcurrent shutdown; it relies on system-level protection. For robust phase fault handling, implement external shunt resistors or Hall-effect current sensors on each phase, feeding signals to the MCU for fast fault detection (<5 µs response). Pair this with desaturation (DESAT) monitoring if driving discrete IGBTs, though the IRAM136-1060B does not support direct DESAT. A hardware fault latch circuit tied to the module’s enable pin can provide fast turn-off during overloads, minimizing destructive energy dissipation during short circuits or lock-rotor conditions in BLDC/PMSM motors.

Quality Assurance (QC)

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