Eine neuere Version dieses Produkts ist verfügbar

Gleiche Funktionalität, gleiche Pinbelegung wie verglichener Baustein
BQ25730 AKTIV I²C-NVDC-Abwärts-/Aufwärts-Akkuladeregler für ein bis fünf Zellen mit Stromversorgungspfad und USB-C This product is a one-cell to five-cell I2C buck-boost NVDC charge controller with power-path and 400-kHz or 800-kHz programmable switching frequency

Produktdetails

Number of series cells 1, 2, 3, 4 Charge current (max) (A) 16.2 Vin (max) (V) 26 Cell chemistry Lead Acid, Li-Ion/Li-Polymer, Lithium Phosphate/LiFePO4, NiCd, NiMH, SuperCap Battery charge voltage (min) (V) 1.024 Battery charge voltage (max) (V) 19.2 Absolute max Vin (max) (V) 32 Control topology Switch-Mode Buck-boost Control interface I2C Features IC thermal regulation, ICO (Input Current Optimization), IINDPM (Input current limit), Input OVP, Integrated ADC, Power Path, USB C/PD compatible, USB OTG integrated, VINDPM (Input voltage threshold to maximize adaptor power) Vin (min) (V) 3.5 Rating Catalog Operating temperature range (°C) -40 to 125
Number of series cells 1, 2, 3, 4 Charge current (max) (A) 16.2 Vin (max) (V) 26 Cell chemistry Lead Acid, Li-Ion/Li-Polymer, Lithium Phosphate/LiFePO4, NiCd, NiMH, SuperCap Battery charge voltage (min) (V) 1.024 Battery charge voltage (max) (V) 19.2 Absolute max Vin (max) (V) 32 Control topology Switch-Mode Buck-boost Control interface I2C Features IC thermal regulation, ICO (Input Current Optimization), IINDPM (Input current limit), Input OVP, Integrated ADC, Power Path, USB C/PD compatible, USB OTG integrated, VINDPM (Input voltage threshold to maximize adaptor power) Vin (min) (V) 3.5 Rating Catalog Operating temperature range (°C) -40 to 125
WQFN (RSN) 32 16 mm² 4 x 4
  • Pin-to-pin compatible to BQ25713
  • Buck-boost narrow voltage DC (NVDC) charger for USB-C Power Delivery (PD) interface platform
    • 3.5-V to 26-V input range to charge 1- to 4-cell battery
    • Charge current up to 16.2 A/8.1 A with 128-mA/64-mA resolution based on 5-mΩ/10-mΩ sensing resistor
    • Input current limit up to 10 A/6.35 A with 100-mA/50-mA resolution based on 5-mΩ/10-mΩ sensing resistor
    • Support USB 2.0, USB 3.0, USB 3.1 and USB Power Delivery (PD)
    • Input Current Optimizer (ICO) to extract max input power without overloading the adapter
    • Integrated Fast Role Swap (FRS) feature following USB-PD specification
    • Seamless transition between buck, buck-boost, and boost operations
    • Input current and voltage regulation (IINDPM and VINDPM) against source overload
  • TI patented switching frequency dithering pattern for EMI noise reduction
  • TI patented Pass Through Mode (PTM) for system power efficiency improvement and battery fast charging achieving 99% efficiency.
  • IMVP8/IMVP9 compliant system features for Intel platform
    • Enhanced Vmin Active Protection (VAP) mode supplements battery from input capacitors during system peak power spike following latest Intel specification
    • Comprehensive PROCHOT profile
    • Two level discharge current limit PROCHOT profile to avoid battery wire-out
    • System power monitor
  • Input and battery current monitor through dedicated pins
  • Integrated 8-bit ADC to monitor voltage, current and power
  • Battery MOSFET ideal diode operation in supplement mode to support system when adapter is fully loaded
  • Power up USB port from battery (USB OTG)
    • 3-V to 24-V OTG with 8-mV resolution
    • Output current limit up to 12.7 A/6.35 A with 100-mA/50-mA resolution based on 5-mΩ/10-mΩ sensing resistor
  • 800-kHz/1.2-MHz programmable switching frequency with 2.2-µH/1.0-µH inductor
  • I2C host control interface for flexible system configuration
  • High accuracy for the regulation and monitor
    • ±0.5% Charge voltage regulation
    • ±3% Charge current regulation
    • ±2.5% Input current regulation
    • ±2% Input/charge current monitor
  • Safety
    • Thermal shutdown
    • Input, system, battery overvoltage protection
    • Input, MOSFET, inductor overcurrent protection
  • Package: 32-Pin 4.0 mm × 4.0 mm WQFN
  • Pin-to-pin compatible to BQ25713
  • Buck-boost narrow voltage DC (NVDC) charger for USB-C Power Delivery (PD) interface platform
    • 3.5-V to 26-V input range to charge 1- to 4-cell battery
    • Charge current up to 16.2 A/8.1 A with 128-mA/64-mA resolution based on 5-mΩ/10-mΩ sensing resistor
    • Input current limit up to 10 A/6.35 A with 100-mA/50-mA resolution based on 5-mΩ/10-mΩ sensing resistor
    • Support USB 2.0, USB 3.0, USB 3.1 and USB Power Delivery (PD)
    • Input Current Optimizer (ICO) to extract max input power without overloading the adapter
    • Integrated Fast Role Swap (FRS) feature following USB-PD specification
    • Seamless transition between buck, buck-boost, and boost operations
    • Input current and voltage regulation (IINDPM and VINDPM) against source overload
  • TI patented switching frequency dithering pattern for EMI noise reduction
  • TI patented Pass Through Mode (PTM) for system power efficiency improvement and battery fast charging achieving 99% efficiency.
  • IMVP8/IMVP9 compliant system features for Intel platform
    • Enhanced Vmin Active Protection (VAP) mode supplements battery from input capacitors during system peak power spike following latest Intel specification
    • Comprehensive PROCHOT profile
    • Two level discharge current limit PROCHOT profile to avoid battery wire-out
    • System power monitor
  • Input and battery current monitor through dedicated pins
  • Integrated 8-bit ADC to monitor voltage, current and power
  • Battery MOSFET ideal diode operation in supplement mode to support system when adapter is fully loaded
  • Power up USB port from battery (USB OTG)
    • 3-V to 24-V OTG with 8-mV resolution
    • Output current limit up to 12.7 A/6.35 A with 100-mA/50-mA resolution based on 5-mΩ/10-mΩ sensing resistor
  • 800-kHz/1.2-MHz programmable switching frequency with 2.2-µH/1.0-µH inductor
  • I2C host control interface for flexible system configuration
  • High accuracy for the regulation and monitor
    • ±0.5% Charge voltage regulation
    • ±3% Charge current regulation
    • ±2.5% Input current regulation
    • ±2% Input/charge current monitor
  • Safety
    • Thermal shutdown
    • Input, system, battery overvoltage protection
    • Input, MOSFET, inductor overcurrent protection
  • Package: 32-Pin 4.0 mm × 4.0 mm WQFN

The BQ25723 is a synchronous NVDC buck-boost battery charge controller to charge a 1- to 4-cell battery from a wide range of input sources including USB adapter, high voltage USB-C Power Delivery (PD) sources, and traditional adapters.

The NVDC configuration allows the system to be regulated based on battery voltage, but not drop below system minimum voltage. The system keeps operating even when the battery is completely discharged or removed. When load power exceeds input source rating, the battery goes into supplement mode and prevents the system from crashing.

During power up, the charger sets the converter to a buck, boost, or buck-boost configuration based on the input source and battery conditions. The charger seamlessly transitions between the buck, boost, and buck-boost operation modes without host control.

In the absence of an input source, the BQ25723 supports the USB On-the-Go (OTG) function from a 1- to 4-cell battery to generate an adjustable 3-V to 24-V output on VBUS with 8-mV resolution. The OTG output voltage transition slew rate can be configured to comply with the USB-PD 3.0 PPS specification.

When only a battery powers the system and no external load is connected to the USB OTG port, the BQ25723 implements the latest Intel Vmin Active Protection (VAP) feature, in which the device charges up the VBUS voltage from the battery to store some energy in the input decoupling capacitors. During a system peak power spike, the energy stored in the input capacitors supplements the system, to prevent the system voltage from dropping below the minimum system voltage and causing a system crash.

The BQ25723 monitors adapter current, battery current, and system power. The flexibly programmed PROCHOT output goes directly to the CPU for throttle back when needed.

The latest version of the USB-C PD specification includes Fast Role Swap (FRS) to ensure power role swapping occurs in a timely fashion so that the device(s) connected to the dock can avoid experiencing momentary power loss or glitching. This device integrates FRS in compliance with the PD specification.

TI patented switching frequency dithering pattern can significantly reduce EMI noise over the whole conductive EMI frequency range (150 kHz to 30 MHz). Multiple dithering scale options are available to provide flexibility for different applications to simplify EMI noise filter design.

The charger can be operated in the TI patented Pass Through Mode (PTM) to improve efficiency over the full load range. In PTM, input power is directly passed through the charger to the system. Switching losses of the MOSFETs and inductor core loss can be saved for high efficiency operation.

The BQ25723 is available in a 32-pin 4 mm × 4 mm WQFN package.

The BQ25723 is a synchronous NVDC buck-boost battery charge controller to charge a 1- to 4-cell battery from a wide range of input sources including USB adapter, high voltage USB-C Power Delivery (PD) sources, and traditional adapters.

The NVDC configuration allows the system to be regulated based on battery voltage, but not drop below system minimum voltage. The system keeps operating even when the battery is completely discharged or removed. When load power exceeds input source rating, the battery goes into supplement mode and prevents the system from crashing.

During power up, the charger sets the converter to a buck, boost, or buck-boost configuration based on the input source and battery conditions. The charger seamlessly transitions between the buck, boost, and buck-boost operation modes without host control.

In the absence of an input source, the BQ25723 supports the USB On-the-Go (OTG) function from a 1- to 4-cell battery to generate an adjustable 3-V to 24-V output on VBUS with 8-mV resolution. The OTG output voltage transition slew rate can be configured to comply with the USB-PD 3.0 PPS specification.

When only a battery powers the system and no external load is connected to the USB OTG port, the BQ25723 implements the latest Intel Vmin Active Protection (VAP) feature, in which the device charges up the VBUS voltage from the battery to store some energy in the input decoupling capacitors. During a system peak power spike, the energy stored in the input capacitors supplements the system, to prevent the system voltage from dropping below the minimum system voltage and causing a system crash.

The BQ25723 monitors adapter current, battery current, and system power. The flexibly programmed PROCHOT output goes directly to the CPU for throttle back when needed.

The latest version of the USB-C PD specification includes Fast Role Swap (FRS) to ensure power role swapping occurs in a timely fashion so that the device(s) connected to the dock can avoid experiencing momentary power loss or glitching. This device integrates FRS in compliance with the PD specification.

TI patented switching frequency dithering pattern can significantly reduce EMI noise over the whole conductive EMI frequency range (150 kHz to 30 MHz). Multiple dithering scale options are available to provide flexibility for different applications to simplify EMI noise filter design.

The charger can be operated in the TI patented Pass Through Mode (PTM) to improve efficiency over the full load range. In PTM, input power is directly passed through the charger to the system. Switching losses of the MOSFETs and inductor core loss can be saved for high efficiency operation.

The BQ25723 is available in a 32-pin 4 mm × 4 mm WQFN package.

Herunterladen Video mit Transkript ansehen Video

Technische Dokumentation

star =Von TI ausgewählte Top-Empfehlungen für dieses Produkt
Keine Ergebnisse gefunden. Bitte geben Sie einen anderen Begriff ein und versuchen Sie es erneut.
Alle anzeigen 4
Typ Titel Datum
* Data sheet BQ25723 I2C 1- to 4-Cell Narrow VDC Buck-Boost Battery Charge Controller With System Power Monitor and Processor Hot Monitor datasheet PDF | HTML 25 Mai 2021
Application note Layout Guide for Buck-Boost Charger BQ257XX Series PDF | HTML 30 Jan 2024
Certificate BQ25723EVM EU Declaration of Conformity (DoC) 31 Mai 2021
User guide BQ25720, BQ25723 Evaluation Module PDF | HTML 19 Mai 2021

Design und Entwicklung

Weitere Bedingungen oder erforderliche Ressourcen enthält gegebenenfalls die Detailseite, die Sie durch Klicken auf einen der unten stehenden Titel erreichen.

Evaluierungsplatine

BQ25723EVM — BQ25723-Evaluierungsmodul I²C, 1 bis 4 Zellen, 8 A, NVDC-Abwärts-/Aufwärts-Batterielader-Controller

Das Evaluierungsmodul (EVM) BQ25723EVM ist ein I2C-gesteuerter Abwärts/Aufwärts-Laderegler (Narrow Voltage DC, NVDC) mit N-Kanal-MOSFET-Selektor und Stromüberwachung. Der Eingangsspannungsbereich des Abwärtswandlers liegt zwischen 3,5 V und 26 V, mit einem programmierbaren Ausgang von 1 bis (...)
Benutzerhandbuch: PDF | HTML
Anwendungssoftware und Frameworks

BQSTUDIO-STABLE Battery Management Studio (bqStudio) Software – stable version downloads for bq series of TI battery fuel gauges

Battery Management Studio (bqStudio) offers a full suite of robust tools to assist with the process of evaluating, designing with, configuring, testing, or otherwise utilizing TI Battery management products. This includes features that provide full access to registers and data memory including (...)

lock = Nur mit Exportgenehmigung (1 Minute)
Unterstützte Produkte und Hardware

Unterstützte Produkte und Hardware

Produkte
Batterieüberwachung & Ausgleichsregler
BQ76942 Überwachungs- und Schutzbaustein für Akkupacks mit 3 bis 10 in Reihe geschalteten Zellen BQ76952 Batterieüberwachungs- und Schutzbaustein für Lithium-Ionen-, Li-Polymer- und LiFePO4-Akkupacks mit h
Batterielader-ICs
BQ24800 SMBus 1–4-Zellen-Abwärts-Batterielader zur Unterstützung von Hybrid-Power-Boost und Batterie-Boost-M BQ25720 SMBus-NVDC-Abwärts-/Aufwärts-Akkuladeregler für ein bis vier Zellen mit Stromversorgungspfad und USB BQ25723 I²C-NVDC-Abwärts-/Aufwärts-Akkuladeregler für ein bis vier Zellen mit Stromversorgungspfad und USB-C BQ25731 I2C 1-5-Zellen-NVDC-Abwärts-/Aufwärts-Akkuladeregler mit Stromversorgungspfad und USB-C PD OTG BQ25790 Integrierter Abwärts/Aufwärts-NVDC-5-A-Schaltregler/Batterielader für 1 bis 4 Zellen BQ25792 I2C-gesteuertes Abwärts/Aufwärts-Ladegerät, 5 A, für 1–4 Zellen, mit zwei wählbaren Eingängen und Au
Batterie-Ladezustandsmesser
BQ27220 Gehäuse-/Systemseitige Ladestandsanzeige mit CEDV-Technologie und vorprogrammierten Batterieprofilen BQ27320 Ladestands-IC für Einzelzelle/Systemseite mit CEDV-Technologie BQ27425-G1 Systemseitige Impedance Track™ Ladestandsanzeige mit direktem Akkuanschluss| Batterie-Ladestand BQ27425-G2A Systemseitiger Impedance Track™-Ladestandsmesser für LiCoO2-Batterien BQ27425-G2B Systemseitiger Impedance Track™; Ladezustandsmesser für LiMn2O4-Batterien BQ27520-G4 Systemseitiger Impedance Track™-Ladestandsmesser mit integriertem LDO BQ27530-G1 Systemseitige Impedance-Track-Ladezustandsanzeige (Gas) mit direktem Batterieanschluss BQ27531-G1 Impedance Track™-Füllstandsmesser (Gas) für Batteriemanagement-Einheit für bq2419x-Ladecontroller BQ27532-G1 Impedance Track™-Füllstandsmesser (Gas) für Batteriemanagement-Einheit für bq2425x-Ladecontroller BQ27545-G1 Gehäuseseitiger Impedance Track™-Ladezustandsmesser für Einzelzellen BQ27546-G1 Gehäuseseitiger Einzellen-Impedance Track™ Ladezustandsmesser mit DSBGA-Gehäuse BQ27621-G1 Systemseitige Kraftstoffanzeige mit dynamischer Spannungskorrelation und Batteriegasanzeige BQ27741-G1 Packungsseitige Impedance Track™(tm)-Kraftstoff-(Gas-)Anzeige mit integriertem Schutz BQ27742-G1 Batterie-Ladezustandsmesser für Li-Ion-Akkus mit einer Zelle mit integriertem Schutz | Batteriegasan BQ27Z561 Integrierte Impedance Track™-Gasmesslösung für 1-Serie BQ28Z610 Batterie-Ladestandsmesser mit integrierter Schutzschaltung für Akkupacks mit 1-2 Zellen BQ34110 Ladestandsanzeige für Akkus mit hoher Zellenzahl und unterschiedlicher chemischer Zusammensetzung un BQ34210-Q1 Einzelliger, systemseitiger CEDV-Ladezustandsmesser für die Automobilindustrie BQ34Z100-G1 Eigenständiger Ladezustandsmesser zur Nachverfolgung von Impendanz (Impedance Track™) mit unterschie BQ35100 Batterie-Ladezustandsmesser für nicht wiederaufladbare Batterien (Lithium-Primärbatterie) und Überwa BQ4050 Ladestands-IC mit CEDV-Technologie für 1 bis 4 Zellen BQ40Z50 Li-Ion-Akkupack-Manager für 1 bis 4 in Reihe geschaltete Zellen, Batterie-Ladezustandsmesser BQ40Z50-R1 Li-Ion-Akkupack-Manager für 1–4 in Serie geschaltete Zellen mit Unterstützung für den Turbo-Modus 1. BQ40Z50-R2 Li-Ion-Akkupack-Manager für 1–4 in Serie geschaltete Zellen mit Unterstützung für den Turbo-Modus 2. BQ40Z60 Vollständiger Batteriemanager für mehrere Zellen – Ladezustandsmesser (Gas) BQ40Z80 2-s- bis 6-s-Akkupack-Manager mit Impedance Track™-Gasmesstechnologie BQ78350 Companion CEDV-Batterie-Management-Controller für Ladezustandsmesser für bq76940 Monitore BQ78350-R1 CEDV-Li-Ion-Gasfühler und Batterie-Management-Controller BQ78Z100 Impedance Track™ Batterie-Ladezustandsmesser (Gas) für Serien 1 bis 2
Download-Optionen
Anwendungssoftware und Frameworks

BQSTUDIO-TEST Battery Management Studio (bqStudio) Software – untested version downloads

Battery Management Studio (bqStudio) offers a full suite of robust tools to assist with the process of evaluating, designing with, configuring, testing, or otherwise utilizing TI Battery management products. This includes features that provide full access to registers and data memory including (...)

lock = Nur mit Exportgenehmigung (1 Minute)
Unterstützte Produkte und Hardware

Unterstützte Produkte und Hardware

Produkte
Batterieüberwachung & Ausgleichsregler
BQ769142 Batterieüberwachungs- und Schutzbaustein für Lithium-Ionen-, Li-Polymer- und LiFePO4-Akkupacks mit h BQ76942 BQ76942 BQ76952 Batterieüberwachungs- und Schutzbaustein für Lithium-Ionen-, Li-Polymer- und LiFePO4-Akkupacks mit h
Batterielader-ICs
BQ24800 SMBus 1-4 cell Buck battery charge controller to support hybrid power boost and battery boost mode BQ25720 SMBus-NVDC-Abwärts-/Aufwärts-Akkuladeregler für ein bis vier Zellen mit Stromversorgungspfad und USB BQ25723 I²C-NVDC-Abwärts-/Aufwärts-Akkuladeregler für ein bis vier Zellen mit Stromversorgungspfad und USB-C BQ25731 I2C 1-5 cell NVDC buck-boost battery charge controller with USB type-C PD support BQ25756 Stand-alone- oder I²C-gesteuerter bidirektionaler 70-V-Abwärts-/Aufwärts-Laderegler mit MPPT BQ25790 Integrated, NVDC, 5-A 1-cell to 4-cell switch-mode buck-boost battery charger BQ25792 I2C-gesteuertes Abwärts/Aufwärts-Ladegerät, 5 A, für 1–4 Zellen, mit zwei wählbaren Eingängen und Au
Batterie-Ladezustandsmesser
BQ27220 Single cell pack/system-side CEDV battery fuel (gas) gauge w/pre-programmed chemistry profiles BQ27320 Single Cell Pack/System-side CEDV Battery Fuel (Gas) Gauge BQ27425-G1 System-Side Impedance Track™ Fuel Gauge With Direct Battery Connection | Gas Gauge Battery BQ27425-G2A System-Side Impedance Track™ Fuel Gauge | Gas Gauge Battery BQ27425-G2B System-Side Impedance Track™ Fuel Gauge | Gas Gauge Battery BQ27427 Systemseitiger Batteriegasmesser mit einzelner Zelle mit vorprogrammiertem chemischem Profil und int BQ27510-G3 System-Side Impedance-Track Fuel Gauge With Direct Battery Connection BQ27520-G4 System Side Impedance Track™ Fuel Gauge With Integrated LDO. BQ27530-G1 System-Side Impedance-Track Fuel (Gas) Gauge With Direct Battery Connection BQ27531-G1 Battery Management Unit Impedance Track Fuel (Gas) Gauge for bq2419x Charger Controller BQ27532-G1 Battery Management Unit Impedance Track Fuel Gauge for bq2425x Charger BQ27541-G1 Pack-Side Impedance Track Battery Fuel Gauge With Integrated LDO BQ27541-V200 Single Cell Li-Ion Battery Fuel Gauge for Battery Pack Integration BQ27542-G1 Single Cell Impedance Track Pack Side Fuel Gauge BQ27545-G1 Single Cell, Pack Side, Impedance Track Fuel Gauge BQ27546-G1 Single Cell Impedance Track Pack Side Fuel Gauge BQ27621-G1 System-Side Fuel Gauge with Dynamic Voltage Correlation, Battery Gas Gauge BQ27741-G1 Pack-Side Impedance Track(tm) Fuel (Gas) Gauge with Integrated Protector BQ27742-G1 bq27742-G1 Single Cell Li-Ion Battery Fuel Gauge With Integrated Protection | Battery Gas Gauge BQ27Z561 Impedance Track™ integrated circuit gas gauge solution for 1-series BQ27Z746 Gehäuseseitiger Ladestandsmesser mit Impedance-Track™-Technologie und integriertem Schutz BQ28Z610 Battery fuel gauge with integrated protector for 1-2 series packs BQ34110 Multi-Chemistry High-Cell Count Battery Fuel Gauge With Integrated Rarely Discharged Module BQ34210-Q1 Automotive Qualified Single Cell System-Side CEDV Fuel Gauge BQ34Z100-G1 Multi-chemistry impedance track standalone fuel gauge | battery gas gauge BQ35100 Battery fuel gauge for non-rechargeable batteries (lithium primary) and end-of-service monitor BQ4050 1-4 Series CEDV Battery Fuel (Gas) Gauge BQ40Z50 1-4 Series Li-Ion Battery Pack Manager | Battery Fuel (Gas) Gauge BQ40Z50-R1 1-4 Series Li-Ion Battery Pack Manager, Battery Fuel (Gas) Gauge BQ40Z50-R2 1-4 Series li-ion battery pack manager | battery fuel (gas) gauge BQ40Z60 Complete Multi-Cell Battery Manager | Battery Fuel (Gas) Gauge BQ40Z80 2-Series to 7-Series Battery Pack Manager with Impedance Track Gas Gauging BQ78350 Companion CEDV Fuel Gauge Battery Management Controller for bq76940 Monitor Family BQ78350-R1 CEDV li-ion gas gauge and battery management controller BQ78Z100 Impedance Track™ Battery Fuel (Gas) Gauge for 1-Series to 2-Series
Hardware-Entwicklung
MKST-3P-ALT-EV2300 MKS-Technologiealternative für EV2300-Kommunikations-Transceiver
Download-Optionen
Gehäuse Pins Herunterladen
WQFN (RSN) 32 Optionen anzeigen

Bestellen & Qualität

Beinhaltete Information:
  • RoHS
  • REACH
  • Bausteinkennzeichnung
  • Blei-Finish/Ball-Material
  • MSL-Rating / Spitzenrückfluss
  • MTBF-/FIT-Schätzungen
  • Materialinhalt
  • Qualifikationszusammenfassung
  • Kontinuierliches Zuverlässigkeitsmonitoring
Beinhaltete Information:
  • Werksstandort
  • Montagestandort

Empfohlene Produkte können Parameter, Evaluierungsmodule oder Referenzdesigns zu diesem TI-Produkt beinhalten.

Support und Schulungen

TI E2E™-Foren mit technischem Support von TI-Ingenieuren

Inhalte werden ohne Gewähr von TI und der Community bereitgestellt. Sie stellen keine Spezifikationen von TI dar. Siehe Nutzungsbedingungen.

Bei Fragen zu den Themen Qualität, Gehäuse oder Bestellung von TI-Produkten siehe TI-Support. ​​​​​​​​​​​​​​

Videos