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ADP7183ACPZN1.8-R7 数据表(PDF) 13 Page - Analog Devices

部件名 ADP7183ACPZN1.8-R7
功能描述  Supported by ADIsimPOWER voltage regulator design tool
PDF  19 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADP7183ACPZN1.8-R7 数据表(HTML) 13 Page - Analog Devices

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Data Sheet
ADP7183
Rev. 0 | Page 13 of 19
THEORY OF OPERATION
The ADP7183 is a low quiescent current, LDO linear regulator
that operates from −2.0 V to −5.5 V and can provide up to
−300 mA of output current. Total integrated output noise is
4 μV rms independent of the output voltage, making it ideal for
high performance and noise sensitive applications. Shutdown
current consumption is −7 μA (maximum).
The ADP7183 is optimized for use with a 4.7 μF ceramic capacitor
for excellent transient performance. Using advanced proprietary
architecture, the ADP7183 provides ultralow noise and high power
supply rejection up to high frequencies of operation. Figure 40
shows the fixed output voltage internal block diagram of the
ADP7183, and Figure 41 show the adjustable output voltage
internal block diagram of the ADP7183.
R1
R2
VAFB
OVERCURRENT
THERMAL
PROTECTION
REFERENCE
–0.5V
REG
GND
VREG
EN
VIN
VA
SENSE
VOUT
GM
EN
Figure 40. Fixed Output Voltage Internal Block Diagram
OVERCURRENT
THERMAL
PROTECTION
REFERENCE
–0.5V
REG
GND
VREG
EN
VIN
GM
EN
VAFB
VA
SENSE
VOUT
R1
R2
Figure 41. Adjustable Output Voltage Internal Block Diagram
Internally, the ADP7183 consists of a regulator block, reference
block, GM amplifier, feedback voltage divider, LDO regulator and a N
channel MOSFET pass transistor. The regulator block produces an
internal voltage rail (VREG) of −1.8 V to serve as the supply
voltage for the succeeding internal blocks. The GM amplifier
produces a reference voltage (VA) used as a reference to the
LDO regulator.
For fixed option models, the VA voltage is generated through the
resistor divider ratio depending on the VOUT option. For adjustable
models, the VA voltage generates externally through the R1 and
R2 resistors that are connected across the VA and VAFB pins.
Because the reference voltage to the LDO regulator already
adjusts according to the desired VOUT, the LDO regulator now
connects in a buffer configuration for improved noise performance.
If the load draws higher current, the LDO regulator pulls the gate
of the NMOS device higher towards GND to allow more current
to pass. If the load draws less current, the LDO regulator pulls
the gate of the NMOS device lower toward −VIN to restrict the
amount of current passing through the device.
ADJUSTABLE MODE OPERATION
The adjustable mode version of the ADP7183 has an output that
can be set to from −0.5 V to −4.5 V by an external voltage divider.
To calculate the output voltage, use the following equation:
VOUT = −0.5 V(1 + R1/R2)
(1)
Figure 42 shows an example of an adjustable setting where R1 =
280 kΩ and R2 = 49.9 kΩ, setting the output voltage to −3.3 V.
R2 must be at least 10 kΩ to maximize PSRR performance.
CIN
4.7µF
VIN = –3.8V
+1.25V
0V
–1.3V
OFF
ON
VOUT = –3.3V
CREG
1µF
VIN
VREG
GND
EN
VOUT
SENSE
VA
VAFB
ADP7183
COUT
4.7µF
CA
1µF
R1
280kΩ
R2
49.9kΩ
CAFB
10nF
EP
Figure 42. Setting the Adjustable Output Voltage
ENABLE PIN OPERATION
The ADP7183 uses the EN pin to enable and disable the VOUT
pin under normal operating conditions. When EN is +1.25 V above
or −1.3 V below with respect to GND, VOUT turns on and when
EN is at 0 V, VOUT turns off, as shown in Figure 43. For
automatic startup, connect EN to VIN.
CH2 1.0V
–15mV
CH3 1.0V
0mV
200ms/DIV
2MS 1MSPS
A CH2
40mV
3
EN
VOUT
Figure 43. Typical EN Pin Operation



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