Zd10-100 Datasheet Official
The is a highly sensitive, flexible thin-film pressure sensor specifically engineered for precision force detection in a wide range of innovative applications . Leveraging advanced nanometer materials, this resistive-type sensor offers an ultra-thin profile (less than 0.25 mm) while maintaining exceptional durability and rapid response times. ZD10-100 Key Specifications
If you are designing a power supply circuit and need a voltage‑regulating diode, the Z10‑100 (or Z10‑100B) is the correct part. If you need to detect human touch, pressure, or force, the ZD10‑100 flexible sensor is what you are looking for.
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Used in smart appliances, door sensors, and pressure-sensitive mats. 5. Usage Guidelines and Interface zd10-100 datasheet
| Parameter | Value | Conditions | |-----------|-------|-------------| | Zener voltage (Vz) | 10V (typical range 9.4V – 10.6V) | Izt = 5mA | | Test current (Izt) | 5 mA | — | | Maximum power dissipation | 500 mW (or 1W depending on package) | Ta = 25°C | | Maximum Zener current (Izm) | ~45 mA (for 500mW) | Vz = 10V | | Dynamic resistance (Zzt) | ≤ 20 Ω | at Izt | | Reverse leakage current (Ir) | ≤ 10 μA | at Vr = 7.5V | | Package | DO-35 (glass axial) or SOD-123 | — | | Operating temperature | -65°C to +175°C | — |
Do you need guidance on the required to connect it to a microcontroller (e.g., Arduino)?
This article provides a detailed overview of the , including technical specifications, functional characteristics, pinout configuration, and typical applications, based on information from Flexniss and Sensor-Test.de . 1. Product Overview and Characteristics Go to product viewer dialog for this item. The is a highly sensitive, flexible thin-film pressure
+-------------------------------------------------------------+ | Top Layer: Protective Waterproof Polymeric Substrate | +-------------------------------------------------------------+ | Interdigitated Conductive Silver (Ag) Micro-Traces | +-------------------------------------------------------------+ | Active Core: Nano-scale Piezoresistive Functional Film | +-------------------------------------------------------------+ | Base Layer: High-Dielectric Polyester Supporting Film | +-------------------------------------------------------------+
The following table summarizes the technical specifications derived from the ZD10-100 datasheet: Specification Type Flexible Thin Film Pressure Sensor Force Range 0 to 500g (Approx. 0-5N) Thickness ≤ 0.3 mm Response Point Durability > 1,000,000 times Initial Resistance > 10 MΩ (No load) Test Voltage Typical 3.3V DC Response Time Recovery Time Operating Temp -20°C to 60°C Total Length Active Sensing Area 85 x 10 mm 3. Physical Dimensions and Design
to an analog pin (e.g., A0) on your microcontroller (e.g., Arduino, ESP32). If you need to detect human touch, pressure,
The is a flexible, thin-film pressure sensor (force-sensitive resistor) designed to detect tactile pressure and bending. As pressure is applied to the sensing area, the device's resistance decreases, allowing for precise force measurement through a simple circuit. Key Technical Specifications Specification Pressure Range 0 – 500g (typical) or 0 – 500kg (industrial variant) Response Point Static pressure ≤50gis less than or equal to 50 g or triggering force Thickness ≤0.3mmis less than or equal to 0.3 m m (ultra-thin profile) Response Time Recovery Time Durability >1is greater than 1 million cycles Operating Temp Physical Dimensions Total Length: Approximately 100mm100 m m 104.7mm104.7 m m Width: 10mm10 m m Sensing Area: Pin Pitch: Standard 2.54mm2.54 m m (breadboard compatible). Electrical Characteristics Initial Resistance: (when no load is applied). Test Voltage: Typical DC3.3Vcap D cap C 3.3 cap V
If you can't find a specific datasheet, here are some general parameters you might expect for a Zener diode like the ZD10-100:
Vcc (3.3 V or 5 V) │ ├───┬───┐ │ │ (R1) (Sensor) │ │ └───┬───┘ │ Vout ──→ ADC pin │ GND
Flexible Thin Film Pressure Sensor. ZD10-100. Project. Size parameter. Product size. Thickness. Range. Response point. Durability. SENSOR+TEST
The baseline material formulation relies on flexible nanometer substrates layered with conductive inks. The sensor body features an integrated, flexible waterproof sheath, sealing internal matrices from ambient moisture, sweat, and minor fluid exposures. Physical Operating Principle




