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REF3233 Datasheet(PDF) 11 Page - Texas Instruments

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Part # REF3233
Description  SOT23-6 SERIES VOLTAGE REFERENCES
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

REF3233 Datasheet(HTML) 11 Page - Texas Instruments

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1
2
3
6
5
4
+2.5V
0.47
F
µ
+5V
110
108
106
104
102
100
98
96
94
1.5
2.0
3.0
4.0
2.5
3.5
4.5
6.0
5.0
5.5
Power Supply (V)
REF3212-EP, REF3220-EP, REF3225-EP
REF3230-EP, REF3233-EP, REF3240-EP
www.ti.com
SBVS078B
– OCTOBER 2006 – REVISED AUGUST 2011
APPLICATION INFORMATION
The REF32xx does not require a load capacitor and is stable with most capacitive loads, see Load Capacitance
Guidelines. Figure 4 shows typical connections required for operation of the REF32xx. A supply bypass capacitor
of 0.47
μF is recommended.
Figure 4. Typical Operating Connections for the REF3225
Supply Voltage
The REF32xx family of references features an extremely low dropout voltage. With the exception of the
REF3212, which has a minimum supply requirement of 1.8 V, these references can be operated with a supply of
only 5 mV above the output voltage in an unloaded condition. For loaded conditions, a typical dropout voltage
versus load is shown in the Typical Characteristic curves.
The REF32xx also features a low quiescent current of 100
μA, with a maximum quiescent current over
temperature of just 135
μA. The quiescent current typically changes less than 2 μA over the entire supply range,
as shown in Figure 5.
Figure 5. Supply Current vs Supply Voltage
Supply voltages below the specified levels can cause the REF32xx to momentarily draw currents greater than
the typical quiescent current. This momentary current draw can be prevented by using a power supply with a fast
rising edge and low output impedance.
For optimal startup when the IN pin and ENABLE pin are tied together, keep the input voltage rise time less than
or equal to 2ms. For rise times greater than 2ms, the ENABLE pin must be kept below 0.7V until the voltage at
the IN pin has reached the minimum operating voltage. One way to control the voltage at the ENABLE pin is with
an additional RC filter, such as that shown in Figure 6. The RC filter must hold the voltage at the ENABLE pin
below the threshold voltage until the voltage at the input pin has reached the minimum operating voltage.
Copyright
© 2006–2011, Texas Instruments Incorporated
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11
Product Folder Link(s): REF3212-EP, REF3220-EP, REF3225-EP REF3230-EP, REF3233-EP, REF3240-EP
Not Recommended For
New Designs


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