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TLC59711PWP
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Texas Instruments LED Drivers, HTSSOP-20-EP. Pinout cross-checked by two models against the datasheet, KiCad symbol/footprint/3D.
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TLC59711PWP
Texas Instruments · LED Drivers · HTSSOP-20-EP
TLC59711PWP from Texas Instruments, in a HTSSOP-20-EP. Pinout and pin descriptions extracted from the manufacturer datasheet (extract_pins, cross-checked by a second model); symbol, footprint, and 3D from KiCad-official CAD.
Pinout
| Pin | Name | Type | Function |
|---|---|---|---|
| 1 | IREF | input | Current reference input; a resistor connected between IREF and GND sets the maximum output current for all 12 channels, with outputs forced off when directly connected to GND. |
| 2 | GND | power_in | Power ground terminal. |
| 3 | OUTR0 | output | Red constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 4 | OUTG0 | output | Green constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 5 | OUTB0 | output | Blue constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 6 | OUTR1 | output | Red constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 7 | OUTG1 | output | Green constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 8 | OUTB1 | output | Blue constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 9 | SDTI | input | Serial data input for the 224-bit shift register; data present on SDTI are shifted to the LSB at each SCKI rising edge. |
| 10 | SCKI | input | Serial data shift clock input; data in the shift register are shifted toward the MSB at each SCKI rising edge with MSB data appearing on SDTO. |
| 11 | SCKO | output | Serial data shift clock output; the input shift clock signal from SCKI is adjusted to the timing of the serial data output for SDTO. |
| 12 | SDTO | output | Serial data output of the 224-bit shift register; connected to the MSB with data clocked out at the falling edge SCKO. |
| 13 | OUTR2 | output | Red constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 14 | OUTG2 | output | Green constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 15 | OUTB2 | output | Blue constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 16 | OUTR3 | output | Red constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 17 | OUTG3 | output | Green constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 18 | OUTB3 | output | Blue constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 19 | VCC | power_in | Power-supply terminal; accepts supply voltage from 4.0 V to 17 V for the internal linear regulator. |
| 20 | VREG | bidirectional | Internal linear voltage regulator output providing 3.3 V with a 1 µF decoupling capacitor required; can supply external circuits or be supplied externally with 3.0 V to 5.5 V, and can be connected with VREG terminals of other devices to increase supply current. |
| 21 | EP | passive | Exposed pad (from the footprint; not named in the datasheet pin table). |
Key specifications
| Parameter | Value |
|---|---|
| Manufacturer | Texas Instruments |
| Package | HTSSOP-20-EP |
| Category | Nixie Tube Driver/LED Driver |
| Pins | 21 |
CAD (KiCad official)
- Symbol:
TLC59711PWP - Footprint:
Package_SO:TSSOP-20-1EP_4.4x6.5mm_P0.65mm_EP2.15x3.35mm - 3D model: HTSSOP-20-EP, generated from the KiCad footprint (body from the F.Fab outline, terminals on the pads, 1.2 mm nominal TSSOP height). Neither the vendor nor KiCad ships a 3D model for this package, so the dimensions are nominal, not the manufacturer's CAD (STEP)
- 3D model files:
tlc59711pwp-etched.step/tlc59711pwp-etched.glbcarry the MPN laser-etched on the die in a toggleableAdom.LaserEtchgroup (Fusion-ready);tlc59711pwp.step/tlc59711pwp.glbare the bare package body.
Provenance
Data extracted from the manufacturer datasheet, not a distributor listing:
- Datasheet: Texas Instruments datasheet (39 pp, sha256
5a2cdff5cffdaac8, retrieved 2026-10-01, tier: lcsc) - Datasheet language: Chinese. Pin names, descriptions, and specs on this page were extracted and translated to English by ds2sf; the linked PDF is the manufacturer original.
- Extractor: parts-factory
2.0.0/extract_pins 0.3, primaryclaude-haiku-4-5-20251001(text), consensusclaude-sonnet-5-5(agreed), guards: pin_guards 0.1: passed. Pins are checked against the footprint pad set and their cited datasheet pages before publish. - CAD: KiCad official libraries (CC-BY-SA 4.0).
# TLC59711PWP
**Texas Instruments** · LED Drivers · HTSSOP-20-EP
TLC59711PWP from Texas Instruments, in a HTSSOP-20-EP. Pinout and pin descriptions extracted from the manufacturer datasheet (extract_pins, cross-checked by a second model); symbol, footprint, and 3D from KiCad-official CAD.
## Pinout
| Pin | Name | Type | Function |
|---|---|---|---|
| 1 | IREF | input | Current reference input; a resistor connected between IREF and GND sets the maximum output current for all 12 channels, with outputs forced off when directly connected to GND. |
| 2 | GND | power_in | Power ground terminal. |
| 3 | OUTR0 | output | Red constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 4 | OUTG0 | output | Green constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 5 | OUTB0 | output | Blue constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 6 | OUTR1 | output | Red constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 7 | OUTG1 | output | Green constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 8 | OUTB1 | output | Blue constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 9 | SDTI | input | Serial data input for the 224-bit shift register; data present on SDTI are shifted to the LSB at each SCKI rising edge. |
| 10 | SCKI | input | Serial data shift clock input; data in the shift register are shifted toward the MSB at each SCKI rising edge with MSB data appearing on SDTO. |
| 11 | SCKO | output | Serial data shift clock output; the input shift clock signal from SCKI is adjusted to the timing of the serial data output for SDTO. |
| 12 | SDTO | output | Serial data output of the 224-bit shift register; connected to the MSB with data clocked out at the falling edge SCKO. |
| 13 | OUTR2 | output | Red constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 14 | OUTG2 | output | Green constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 15 | OUTB2 | output | Blue constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 16 | OUTR3 | output | Red constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 17 | OUTG3 | output | Green constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 18 | OUTB3 | output | Blue constant-current output; maximum 60 mA per channel, can be configured in parallel for increased current capability, different voltages can be applied to each output. |
| 19 | VCC | power_in | Power-supply terminal; accepts supply voltage from 4.0 V to 17 V for the internal linear regulator. |
| 20 | VREG | bidirectional | Internal linear voltage regulator output providing 3.3 V with a 1 µF decoupling capacitor required; can supply external circuits or be supplied externally with 3.0 V to 5.5 V, and can be connected with VREG terminals of other devices to increase supply current. |
| 21 | EP | passive | Exposed pad (from the footprint; not named in the datasheet pin table). |
## Key specifications
| Parameter | Value |
|---|---|
| Manufacturer | Texas Instruments |
| Package | HTSSOP-20-EP |
| Category | Nixie Tube Driver/LED Driver |
| Pins | 21 |
## CAD (KiCad official)
- Symbol: `TLC59711PWP`
- Footprint: `Package_SO:TSSOP-20-1EP_4.4x6.5mm_P0.65mm_EP2.15x3.35mm`
- 3D model: HTSSOP-20-EP, generated from the KiCad footprint (body from the F.Fab outline, terminals on the pads, 1.2 mm nominal TSSOP height). Neither the vendor nor KiCad ships a 3D model for this package, so the dimensions are nominal, not the manufacturer's CAD (STEP)
- 3D model files: `tlc59711pwp-etched.step` / `tlc59711pwp-etched.glb` carry the MPN laser-etched on the die in a toggleable `Adom.LaserEtch` group (Fusion-ready); `tlc59711pwp.step` / `tlc59711pwp.glb` are the bare package body.
## Provenance
Data extracted from the manufacturer datasheet, not a distributor listing:
- **Datasheet:** [Texas Instruments datasheet](https://www.ti.com/cn/lit/gpn/tlc59711) (39 pp, sha256 `5a2cdff5cffdaac8`, retrieved 2026-10-01, tier: lcsc)
- **Datasheet language:** Chinese. Pin names, descriptions, and specs on this page were extracted and translated to English by ds2sf; the linked PDF is the manufacturer original.
- **Extractor:** parts-factory `2.0.0` / `extract_pins 0.3`, primary `claude-haiku-4-5-20251001` (text), consensus `claude-sonnet-5-5` (agreed), guards: pin_guards 0.1: passed. Pins are checked against the footprint pad set and their cited datasheet pages before publish.
- **CAD:** KiCad official libraries (CC-BY-SA 4.0).
[Datasheet PDF](docs/tlc59711pwp-datasheet.pdf)