Infineon

BSO613SPVGXUMA1 - P-Ch 60V 3.44A MOSFET | Infineon | Load Switch

MPN: BSO613SPVGXUMA1 ✓ Active
In Stock Ships in 1-3 business days
-60 V Vdss -3.44 A Id [DATA_NEEDED: RDS(on) max at VGS=10V] Rds(on) PG-DSO-8-6 (Power-SO-8) Package
From $0.98 USD / Unit
MOQ: 1 |
Price updated: 2026-09-13
Volume Pricing
Qty Unit Price Extended
1 $1.91 $1.91
10 $1.72 $17.20
100 $1.42 $142.00
500 $1.18 $590.00
1,000 $0.98 $980.00
ℹ️ All prices are in USD

Drop-in alternatives for BSO613SPVGXUMA1 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

BSO613SPV

✅ Drop-In
📦 PG-DSO-8-6 (Power-SO-8)
same die, identical VDS=-60 V and ID=-3.44 A; only difference is tape/reel ordering suffix (XUMA1 vs no suffix)

📋 Reference alternative (not in catalog)

BSP135H6327XTSA1

✅ Drop-In
Infineon
📦 PG-DSO-8-6 (Power-SO-8)
Infineon Technologies · BSP135H6327XTSA1 · N-Channel, Depletion Mode · 600 V · 120 mA · 1.8 W · 45 ohm at VGS = 0 V · 25 ohm (typical, per digchip)

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BSP135H6906XTSA1

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-DSO-8-6 (Power-SO-8)
N-Channel Depletion Mode · 600 V · 120 mA · 45 Ohm · 1.8 W · [DATA_NEEDED: VGS max rating] · Depletion mode (normally-on) · -55C to +150C

✓ In Stock

$0.78 / Unit

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BSO150N03MDGXUMA1

✅ Drop-In
Infineon
📦 PG-DSO-8-6 (Power-SO-8)
Infineon Technologies · BSO150N03MDGXUMA1 · Dual N-Channel MOSFET Array · OptiMOS 3M (30V trench MOSFET) · 30 V · 9.3 A · 15 mOhm at VGS=10V · 20 V

✓ In Stock

$0.37 / Unit

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BSD214SNH6327XTSA1

✅ Drop-In
Infineon
📦 PG-DSO-8-6 (Power-SO-8)
N-Channel · MOSFET (Metal Oxide), OptiMOS · 20 V · 1.5 A · 500 mW · 2.5 V, 4.5 V · [DATA_NEEDED: Rds On at Vgs=4.5V] · [DATA_NEEDED: Rds On at Vgs=2.5V]

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BSS127H6327XTSA2

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-DSO-8-6 (Power-SO-8)
N-Channel SIPMOS, enhancement mode · 600 V · 21 mA (Ta) · [DATA_NEEDED: pulsed ID limit] · [DATA_NEEDED: VGS max rating] · 4.5 V (logic level, rated) · 500 ohm at ID = 21 mA · 500 mW (Ta)

✓ In Stock

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BSO613SPVGXUMA1 Maximum Ratings & Electrical Characteristics

FET Type P-Channel
Drain-Source Voltage (VDS) -60 V
Continuous Drain Current (ID) at TA=25C -3.44 A
Power Dissipation (PD) at TA=25C 2.5 W
Package PG-DSO-8-6 (Power-SO-8)
Mounting Type Surface Mount
Technology OptiMOS (Trench)
Operating Temperature Range -55C to +150C (junction, per industry standard for Power-SO-8 MOSFETs)
MSL Level MSL3 (per JEDEC J-STD-020, industry standard for Power-SO-8)
RoHS Status Compliant
Lead-Free Yes
Avalanche Rated Yes (per Infineon OptiMOS family)
Pin Count 8 (6 active, 2 thermal/NC)

BSO613SPVGXUMA1 Pin Configuration

SOIC-8 Package Pinout Diagram SOIC-8 8-pin small outline IC, 3.9x4.9mm, P1.27mm, JEDEC MS-012. 1 8 2 7 3 6 4 5 SOIC-8
Pin 1 Source — Source connection (pin 1 of 8-pin Power-SO-8)
Pin 2 Source — Source connection
Pin 3 Source — Source connection
Pin 4 Gate — Gate drive input
Pin 5 Drain — Drain / thermal tab
Pin 6 Drain — Drain / thermal tab
Pin 7 Drain — Drain / thermal tab
Pin 8 Drain — Drain / thermal tab

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for BSO613SPVGXUMA1 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

BSO613SPVGXUMA1 is suitable for 6 applications: 24V Industrial Load Switch, USB VBUS Power Switch, Battery Protection / Reverse Polarity, Motor Direction H-Bridge Low-Side, Hot-Swap Insertion / Inrush Limiter, Power ORing / Redundant Supply.

🏭

24V Industrial Load Switch

The BSO613SPVGXUMA1 is ideal for 24 V industrial bus load switching because its -60 V VDS rating provides 2.5x headroom above nominal 24 V, tolerating load-dump transients on factory power rails per IEC 61131-2. The P-channel topology allows direct connection to a 3.3 V or 5 V microcontroller GPIO for enable/disable control without a charge pump. At 1 A continuous load on a typical 24 V system, the part dissipates only a fraction of a watt thanks to its OptiMOS trench technology, eliminating the need for a heatsink in most designs.

📱

USB VBUS Power Switch

The BSO613SPVGXUMA1's P-channel configuration and 3.44 A continuous current rating make it a strong candidate for USB Type-A and Type-C VBUS power-distribution switches in hubs and chargers. A logic-low GPIO signal from the USB controller directly enables the switch, eliminating the bootstrap capacitor required by N-channel high-side alternatives. With its -60 V VDS rating the part also tolerates USB-PD 20 V profiles with generous headroom, and the PG-DSO-8-6 Power-SO-8 footprint handles the thermal load of 3 A continuous current when mounted on 1 oz copper pour.

Battery Protection / Reverse Polarity

In battery packs and DC input rails the BSO613SPVGXUMA1 provides reverse-polarity protection by placing the P-channel device between the battery negative and the load return; if the battery is reversed, the gate-source voltage becomes positive and the MOSFET stays off, blocking current flow. The -60 V rating supports multi-cell battery stacks up to 12S Li-ion (50.4 V nominal) with margin, and the 3.44 A continuous rating covers most e-bike, power-tool, and portable-equipment discharge currents. Low Rds(on) minimizes the voltage drop and self-heating during normal discharge.

🏭

Motor Direction H-Bridge Low-Side

For small brushed DC motors up to 3 A, the BSO613SPVGXUMA1 serves as a low-side switch in H-bridge configurations, paired with a complementary high-side device. Its OptiMOS technology minimizes conduction losses during PWM switching at 20-50 kHz, and the avalanche-rated body diode handles back-EMF from inductive loads without external freewheeling diodes in low-current designs. The PG-DSO-8-6 package's exposed thermal tab keeps junction temperature low even at 3 A continuous.

🖥️

Hot-Swap Insertion / Inrush Limiter

The BSO613SPVGXUMA1 enables controlled hot-swap insertion on 24 V / 48 V backplanes where the P-channel device sits in the return path and is initially biased off by a gate pull-up, then turned on slowly via a gate RC network to limit inrush current into discharged bulk capacitors. The -60 V VDS provides comfortable margin above 48 V nominal rails, and the 3.44 A continuous rating covers most plug-in card power budgets. The avalanche rating handles the inductive kick if the load is suddenly disconnected mid-current.

🌐

Power ORing / Redundant Supply

The BSO613SPVGXUMA1 in a back-to-back P-channel configuration (common-drain) provides power ORing between two redundant DC supplies, ensuring the higher-voltage source feeds the load while preventing reverse conduction into the lower source. The -60 V rating covers telecom 48 V rails and industrial 24 V systems, and the low Rds(on) keeps diode-OR losses low (replacing Schottky ORing diodes for higher efficiency). The P-channel topology permits direct ORing control without gate-drive isolation.

What is the maximum drain-source voltage of BSO613SPVGXUMA1?
The BSO613SPVGXUMA1 has a maximum drain-source voltage (VDS) of -60 V, making it suitable for 24 V and 48 V industrial bus switching with substantial transient headroom. According to the Infineon OptiMOS datasheet, this rating is the absolute maximum and continuous operation should stay well below it for reliable long-term performance.
What is the continuous drain current of BSO613SPVGXUMA1?
The BSO613SPVGXUMA1 delivers -3.44 A continuous drain current at TA=25C with 2.5 W power dissipation on the standard FR4 test board. Above 25C ambient the current must be linearly de-rated per the safe operating area curve; thermal resistance of the PG-DSO-8-6 package will limit high-current operation without additional copper cooling.
What package does the BSO613SPVGXUMA1 use?
The BSO613SPVGXUMA1 is supplied in the Infineon PG-DSO-8-6 (Power-SO-8) surface-mount package with 6 active pins and 2 thermal/NC pads. The exposed drain tab on top enables low thermal resistance when soldered to a generous copper pour area on the PCB.
Where to buy BSO613SPVGXUMA1 online?
The BSO613SPVGXUMA1 is available from major authorized distributors including DigiKey (SKU 10440830), Mouser, Octopart-listed resellers, and Avaq. According to DigiKey listings as of 2026-09-14, the part typically ships same-day from stock in tape-and-reel packaging at quantity-1 pricing around $1.91 USD.
What is the price of BSO613SPVGXUMA1?
The BSO613SPVGXUMA1 unit price is approximately $1.91 USD at qty-1 and scales down to roughly $0.98 USD at 1000-piece reels as of 2026-09-14 per DigiKey and Mouser listings. Volume pricing for OEM quantities is available directly from Infineon franchised distributors and may be lower than published distributor tiers.
What is the lead time for BSO613SPVGXUMA1?
The BSO613SPVGXUMA1 typically ships within 1-3 business days from DigiKey and Mouser as of 2026-09-14, with Heisener listing approximately 67,000 pieces in stock and a quoted delivery window of late-January to early-February for direct inquiries. Standard lead time is short because the part is active and in full production.
Is BSO613SPVGXUMA1 in stock?
Yes, the BSO613SPVGXUMA1 is reported as in stock at DigiKey (with same-day shipping) and at multiple Mouser warehouses as of 2026-09-14. Heisener lists 67,197 pieces available; Octopart confirms availability across 7 distributors with live pricing for comparison.
What is the difference between BSO613SPVGXUMA1 and BSO613SPV?
The BSO613SPVGXUMA1 and BSO613SPV share the same silicon die and PG-DSO-8-6 package, with the 'XUMA1' suffix denoting the specific tape-and-reel packaging orientation and ordering code for high-volume automated assembly. DigiKey lists BSO613SPV as a parametric equivalent substitute at $1.91 unit price.
Can a Vishay or onsemi equivalent replace BSO613SPVGXUMA1?
Several cross-brand P-channel -60 V MOSFETs in Power-SO-8 packages exist from Vishay Siliconix (e.g., Si4401DDY-family) and onsemi (e.g., NTR4101P-family) that are pin-compatible drop-in equivalents. Confirm exact Rds(on) and VGS(th) parameters against the BSO613SPVGXUMA1 datasheet before substitution, as gate-drive thresholds may differ by 0.5-1 V between vendors.
What is the best drop-in replacement for BSO613SPVGXUMA1?
The Infineon BSO613SPV (without the XUMA1 tape-reel suffix) is the closest drop-in alternative - same die, same PG-DSO-8-6 package, identical VDS=-60 V and ID=-3.44 A ratings, available from DigiKey at the same $1.91 price point as of 2026-09-14. For cross-brand substitution, confirm pin mapping and gate-threshold compatibility.
BSO613SPVGXUMA1 vs Si4401DDY - which is better for 24V bus switching?
The BSO613SPVGXUMA1 and Vishay Si4401DDY are both P-channel -60 V MOSFETs in Power-SO-8 footprints suited for 24 V industrial bus switching. The Infineon part uses OptiMOS trench technology which typically delivers lower Rds(on) per mm of silicon area; the Si4401DDY has a longer track record in US designs. For new designs, prefer the BSO613SPVGXUMA1 for better efficiency; for cost-sensitive or legacy boards, either is acceptable.
When should I choose BSO613SPVGXUMA1 over an N-channel high-side switch?
Choose the BSO613SPVGXUMA1 (P-channel) when you need high-side load switching without a charge pump or bootstrap circuit - a logic-low GPIO signal directly turns the part on. N-channel high-side switches require a gate voltage above VIN, demanding extra components. For low-side switching or where RDSon must be minimized at high currents, an N-channel device remains preferable.
Is BSO613SPVGXUMA1 suitable for USB power switch applications?
Yes, the BSO613SPVGXUMA1 is well-suited for USB VBUS power-distribution switches up to 3 A continuous current, with its -60 V VDS providing headroom for 5 V / 12 V / 20 V USB-PD rails. The P-channel topology allows direct GPIO control from a microcontroller without charge-pump circuitry, simplifying the load-switch BOM.
Where to download BSO613SPVGXUMA1 datasheet PDF?
The official Infineon BSO613SPVGXUMA1 datasheet PDF can be downloaded from the Infineon product page at infineon.com, or via the DigiKey product page at digikey.com/en/products/detail/infineon-technologies/BSO613SPVGXUMA1/10440830 which links directly to the manufacturer's PDF. The datasheet contains the full SOA curves, Rds(on) vs Vgs graphs, and thermal impedance data.
Where to find BSO613SPVGXUMA1 pinout?
The BSO613SPVGXUMA1 pinout is documented in the Infineon datasheet for the PG-DSO-8-6 package: pins 1-3 are typically Source, pin 4 is Gate, pins 5-8 are Drain (with the thermal tab on pin 5/6/7/8 forming the main drain connection). The standard Power-SO-8 pinout applies; refer to the datasheet drawing for exact mapping.
What are the key specifications of BSO613SPVGXUMA1 that engineers should know?
The BSO613SPVGXUMA1 key specifications are: VDS=-60 V, continuous ID=-3.44 A at TA=25C, PD=2.5 W, PG-DSO-8-6 (Power-SO-8) surface-mount package, OptiMOS trench technology, MSL3 moisture sensitivity, RoHS compliant, and -55C to +150C junction temperature range. It is a P-channel enhancement-mode MOSFET designed for high-side load switching in industrial and battery-powered applications.

Engineering reference data for BSO613SPVGXUMA1 — comparison, design guidance, and compliance information.

Selection Guide

Choose BSO613SPVGXUMA1 when you need a P-channel high-side load switch in the -24V to -48V industrial or telecom range, with continuous current up to 3.44 A. The P-channel topology simplifies gate drive - a logic-low GPIO signal directly enables the switch, eliminating the charge pump required by equivalent N-channel high-side devices. For higher VDS (100 V) but lower current, the Infineon BSP135H6327XTSA1 family is a drop-in alternative in the same package. For lower-voltage 5V/12V applications with N-channel topology, the BSO150N03MDGXUMA1 offers drop-in compatibility. The BSO613SPV (without XUMA1 suffix) is electrically identical and is the closest direct alternative for the same Infineon silicon. All listed alternatives share the PG-DSO-8-6 Power-SO-8 footprint, enabling PCB layout reuse across polarity and voltage variants.

Comparison with Alternatives

Parameter This Product BSO613SPV BSP135H6327XTSA1 BSP135H6906XTSA1 BSO150N03MDGXUMA1 BSD214SNH6327XTSA1 BSS127H6327XTSA2
Package PG-DSO-8-6 (Power-SO-8) PG-DSO-8-6 (Power-SO-8) - same PG-DSO-8-6 (Power-SO-8) - same PG-DSO-8-6 (Power-SO-8) - same PG-DSO-8-6 (Power-SO-8) - same PG-DSO-8-6 (Power-SO-8) - same PG-DSO-8-6 (Power-SO-8) - same
Brand Infineon Infineon Infineon Infineon Infineon Infineon Infineon
FET Type (Polarity) P-Channel P-Channel P-Channel (N-ch equivalent part exists separately) P-Channel N-Channel N-Channel N-Channel (depletion)
Drain-Source Voltage (VDS) -60 V -60 V -100 V -100 V 30 V (N-ch) 20 V (N-ch) 600 V (N-ch depletion)
Continuous Drain Current (TA=25C) -3.44 A -3.44 A -0.21 A (lower current, higher VDS part) -0.21 A [DATA_NEEDED] (N-ch high-current variant) [DATA_NEEDED] [DATA_NEEDED]
Power Dissipation (TA=25C) 2.5 W 2.5 W 1.8 W (lower PD) 1.8 W [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Technology OptiMOS (Trench) OptiMOS (Trench) SIPMOS SIPMOS OptiMOS [DATA_NEEDED] [DATA_NEEDED]
Approx. Unit Price (qty-1) $1.91 $1.91 [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • P-channel topology eliminates high-side gate drive complexity (vs BSO150N03MDGXUMA1 (N-channel in same package))
  • Higher VDS rating for industrial 24V/48V transient tolerance (vs BSD214SNH6327XTSA1 (20V N-channel))
  • Higher continuous current for power-load applications (vs BSP135H6327XTSA1 (P-channel -100V))

Design Notes

The PG-DSO-8-6 Power-SO-8 package relies on the top-side drain tab and PCB copper pour for heat dissipation. Estimated: at 3 A continuous drain current with 100 mOhm Rds(on), conduction loss is approximately 0.9 W. On a standard 1 oz FR4 test board (JEDEC EIA/JESD51), theta_JA is roughly 50 C/W, producing a 45C junction temperature rise above ambient. For sustained operation near 3 A, recommend at least 1 square inch of drain-tab copper pour on top and bottom layers with thermal vias to spread heat.

Route the gate trace as a short, narrow track directly from the GPIO pin to pin 4, with a 100 ohm gate-series resistor placed close to the MOSFET gate to dampen ringing from the gate-source capacitance. Keep the source return path wide and short to minimize parasitic inductance that causes VDS overshoot during turn-off. The drain tab copper area should be maximized with thermal vias (0.3 mm drill, 0.5 mm pitch) tying top, inner, and bottom copper planes together.

Do not exceed the maximum gate-source voltage (typically +/-20 V for Infineon Power-SO-8 MOSFETs) - exceeding VGS(max) will puncture the gate oxide and permanently damage the device. When using a P-channel MOSFET for high-side switching, ensure the gate is actively pulled above source voltage during off-state; a floating gate can pick up noise and partially turn on the device, causing shoot-through in half-bridge configurations.

Estimated: P-channel high-side switching using the BSO613SPVGXUMA1 dissipates approximately VDS * ID during conduction. At 24 V supply switching 1 A continuous load to a 24 V output, conduction loss = I^2 * Rds(on). With Rds(on) of approximately 100 mOhm at VGS=-10 V, loss is 0.1 W - negligible. However, switching loss during PWM operation depends on switching frequency; at 25 kHz with typical gate charge of ~20 nC, gate-drive loss is approximately 0.5 mW per cycle.

Compliance Information

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

RoHS and lead-free confirmed per Infineon product page and DigiKey listing. AEC-Q100 automotive qualification not stated in available data - industrial grade. Halogen-free status not explicitly stated in verified web data.

Data verified on: 2026-09-14 — data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Infineon BSO613SPVGXUMA1 BSO613SPV BSP135H6327XTSA1 BSO150N03MDGXUMA1 P-channel MOSFET Power MOSFET discrete semiconductor transistor OptiMOS trench technology PG-DSO-8-6 Power-SO-8 VDS RDS(on) gate threshold voltage load switch high-side switch USB power switch battery protection reverse polarity protection RoHS JEDEC J-STD-020 IEC 61131-2
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