TCA505BGGEG Infineon Technologies, TCA505BGGEG Datasheet

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TCA505BGGEG

Manufacturer Part Number
TCA505BGGEG
Description
IC SWITCH PROXIMITY INDCT 16DSO
Manufacturer
Infineon Technologies
Series
-r
Datasheet

Specifications of TCA505BGGEG

Sensing Distance
-
Sensor Type
Inductive
Sensing Object
-
Response Frequency
-
Material - Body
-
Shielding
Unshielded
Voltage - Supply
3.1 V ~ 4.5 V, 4 V ~ 40 V
Output Type
-
Terminal Type
-
Package / Case
16-SOIC (0.154", 3.90mm Width)
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
SP000242373
TCA505BGGEGINTR
TCA505BGGEGT
TCA505BGGEGTR
TCA505BGGEGTR
TCA505BGGEGXT

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IC for Inductive Proximity Switches
with Short-Circuit Protection
Pb-free lead plating; RoHS compliant
Features
Besides its basic functions (oscillator, demodulator and threshold switch), the bipolar
monolithic IC TCA 505 B includes a number of useful extra functions that enable high-grade,
inductive proximity switches to be designed for an attractive price/performance ratio and with
space savings.
Compared to earlier ICs for inductive proximity switches temperature drift, noise immunity and
the switching frequency of the IC have been improved.
Semiconductor Group
Type
TCA 505 BG Q67000-A8341
TCA 505 B
Wide supply voltage of 3.1 to 4.5 V
and 4 to 40 V
Low current consumption of less than 0.8 mA
Integrated output stage for up to 60 mA
output current
Short-circuit and overload protection of output
stages and external components
Temperature response of the IC compensates
that of the coil
High noise immunity
High switching frequencies up to 5 kHz
Useful extra functions
Suitable for two-wire AC proximity switches
Temperature range – 40 to 110 ˚C
Ordering Code
Q67000-A8342
Package
PG-DSO-16-1 (SMD)
Chip
1
PG-DSO-16-1
TCA 505 BG
TCA 505 BG
Bipolar IC
02.05

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TCA505BGGEG Summary of contents

Page 1

... IC TCA 505 B includes a number of useful extra functions that enable high-grade, inductive proximity switches to be designed for an attractive price/performance ratio and with space savings. Compared to earlier ICs for inductive proximity switches temperature drift, noise immunity and the switching frequency of the IC have been improved. Semiconductor Group ...

Page 2

Pin Configurations (top view) Pin Definitions and Functions Pin Symbol Function 1 LC Oscillator 2 Distance N.C. Not connected 4 Integrating capacitance Hysteresis Short-circuit detector 7 GND Ground 8 Q4 ...

Page 3

Functional Description and Application Operation Schematic Block Diagram Semiconductor Group 3 TCA 505 BG ...

Page 4

... Functional Description This circuit is used to design inductive proximity switches. The resonant circuit of the LC oscillator is implemented with an open half-pot ferrite and a capacitor in parallel (pin LC metallic target is moved closer to the open side of the half-pot ferrite, energy is drawn from the resonant circuit and the amplitude of the oscillation is reduced accordingly. This change in amplitude is transmitted to a threshold switch by means of a demodulator and triggers the outputs (see operation schematic) ...

Page 5

Circuit Diagram (simplified) Semiconductor Group 5 TCA 505 BG ...

Page 6

... Pin Functions Pin 1; LC The resonant circuit of the proximity switch is connected between LC and ground. Pin resistor between this pin and ground sets the current in the oscillator circuit. The greater the value of the resistor, the smaller is the current feed from the oscillator into the resonant circuit and the greater therefore is the switching distance ...

Page 7

Both the internal output stages and externally connected output stages can be protected against sustained short-circuits or overload. A limiting of the output current is an externally connected output stage during the turn-off delay must be ensured. Normally the current ...

Page 8

... the outputs are inhibited, until V S should not exceed fall below Semiconductor Group . In this way the delayed turn-ON operation described above D can remain open the supply voltage of the IC (when used as a two-wire proximity S range the outputs are turned S 8 TCA 505 This is of particular advantage S again reaches 8 V ...

Page 9

Absolute Maximum Ratings = – 110 ˚ Parameter Supply voltage Output voltages B open B connected Output currents Voltage Current on V REF Voltage on SC Current from R Di Current to R ...

Page 10

Characteristics – 110 ˚ Parameter Power Supply ( Current consumption Normal mode ( OFF) Two-wire operation OFF 4 V ...

Page 11

Characteristics (cont’ – 110 ˚ Parameter Two-Wire Regulator ( Turn-ON threshold (outputs active Turn-ON threshold (outputs disabled Hysteresis V – V ...

Page 12

... TCA 505 B just switches from D2 to D1. In this way LC the TCA 505 B, together with a suitably dimensioned resonant circuit, can form a proximity switch that exhibits a very good temperature coefficient ( 2.5 %) over the entire temperature range and without any kind of extra external wiring. ...

Page 13

Diagrams Reference Voltage versus Junction Temperature T j Semiconductor Group Current Consumption versus Junction Temperature T Switching Amplitude versus Frequency f 13 TCA 505 BG j ...

Page 14

Test Circuit 1 Test Circuit 2 Semiconductor Group 14 TCA 505 BG ...

Page 15

For explanation see under "Pin Function" Application Circuit 1 Input Circuitry (Use of pins LC, R Semiconductor Group , TCA 505 BG ...

Page 16

Application Circuit 2 Output Circuitry (Use of pins V P-switch, short-circuit-proof, LED indicator, configurable as normally closed or normally open Short-circuit-current sampling: Constant base current: 1) For dimensioning of C see characteristics for noise immunity ...

Page 17

Application Circuit 3 Output Circuitry (Use of pins V N-switch, short-circuit-proof, LED indicator, configurable as normally closed or normally open Short-circuit-current sampling: Constant base current: 1) For dimensioning of C see characteristics for noise immunity ...

Page 18

Application Circuit 4 Output Circuitry (Use of pins SC Q4, C P-switch, short-circuit-proof, configurable as normally closed or normally open Short-circuit-current sampling: During the sampling time, the short-circuit current within the IC is limited to a maximum of ...

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