AUX Function Types

Hier findest Du alle Informationen zu den 15 Auxiliary Input Typen laut ISOBUS Norm inklusive interaktiven Animationen zum ausprobieren und besser verstehen.

Boolean Latching (ID: 0)

Two-position switch (maintains position) (Single Pole, Double Throw)

Value 1:

0 = Off = backward, down, left, or not pressed

1 = On = forward, up, right, or pressed

Value 2:

Number of transitions from Off to On since power up.

Overflows from FFFF16 to 0.

TYPE 00
Boolean – Latching
OFF

Analog (ID: 1)

Maintains position setting

Value 1:

0 % = backward, down, left, counter-clockwise

100 %(FAFF16) = forward, up, right, clockwise

Value 2:

Reserved, set to FFFF16

TYPE 01
Analog
50 %
0 %50 %100 %

Boolean Non-Latching (ID: 2)

Two-position switch (return to off) (Momentary Single Pole, Double Throw)

Value 1:

0 = Off = backward, down, left, or not pressed

1 = Momentary = forward, up, right, or pressed

2 = held

Value 2:

Number of transitions from Off to not Off since power up (Momentary to held is not counted). Overflows from FFFF16 to 0.

TYPE 02
Boolean – Non-Latching
OFF

Analogue – return to 50 % (ID: 3)

Two way analogue (return to centre position)

Value 1:

0 % = backward, down, left, counter-clockwise

100 %(FAFF16) = forward, up, right, clockwise

Value 2:

Reserved, set to FFFF16

TYPE 03
Analog – Return to 50%
50 %
0 %50 %100 %

Analogue – return to 0 % (ID: 4)

One way analogue input (return to 0 %)

Value 1:

0 % = backward, down, left, counter-clockwise

100 %(FAFF16) = forward, up, right, clockwise

Value 2:

Reserved, set to FFFF16

TYPE 04
Analog – Return to 0%
0 %
0 %50 %100 %

Dual Boolean Both Latching (ID: 5)

Three-Position Switch (latching in all positions) (Single Pole, Three Position, Centre Off)

Value 1:

0 = Off = centre

1 = On = forward, up or right

4 = On = backward, down or left

Value 2:

Number of transitions from Off to On since power up. Overflows from FFFF16 to 0.

TYPE 05
Dual Boolean – Both Latching
CTR

Dual Boolean Both Non-Latching (ID: 6)

Three-Position Switch, (returning to centre position) (Momentary Single Pole, Three Position, Centre Off)

Value 1:

0 = Off

1 = Momentary = forward, up or right

2 = held forward, up, or right

4 = Momentary = backward, down or left

8 = held backward, down, or left

Value 2:

Number of transitions from Off to not Off since power up (Momentary to held is not counted). Overflows from FFFF16 to 0.

TYPE 06
Dual Boolean – Both Non-Latching
CTR

Dual Boolean Latching (Up) (ID: 7)

Three-Position Switch, latching in up position, momentary down (Single Pole, Three Position, Centre Off)

Value 1:

0 = Off (latching)

1 = On = forward, up or right (latching)

4 = On = backward, down or left (non-latching)

8 = held backward, down, or left (non-latching)

Value 2:

Number of transitions from Off to not Off since power up (On to held is not counted). Overflows from FFFF16 to 0.

TYPE 07
Dual Boolean – Latching (up)
CTR

Dual Boolean Latching (Down) (ID: 8)

Three-Position Switch, latching in down position, momentary up (Single Pole, Three Position, Centre Off)

Value 1:

0 = Off (latching)

1 = On = forward, up or right (non-latching)

2 = held forward, up or right (non-latching)

4 = On = backward, down or left (latching)

Value 2:

Number of transitions from Off to not Off since power up (On to held is not counted). Overflows from FFFF16 to 0.

TYPE 08
Dual Boolean – Latching (down)
CTR

Combined Analogue return to 50 % (ID: 9)

Two way analogue (return to centre position) with latching Boolean at 0 % and 100 % positions

Value 1:

0 % = backward, down, left, counter-clockwise

100 %(FAFF16) = forward, up, right, clockwise

FB0016 = Latched forward

FB0116 = Latched backward

Value 2:

Number of transitions from non-Latched to Latched since power up. Overflows from FFFF16 to 0.

TYPE 09
Combined Analog + Dual Latching
50 %
0 %50 %100 %

Combined Analogue (ID: 10)

Analogue maintains position setting with latching Boolean at 0 % and 100 % positions

Value 1:

0 % = backward, down, left, counter-clockwise

100 %(FAFF16) = forward, up, right, clockwise

FB0016 = Latched forward

FB0116 = Latched backward

Value 2:

Number of transitions from non-Latched to Latched since power up. Overflows from FFFF16 to 0.

TYPE 10
Combined Analog + Dual Latching
50 %
0 %50 %100 %

Quadrature Boolean Non-Latching (ID: 11)

Two quadrature mounted Three-Position Switches, (returning to centre position) (Momentary Single Pole, Three Position, Centre Off) Bit values can be combined to indicate transitions from one held position to another held position

(See Figure J.2 — Quadrature non-latching boolean value representation)

Value 1:

Bits 1―0 Forward or up

Bits 3―2 Backward or down

Bits 5―4 Right

Bits 7―6 Left

Possible values for each bit pair:

00 = Off

01 = On (first activation)

10 = held

11 = reserved

Value 2:

Number of transitions of any axis from Off to On since power up (On to held is not counted). Overflows from FFFF16 to 0.

TYPE 11
Quadrature Boolean – Non-Latching

Quadrature Analogue (maintains position setting) (ID: 12)

Two quadrature mounted analogue maintain position setting. The centre position of each analogue axis is at 50 % value

Value 1:

Axis #1:

0 % = backward or down

100 %(FAFF16) = forward or up

Value 2:

Axis #2:

0 % = left

100 %(FAFF16) = right

TYPE 12
Quadrature Analog
X: 50 %
Y: 50 %

Quadrature Analogue return to 50 % (ID: 13)

Two quadrature mounted analogue returns to centre position

(The centre position of each analogue axis is at 50 %)

Value 1:

Axis #1:

0 % = backward or down

100 %(FAFF16) = forward or up

Value 2:

Axis #2:

0 % = left

100 %(FAFF16) = right

TYPE 13
Quadrature Analog – Return to 50%
X: 50 %
Y: 50 %

Bidirectional Encoder (ID: 14)

Count increases when turning in the encoders “increase” direction and count decreases when turning in the opposite direction

Value 1: Current Count

0 to FFFF16 with rollover to 0

Value 2: Calibration ― Encoder Counts per revolution

1 to FFFF16 (fixed value)

TYPE 14
Bidirectional Encoder
value
0x0000

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