TLE4925 Infineon Technologies, TLE4925 Datasheet - Page 10

IC HALL EFFECT SENSOR SSO-3-6

TLE4925

Manufacturer Part Number
TLE4925
Description
IC HALL EFFECT SENSOR SSO-3-6
Manufacturer
Infineon Technologies
Type
Special Purposer
Datasheet

Specifications of TLE4925

Sensing Range
45% ~ 55%
Voltage - Supply
3.3 V ~ 18 V
Current - Supply
9mA
Current - Output (max)
20mA
Output Type
Digital, Open Drain
Features
High Sensitivity
Operating Temperature
-40°C ~ 150°C
Package / Case
3-SIP, SSO-3-06
Operating Supply Voltage
5 V or 9 V or 12 V
Mounting Style
Through Hole
Maximum Operating Temperature
+ 195 C
Minimum Operating Temperature
- 40 C
Maximum Output Current
50 mA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
SP000013753
SP000269338
TLE4925
TLE4925INTB
TLE4925X

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
TLE4925C
Manufacturer:
INFINEON
Quantity:
10 000
3.1.5
3.1.6
3.1.7
3.1.8
13
a more rectangle signal.
Data Sheet
smaller phase errors are possible at higher signal amplitudes, because sinus signal changes to
mode at power supply of
Frequency distribution of
Vs=13V and ripple ±3V;
Effective noise value of
the magnetic switching
Signal Jitter in running
points, 1 sigma value
Uncalibrated phase
Magnetic edge 1-2
Magnetic edge 1-3
1 sigma value*
After 3
signal jitter
error
rd
edge
B
σ2
σ3
neff
Jitter shall be distributed
Page 10 of 28
like white noise
≤ ±0.16
≤ ±0.11
25
≤ ±90
≤ ±55
≤ ±90
70
µT
µT
%
%
°
∆B
sinusoidal input
signal;
150°C ≤ T
∆B
sinusoidal input
signal; T
T
magnetic noise is
normal distributed,
nearly independent to
frequency and without
sampling noise or
digital noise effects.
The typical value
represents the rms-
value here and
corresponds therefore
to 1σ probability of
normal distribution.
Consequently a 3σ
value corresponds to
0.3% probability of
appearance.
The max value
corresponds to the
rms-values in the full
temperature range
and includes
technological spreads.
Related to calibrated
switching behaviour.
∆B
sinusoidal input signal
13
close to 2x∆B
-
j
Magnetic fields
= 25°C; The
PP
PP
PP
= 10mT ideal
= 10mT ideal
= 10mT ideal
j
<150°C
j
10/02/2005
< 175°C
min

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