SNOSDI7
December 2023
LDC5071-Q1
PRODUCTION DATA
1
1
Features
2
Applications
3
Description
4
Pin Configuration and Functions
5
Specifications
5.1
Absolute Maximum Ratings
5.2
ESD Ratings
5.3
Recommended Operating Conditions
5.4
Thermal Information
5.5
Electrical Characteristics
5.6
Diagnostics
5.7
Switching Characteristics
5.8
Typical Characteristics
6
Detailed Description
6.1
Overview
6.2
Functional Block Diagram
6.3
Feature Description
6.3.1
Input Supply Voltage
6.3.2
Excitation Signal
6.3.3
Signal Processing Block
6.3.3.1
Demodulation
6.3.3.2
Fixed Gain Control
6.3.3.3
Automatic Gain Control
6.3.4
Output Stage
6.3.5
Diagnostics
6.3.5.1
Undervoltage Diagnostics
6.3.5.2
Initialization Diagnostics
6.3.5.3
Normal State Diagnostics
6.3.5.4
Fault State Diagnostics
6.4
Device Functional Modes
6.4.1
IDLE State
6.4.2
DIAGNOSTICS State
6.4.3
NORMAL State
6.4.4
FAULT State
6.4.5
DISABLED State
7
Application and Implementation
7.1
Application Information
7.2
Typical Applications
7.2.1
5-V Supply Mode
7.2.1.1
Design Requirements
7.2.1.2
Detailed Design Procedure
7.2.1.2.1
VREG and VCC
7.2.1.2.2
Output Capacitors
7.2.1.2.3
Automatic Gain Control (AGC) Mode
7.2.1.3
Application Curve
7.2.2
3.3-V Supply Mode
7.2.2.1
Design Requirements
7.2.2.2
Detailed Design Procedure
7.2.2.2.1
VREG and VCC
7.2.2.2.2
Output Capacitors
7.2.2.2.3
Fixed Gain Mode
7.2.3
Redundancy Mode
7.2.4
Single-Ended Mode
7.2.5
External Diagnostics Required for Loss of VCC or GND
7.3
Power Supply Recommendations
7.3.1
Mode 1: VCC = 5 V, VREG = 3.3 V
7.3.2
Mode 2: VCC = VREG = 3.3 V
7.4
Layout
7.4.1
Layout Guidelines
7.4.2
Layout Example
8
Device and Documentation Support
8.1
Receiving Notification of Documentation Updates
8.2
Support Resources
8.3
Trademarks
8.4
Electrostatic Discharge Caution
8.5
Glossary
9
Revision History
10
Mechanical, Packaging, and Orderable Information
Package Options
Mechanical Data (Package|Pins)
PW|16
MPDS361A
Thermal pad, mechanical data (Package|Pins)
Orderable Information
snosdi7_oa
snosdi7_pm
1
Features
AEC-Q100 qualified with the following results:
Device temperature grade 0: –40°C to +160°C ambient operating temperature
High resolution and accuracy of ≤ 1 degree at rotational speeds up to 480,000 RPM
Differential signal paths with sine and cosine outputs supporting a wide dynamic input range
Integrated analog front-end IC for contact-less, inductive position sensors for absolute rotary position from 0° to 360°
Supports operation in harsh environments; immune to stray magnetic fields, dirt, and contamination
No magnets required
Input supply operating modes: 5 V and 3.3 V
Operating current: 22 mA (maximum)
Integrated LC oscillator in the 2.4-MHz to 5-MHz band to excite the inductive sensor coil
Differential output drivers with high-voltage protection and large capacitive load capability
Automatic
and manual gain
control to maximize dynamic range of output drivers
Built-in sensor and supply diagnostics
Reverse voltage and overvoltage protection on input supply and output pins from –15 V to 30 V
For enhanced functional safety and diagnostics, see
LDC5072-Q1
Supports redundant mode
Package: TSSOP-16 (5.00 mm x 4.40 mm)