SKU/Artículo: AMZ-B07YYYJCG3

DAOKI

DAOKI 2PCS Signal Generator Module DC 12V 24V Adjustable Module PWM Pulse Frequency Duty Cycle Square Wave Display 5V + 40 PIN

Detalles del producto
Disponibilidad:
En stock
Peso con empaque:
0.15 kg
Devolución:
Condición
Nuevo
Producto de:
Amazon
Viaja desde
USA

Sobre este producto
  • Specifications: 1. Working voltage: DC3.3 ~ 30V; 2. Frequency range: 1Hz ~ 150KHz; 3. Frequency accuracy: the accuracy in each range is about 2%; 4. Signal load capacity: the output current can be about 5 ~ 30ma; 5. Output amplitude: PWM amplitude equal to the supply voltage; 6. Ambient temperature: -20 ~ +70 ℃. Application: 1. Used as a square wave signal generator, generate the square wave signal for experimental development and use; 2. Used to generate a square wave signal that controls the motor driver; 3. Generate adjustable pulse for MCU use; 4. Generate adjustable pulse, control the relevant circuit (PWM dimming speed and other applications). Package Included: 2 x PWM Signal Generator Module 1 x 40 PIN
AR$26.332
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AR$13.503

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AR$26.332
49% OFF
AR$13.503

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Conoce más detalles

Pulse generator module operating voltage range is DC 3.3-30V, adjustable pwm frequency range is 1Hz-150kHz, adjustable duty ratio range is 0%-100%. Application: it can be used as a square wave signal generator, generate square wave signal for experimental development; generate square wave signal to control the motor driver; generate adjustable pulse for MCU; generate adjustable pulse to control the relevant circuit (PWM dimming speed application etc). High Frequency Resolution: frequency in range 1Hz~999Hz, display resolution is 1Hz; range 1.00kHz~9.99kHz, display resolution is 0.01kHz; range 10.0kHz~99.9kHz, display resolution is 0.1kHz; range 1kHz~150kHz, display resolution is 1kHz. TTL Level Communication: the frequency meter is designed with single-chip TTL level communication, communication standard is 9600 bps. LCD Display: the blue LCD clearly displays frequency and duty ratio, PWM output can set frequency and duty ratio independently.