The MSOP-10 package is a 10-lead Mini Small Outline Package with a 3.0 mm × 3.0 mm body, a 0.50 mm lead pitch, and a maximum height of 1.10 mm, registered to JEDEC MO-187 Variation BA. Texas Instruments sells it as VSSOP-10 (package code DGS), or as HVSSOP-10 (DGQ) when it carries an exposed thermal pad. This page gives the full dimensions, how the pins are numbered with a real pinout, and a recommended land pattern.
Key takeaways
- The MSOP-10 body is 3.0 × 3.0 mm, about 4.9 mm wide including the gull-wing leads, and 1.10 mm tall at most.
- Lead pitch is 0.50 mm, not 0.65 mm; the 0.65 mm figure belongs to the 8-pin MSOP.
- Pins number counterclockwise from the top-left: 1–5 down the left side, 6–10 up the right.
- An MSOP-10 pinout is device-specific; the package fixes only the pin geometry, so read the part’s own datasheet.
- TI’s DGS is the plain VSSOP-10; DGQ adds a PowerPAD thermal pad (an eleventh terminal) that must solder to a copper pour.
MSOP-10 dimensions
The MSOP-10 measures 3.0 mm × 3.0 mm in body size, 4.90 mm wide across the gull-wing leads, and 1.10 mm tall at most, with a molded body about 0.85 mm thick and a 0.50 mm lead pitch. It is registered to JEDEC MO-187 Variation BA.
| Symbol | Dimension | Value (mm) |
| A | Overall height (max) | 1.10 |
| A1 | Standoff | 0.00–0.15 |
| A2 | Molded body thickness | 0.75–0.95 (0.85 nom) |
| b | Lead width | 0.23–0.33 |
| c | Lead thickness | 0.08–0.23 |
| D | Body length | 3.00 BSC |
| E | Overall width (incl. leads) | 4.90 BSC |
| E1 | Body width | 3.00 BSC |
| e | Lead pitch | 0.50 BSC |
| L | Foot length | 0.40–0.80 (0.60 nom) |
Values follow Microchip’s 10-Lead MSOP (MS) drawing C04-2021B, JEDEC MO-187-BA. Analog Devices publishes the same footprint as its MS (leaded) and MSE (exposed-pad) 10-lead packages.
MSOP-10 pinout: how the pins are numbered
An MSOP-10 has five leads per side. Pin 1 sits at the top-left, inside the index area marked by a dot or bevel, and the count runs counterclockwise: pins 1 to 5 down the left edge, then 6 to 10 up the right. That numbering is fixed by the package; the pin functions are not.
This matters on a bill of materials. Two different MSOP-10 parts share the outline but almost never share a pinout, so take pin functions from the specific device datasheet, never from another part in the same package.
| Pin | Name | Function (example: TI TPS54060, DGQ) |
| 1 | BOOT | High-side gate-drive bootstrap |
| 3 | EN | Enable / input UVLO adjust |
| 8 | COMP | Error-amplifier output, loop compensation |
| 9 | GND | Ground |
| 10 | PH | Switch node |
| 11 | Thermal pad | Exposed pad; tie to GND, solder to copper |
Selected pins shown from the TI TPS54060 datasheet; pins 2, 4, 5, 6, and 7 are omitted here. Note the eleventh terminal: on the DGQ (PowerPAD) version the exposed pad is numbered pin 11 and must connect to the ground plane.
DGS vs DGQ: plain VSSOP-10 vs PowerPAD
Two 10-pin variants share the MSOP-10 outline but are not interchangeable.
- DGS is the plain VSSOP-10 (JEDEC outline S-PDSO-G10): gull-wing leads, no thermal pad.
- DGQ is the HVSSOP-10 / MSOP-PowerPAD: the same body with the lead frame exposed on the underside as a thermal pad, added as pin 11.
A correction, because distributor listings get this wrong: the MSOP-10 and VSSOP-10 have gull-wing leads, not bottom pads. Any listing that calls a DGS part “leadless” is mistaken; only the DGQ adds a thermal pad, and even then the signal leads stay gull-wing.
The thermal pad earns its place when the part dissipates power. On the TPS54060, TI gives the DGQ junction-to-ambient resistance as about 62.5 °C/W on a standard board, which is why the pad should be soldered to copper with vias to move heat into the board.
MSOP-10 footprint and land pattern
The land pattern is ten pads at 0.50 mm pitch, five per side, with no center pad on the plain DGS. Every major vendor publishes a suggested pattern and references IPC-7351A for the geometry; Diodes Incorporated notes that a wave-solder pattern adds 0.2 mm to the toe (Z) dimension.
| Feature | Value |
| Pad size (signal) | 1.45 mm × 0.30 mm |
| Pad pitch | 0.50 mm |
| Pad-row centers (across board) | 4.40 mm apart |
| Overall land span | ~5.8 mm |
Signal-pad values are from TI’s HVSSOP-10 (DGQ) recommended layout; the overall span follows Richtek’s MSOP-10 footprint drawing. For the DGQ (PowerPAD) version, add a central thermal land: TI’s layout uses a 2.20 mm × 3.10 mm copper area with a 1.75 mm × 2.22 mm solder-mask opening and six 0.30 mm thermal vias on a 1.30 mm grid, tying the pad to an inner ground plane.
Soldering and assembly notes
At 0.50 mm pitch the MSOP-10 is a fine-pitch part. Use a stencil and reflow in production; bridging between adjacent leads is the common defect, so keep paste apertures matched to the land rather than oversized.
- Pin 1 is marked by a dot or bevel; the footprint is symmetric, so a rotated part still solders and then fails electrically.
- Hand assembly works with a fine tip, flux, and magnification, or by drag-soldering, but it is slower and bridges easily.
- On the DGQ, a poorly vented thermal pad can float or tombstone the part; follow the vendor’s paste-coverage percentage.
- Plastic MSOP-10 parts carry a J-STD-020 Moisture Sensitivity Level; bake per the reel label before reflow.
Real parts and sourcing
The MSOP-10 is common in analog, power, and mixed-signal devices, so sourcing is usually easy. Examples include the TI TPS54060 buck converter and TPS62051 step-down converter in DGS or DGQ, and the XTR111 voltage-to-current converter in DGQ. Analog Devices ships many parts in the MS (leaded) and MSE (exposed-pad) 10-lead bodies. Before you commit copper, confirm two things on the specific datasheet: whether the part is DGS (no pad) or DGQ (pin-11 pad), and the exact recommended land pattern, since the pad changes both the footprint and the thermal design.
Frequently asked questions
What are the dimensions of an MSOP-10?
An MSOP-10 has a 3.0 mm × 3.0 mm body, is 4.90 mm wide across the gull-wing leads, and stands 1.10 mm tall at most, with a molded thickness near 0.85 mm and a 0.50 mm lead pitch. It is registered to JEDEC MO-187 Variation BA.
What is the pitch of an MSOP-10 package?
The MSOP-10 uses a 0.50 mm lead pitch, confirmed across manufacturer drawings from Microchip, Analog Devices, ROHM, and Texas Instruments. The 0.65 mm pitch sometimes quoted belongs to the 8-pin MSOP, not the 10-pin.
What is the MSOP-10 footprint size?
The land pattern is ten pads at 0.50 mm pitch, five per side. TI’s recommended layout uses 1.45 mm × 0.30 mm pads with the two rows about 4.40 mm apart center-to-center, and an overall span near 5.8 mm. Vendors reference IPC-7351A.
Is MSOP-10 the same as VSSOP-10?
Yes. VSSOP-10 is Texas Instruments’ name for the MSOP-10 footprint; its package code is DGS. The exposed-pad version is DGQ (HVSSOP-10). Confirm the drawing, since distributors list the part under either name.
How are MSOP-10 pins numbered?
Pin 1 is at the top-left, inside the index area marked by a dot or bevel. The count runs counterclockwise: pins 1 to 5 down the left side, then 6 to 10 up the right. Pin functions are set by the device, not the package.
What is the difference between DGS and DGQ?
DGS is the plain VSSOP-10 with gull-wing leads and no thermal pad. DGQ is the same 10-pin body with an exposed PowerPAD thermal pad, numbered pin 11, that solders to a copper pour. They are not footprint-interchangeable.
What to do next
Design in an MSOP-10 when you need a 10-pin analog, power, or mixed-signal part in a 3.0 mm body under 1.10 mm tall and your line can place 0.50 mm pitch. Decide first whether the part is DGS or DGQ, because the pin-11 thermal pad changes the land pattern and the thermal design. Draw the footprint from the specific datasheet and IPC-7351A, take the pinout from that part alone, and match paste apertures to the pads to keep the fine-pitch leads from bridging.