AS5163-HTST-500 austriamicrosystems, AS5163-HTST-500 Datasheet - Page 8

IC ENCODER ROTARY 14-TSSOP

AS5163-HTST-500

Manufacturer Part Number
AS5163-HTST-500
Description
IC ENCODER ROTARY 14-TSSOP
Manufacturer
austriamicrosystems
Type
Linear, Rotary Encoder - Programmabler
Datasheet

Specifications of AS5163-HTST-500

Featured Product
AS5163 - Contactless Magnetic Angle Position Sensor
Sensing Range
30mT ~ 70mT
Voltage - Supply
4.5 V ~ 5.5 V
Current - Supply
20mA
Output Type
Analog, Ratiometric
Operating Temperature
-40°C ~ 150°C
Package / Case
14-TSSOP (0.173", 4.40mm Width)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output (max)
-
Features
-
Other names
AS5163-HTST-500TR
AS5163
Datasheet - D e t a i l e d D e s c r i p t i o n
7.1 Operation
The AS5163 operates at 5V ±10%, using two internal Low-Dropout (LDO) voltage regulators. For operation, the 5V supply is connected to pin
VDD. While VDD3 and VDD5 (LDO outputs) must be buffered by 2.2µF capacitors, the VDD requires a 1µF capacitor. All capacitors (low ESR
ceramic) are supposed to be placed close to the supply pins
The VDD3 and VDD5 outputs are intended for internal use only. It must not be loaded with an external load.
Figure 4. Connections for 5V Supply Voltages
7.1.1 VDD Voltage Monitor
VDD Overvoltage Management.
time, then the device enters a low power mode reducing the power consumption. When the overvoltage event has passed and the voltage
applied to the VDD pin falls below the overvoltage lower threshold for longer than the recovery time, then the device enters the normal mode.
VDD5 Undervoltage Management.
the VDD5_detection time, then the device stops the clock of the digital part and the output drivers are turned off to reduce the power
consumption. When the voltage applied to the VDD5 pin exceeds the VDD5 undervoltage upper threshold for longer than the VDD5_recovery
time, then the clock is restarted and the output drivers are turned on.
www.austriamicrosystems.com/AS5163
Notes:
1. The pins VDD3 and VDD5 must always be buffered by a capacitor. These pins must not be left floating, as this may
2. Only VDD is overvoltage protected up to 27V. In addition, the VDD has a reverse polarity protection.
cause unstable internal supply voltages, which may lead to larger output jitter of the measured angle.
4. 5 - 5.5V
1µF
If the voltage applied to the VDD pin exceeds the overvoltage upper threshold for longer than the detection
5V Operation
When the voltage applied to the VDD5 pin falls below the undervoltage lower threshold for longer than
GND
VDD
(see Figure
LDO
Revision 2.7
VDD 5
4).
VDD 4. 5 V
Internal
2.2µF
LDO
VDD 3
VDD 3.45V
Internal
2.2 µF
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