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產品名稱:precizika光柵尺|precizika光柵尺價格|precizika光柵尺維修

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更新時間:2025-04-13

產品特點:precizika光柵尺|precizika光柵尺價格|precizika光柵尺維修。precizika光柵尺廠家、precizika光柵尺型號、precizika光柵尺、precizika光柵尺使用說明書、precizika光柵尺接線方式圖、維修銷售precizika光柵尺。precizika立陶宛光柵尺、數顯表、編碼器*區:蘇州澤升*密機械儀器有限:

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L18

The sealed linear encoder L18 is used to convert linear displacements of key machine components into electrical signals containing information about the value and direction of the displacement.

The encoder consists of a glass scale installed into a rigid hollow housing and a ball-bearing-guided reading head. To be able to work in harsh environments (lubricants and chips), the encoder has sealing lips.

Filtered air can be supplied into the housing of the encoder for extra protection.

The photoelectric unit of the reading head generates sinusoidal micro-current or TTL square-wave (standard RS422) output signals.

Three versions of output signals are available:

• L18-A - Sinusoidal signals, with amplitude approx. 11 μApp, require external subdividing electronics.

• L18-AV - Sinusoidal signals, with amplitude approx. 1 Vpp, require external subdividing electronics.

• L18-F - Square-wave, with integrated subdividing electronics for interpolation x1, x2, x5, x10, x 25, x50.

 

MECHANICAL DATA

Measuring lengths (ML), mm

 
70; 120; 170; 220; 270; 320; 370; 420; 520; 620; 720; 820; 920; 1020; 1140; 1240

(other intermenate lenghts on request)

Accuracy grades to any meter within the ML (at 20°C)

± 10; ±5; ±3 μm (optional)

Grating period20 μm; 40 μm (optional)
Reference marks (RI)


 
- standard for ML ≤ 1020 mm: 35 mm from both ends of ML
- standard for ML > 1140 mm: 45 mm from both ends of ML
- optional: one RI at any location, or two or more RI's separated by distances of n x 50 mm or distance-coded
Max. traversing speed

 
- when interpolation factor is 1,2,5,10: 1 m/s
- when interpolation factor is 25: 0.5 m/s
- when interpolation factor is 50: 0.4 m/s
Required moving force with sealing lips< 3 N
Protection (IEC 529)- without compressed air: IP53
- with compressed air (optional): IP64
Weight0.4 kg + 0.8 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (40 to 2000 Hz)≤ 30 m/s²
  

ELECTRICAL DATA

VersionL18-A ∫ 11 µAppL18-AV ∫ 1 VppL18-F Π TTL
Supply voltage+ 5 V ± 5 % / <90 mA+ 5 V ± 5 % / < 120 mA+ 5 V ± 5 % / < 120 mA
Light sourceLEDLEDLED
Incremental signals

Two sinusoidal I1 and I2 
Amplitude at 1 kΩ load:
- I1 = 7 - 16 µA
- I2 = 7 - 16 µA

Differential sine +A / -A and +B / -B
Amplitude at 120 kΩ load:
- A = 0.6 - 1.2 V
- B = 0.6 - 1.2 V

Differential square-wave U1 /U1 and U2 / U2. Signal levels at 20 mA load current:
- low (logic "0") ≤ 0.5 V 
- high (logic "1") ≥ 2.4 V

Reference signal

One quasi-triangular I0 peek per revolution. Signal magnitude at 1 kW load:
- I0 = 2 - 8 µA (usable component)

One quasi-triangular +R and its complementary -R per revolution. Signals magnitude at 120 W load:
- R = 0.2 - 0.8 V (usable component)

One differential square-wave U0 / U0 per revolution. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V 
- high (logic "1") > 2.4 V


Maximum operating frequency


50 kHz


 

50 kHz


 

50xk kHz, when interpolation factor is 1,2,5,10
1000 kHz, when interpolation factor is 25. 50


Direction of signals
I2 lags I1 for clockwise rotation (viewed from shaft side)


+ B lags + A in clockwise rotation 
(viewed from shaft side)

U2 lags with U1 in clockwise rotation (viewed from shaft side)
Standard cable length3 m; without connector3 m; without connector3 m; without connector
Maximum cable length5 m25 m25 m

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L18B

The sealed linear encoder L18B is used to convert linear displacements of key machine components into electrical signals containing information about the value and direction of the displacement.

The encoder consists of a glass scale installed into a rigid hollow housing and a ball-bearing-guided reading head. To be able to work in harsh environments (lubricants and chips), the encoder has sealing lips.

The photoelectric unit of the reading head generates sinusoidal micro-current or TTL square-wave (standard RS422) output signals.

Three versions of output signals are available:

• L18B-A - Sinusoidal signals, with amplitude approx. 11 μApp, require an external subdividing electronics.

• L18B-AV - Sinusoidal signals, with amplitude approx. 1 Vpp, require external subdividing electronics.

• L18B-F - Square-wave signals, with integrated subdividing electronics for interpolation x1, x2, x5, x10, x25, x50.

 

MECHANICAL DATA

Measuring lengths (ML), mm




 

70; 120; 170; 220; 270; 320; 370; 420; 470; 520; 620; 720; 820; 920; 1020; 1140; 1240; 1340; 1440; 1540; 1640; 1740; 1840; 1940; 2040; 2140; 2240; 2340; 2440; 2540; 2640; 2740; 2840; 2940; 3040; 3140; 3240 
(other intermenate lenghts on request)

 

Accuracy grades to any meter within the 
ML (at 20°C)

 

- for ML 70 to 2040: ± 10; ±5 μm (optional)
- for ML 2040 to 3240: ± 10 μm

Grating period20 μm; 40 μm (optional)
Reference marks (RI)



 

- standard for ML ≤ 1020 mm: 35 mm from both ends of ML
- standard for ML > 1140 mm: 45 mm from both ends of ML
- optional: one RI at any location, or two or more RI's separated by distances of n x 50 mm or distance-coded

Max. traversing speed

 

- when interpolation factor is 1,2,5,10: 1 m/s
- when interpolation factor is 25: 0.5 m/s
- when interpolation factor is 50: 0.4 m/s

Required moving force with sealing lips< 3 N
Protection (IEC 529)
 
- without compressed air: IP53
- with compressed air (optional): IP64
Weight0.4 kg + 1.0 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (40 to 2000 Hz)≤ 30 m/s²
Permissible shock (11 ms)≤ 100 m/s²

ELECTRICAL DATA

VersionL18B-A ∫ 11 µAppL18B-AV ∫ 1 VppL18B-F Π TTL
Supply voltage+ 5 V ± 5 % / < 90 mA+ 5 V ± 5 % / < 120 mA+ 5 V ± 5 % / < 120 mA
Light sourceLEDLEDLED

Resolution
Depends on external subdividing electronicsDepends on external subdividing electronics
5; 1; 2.5; 0.5; 0.2; 0.1 µm (after 4 - fold dividing in subsequent electronics)
Incremental signals

Two sinusoidal I1 and I2 
Amplitude at 1 kΩ load:
- I1 = 7 - 16 µA
- I2 = 7 - 16 µA

Differential sine +A / -A and +B / -B
Amplitude at 120 kΩ load:
- A = 0.6 - 1.2 V
- B = 0.6 - 1.2 V

Differential square-wave U1 /U1 and U2 / U2. Signal levels at 20 mA load current:
- low (logic "0") ≤ 0.5 V 
- high (logic "1") ≥ 2.4 V

Reference signal

One quasi-triangular I0 peek per revolution. Signal magnitude at 1 kW load:
- I0 = 2 - 8 µA (usable component)

One quasi-triangular +R and its complementary -R per revolution. Signals magnitude at 120 W load:
- R = 0.2 - 0.8 V (usable component)

One differential square-wave U0 / U0 per revolution. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V 
- high (logic "1") > 2.4 V

 

Maximum operating frequency

50 kHz

 

50 kHz

 

50xk kHz, when interpolation factor is 1,2,5,10
1000 kHz, when interpolation factor is 25, 50
Direction of signalsI2 lags I1 at reading head displacement from left to right+ B lags + A at reading head displacement from left to rightU2 lags with U1 at reading head displacement from left to right
Maximum rise and fall time--< 0.5 μs
Standard cable length3 m; without connector3 m; without connector3 m; without connector
Maximum cable length5 m25 m25 m

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L18C

The sealed linear encoder L18C is used to convert linear displacements of key machine components into electrical signals containing information about the value and direction of the displacement.

The encoder consists of a glass scale installed into a rigid hollow housing and a ball-bearing-guided reading head. To be able to work in harsh environments (lubricants and chips), the encoder has sealing lips. Filtered air can be supplied into the housing of the encoder for extra protection.

The photoelectric unit of the reading head generates sinusoidal micro-current or TTL square-wave (standard RS422) output signals.

Two versions of output signals are available:

• L18C-A sinusoidal signals, with amplitude not smaller than 15 μApp, require an external subdividing electronics.

• L18C-F square-wave signals (TTL), with integrated subdividing electronics for interpolation x1, x2, x5, x10, x25, x50.

MECHANICAL DATA

Measuring lengths (ML), mm




 

70; 120; 170; 220; 270; 320; 370; 420; 470; 520; 620; 720; 820; 920; 1020; 1140; 1240; 1340; 1440; 1540; 1640; 1740; 1840; 1940; 2040; 2140; 2240; 2340; 2440; 2540; 2640; 2740; 2840; 2940; 3040; 3140; 3240 
(other intermenate lenghts on request)

 

Accuracy grades to any meter within the ML (at 20°C)
 

- for ML 70 to 2040: ± 10; ±5 μm 
- for ML 2040 to 3240: ± 10 μm

Grating period20 μm; 40 μm (optional)
Reference marks (RI)





 

- standard S1: middle of ML ± 2 mm 
- standard S2: 40 ± 2 mm from left end of ML
- optional: 40 ± 2 mm from right end of ML
one RI at any location, or two or more RI’s separated by distances of n x 50 mm

 

Max. traversing speed

 
- when interpolation factor is 1,2,5,10: 1 m/s
- when interpolation factor is 25: 0.5 m/s
- when interpolation factor is 50: 0.4 m/s
Required moving force with sealing lips< 3 N
Protection (IEC 529)- without compressed air: IP53
- with compressed air (optional): IP64
Weight0.4 kg + 1.0 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (40 to 2000 Hz)≤ 30 m/s²
Permissible shock (11 ms)≤ 100 m/s²

ELECTRICAL DATA

VersionL18C-A ∫ 11 µAppL18C-AV ∫ 1 VppL18C-F Π TTL
Supply voltage+ 5 V ± 5 % / < 90 mA+ 5 V ± 5 % / < 120 mA+ 5 V ± 5 % / < 120 mA
Light sourceLEDLEDLED

Resolution
Depends on external subdividing electronicsDepends on external subdividing electronics
5; 1; 2.5; 0.5; 0.2; 0.1 µm (after 4 - fold dividing in subsequent electronics)
Incremental signals

Two sinusoidal I1 and I2 
Amplitude at 1 kΩ load:
- I1 = 7 - 16 µA
- I2 = 7 - 16 µA

Differential sine +A / -A and +B / -B
Amplitude at 120 kΩ load:
- A = 0.6 - 1.2 V
- B = 0.6 - 1.2 V

Differential square-wave U1 /U1 and U2 / U2. Signal levels at 20 mA load current:
- low (logic "0") ≤ 0.5 V 
- high (logic "1") ≥ 2.4 V

Reference signal

One quasi-triangular I0 peek per revolution. Signal magnitude at 1 kW load:
- I0 = 2 - 8 µA (usable component)

One quasi-triangular +R and its complementary -R per revolution. Signals magnitude at 120 W load:
- R = 0.2 - 0.8 V (usable component)

One differential square-wave U0 / U0 per revolution. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V 
- high (logic "1") > 2.4 V

 

Maximum operating frequency

50 kHz

 

50 kHz

 

50xk kHz, when interpolation factor is 1,2,5,10
1000 kHz, when interpolation factor is 25, 50
Direction of signalsI2 lags I1 at reading head displacement from left to right+ B lags + A at reading head displacement from left to rightU2 lags with U1 at reading head displacement from left to right
Standard cable length3 m; without connector3 m; without connector3 m; without connector
Maximum cable length5 m25 m25 m

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L18T

The sealed linear encoder L18T is used to convert linear displacements of key machine components into electrical signals containing information about the value and direction of the displacement. The difference from encoder L18 series is that it has the other housing fixation and more stable thermal behaviour.

The encoder consists of a glass scale installed into a rigid hollow housing and a ball-bearing-guided reading head. To be able to work in harsh environments (lubricants and chips), the encoder has sealing lips. Filtered air can be supplied into the housing of the encoder for extra protection.

The photoelectric unit of the reading head generates sinusoidal micro-current or TTL square-wave (standard RS422) output signals.

Three versions of output signals are available:

• L18T-A - Sinusoidal signals, with amplitude approx. 11 μApp, require external subdividing electronics.

• L18T-AV - Sinusoidal signals, with amplitude approx. 1 Vpp, require external subdividing electronics.

• L18T- F - Square-wave, with integrated subdividing electronics for interpolation x1, x2, x5, x10, x 25, x50.

MECHANICAL DATA

Measuring lengths (ML), mm

 

70; 120; 170; 220; 270; 320; 370; 420; 470; 520; 620; 720; 820; 920; 1020; 1140; 1240 
(other intermenate lenghts on request)

Accuracy grades to any meter within the ML (at 20°C)

± 10; ± 5; ± 3 μm (optional)

Grating period20 μm; 40 μm (optional)
Reference marks (RI)



 

- standard for ML ≤ 1020 mm: 35 mm from both ends of ML
- standard for ML > 1140 mm: 45 mm from both ends of ML
- optional: one RI at any location, or two or more RI’s separated by distances of n x 50 mm or distance-coded

Max. traversing speed


 

- when interpolation factor is 1,2,5,10: 1 m/s
- when interpolation factor is 25: 0.5 m/s
- when interpolation factor is 50: 0.4 m/s

Required moving force with sealing lips< 3 N
Protection (IEC 529)
 
- without compressed air: IP53
- with compressed air (optional): IP64
Weight0.4 kg + 0.8 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (40 to 2000 Hz)≤ 30 m/s²
Permissible shock (11 ms)≤ 100 m/s²

ELECTRICAL DATA

VersionL18T-A ∫ 11 µAppL18T-AV ∫ 1 VppL18T-F Π TTL
Supply voltage+ 5 V ± 5 % / < 90 mA+ 5 V ± 5 % / < 120 mA+ 5 V ± 5 % / < 120 mA
Light sourceLEDLEDLED

Resolution

Depends on external subdividing electronics

Depends on external subdividing electronics

5; 1; 2.5; 0.5; 0.2; 0.1 µm (after 4 - fold dividing in subsequent electronics)

Incremental signals

Two sinusoidal I1 and I2 
Amplitude at 1 kΩ load:
- I1 = 7 - 16 µA
- I2 = 7 - 16 µA

Differential sine +A / -A and +B / -B
Amplitude at 120 kΩ load:
- A = 0.6 - 1.2 V
- B = 0.6 - 1.2 V

Differential square-wave U1 /U1 and U2 / U2. Signal levels at 20 mA load current:
- low (logic "0") ≤ 0.5 V 
- high (logic "1") ≥ 2.4 V

Reference signal

One quasi-triangular I0 peek per revolution. Signal magnitude at 1 kW load:
- I0 = 2 - 8 µA (usable component)

One quasi-triangular +R and its complementary -R per revolution. Signals magnitude at 120 W load:
- R = 0.2 - 0.8 V (usable component)

One differential square-wave U0 / U0 per revolution. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V 
- high (logic "1") > 2.4 V

Maximum operating frequency

50 kHz

 

50 kHz

 

50xk kHz, when interpolation factor is 1,2,5,10
1000 kHz, when interpolation factor is 25, 50
Direction of signalsI2 lags I1 at reading head displacement from left to right+ B lags + A at reading head displacement from left to rightU2 lags with U1 at reading head displacement from left to right
Standard cable length3 m; without connector3 m; without connector3 m; without connector
Maximum cable length5 m25 m25 m

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L23

Modular sealed photoelectric linear encoder L23 has measuring length up to 20 meters and more on special order. 

The encoder is used to convert linear displacements of machine key components into electrical signals containing information about the value and direction of the displacement. 

The encoder operates in reflected from metal band light beam. Metal band with made on its surface grating scale is fixed in rigid aluminium housing with double protection lips.

The encoder consists of several separate modules with length up to 3,0 m, which are jointed together, and reading head. 

The standard encoder has three square-wave TTL output signals: 2 main signals, shifted by 90 degrees and one reference signal.

MECHANICAL DATA

Measuring lengths (ML), mm

250, 300, 350, 400, 450, 500...20000 (more on option)

Accuracy grades to any meter within the ML (at 20°C)

± 10; ± 5; ± 3 μm (optional)

Grating period400 μm; 40 μm; 20 μm
Reference marks (RI)

- N: without reference mark
- M: every 50 mm 
- P (optional): RI number and place

Max. traversing speed

- when T = 400 μm and resolution 100, 50, 10 μm: 120 m/min
- when T = 40 μm and
- resolution 10.5 μm: 80 m/min
- resolution 1 μm: 25 m/min
- when T = 20 μm and
- resolution 5 μm: 60 m/min
- resolution 0.5 μm: 12 m/min

Required moving force with sealing lips< 4 N
Protection (IEC 529)- without compressed air: IP54
- with compressed air (optional): IP64
Weight0.4 kg + 2.8 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (10 to 2000 Hz)≤ 100 m/s²
Permissible shock (11 ms)≤ 150 m/s²
Coefficient of thermal expansion10.6 x 10-6 °C

ELECTRICAL DATA

VersionL23-F Π (TTL or HTL)
Supply voltage+ 5 V ± 5 %; 65 mA
+ 12 V ± 5 %; 65 mA
Light sourceLED
Resolution100, 50, 10, 5, 1, 0.5 μm (after 4 - fold in subsequent electronics)
Incremental signals

Differential square-wave U1 / U1 and U2 / U2

Reference signal

Differential square-wave U0 / U0

Signal levels at load current 20 mA

- low (logic "0") < 0.5 V at Up = ±5V
- high (logic "1") > 2.4 V at Up = ±5V
- low (logic "0") < 1.5 V at Up = ±12V (HTL)
- high (logic "1") > (Up - 2)V at Up = ±12V (HTL)

Direction of signalsU2 lags with U1 (displacement from left to right and head position down)
Standard cable length4 m armored; without connector
Maximum cable length25 m

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LK24

The sealed absolute photoelectric encoder LK24 is used to convert linear displacements of key machine components into electrical signals containing information about components absolute position.

The encoder consists of a glass scale installed into a rigid hollow housing and a ball-bearing guided reading head. To be able to work in harsh environments (lubricants and chips), the encoder has double level sealing lips. Filtered air can be supplied into the housing of the encoder for extra protection.

The encoder has two versions of serial interface SSI or BiSS C. On option third encoder version is available: with 2 analog sinusoidal signals with phase shift 90 o and amplitude approx. 1Vpp.

 

MECHANICAL AND ELECTRICAL DATA

Measuring lengths (ML), mm

70; 120; 170; 220; 270; 320; 370; 420; 470; 520; 570; 620; 720; 770; 820; 920; 1024; 1140; 1240; 1340; 1440; 1540; 1640; 1740; 1840; 2040; 2240; 2440; 2640; 2840; 3040; 3240.

Accuracy grades to any meter within the ML (at 20°C)

± 3 μm; ± 1 μm

Grating pitch20 μm
Resolution 1 Vppup to 0.1 μm (depending on CNC division factor)
Resolution absolute measure

1 μm; 0.1 μm

Incremental signal

sine wave 1 Vpp (optional)

Serial interface

SSI or BiSS

Max. traversing speed

120 m/min

Max. acceleration

30 m/s2

Required moving force< 4 N; ≤ 2.5 N on request
Protection (IEC 529)- without compressed air: IP54
- with compressed air: IP64
Weight0.42 kg + 1.32 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (55 to 2000 Hz)100 m/s²
Permissible shock (11 ms)150 m/s²
Permissible humidity (non condensed)20...80%
Power supply+ 5V; ± 5%
Standard cable length/max. cable length2.0 / 25.0 (100m. if power supply is min. 5V)
Electrical protectionsfrom inversion of power supply polarity; from short circuit on output port

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L35

The precision sealed linear encoder L35 is used to convert linear displacements of key machine components into electrical signals containing information about the value and direction of the displacements.

The encoder consists of a glass scale installed into a rigid hollow housing and a ball-bearing-guided reading head. To be able to work in harsh environments (cooling liquid, lubricants and chips), the encoder has two rows of sealing lips. Filtered air can be supplied into the housing of the encoder for extra protection from dust.

Characteristic feature of encoder is a rigid housing that provides better resistance to vibration and higher protection grade due two pairs of sealing lips.

Reference mark can be selected by magnet, which moves in horizontal groove on the front side of encoder (optional).

Three versions of output signals are available:

• L35-A - sinusoidal signals, with amplitude approx. 11 μApp.

• L35-AV- sinusoidal signals, with amplitude approx. 1 Vpp.

• L35-F - square-wave signals, type TTL or HTL (standard RS422) with integrated subdividing electronics for interpolation x1, x2, x5, x10, x25, x50.

MECHANICAL DATA

Measuring lengths (ML), mm

170; 220; 270; 320; 370; 420; 470; 520; 620; 720; 820; 920; 1020; 1140; 1240; 1340; 1440; 1540; 1640; 1740; 1840; 1940; 2040; 2140; 2240; 2340; 2440; 2540; 2640; 2740; 2840; 2940; 3040; 3140; 3240 
(other intermenate lenghts on request)

Accuracy grades to any meter within the ML (at 20°C)

- for ML 170 to 2040 mm: ± 5; ±3; ±2 μm 
- for ML 2040 to 3240: ± 10 μm

Grating period20 μm; 40 μm
Reference marks (RI)

- standard for ML ≤ 1020 mm: 35 mm from both ends of ML
- standard for ML > 1140 mm: 45 mm from both ends of ML
- optional: one RI at any location, or two or more RI’s separated by distances of n x 50 mm
- distance-coded: see drawing
- selection by magnets: standard - one magnet (RI) in ML middle

Max. traversing speed

- when interpolation factor is 1,2,5,10: 1 m/s (shortly 2m/s)
- when interpolation factor is 25: 0.5 m/s
- when interpolation factor is 50: 0.4 m/s

Required moving force with sealing lips< 5 N
Protection (IEC 529)- without compressed air: IP54
- with compressed air (optional): IP64
Weight0.4 kg + 2.8 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (40 to 2000 Hz)≤ 150 m/s²
Permissible shock (11 ms)≤ 300 m/s²

ELECTRICAL DATA

VersionL35-A ∫ 11µAppL35-AV ∫ 1 VppL35-F Π TTL; Π HTL
Supply voltage+ 5 V ± 5 % / < 90 mA+ 5 V ± 5 % / < 90 mA+ 5 V ± 5 % / < 120 mA; + 12 V ±5% / < 130 mA
Light sourceLEDLEDLED
ResolutionDepends on external subdividing electronics
 

Depends on external subdividing electronics
 

5; 2.5; 1; 0.5; 0.2; 0.1 μm (after 4 - fold dividing in subsequent electronics)
Incremental signals

Two sinusoidal I1 and I2 
Amplitude at 1 kΩ load:
- I1 = 7 - 16 µA
- I2 = 7 - 16 µA

Differential sine +A / -A and +B / -B
Amplitude at 120 kΩ load:
- A = 0.6 - 1.2 V
- B = 0.6 - 1.2 V

Differential square-wave U1 / U1and U2 / U2. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V at Up = ±5V 
- high (logic "1") > 2.4 V at Up = ±5V
- low (logic "0") < 1.5 V at Up = ±12V (HTL) 
- high (logic "1") > (Up - 2)V at Up = ±12V (HTL)

Reference signal

One quasi-triangular I0 peek per revolution. Signal magnitude at 1 kΩ load:
- I0 = 2 - 8 µA (usable component)

One quasi-triangular +R and its complementary -R per revolution. Signals magnitude at 120 Ω load:
- R = 0.2 - 0.8 V (usable component)

One differential square-wave U0 / U0 per revolution. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V at Up = ±5V 
- high (logic "1") > 2.4 V at Up = ±5V 
- low (logic "0") < 1.5 V at Up = ±12V(HTL) 
- high (logic "1") > (Up - 2)V at Up = ±12V (HTL)

Maximum operating frequency

50 kHz (v=1 m/s)
100 kHz (v=2 m/s shortly), where k - interpolation factor

50 kHz (v=1 m/s)
100 kHz (v=2 m/s shortly)

(50xk) kHz for k = 1, 2, 5, 10
100 kHz for k = 25, 50
Direction of signalsI2 lags I


 
+ B lags + A
 
U2 lags U1 (displacement from left to right and head position down respective glass scale)
Standard cable length3 m; without connector3 m; without connector3 m; without connector
Maximum cable length5 m25 m25 m

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L35T

The precision sealed linear encoder L35T is used to convert linear displacements of key machine components into electrical signals containing information about the value and direction of the displacements.

The encoder consists of a glass scale installed into a rigid hollow housing and a ball-bearing-guided reading head. To be able to work in harsh environments (cooling liquid, lubricants and chips), the encoder has two rows of sealing lips. Filtered compressed air can be supplied into the housing of encoder for extra protection from dust.

Characteristic feature of encoder is a rigid housing that provides better resistance to vibration and higher protection grade due two pairs of sealing lips.

Mounting of encoder on the object is made through two end housings with built-in devices to enhance the thermal stability.

Reference marks can be selected by magnet, which moves in horizontal groove on the front side of encoder (optional).

Three versions of output signals are available:

• L35T-A - sinusoidal signals, with amplitude approx. 11 μApp.

• L35T-AV -sinusoidal signals, with amplitude approx. 1 Vpp.

• L35T-F - square-wave signals, type TTL or HTL (standard RS422) with integrated subdividing electronics for interpolation x1, x2, x5, x10, x25, x50.

MECHANICAL DATA

Measuring lengths (ML), mm


 

170; 220; 270; 320; 370; 420; 470; 520; 620; 720; 820; 920; 1020; 1140; 1240; 1340; 1440; 1540; 1640; 1740; 1840; 1940; 2040; 2140; 2240; 2340; 2440; 2540; 2640; 2740; 2840; 2940; 3040; 3140; 3240 
(other intermenate lenghts on request)

Accuracy grades to any meter within the ML (at 20°C)
 

- for ML 170 to 2040 mm: ± 5; ±3; ±2 μm 
- for ML 2040 to 3240: ± 10 μm

Grating period20 μm; 40 μm
Reference marks (RI)




 

- standard for ML ≤ 1020 mm: 35 mm from both ends of ML
- standard for ML > 1140 mm: 45 mm from both ends of ML
- optional: one RI at any location, or two or more RI’s separated by distances of n x 50 mm
- distance-coded: see drawing
- selection by magnets: standard - one magnet (RI) in ML middle

Max. traversing speed


 

- when interpolation factor is 1,2,5,10: 1 m/s (shortly 2m/s)
- when interpolation factor is 25: 0.5 m/s
- when interpolation factor is 50: 0.4 m/s

Required moving force with sealing lips< 5 N
Protection (IEC 529)- without compressed air: IP54
- with compressed air (optional): IP64
Weight0.4 kg + 2.8 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (40 to 2000 Hz)≤ 150 m/s²
Permissible shock (11 ms)≤ 300 m/s²

ELECTRICAL DATA

VersionL35T-A ∫ µAppL35-AV ∫ 1 VppL35T-F Π TTL; Π HTL

Supply voltage
+ 5 V ± 5 % / < 90 mA+ 5 V ± 5 % / < 90 mA
+ 5 V ± 5 % / < 120 mA; + 12 V ±5% / < 130 mA
Light sourceLEDLEDLED

Resolution
Depends on external subdividing electronics
 

Depends on external subdividing electronics


5; 2.5; 1; 0.5; 0.2; 0.1 μm (after 4 - fold dividing in subsequent electronics)

Incremental signals

Two sinusoidal I1 and I2 
Amplitude at 1 kΩ load:
- I1 = 7 - 16 µA
- I2 = 7 - 16 µA

Differential sine +A / -A and +B / -B
Amplitude at 120 kΩ load:
- A = 0.6 - 1.2 V
- B = 0.6 - 1.2 V

Differential square-wave U1 / U1and U2 / U2. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V at Up = ±5V
- high (logic "1") > 2.4 V at Up = ±5V
- low (logic "0") < 1.5 V at Up = ±12V (HTL) 
- high (logic "1") > (Up - 2)V at Up = ±12V (HTL)

Reference signal

One quasi-triangular I0 peek per revolution. Signal magnitude at 1 kΩ load:
- I0 = 2 - 8 µA (usable component)

One quasi-triangular +R and its complementary -R per revolution. Signals magnitude at 120 Ω load:
- R = 0.2 - 0.8 V (usable component)

One differential square-wave U0 / U0 per revolution. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V at Up = ±5V
- high (logic "1") > 2.4 V at Up = ±5V
- low (logic "0") < 1.5 V at Up = ±12V(HTL) 
- high (logic "1") > (Up - 2)V at Up = ±12V (HTL)


Maximum operating frequency


50 kHz (v=1 m/s)
100 kHz (v=2 m/s shortly), where k - interpolation factor

50 kHz (v=1 m/s)
100 kHz (v=2 m/s shortly)

(50xk) kHz for k = 1, 2, 5, 10
100 kHz for k = 25, 50

 
Direction of signalsI2 lags I
 

+ B lags + A
 

U2 lags U1 (displacement from left to right and head position down respective glass scale)
Standard cable length3 m; without connector3 m; without connector3 m; without connector
Maximum cable length5 m25 m25 m

ACCESSORIES

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L37

The precision sealed linear encoder L37 is used to convert linear displacements of key machine components into electrical signals containing information about the value and direction of the displacements.

The encoder consists of a glass scale installed into a rigid hollow housing and a ball-bearing-guided reading head. To be able to work in harsh environments (cooling liquid, lubricants and chips), the encoder has two rows of sealing lips. Filtered air can be supplied into the housing of the encoder for extra protection from dust. The photoelectric unit of the reading head generates sinusoidal micro-current or square-wave output signals. 
Characteristic feature of encoder is a rigid housing that provides better resistance to vibration and higher protection grade due to two pairs of sealing lips.

L37 is fixed to the mounting surface at the midpoint. Reproducible thermal behavior is permitted by flexible fastening elements.

Reference mark can be selected by magnet, which moves in horizontal groove on the front side of encoder (optional).

Three versions of output signals are available:

- L37-А - sinusoidal signals, with amplitude approx. 11 μApp, require an external subdividing electronics.
- L37-АV- sinusoidal signals, with amplitude approx. 1 Vpp, require an external subdividing electronics.
- L37-F - square-wave signals, type TTL or HTL (standard RS422) with integrated subdividing electronics for interpolation x1, x2, x5, x10, x25, x50.

 

MECHANICAL DATA

Measuring lengths (ML), mm

140; 240; 340; 440; 540; 640; 740; 840; 940; 1.040; 1.140; 1.240; 1.340; 1.440; 1.540; 1.640; 1.740; 1.840; 2.040; 2.240; 2.440; 2.640; 2.840; 3.040; 3.240

Accuracy grades to any meter within the ML (at 20°C)

- for ML 140 to 2040 mm: ± 5; ± 3 (optional)
- for ML 2040 to 3240: ± 10 μm

Grating period20 μm; 40 μm
Reference marks (RI)

- every 50 mm.
- distance coded (see drawing)
- selectable: one RI at any location, two or more RI’s separated by distances of (n x 50 mm)
- selection by magnets: standard - one magnet (RI) in ML middle

Max. traversing speed

- when interpolation factor is 1,2,5,10: 1 m/s (shortly 2m/s)
- when interpolation factor is 25: 0.5 m/s
- when interpolation factor is 50: 0.4 m/s

Required moving force with sealing lips< 5 N
Protection (IEC 529)- without compressed air: IP54
- with compressed air (optional): IP64
Weight0.4 kg + 2.8 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (40 to 2000 Hz)≤ 150 m/s²
Permissible shock (11 ms)≤ 300 m/s²

ELECTRICAL DATA

VersionL37-A 11µAppL37-AV 1VppL37-F TTL; HTL
Supply voltage+ 5 V ± 5 % / < 90 mA+ 5 V ± 5 % / < 120 mA+ 5 V ± 5 % / < 120 mA; + 12 V ±5% / < 130 mA
Light sourceLEDLEDLED
ResolutionDepends on external subdividing electronics
 

Depends on external subdividing electronics
 

5; 2.5; 1; 0.5; 0.2; 0.1 μm (after 4 - fold dividing in subsequent electronics)
Incremental signals

Two sinusoidal I1 and I2 
Amplitude at 1 kΩ load:
- I1 = 7 - 16 µA
- I2 = 7 - 16 µA

Differential sine +A / -A and +B / -B
Amplitude at 120 kΩ load:
- A = 0.6 - 1.2 V
- B = 0.6 - 1.2 V

Differential square-wave U1 / U1and U2 / U2. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V at Up = ±5V 
- high (logic "1") > 2.4 V at Up = ±5V
- low (logic "0") < 1.5 V at Up = ±12V (HTL) 
- high (logic "1") > (Up - 2)V at Up = ±12V (HTL)

Reference signal

One quasi-triangular I0 peek per revolution. Signal magnitude at 1 kΩ load:
- I0 = 2 - 8 µA (usable component)

One quasi-triangular +R and its complementary -R per revolution. Signals magnitude at 120 Ω load:
- R = 0.2 - 0.8 V (usable component)

One differential square-wave U0 / U0 per revolution. Signal levels at 20 mA load current:
- low (logic "0") < 0.5 V at Up = ±5V 
- high (logic "1") > 2.4 V at Up = ±5V 
- low (logic "0") < 1.5 V at Up = ±12V(HTL) 
- high (logic "1") > (Up - 2)V at Up = ±12V (HTL)

Maximum operating frequency

50 kHz (v=1 m/s)
100 kHz (v=2 m/s shortly)

50 kHz (v=1 m/s)
100 kHz (v=2 m/s shortly)

(50xk) kHz for k = 1, 2, 5, 10
100 kHz for k = 25, 50
Direction of signals (displacement from left to right)I2 lags I


 
+ B lags + A
 
U2 lags U1 (displacement from left to right and head position down respective glass scale)
Standard cable length3 m; without connector3 m; without connector3 m; without connector
Maximum cable length5 m25 m25 m

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L50

Modular photoelectric sealed linear encoder L50 has measuring length from 3240 mm up to 30040 mm.

The encoder is used to convert linear displacements of key machine components into electrical signals containing information about the value and direction of the displacement.

The encoder determines position by detecting light reflected of a metal band. Metal band with 40 μm pitch scale is fixed in rigid aluminium housing with protection lips.

The encoder consists of several separate rigid modules with length up to 2.0 m, which are joined together, and reading head.

Two versions of output signals are available:

•- L50-AV - Sinusoidal signals, with amplitude approx. 1 Vpp, require external

• subdividing electronics. Resolution 0.1 μm is possible with respective external electronics.

•- L50-F - Square-wave signals, with integrated subdividing electronics for interpolation x1, x2, x5, x10.

 

MECHANICAL DATA

Measuring lengths (ML), mm
 

from 3240 up to 30040 (length of each module with steps 200 mm)

Accuracy grades to any meter within the ML (at 20°C)

± 10 μm/m

Grating period40 μm
Reference marks (RI)


 

- C: at coded distance 80 mm
- P: at constant step 50 mm
- E: selectable through magnet

Max. traversing speed

1 m/min

Required moving force with sealing lips< 6 N
Protection (IEC 529)- without compressed air: IP53
- with compressed air (optional): IP64
Weight1.8 kg + 3.3 kg/m
Operating temperature0...+50°C
Storage temperature-20...+70°C
Permissible vibration (40 to 2000 Hz)≤ 100 m/s²
Permissible shock (11 ms)≤ 300 m/s²
Coefficient of therman expansion10.6 x 10-6 °C

ELECTRICAL DATA

VersionL50-AV ∫ 1 VppL50-F Π TTL
Supply voltage+ 5 V ± 5 % / 100 mA (120 Ω)+ 5 V ± 5 % / 150 mA (120 Ω)
Light sourceLEDLED
Resolution

up to 0.1 µm depending on external subdividing electronics

10; 5; 1; 0.5 μm (after 4 - fold dividing in subsequent electronics)
 
Incremental signalsDifferential sine +A / -A and +B / -B
Amplitude at 120 kΩ load:
- A = 0.6 - 1.2 V
- B = 0.6 - 1.2 V

Differential square-wave U1 / U1 and U2 /U2. Signal levels at 20 mA load current:
- low (logic "0") ≤ 0.5 V 
- high (logic "1") ≥ 2.4 V

Reference signal

Quasi-triangular R magnitude at 120 Ω load:
- R = 0.25 - 0.8 V (usable component)

One differential square-wave U0 / U0 per revolution. Signal levels at 20 mA load current:
- low (logic "0") ≤ 0.5 V 
- high (logic "1") ≥ 2.4 V

Direction of signalsB lags A at reading head displacement from left to rightU2 lags U1 at reading head displacement from left to right
Standard cable length4 m4 m
Maximum cable length150 m50 m

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二、實物圖、安裝方法及使用注意事項:

1、precizika立陶宛光柵尺實物圖:

 

 

2、precizika立陶宛光柵尺安裝指導

光柵尺線位移傳感器的安裝比較靈活,可安裝在機床的不同部位。

*般將主尺安裝在機床的工作臺(滑板)上,隨機床走刀而動,讀數頭固定在床身上,盡可能使讀數頭安裝在主尺的下方。其安裝方式的選擇必須注意切屑、切削液及油液的濺落方向。如果由于安裝位置限制必須采用讀數頭朝上的方式安裝時,則必須增加輔助密封裝置。另外,*般情況下,讀數頭應盡量安裝在相對機床靜止部件上,此時輸出導線不移動易固定,而尺身則應安裝在相對機床運動的部件上(如滑板)。

光柵尺線位移傳感器安裝基面

安裝光柵尺傳感器時,不能直接將傳感器安裝在粗糙不平的機床身上,更不能安裝在打底涂漆的機床身上。光柵主尺及讀數頭分別安裝在機床相對運動的兩個部件上。用千分表檢查機床工作臺的主尺安裝面與導軌運動的方向平行度。千分表固定在床身上,移動工作臺,要求達到平行度為0.1mm/1000mm以內。如果不能達到這個要求,則需設計加工*件光柵尺基座。

基座要求做到:(1)應加*根與光柵尺尺身長度相等的基座(基座長出光柵尺50mm左右)。(2)該基座通過銑、磨工序加工,其平面平行度0.1mm/1000mm以內。另外,還需加工*件與尺身基座等*的讀數頭基座。讀數頭的基座與尺身的基座總共誤差不得大于±0.2mm。安裝時,調整讀數頭位置,達到讀數頭與光柵尺尺身的平行度為0.1mm左右,讀數頭與光柵尺尺身之間的間距為1~1.5mm左右。

光柵尺線位移傳感器主尺安裝

將光柵主尺用M4螺釘上在機床安裝的工作臺安裝面上,但不要上緊,把千分表固定在床身上,移動工作臺(主尺與工作臺同時移動)。用千分表測量主尺平面與機床導軌運動方向的平行度,調整主尺M4螺釘位置,使主尺平行度滿足0.1mm/1000mm以內時,把M2螺釘上緊。

在安裝光柵主尺時,應注意如下三點:

(1) 在裝主尺時,如安裝超過1.5M以上的光柵時,不能象橋梁式只安裝兩端頭,尚需在整個主尺尺身中有支撐。(2)在有基座情況下安裝好后,用*個卡子卡住尺身中點(或幾點)。(3)不能安裝卡子時,用玻璃膠粘住光柵尺身,使基尺與主尺固定好。

光柵尺線位移傳感器讀數頭的安裝

在安裝讀數頭時,*先應讀數頭的基面達到安裝要求,然后再安裝讀數頭,其安裝方法與主尺相似。后調整讀數頭,使讀數頭與光柵主尺平行度在0.1mm之內,其讀數頭與主尺的間隙控制在1~1.5mm以內。

光柵尺線位移傳感器限位裝置

光柵線位移傳感器全部安裝完以后,*定要在機床導軌上安裝限位裝置,以免機床加工產品移動時讀數頭沖撞到主尺兩端,從而損壞光柵尺。另外,用戶在選購光柵線位移傳感器時,應盡量選用超出機床加工尺寸100mm左右的光柵尺,以留有余量。

光柵尺線位移傳感器檢查

光柵線位移傳感器安裝完畢后,可接通數顯表,移動工作臺,觀察數顯表計數是否正常。

在機床上選取*個參考位置,來回移動工作點至該選取的位置。數顯表讀數應相同(或回零)。另外也可使用千分表(或百分表),使千分表與數顯表同時調至零(或記憶起始數據),往返多次后回到初始位置,觀察數顯表與千分表的數據是否*。

通過以上工作,光柵尺線位移傳感器的安裝就完成了。但對于*般的機床加工環境來講,鐵屑、切削液及油污較多。因此,傳感器應附帶加裝護罩,護罩的設計是按照傳感器的外形截面放大留*定的空間尺寸確定,護罩通常采用橡皮密封,使其具備*定的防水防油能力。

3、precizika立陶宛光柵尺使用注意事項

(1)光柵尺傳感器與數顯表插頭座插拔時應關閉電源后進行。

(2)盡可能外加保護罩,并及時清理濺落在尺上的切屑和油液,嚴格防止任何異物進入光柵尺傳感器殼體內部。

(3)定期檢查各安裝聯接螺釘是否松動。

(4)為延長防塵密封條的壽命,可在密封條上均勻涂上*薄層硅油,注意勿濺落在玻璃光柵刻劃面上。

(5) 為光柵尺傳感器使用的可靠性,可每隔*定時間用酒*清洗擦拭光柵尺面及指示光柵面,保持玻璃光柵尺面清潔。

(6) 光柵尺傳感器嚴禁劇烈震動及摔打,以免破壞光柵尺,如光柵尺斷裂,光柵尺傳感器即失效了。

(7) 不要自行拆開光柵尺傳感器,更不能任意改動主柵尺與副柵尺的相對間距,否則*方面可能破壞光柵尺傳感器的*度;另*方面還可能造成主柵尺與副柵尺的相對摩擦,損壞鉻層也就損壞了柵線,以而造成光柵尺報廢。

(8) 應注意防止油污及水污染光柵尺面,以免破壞光柵尺線條紋分布,引起測量誤差。

(9) 光柵尺傳感器應盡量避免在有嚴重腐蝕作用的環境中工作,以免腐蝕光柵鉻層及光柵尺表面,破壞光柵尺質量。

三、常見故障及維修內容:

1、“軟斷線”報警。

2、移動機床某*軸時發生“跟隨誤差過大”報警。

3、機床某*軸移動時機床震動比較厲害數據不平穩。

4、光柵尺找不到原點(也稱零點或參考點)。

5、在使用過程中產生25000異常報警。

6、機床某*軸光柵尺在測量過程中數據丟失或計數不準。

7、開機后,出現某*軸正反方向運動正常,但機床無法進行回參考點。

8、機床出現某*軸緩慢向正方向運動,系統無報警。

9、某*軸在回參考點不準的現象,但是使用半閉環回參考點*。

10、光柵尺出現“445”報警。

11、當某*軸執行返參考點指令時,出現1160報警。

12、光柵尺不計數或者計數不準。

、、、、、、

四、產品銷售、維修及網點:

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保修*年(除天災、電壓不穩定、人為使用不當不保修)

 

JSC Precizika Metrology普瑞斯卡*成立于1991年,是歐洲立陶宛與美國的*家合資*,歷史。從事設計、生產各種編碼器、光柵及光柵制品。PRECIZIKA的直線光柵和碼盤是歐美多數主流光柵尺和編碼器廠家的*關鍵部品,同時PRECIZIKA給他們做部分光柵尺和旋轉編碼器的OEM產品。PRECIZIKA產品的特點是*度*,分辨率*,質量穩定,*有系列光柵尺和編碼器產品都具有方波和正弦波兩種輸出方式可選擇。PRECIZIKA產品在數控機床、轉臺、測量儀器及各種自動化領域內應用廣泛。立陶宛普瑞斯卡PRECIZIKA編碼器

產品范圍:立陶宛普瑞斯卡PRECIZIKA編碼器

立陶宛普瑞斯卡PRECIZIKA光柵、普瑞斯卡PRECIZIKA直線光柵尺、普瑞斯卡PRECIZIKA編碼器、普瑞斯卡PRECIZIKA普瑞斯卡PRECIZIKA旋轉編碼器、普瑞斯卡PRECIZIKA角度編碼器、普瑞斯卡PRECIZIKA數顯表、普瑞斯卡PRECIZIKA編碼盤

主要型號:

A28、A36、A42M、A75M、AK50、A58、AK58、A58H、A58H1、A58HE、A58HM、A90H、A110、A170、A170H、AM36、AM58、L18、L18B、L18C、L18T、L23、LK24、L35、L35T、L50、MT、CMT、PCMT、CS 3000-3、CS 5500

蘇州澤升*密機械儀器有限**經銷立陶宛普瑞斯卡PRECIZIKA光柵、普瑞斯卡PRECIZIKA直線光柵尺、普瑞斯卡PRECIZIKA編碼器、普瑞斯卡PRECIZIKA普瑞斯卡PRECIZIKA旋轉編碼器、普瑞斯卡PRECIZIKA角度編碼器、普瑞斯卡PRECIZIKA數顯表、普瑞斯卡PRECIZIKA編碼盤。歡迎有需求的客戶前來咨詢、洽談!

蘇州澤升*密機械儀器有限*是*家集研發、工程、銷售、技術服務于*體的現代化企業,是*自動化領域具競爭力的設備供應商。*主要經營歐美和日韓 等發達*的機電*體化設備、*分析檢測儀器、環境與新能源工業設備及電動工具等工控自動化產品。 憑借**的技術與商務團隊, *在為客戶帶來*產品的同時還可提供自動化工程技術服務及成套解決方案。

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    請輸入計算結果(填寫阿拉伯數字),如:三加四=7
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