TLVM23615
The TLVM23615 is an electronic component from Texas Instruments. View the full TLVM23615 datasheet below including pinout, electrical characteristics, absolute maximum ratings.
Manufacturer
Texas Instruments
Category
Integrated Circuits (ICs)
Overview
The TLVM236x5 is a 1.5A or 2.5A, 36V input synchronous step-down DC/DC power module that combines flip chip on lead (FCOL) packaging, power MOSFETs, integrated inductor and boot capacitor in a compact and easy-to-use 3.5mm × 4.5mm × 2mm, 11-pin QFN package. The small HotRod ™ QFN package technology enhances the thermal performance, ensuring high ambient temperature operation. devices can be configured for 1V up to 6V output with a resistor feedback divider.
The TLVM236x5 is specifically designed to meet low standby power requirements for always on, industrial applications. Auto mode enables frequency fold back when operating at light loads, allowing a no load current consumption of 1.5μA at 13.5V VIN and high light load efficiency. A seamless transition between PWM and PFM modes along with low MOSFET on resistances provide exceptional efficiency across the entire load range.
The TLVM236x5 uses peak current mode architecture with internal compensation to maintain stable operation with minimal output capacitance. The RT pin can be used to set the frequency between 200kHz and 2.2MHz to avoid noise sensitive frequency bands.
Features
- Functional Safety-Capable
- -Documentation available to aid functional safety system design
- Versatile synchronous buck DC/DC module:
- -Integrated MOSFETs, inductor, CBOOT capacitor and controller
- -Wide input voltage range of 3V to 36V
- -Input transient protection up to 40 V
- -Junction temperature range -40°C to +125°C
- -Overmolded package of 4.5mm × 3.5mm × 2mm
- -Frequency adjustable from 200kHz to 2.2MHz using the RT pin
- Ultra-high efficiency across the full load range:
- -Greater than 88% efficiency at 12V VIN, 5V VOUT, 1MHz, IOUT = 2.5A
- -Greater than 87% efficiency at 24VIN, 5VOUT, 1MHz, IOUT = 2.5A
- -As low as 1.5μA standby IQ at 13.5VIN
- Optimized for ultra-low EMI requirements:
- -Flip-chip on lead package - FCOL
- -Inductor and boot capacitor integration
- -CISPR 11, Class B compliant-capable
- Output voltage and current options:
- -Adjustable output voltage from 1V to 6V
- Designed for scalable power supplies:
- -Pin compatible with:
- TPSM365R6 (65V, 600mA)
- Create a custom design using the TLVM236x5 with the WEBENCH ® Power Designer
Applications
Pin Configuration
TLVM23615 Pinout
Package: 10-pin (MSOP or similar)
| Pin Number | Pin Name | Type | Description |
|---|---|---|---|
| 1 | PGOOD | O | Power Good Output |
| 2 | EN | I | Enable Input |
| 3 | VIN | P | Input Supply Voltage |
| 4 | VOUT | O | Output Voltage Feedback |
| 5 | SW | O | Switch Output |
| 6 | SW | O | Switch Output |
| 7 | BOOT | P | Bootstrap Supply |
| 8 | VCC | P | Internal Supply Voltage |
| 9 | FB | I | Feedback Input |
| 10 | RT/MODE/SYNC | I | Frequency Set / Mode Select / Sync Input (factory-set for fixed switching frequency MODE/SYNC variants) |
| 11 | GND | P | Ground |
Notes
- Pin 10 (RT/MODE/SYNC): Factory-set for fixed switching frequency in MODE/SYNC variants. In RT variants, this pin is trimmed and factory-set for externally adjustable switching frequency.
- Pins 5 & 6 (SW): Both pins are switch outputs; they may be internally connected or serve redundant/parallel switching functions.
- Pin diagram shows 10 pins total in a rectangular package configuration.
Electrical Characteristics
Limits apply over T J = -40°C to 125°C, VIN = 24 V, VOUT = 3.3 V, FSW = 1000 kHz (unless otherwise noted). Minimum and maximum limits are specified through production test or by design. Typical values represent the most likely parametric norm and are provided for reference only.
| PARAMETER | PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT |
|---|---|---|---|---|---|---|
| SUPPLY VOLTAGE | SUPPLY VOLTAGE | |||||
| V IN | Input voltage rising threshold | Before Start-up | 3.2 | 3.35 | 3.5 | V |
| Once Operating | 2.45 | 2.7 | 3 | V | ||
| I Q_VIN | Input operating quiescent current (non-switching) | T A = 25°C, V EN = 3.3 V, V FB = 1.5 V | 1.2 | μA | ||
| I SDN_VIN | VIN shutdown quiescent current | V EN = 0 V, T A = 25°C | 0.3 | μA | ||
| ENABLE | ENABLE | |||||
| V EN_RISE | EN voltage rising threshold | 1.16 | 1.23 | 1.3 | V | |
| V EN_HYS | EN voltage hysteresis | 0.275 | 0.353 | 0.404 | V | |
| V EN_WAKE | EN wake-up threshold | 0.5 | 0.7 | 1 | V | |
| I LKG-EN | Enable pin input leakage current | V EN = V IN = 24 V | 10 | nA | ||
| INTERNAL LDO VCC | INTERNAL LDO VCC | |||||
| V CC | Internal LDO VCC output voltage | V FB = 0 V, I VCC = 1 mA | 3.1 | 3.3 | 3.5 | V |
| FEEDBACK | FEEDBACK | |||||
| V FB | Feedback voltage | T A = 25°C, I OUT = 0 A | 1 | V | ||
| V FB_ACC | Feedback voltage accuracy | Over the V IN range, V OUT = 1 V, I OUT = 0 A, F SW = 200 kHz | -1 | 1 | % | |
| I FB | Input current into FB pin | Adjustable configuration, V FB = 1.0 V | 10 | nA | ||
| CURRENT | CURRENT | |||||
| I L_HS | High-side switch current limit (TLVM23625) | Duty cycle approaches 0% | 4.2 | 4.9 | 5.5 | A |
| I L_LS | Low-side switch current limit (TLVM23625) | 2.38 | 2.9 | 3.42 | A | |
| I L_NEG | Negative current limit (TLVM23625) | -2 | A | |||
| I PEAKMIN | Minimum peak current limit (TLVM23625) | Auto mode | 0.6 | A | ||
| I L_HS | High-side switch current limit (TLVM23615) | Duty cycle approaches 0% | 2.58 | 3 | 3.42 | A |
| I L_LS | Low-side switch current limit (TLVM23615) | 1.44 | 1.75 | 2.06 | A | |
| I L_NEG | Negative current limit (TLVM23615) | -2 | A | |||
| I PEAKMIN | Minimum peak current limit (TLVM23615) | Auto mode | 0.4 | A | ||
| I ZC | Zero-cross current limit | Auto mode | 80 | mA | ||
| V HICCUP | Ratio of FB voltage to in-regulation FB voltage to enter hiccup | Not during soft start | 40 | % | ||
| t W | Short circuit wait time ("hiccup" time before soft start) (1) | 30 | 50 | 75 | ms | |
| SOFT-START | SOFT-START | |||||
| t SS | Time from first SW pulse to V REF at 90% | V IN ≥ 4.2 V | 2 | 3.5 | 4.6 | ms |
Absolute Maximum Ratings
Limits apply over T J = -40°C to 125°C (unless otherwise noted). (1)
| MIN | MAX | UNIT | ||
|---|---|---|---|---|
| Input voltage | VIN to GND | -0.3 | 40 | V |
| Input voltage | CBOOT to SW | -0.3 | 5.5 | V |
| Input voltage | RT to GND | -0.3 | 5.5 | V |
| Input voltage | EN to GND | -0.3 | 40 | V |
| Input voltage | FB to GND | -0.3 | 16 | V |
| Input voltage | PG to GND | 0 | 20 | V |
| Output voltage | VCC to GND | -0.3 | 5.5 | V |
| Output voltage | SW to GND (2) | -0.3 | 40 | V |
| Output voltage | VOUT to GND | -0.3 | 16 | V |
| Input current | PG | - | 10 | mA |
| T J | Junction temperature | -40 | 125 | °C |
| T A | Ambient temperature | -40 | 105 | °C |
| T stg | Storage temperature | -55 | 150 | °C |
- (2) A voltage of 2 V below PGND and 2 V above VIN can appear on this pin for ≤ 200 ns with a duty cycle of ≤ 0.01%.
Recommended Operating Conditions
Limits apply over T J = -40°C to 125°C (unless otherwise noted).
| MIN | NOM | MAX | UNIT | ||
|---|---|---|---|---|---|
| Input voltage | VIN (Input voltage range after start-up) | 3 | 36 | V | |
| Output voltage | Output Adjustment Range (1) | 1 | 6 | V | |
| Output current | TLVM23625 IOUT (2) | 0 | 2.5 | A | |
| Output current | TLVM23615 IOUT (2) | 0 | 1.5 | A | |
| Frequency | F SW set by RT | 200 | 2200 | kHz | |
| T J | Operating junction temperature | -40 | 125 | °C | |
| T A | Operating ambient temperature | -40 | 105 | °C |
Thermal Information
| THERMAL | METRIC (1) | TLVM23615 / TLVM23625 RDN 11 Pins | UNIT |
|---|---|---|---|
| R θJA | Junction-to-ambient thermal resistance (TLM23625EVM ) | 22 | °C/W |
| R θJA | Junction-to-ambient thermal resistance (JESD 51-7) | 54.1 | °C/W |
| R θJC(top) | Junction-to-case (top) thermal resistance | 52.1 | °C/W |
| R θJB | Junction-to-board thermal resistance | 16.6 | °C/W |
| Ψ JT | Junction-to-top characterization parameter | 8.1 | °C/W |
| Ψ JB | Junction-to-board characterization parameter | 16.3 | °C/W |
Typical Application
The TLVM236x5 only requires a few external components to convert from a wide range of supply voltages to a fixed output voltage. To expedite and streamline the process of designing of a TLVM236x5, WEBENCH online software is available to generate complete designs, leveraging iterative design procedures and access to comprehensive component databases. The following section describes the design procedure to configure the TLVM236x5 power module.
As mentioned previously, the TLVM236x5 also integrates several optional features to meet system design requirements, including precision enable, UVLO, and PGOOD indicator. The application circuit detailed below shows TLVM236x5 configuration options suitable for several application use cases. Refer to the TLVM23625EVM User's Guide for more detail.
Related Variants
The following components are covered by the same datasheet.
| Part Number | Manufacturer | Package |
|---|---|---|
| TLVM23615RDNR | Texas Instruments | 11-PowerFQFN Module |
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