MAX6164AESA+ Maxim Integrated Products, MAX6164AESA+ Datasheet - Page 15

IC REF VOLT LDO 8-SOIC

MAX6164AESA+

Manufacturer Part Number
MAX6164AESA+
Description
IC REF VOLT LDO 8-SOIC
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX6164AESA+

Reference Type
Series
Voltage - Output
4.096V
Tolerance
±2mV
Temperature Coefficient
5ppm/°C
Voltage - Input
4.296 ~ 12.6 V
Number Of Channels
1
Current - Quiescent
120µA
Current - Output
5mA
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Product
Voltage References
Topology
Series References
Output Voltage
4.096 V
Initial Accuracy
0.05 %
Average Temperature Coefficient (typ)
5 PPM / C
Series Vref - Input Voltage (max)
12.6 V
Series Vref - Input Voltage (min)
4.294 V
Shunt Current (max)
5 mA
Maximum Operating Temperature
+ 85 C
Input Voltage
4.294 V to 12.6 V
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Series Vref - Supply Current (max)
120 uA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Cathode
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For the best line-transient performance, decouple the
input with a 0.1µF ceramic capacitor as shown in the
Typical Operating Circuit. Locate the capacitor as
close to IN as possible. When transient performance is
less important, no capacitor is necessary.
Devices in the MAX6161 family do not require an output
capacitor for frequency stability. In applications where
the load or the supply can experience step changes,
an output capacitor of at least 0.1µF will reduce the
amount of overshoot (undershoot) and improve the cir-
cuit’s transient response. Many applications do not
require an external capacitor, and the MAX6161 family
can offer a significant advantage in applications when
board space is critical.
The quiescent supply current of the series-mode
MAX6161 family is typically 100µA and is virtually inde-
pendent of the supply voltage, with only an 8µA/V
(max) variation with supply voltage. Unlike series refer-
ences, shunt-mode references operate with a series
resistor connected to the power supply. The quiescent
current of a shunt-mode reference is thus a function of
the input voltage. Additionally, shunt-mode references
have to be biased at the maximum expected load cur-
rent, even if the load current is not present at the time.
In the MAX6161 family, the load current is drawn from
the input voltage only when required, so supply current
is not wasted and efficiency is maximized at all input
voltages. This improved efficiency reduces power dissi-
pation and extends battery life.
When the supply voltage is below the minimum speci-
fied input voltage (as during turn-on), the devices can
draw up to 400µA beyond the nominal supply current.
The input voltage source must be capable of providing
this current to ensure reliable turn-on.
1, 3, 5, 7, 8
PIN
2
4
6
Precision, Micropower, Low-Dropout, High-
Applications Information
NAME
Output-Current, SO-8 Voltage References
GND
OUT
N.C.
IN
______________________________________________________________________________________
Output/Load Capacitance
No Connection. Not internally connected.
Input Voltage
Ground
Reference Output
Input Bypassing
Supply Current
__________________________
TRANSISTOR COUNT: 117
PROCESS: BiCMOS
Output voltage hysteresis is the change in the input
voltage at T
cycled over its entire operating temperature range.
Hysteresis is caused by differential package stress
appearing across the bandgap core transistors. The
typical temperature hysteresis value is 125ppm.
These devices typically turn on and settle to within
0.1% of their final value in 50µs to 300µs, depending on
the output voltage (see electrical table of part used).
The turn-on time can increase up to 1.5ms with the
device operating at the minimum dropout voltage and
the maximum load.
FUNCTION
*CAPACITORS ARE OPTIONAL.
0.1μF*
+SUPPLY INPUT (SEE SELECTOR GUIDE)
A
= +25°C before and after the device is
Typical Operating Circuit
MAX6161–
MAX6168
Output Voltage Hysteresis
GND
IN
Chip Information
OUT
Pin Description
Turn-On Time
1μF*
REFERENCE
OUT
15

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