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REF54300QDR Datasheet(PDF) 22 Page - Texas Instruments

Part # REF54300QDR
Description  REF54 0.8 ppm/°C Maximum Drift, 0.11 ppmp-p 1/f Noise, 380 μA Current, Precision Voltage Reference
PDF  31 Pages
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

REF54300QDR Datasheet(HTML) 22 Page - Texas Instruments

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9.2.1.1 Design Requirements
A detailed design procedure is based on a design example. For this design example, use the parameters listed
in Table 9-2 as the input parameters.
Table 9-2. Design Example Parameters
DESIGN PARAMETER
VALUE
Input voltage VIN
3 V
Input capacitor
0.1-µF
Output capacitor
10-µF
9.2.1.2 Detailed Design Procedure
A bulk capacitor (0.1 μF to 10 μF) must be connected to the supply to improve transient response in the
applications where the supply voltage can fluctuate. Connect an additional 0.1 μF capacitor at VIN pin closer to
the device to bypass high frequency supply noise.
A low ESR (maximum 1 Ω) capacitor of 1 μF to 100 μF must be connected to the output to provide stable output.
For very low noise applications, special care must be taken with X7R and other MLCC capacitors due to their
piezoelectric effect. Piezoelectric property of multilayer ceramic capacitors (MLCC) can introduce a μV range
noise due to mechanical vibrations, potentially dominating the noise of the REF54. More information on how
the piezoelectric effect can be explored in systems can be found in Stress-induced outbursts: Microphonics in
ceramic capacitors (Part 1) and Stress-induced outbursts: Microphonics in ceramic capacitors (Part 2). Designer
must use film capacitors for noise sensitive applications. TI recommends placing the REF54 reference as close
to the load as possible to minimize IR drop due to trace resistance.
The transient startup response of the REF54 is shown in Figure 9-2. The startup response of the REF54 family
is dependent on the output and NR pin capacitor. Increasing the output capacitor improves the load transient
performance of the device, however this also increases the startup time
Figure 9-2. REF54250CDR Startup Response(CL=10 uF)
REF54
SNVSCN7 – NOVEMBER 2023
www.ti.com
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Product Folder Links: REF54



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