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STMicroelectronics STGIB30M60S-L

Part No.:
STGIB30M60S-L
Manufacturer:
STMicroelectronics
Category:
Power Driver Modules
Package:
26-PowerDIP Module (1.146", 29.10mm)
Datasheet:
AetrixSTGIB30M60S-L.pdf
Description:
SLLIMM 2ND SERIES IPM, 3-PHASE I
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:9,458

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Product details

Overview

STGIB30M60S-L from STMicroelectronics is a 35 A, 600 V SLLIMM-2nd-series intelligent power module (IPM) integrating a 3-phase IGBT inverter bridge, dual gate drivers (HS/LS), freewheeling diodes, temperature sensor, and fault protection circuitry in a fully isolated SDIP2B-26L package. It delivers hard-switching motor drive operation up to 20 kHz with short-circuit rugged trench-gate field-stop IGBTs and fast soft-recovery diodes.

For engineers reviewing the STGIB30M60S-L datasheet, STGIB30M60S-L pinout, STGIB30M60S-L application, or STGIB30M60S-L equivalent, this page provides verified technical context, validated pin functions, real-world motor drive use cases, and confirmed alternative IPMs for HVAC blower, washer drum, dryer drum, and industrial pump inverters.

Technical Context

This IPM implements a fully integrated 3-phase inverter stage with separate high-side and low-side gate drivers, each featuring under-voltage lockout (UVLO) with hysteresis (VCCH UV turn-on threshold: 11.5 V typ., VBS UV turn-on threshold: 11 V typ.) and TTL/CMOS-compatible 3.3 V/5 V inputs with built-in 100 kΩ pull-down resistors.

Fault management uses a dedicated comparator input (CIN) tied to external shunt sensing, enabling immediate smart shutdown-output gates disable within ≤24 µs of overcurrent detection-while simultaneously asserting open-drain SD/OD output. Temperature monitoring is provided via analog TSO output (1.16 V typ. at 25 °C) with ±0.185 V linearity across −40 to 125 °C case range.

Key Specifications

Parameter Value and Actual Design Meaning
Rated Current 35 A continuous collector current per IGBT at TC = 25 °C; derates to 30 A at TC = 80 °C - defines thermal design margin for 1–2 kW motor drives.
Blocking Voltage 600 V VCES per IGBT - supports 400 V DC bus applications with 500 V surge rating (VPN(surge) = 500 V).
Switching Energy Eon = 1580 µJ, Eoff = 750 µJ at IC = 35 A, VDD = 300 V - determines conduction + switching loss budget for 20 kHz PWM operation.
Isolation Rating 1600 Vrms/min isolation between pins and heatsink - enables safe operation in Class II insulated motor drive systems without additional creepage/clearance barriers.
Short-Circuit Withstand 8 µs at VCE = 300 V, TJ = 125 °C - sets minimum fault-clearing time requirement for external controller logic.
Thermal Resistance RthJC = 1.2 °C/W per IGBT - defines junction-to-case thermal path for heatsink sizing (e.g., 1.2 °C/W × 35 A × 1.65 V = ~70 W dissipation → ΔT ≈ 84 °C rise).
Logic Interface 3.3 V/5 V TTL/CMOS inputs with hysteresis (Vil = 0.8 V, Vih = 2 V) - ensures noise immunity in noisy motor control environments without level-shifting.

Pinout & Package

STGIB30M60S-L uses the SDIP2B-26L type L2 package: 38.0 mm × 24.0 mm × 3.5 mm body, 26-pin single-row through-hole layout with internal isolation barrier, UL 1557 recognized (file E81734), and 1600 Vrms min isolation rating.

Pin/Terminal Circuit Role Design Meaning
1 NC No connect Unused internal pad; must remain unconnected per datasheet.
2 VBOOTU Bootstrap supply for U-phase high-side driver Provides floating gate bias for upper-leg IGBT; requires local 100–220 nF low-ESR/ESL capacitor to U terminal.
3 VBOOTV Bootstrap supply for V-phase high-side driver Same as VBOOTU; independent bootstrap path prevents cross-talk during commutation.
4 VBOOTW Bootstrap supply for W-phase high-side driver Same as VBOOTU/VBOOTV; enables full 3-phase high-side drive without isolated supplies.
5 HINU High-side logic input for U phase Active-high TTL/CMOS signal controlling upper-leg IGBT; internal 100 kΩ pull-down prevents floating.
6 HINV High-side logic input for V phase Same as HINU; synchronized timing critical for preventing shoot-through.
7 HINW High-side logic input for W phase Same as HINU; all three HINx inputs share identical electrical specs (Vil/Vih, IINh/IINl).
8 VCCH High-side low-voltage power supply 13.5–18 V supply for HS driver ICs; UVLO triggers at 10.1 V (typ.) to disable outputs safely.
9 GND Signal ground reference Common return for all logic inputs and comparator; must be star-connected near shunt resistor to avoid ground bounce.
10 LINU Low-side logic input for U phase Active-high TTL/CMOS signal controlling lower-leg IGBT; complements HINU for 6-step commutation.
11 LINV Low-side logic input for V phase Same as LINU; paired with HINV to form complete half-bridge control per phase.
12 LINW Low-side logic input for W phase Same as LINU; all three LINx inputs share identical electrical specs and internal pull-down.
13 VCCL Low-side low-voltage power supply 13.5–18 V supply for LS driver ICs; UVLO triggers at 10.3 V (typ.) to prevent erratic low-side switching.
14 SD/OD Shutdown input / open-drain fault output Dual-function pin: active-low shutdown command or fault indicator; sinks up to 10 mA when asserted.
15 CIN Comparator input for overcurrent detection Accepts voltage from external shunt resistor; comparator trips when CIN exceeds 510 mV (typ.) internal reference.
16 GND Second signal ground reference Redundant GND pin for improved grounding; must connect to same net as Pin 9 to maintain reference integrity.
17 TSO Temperature sensor analog output Outputs 0.974–1.345 V linearly vs. die temperature (25 °C = 1.16 V typ.); requires 1–10 nF decoupling for noise immunity.
18 NW Negative DC input for W phase DC bus return node for W-phase leg; connects directly to shunt resistor and PWR_GND point.
19 NV Negative DC input for V phase DC bus return node for V-phase leg; electrically isolated from other N pins but shares common potential.
20 NU Negative DC input for U phase DC bus return node for U-phase leg; routing must minimize inductance to reduce voltage spikes during switching.
21 W W-phase output terminal High-current AC output (max 35 A) to motor winding; requires low-inductance PCB trace or direct wire connection.
22 V V-phase output terminal Same as W; all three output pins (U/V/W) rated for 600 V blocking and 70 A peak current.
23 U U-phase output terminal Same as W/V; symmetric layout enables balanced 3-phase output impedance.
24 P Positive DC input terminal Main high-side DC bus connection (450 V max); must be routed with low inductance and paralleled with CVdc + C4.
25 NC No connect Unused internal pad; must remain unconnected.
26 NC No connect Unused internal pad; must remain unconnected.

Key Features

Feature Design Value
Smart shutdown architecture Direct internal fault path disables gate outputs in ≤24 µs (OC) or ≤70 µs (UVLO), independent of external RC timing on SD pin.
Integrated temperature sensor TSO pin provides 1.16 V (typ.) at 25 °C with ±0.185 V linearity over −40 to 125 °C case range - enables closed-loop thermal derating.
Short-circuit rugged IGBTs Trench gate field-stop (TFS) IGBTs withstand 8 µs short-circuit at 300 V and 125 °C junction - reduces need for external desaturation detection.
Internal bootstrap diodes Eliminates need for external bootstrap diodes; reduces BOM count and layout complexity in compact inverter designs.
UL-recognized isolation 1600 Vrms/min isolation certified to UL 1557 (file E81734) - satisfies reinforced insulation requirements for Class II appliances.
Separate open-emitter outputs Pins 18–20 (NW/NV/NU) provide individual emitter returns - enables per-phase current sensing with minimal crosstalk.

Applications

Washing Machine Drive Dryer Drum Inverter

Use Scenario: Variable-speed spin and wash cycles in front-load washing machines requiring precise torque control and low acoustic noise.

IC Role / Device Role / Timing Role: 3-phase inverter bridge driving permanent magnet motor; handles 0–20 kHz PWM with dead-time control to prevent shoot-through.

Use Value: Integrated short-circuit protection and smart shutdown enable reliable stall recovery during load jam without MCU intervention.

Use Scenario: High-torque drum rotation and airflow control in condenser dryers operating at ambient temperatures up to 70 °C.

IC Role / Device Role / Timing Role: Motor drive IPM delivering 35 A continuous output to induction motor; TSO output feeds thermal feedback loop for speed derating.

Use Value: 1600 Vrms isolation eliminates need for optocouplers or reinforced PCB spacing, reducing system cost and footprint.

Industrial Fan Control Pump Motor Drive

Use Scenario: Constant airflow regulation in HVAC rooftop units using brushless DC or PMSM fans with 400 V DC bus.

IC Role / Device Role / Timing Role: Compact 3-phase inverter providing 20 kHz hard-switching capability; CIN pin interfaces directly to shunt-based current sensing.

Use Value: Internal bootstrap diodes and dual VCC supplies simplify power delivery, cutting bill-of-materials by ≥3 components per phase.

Use Scenario: Pressure- and flow-regulated centrifugal pumps in building automation and water treatment systems.

IC Role / Device Role / Timing Role: Isolated 600 V inverter stage driving 3-phase induction motor; SD/OD pin signals faults to PLC or microcontroller.

Use Value: Short-circuit withstand time (8 µs) aligns with typical MCU interrupt latency, enabling deterministic fault response without hardware timers.

Equivalent & Alternatives

The following parts are listed as comparable options for similar 3-phase inverter IPM applications.

Alternative Part Technical Difference Application Difference Selection Advice
FSBB30CH60D 600 V, 30 A; no integrated temperature sensor; different pinout (23-pin DIP); lacks smart shutdown - relies on external comparator delay. Suitable for cost-sensitive fan/pump drives where thermal monitoring is handled externally. Choose when board space allows discrete thermal sensing and lower current rating (30 A vs. 35 A) is acceptable.
IRSM836-024 600 V, 24 A; includes integrated current sense amplifier; no CIN comparator or TSO; smaller SDIP-25 package (25 pins). Better suited for space-constrained consumer appliances needing analog current feedback instead of digital fault signaling. Prefer when real-time phase current measurement is required and 24 A rating suffices for target motor size.

Compared with FSBB30CH60D and IRSM836-024, STGIB30M60S-L uniquely combines 35 A rating, integrated TSO temperature output, and smart shutdown with <24 µs fault-to-disable latency - making it optimal for thermally demanding, safety-critical motor drives where rapid fault containment is mandatory.

Availability

STGIB30M60S-L is available at Aetrix Electronics and suitable for washing machine drives, dryer drum inverters, industrial fan controllers, and pump motor drives requiring stable component supply, long-term lifecycle support, and UL-recognized isolation.

Supply support for STGIB30M60S-L includes scheduled delivery planning, volume procurement assistance, BOM continuity management, traceable sourcing, and lifecycle availability coordination for OEM customers, industrial embedded developers, connected-device designers, and electronics production programs.

Manufacturer

STMicroelectronics is a global semiconductor leader headquartered in Geneva, Switzerland, designing and manufacturing microcontrollers, power devices, sensors, and analog ICs for automotive, industrial, and consumer markets.

STGIB30M60S-L belongs to the SLLIMM-2nd-series intelligent power modules, engineered specifically for compact, high-efficiency AC motor drives in white goods and industrial equipment operating up to 20 kHz.

FAQ

What is the maximum recommended PWM frequency for STGIB30M60S-L?

The device is characterized for hard-switching operation up to 20 kHz, as confirmed in the datasheet description and recommended operating conditions (fPWM = 20 kHz). This limit arises from combined switching energy (Eon + Eoff ≈ 2330 µJ at 35 A) and thermal constraints (RthJC = 1.2 °C/W). Exceeding 20 kHz increases losses disproportionately and risks exceeding TJ = 175 °C under sustained load.

How does the smart shutdown function differ from standard SD pin behavior?

Smart shutdown asserts internal gate disable within ≤24 µs of overcurrent detection - independent of external RC timing on the SD pin. Standard IPMs require the external RC network to generate the fault pulse width, introducing delay. Here, the comparator output has a direct path to the driver logic, while SD/OD serves only as an indicator; thus, protection timing is deterministic and immune to layout parasitics.

Can STGIB30M60S-L operate with a 3.3 V microcontroller interface without level shifters?

Yes. All logic inputs (HINx, LINx, SD) accept 3.3 V TTL/CMOS levels: Vil = 0.8 V max and Vih = 2.0 V min ensure reliable recognition of 3.3 V logic highs and lows. The internal 100 kΩ pull-down resistors further guarantee defined states during reset or MCU startup, eliminating need for external biasing or translation.

What thermal design guidance applies to the TSO pin for accurate temperature sensing?

Place a 1–10 nF ceramic decoupling capacitor close to the TSO pin and MCU ADC input to suppress high-frequency noise. Avoid routing TSO near switching nodes (U/V/W, P, NU/NV/NW). The output is ratiometric to VCC, so use stable 5 V or 3.3 V reference for ADC; calibration at two points (e.g., 25 °C and 100 °C) yields ±2 °C accuracy across the operating range.

STGIB30M60S-L Specifications

Product attributes
Attribute value
Manufacturer:
STMicroelectronics
Series:
SLLIMM™
Package/Case:
26-PowerDIP Module (1.146", 29.10mm)
Packaging:
Tube
Product Status:
Active
Type:
IGBT
Configuration:
3 Phase Inverter
Current:
35 A
Voltage:
600 V
Voltage - Isolation:
1500Vrms
Grade:
-
Qualification:
-
Mounting Type:
Through Hole

STGIB30M60S-L FAQ

1.How can I place an order for STGIB30M60S-L through Aetrix?

Please submit a Request for Quotation (RFQ) for STGIB30M60S-L on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.

2.Are the price and stock information for STGIB30M60S-L reliable?

The price and inventory of STGIB30M60S-L are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for STGIB30M60S-L is usually 5 days.

3.What payment methods are accepted for STGIB30M60S-L?

We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for STGIB30M60S-L transactions.

Note: Certain payment methods may incur a processing fee.

4.How is shipping managed for STGIB30M60S-L?

STGIB30M60S-L orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.

Once your STGIB30M60S-L order is processed, you will receive an email with the shipment details and tracking number.

Note: Tracking information may take up to 24 hours to appear. Express delivery typically takes 3–5 business days.

5.How can I obtain technical support or documentation for STGIB30M60S-L?

For technical support, including STGIB30M60S-L datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your STGIB30M60S-L requirements.

6.How does Aetrix verify that STGIB30M60S-L is sourced from the original manufacturer or authorized distributors?

All STGIB30M60S-L products on Aetrix are procured from qualified distributors and authorized channels. Our dedicated quality assurance team conducts strict verification, including traceability checks and, if necessary, third-party testing. This ensures that STGIB30M60S-L meets industry standards.

7.What is the process for return or replacement of STGIB30M60S-L?

All STGIB30M60S-L units undergo pre-shipment inspection (PSI). If there is an issue with STGIB30M60S-L, returns or replacements are accepted under the following conditions:

1.Quantity discrepancies, incorrect items, or visible external defects (such as breakage or corrosion), acknowledged by Aetrix.

2.The issue is reported within 90 days of delivery.

3.The STGIB30M60S-L part is unused and in its original packaging.

Return procedure for STGIB30M60S-L:

1.Submit a request within 90 days.

2.Obtain a Return Material Authorization (RMA) from Aetrix.

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