PUI Audio 80 dB Flange, Flange External 4 mm Piezo Buzzer Transducer 111.5 mm 1 V Min 30V Max
- RS Stock No.:
- 276-854
- Mfr. Part No.:
- AT-1750-TFL-LW95-R
- Brand:
- PUI Audio
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- RS Stock No.:
- 276-854
- Mfr. Part No.:
- AT-1750-TFL-LW95-R
- Brand:
- PUI Audio
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | PUI Audio | |
| Mount Type | Flange, Flange | |
| Product Type | Piezo Buzzer Transducer | |
| Minimum Supply Voltage | 1V | |
| Maximum Supply Voltage | 30V | |
| Sound Level | 80dB | |
| Drive Type | External | |
| Diameter | 16.5mm | |
| Minimum Operating Temperature | -30°C | |
| Maximum Operating Temperature | 85°C | |
| Height | 4mm | |
| Depth | 4mm | |
| Termination Style | Lead Wire | |
| Standards/Approvals | RoHS 2002/95/EC | |
| Length | 111.5mm | |
| Maximum Frequency | 5500Hz | |
| Supply Current | 9mA | |
| Select all | ||
|---|---|---|
Brand PUI Audio | ||
Mount Type Flange, Flange | ||
Product Type Piezo Buzzer Transducer | ||
Minimum Supply Voltage 1V | ||
Maximum Supply Voltage 30V | ||
Sound Level 80dB | ||
Drive Type External | ||
Diameter 16.5mm | ||
Minimum Operating Temperature -30°C | ||
Maximum Operating Temperature 85°C | ||
Height 4mm | ||
Depth 4mm | ||
Termination Style Lead Wire | ||
Standards/Approvals RoHS 2002/95/EC | ||
Length 111.5mm | ||
Maximum Frequency 5500Hz | ||
Supply Current 9mA | ||
- COO (Country of Origin):
- CN
PUI Audio Piezo Buzzer Transducer, 16.5mm Diameter, 80dB Sound Level - AT-1750-TFL-LW95-R
This piezo buzzer transducer provides audible signalling for industrial and electronic systems, converting electrical drive signals into an 80 dB acoustic output suitable for monitoring and alerting functions. It operates across a wide temperature range and accepts low-voltage inputs, making it appropriate for use in control panels, machinery enclosures and Interface devices where a Compact acoustic indicator is required.
Features and Benefits:
• High capacitance 11,000 pF for stable tonal response and consistent output
• Peak frequency 5,500 Hz for clear high-frequency alerting suitable for noisy environments
• Operates from 1V to 30V enabling compatibility with diverse control circuits
• Draws 9 mA supply current to minimise load on power supplies
• Temperature range -30 °C to 85 °C for use in variable thermal conditions
• Lead‑wire termination and flange mount for Rapid installation in assemblies
• Peak frequency 5,500 Hz for clear high-frequency alerting suitable for noisy environments
• Operates from 1V to 30V enabling compatibility with diverse control circuits
• Draws 9 mA supply current to minimise load on power supplies
• Temperature range -30 °C to 85 °C for use in variable thermal conditions
• Lead‑wire termination and flange mount for Rapid installation in assemblies
Applications
• Suitable for audible alarms in automation control cabinets
• Ideal for status indication on industrial equipment panels
• Used with low-voltage battery systems requiring acoustic feedback
• Can be used for alerting in testing rigs and production machinery
• Suitable for retrofit signalling in electrical enclosures
• Ideal for status indication on industrial equipment panels
• Used with low-voltage battery systems requiring acoustic feedback
• Can be used for alerting in testing rigs and production machinery
• Suitable for retrofit signalling in electrical enclosures
What mounting options are available for secure fitting?
It provides flange mounting points so it can be fastened to panels or brackets using standard screws to maintain reliable positioning.
How should it be driven for optimal sound output?
It is intended for external drive and performs best when supplied with a suitable drive waveform within the 1V to 30V range to achieve the rated acoustic level.
What environmental conditions can it withstand during operation?
It tolerates ambient temperatures from -30 °C up to 85 °C, allowing operation in chilled, heated or industrial environments without degradation of performance.
How does its electrical behaviour affect system design?
The 11,000 pF capacitance and 9 mA current draw should be considered when designing drive circuitry and power budgets to ensure proper signal coupling and stable supply operation.
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