Texas Instruments Fixed Shunt Voltage Reference 2.5V ±2.0 % 3-Pin SOT-23, LM4431M3-2.5/NOPB
- RS Stock No.:
- 534-3223P
- Mfr. Part No.:
- LM4431M3-2.5/NOPB
- Brand:
- Texas Instruments
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Subtotal 25 units (supplied on a continuous strip)*
£19.75
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£23.75
(inc. VAT)
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In Stock
- 298 unit(s) ready to ship
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| Units | Per unit | 
|---|---|
| 25 - 49 | £0.79 | 
| 50 - 99 | £0.71 | 
| 100 - 249 | £0.64 | 
| 250 + | £0.60 | 
*price indicative
- RS Stock No.:
- 534-3223P
- Mfr. Part No.:
- LM4431M3-2.5/NOPB
- Brand:
- Texas Instruments
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
| Select all | Attribute | Value | 
|---|---|---|
| Brand | Texas Instruments | |
| Nominal Voltage | 2.5V | |
| Package Type | SOT-23 | |
| Reference Type | Fixed | |
| Initial Accuracy | ±2.0 % | |
| Mounting Type | Surface Mount | |
| Topology | Shunt | |
| Maximum Output Current | 15mA | |
| Maximum Input Voltage | 30 V | |
| Pin Count | 3 | |
| Load Regulation | 8 mV | |
| Dimensions | 2.92 x 1.3 x 0.93mm | |
| Width | 1.3mm | |
| Height | 0.93mm | |
| Minimum Operating Temperature | 0 °C | |
| Maximum Operating Temperature | +70 °C | |
| Length | 2.92mm | |
| Select all | ||
|---|---|---|
| Brand Texas Instruments | ||
| Nominal Voltage 2.5V | ||
| Package Type SOT-23 | ||
| Reference Type Fixed | ||
| Initial Accuracy ±2.0 % | ||
| Mounting Type Surface Mount | ||
| Topology Shunt | ||
| Maximum Output Current 15mA | ||
| Maximum Input Voltage 30 V | ||
| Pin Count 3 | ||
| Load Regulation 8 mV | ||
| Dimensions 2.92 x 1.3 x 0.93mm | ||
| Width 1.3mm | ||
| Height 0.93mm | ||
| Minimum Operating Temperature 0 °C | ||
| Maximum Operating Temperature +70 °C | ||
| Length 2.92mm | ||
Shunt Voltage Reference, Fixed, 2.4V to 2.5V
Voltage References, Texas Instruments
Precison Fixed and Adjustable Voltage Reference ICs utilsing series, shunt or series/shunt topologies and available in both through-hole and surface mount packages. Voltage References are available with initial accuracies of ±0.02 to ±2%.
