STEVAL-IFS006V1 STMicroelectronics, STEVAL-IFS006V1 Datasheet - Page 31

BOARD EVAL 8BIT MICRO + TDE1708

STEVAL-IFS006V1

Manufacturer Part Number
STEVAL-IFS006V1
Description
BOARD EVAL 8BIT MICRO + TDE1708
Manufacturer
STMicroelectronics

Specifications of STEVAL-IFS006V1

Design Resources
STEVAL-IFS006V1 Bill of Material
Sensor Type
Proximity
Interface
I²C
Voltage - Supply
6 V ~ 48 V
Embedded
Yes, MCU, 8-Bit
Utilized Ic / Part
ST7FLITEUS5, TDE1708
Processor To Be Evaluated
ST7LITEUS5
Data Bus Width
8 bit
Operating Supply Voltage
6 V to 48 V
Silicon Manufacturer
ST Micro
Silicon Core Number
TDE1708DFT
Kit Application Type
Sensing - Touch / Proximity
Application Sub Type
Proximity Switch
Kit Contents
Board
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Sensitivity
-
Sensing Range
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
497-6403
STEVAL-IFS006V1

Available stocks

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Part Number:
STEVAL-IFS006V1
Manufacturer:
ST
0
ST7LITEUS2, ST7LITEUS5
6.3.2
6.3.3
RC Control register (RCCR)
Reset value: 1111 1111 (FFh)
System Integrity (SI) Control/status register (SICSR)
Reset value: 0000 0x00 (0xh)
CR9
7
0
7
Bits 7:0 CR[9:2] RC Oscillator Frequency Adjustment Bits
Bits 6:5 CR[1:0] RC Oscillator Frequency Adjustment bits
Bits 4:3 Reserved, must be kept cleared.
Bits 2:0 System Integrity bits. Refer to
Bit 7 Reserved, must be kept cleared.
CR1
CR8
These bits, as well as CR[1:0] bits in the SICSR register must be written
immediately after reset to adjust the RC oscillator frequency and to obtain the
required accuracy. The application can store the correct value for each voltage
range in Flash memory and write it to this register at startup.
00h = maximum available frequency
FFh = lowest available frequency
Note: To tune the oscillator, write a series of different values in the register until the
These bits, as well as CR[9:2] bits in the RCCR register must be written
immediately after reset to adjust the RC oscillator frequency and to obtain the
required accuracy. Refer to
correct frequency is reached. The fastest method is to use a dichotomy
starting with 80h.
CR0
CR7
0
CR6
Read / Write
Read / Write
Section 6.2 on page
Section 7.4 on page
0
CR5
Supply, reset and clock management
LVDRF
28.
CR4
43.
AVDF
CR3
AVDIE
CR2
0
0
31/136

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