Technical Document
Specifications
Brand
Texas InstrumentsNominal Voltage
1.24 - 6V
Package Type
SOT-23
Reference Type
Adjustable
Initial Accuracy
±1.0 %
Mounting Type
Surface Mount
Topology
Shunt
Maximum Output Current
15mA
Minimum Output Voltage
1.24 V
Maximum Output Voltage
6 V
Pin Count
3
Dimensions
2.92 x 1.3 x 1mm
Minimum Operating Temperature
0 °C
Height
1mm
Width
1.3mm
Maximum Operating Temperature
+70 °C
Length
2.92mm
Product details
Shunt Voltage Reference, Adjustable, LMV/TLV Series
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%.
Stock information temporarily unavailable.
€ 4.06
€ 0.811 Each (In a Pack of 5) (Exc. Vat)
€ 4.91
€ 0.981 Each (In a Pack of 5) (inc. VAT)
Standard
5

€ 4.06
€ 0.811 Each (In a Pack of 5) (Exc. Vat)
€ 4.91
€ 0.981 Each (In a Pack of 5) (inc. VAT)
Stock information temporarily unavailable.
Standard
5

| Quantity | Unit price | Per Pack |
|---|---|---|
| 5 - 120 | € 0.811 | € 4.06 |
| 125 - 495 | € 0.424 | € 2.12 |
| 500 - 1245 | € 0.406 | € 2.03 |
| 1250 - 4995 | € 3.45 | € 17.25 |
| 5000+ | € 0.29 | € 1.45 |
Technical Document
Specifications
Brand
Texas InstrumentsNominal Voltage
1.24 - 6V
Package Type
SOT-23
Reference Type
Adjustable
Initial Accuracy
±1.0 %
Mounting Type
Surface Mount
Topology
Shunt
Maximum Output Current
15mA
Minimum Output Voltage
1.24 V
Maximum Output Voltage
6 V
Pin Count
3
Dimensions
2.92 x 1.3 x 1mm
Minimum Operating Temperature
0 °C
Height
1mm
Width
1.3mm
Maximum Operating Temperature
+70 °C
Length
2.92mm
Product details
Shunt Voltage Reference, Adjustable, LMV/TLV Series
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%.


