Les images sont à titre de référence seulement
KA7500B
IC REG CTRLR BUCK 16DIP
- Fabricant
- Mfr. Partie #KA7500B
- Paquet DIP-16
- Fiche de données KA7500B DataSheet
- En stock6217
100% original & Nouveau
24 heures prêtes à expédier
Garantie 365 jours
RFQ et Obtenez plus de rabais
Spécifications
| Package | Tube |
| ProductStatus | Obsolete |
| OutputType | Transistor Driver |
| Function | Step-Down |
| OutputConfiguration | Positive |
| Topology | Buck |
| NumberofOutputs | 1 |
| OutputPhases | 1 |
| Voltage-Supply(Vcc/Vdd) | 7V ~ 42V |
| Frequency-Switching | 1kHz ~ 300kHz |
| DutyCycle(Max) | 45% |
| SynchronousRectifier | Yes |
| ClockSync | No |
| ControlFeatures | Dead Time Control |
| OperatingTemperature | 0°C ~ 70°C (TA) |
| MountingType | Through Hole |
| Package/Case | 16-DIP (0.300, 7.62mm) |
Vue d'ensemble
Description
Key features of the KA7500B include:
1. Oscillator: It contains an internal oscillator with a fixed frequency, which can be adjusted externally with resistors and capacitors.
2. Dual Error Amplifiers: These amplifiers allow for voltage and current feedback, providing stability and accuracy in regulation.
3. PWM Comparator: Generates the PWM signal based on the inputs from the error amplifiers and the oscillator.
4. Output Control: The IC provides totem-pole outputs for driving power MOSFETs or bipolar transistors.
5. Protection Features: It includes under-voltage lockout and soft-start capabilities, which help prevent damage during startup and fault conditions.
The KA7500B is compatible with the industry-standard TL494, making it a versatile choice for designers familiar with PWM control techniques.
Features
1. Voltage Reference: It has a precise voltage reference of 5V, ensuring stable operation.
2. PWM Control: The device supports PWM control for efficient power management, adjusting the duty cycle to regulate output voltage.
3. Dual Output: It provides dual totem-pole outputs for driving power transistors.
4. Error Amplifier: An internal error amplifier allows for feedback and regulation of the output.
5. Oscillator: The built-in oscillator can be set with external resistors and capacitors, allowing flexibility in frequency selection.
6. Soft-Start Capability: It includes soft-start functionality to prevent inrush current during power-up.
7. Dead-Time Control: This feature helps in configuring the dead-time between switching transitions, enhancing efficiency and safety.
8. Current Limiting: Built-in current limiting protects against over-current conditions.
9. Under-Voltage Lockout (UVLO): This safety feature ensures the device operates only when the input voltage is above a certain threshold.
These features make the KA7500B suitable for a wide range of power supply applications, ensuring efficient and reliable performance.
Package
Pinout
1. GND: Ground reference for the IC.
2. Inverting Input: Used for error amplifier input.
3. Non-inverting Input: Used for error amplifier input.
4. C3: Timing capacitor connection.
5. R3: Timing resistor connection.
6. CT: Timing capacitor connection for oscillator.
7. Discharge: Oscillator discharge connection.
8. VCC: Supply voltage for the IC.
9. Collector (C): Output for internal transistor.
10. Emitter (E): Output for internal transistor.
11. Shutdown: Used to shut down the PWM output.
12. Output Control: Controls the output stage configuration.
13. VREF: Reference voltage output.
14. Non-inverting Input for PWM: Used for providing input to the PWM comparator.
15. Inverting Input for PWM: Used for providing input to the PWM comparator.
16. Compensation: Used for frequency compensation.
This configuration allows the KA7500B to control power devices and manage switching power supplies, making it suitable for applications like DC-DC converters and voltage regulation.
Manufacturer
Fairchild Semiconductor played a significant role in the development of the semiconductor industry. However, in 2016, Fairchild was acquired by ON Semiconductor, a company that specializes in energy-efficient innovations, including power and analog solutions, sensors, and custom devices. ON Semiconductor, now known as onsemi, continues to support and manufacture products that were originally developed by Fairchild, including the KA7500B. Onsemi is recognized as a leading supplier in the semiconductor sector, focusing on automotive, industrial, cloud, and IoT applications.
Application
Equivalent
Expédition
Méthodes d'expéditionNous
offrir des services d'expédition mondiaux par DHL, FedEx, TNT, UPS ou tout autre expéditeur de votre choix.
Référence des frais d'expédition (DHL/FedEx):
DHL: Les frais d'expédition vont de 25 à 45 $ (0,5 kg), avec un délai de livraison estimé de 2 à 5 jours ouvrables.
FedEx: Les frais d'expédition varient de 25 à 40 $ (0,5 kg), avec un délai de livraison estimé de 3 à 7 jours ouvrables.
UPS: Les frais d'expédition vont de 25 à 45 $ (0,5 kg), avec un délai de livraison estimé de 3 à 7 jours ouvrables.
TNT: Les frais d'expédition varient de 25 à 65 $ (0,5 kg), avec un délai de livraison estimé de 3 à 7 jours ouvrables.
EMS: Les frais d'expédition varient de 30 à 50 $ (0,5 kg), avec un délai de livraison estimé de 7 à 15 jours ouvrables.
Courrier aérien enregistré: Le coût d'expédition est de 2 à 4 $ (0,1 kg), avec un délai de livraison estimé de 5 à 20 jours ouvrables.
Paiements
Payment Methods
Le terme de paiement est 100% prépayé.
Actuellement, nous n'acceptons que les méthodes de paiement ci-dessous:
1. PayPal
2. Carte de crédit/débit
3. Transfert bancaire
Similaire
-
MX25R8035FM1IL0
Macronix
-
MX25V2033FM1I
Macronix
-
MX25V16066M1I02
Macronix
-
MX25U51279GXDR00
Macronix
-
MX25L2006EM1I-12G
Macronix
-
MX25V1635FM2I
Macronix
-
MX25U3232FZBI02
Macronix
-
MX25L6433FM2I-08G
Macronix
-
MX25L12833FZNI-10..
Macronix
-
MX25L25645GXDI-08..
Macronix
-
MX29F800CBTI-70G
Macronix
-
MX25L1006EMI-10G
Macronix