User Manual for gentec-eo models including: OEM PCB External PCB, OEM PCB, External PCB, PCB

Marie-Christine Nadeau

OEM PCB User Manual Amplification and anticipation for UD disks 3.0 English Download

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200815-Manual-OEM-PCB-Rev-3.0
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WARRANTY
All Gentec-EO products carry a one-year warranty from the date of shipment on material or workmanship defects when used under normal operating conditions. Gentec-EO will repair or replace, at its sole discretion, any product that proves to be defective during the warranty period. The warranty does not cover damages caused by product misuse, product modifications, accidents, abnormal operating or handling conditions, or third-party battery leakage. Any attempt by an unauthorized person to alter or repair the product voids the warranty. Gentec-EO is not liable for consequential damages of any kind.

CLAIMS
For warranty service, please contact your Gentec-EO representative or fill out an RMA request: https://www.gentec-eo.com/contact-us/support-rma-request To help us answer your request more efficiently, please have your product serial number ready before contacting customer support. Upon receipt of return authorization, ship the product according to the RMA instructions. Do not ship items without a return authorization. Transport is at the customer's expense, in both directions, unless the product has been received damaged or non-functional. Gentec-EO assumes no responsibility for the damage caused in transit.

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TABLE OF CONTENTS
1. OEM PCB .................................................................................................................................................................... 4 1.1. Introduction........................................................................................................................................................... 4 1.2. Specifications ....................................................................................................................................................... 4 1.3. Power supply for standard OEM PCB .............................................................................................................. 5 1.4. Power supply for 28V OEM PCB........................................................................................................................ 5 2. OPERATION................................................................................................................................................................ 5 2.1. Connecting the disk to the PCB......................................................................................................................... 5 2.2. Avoiding noise ...................................................................................................................................................... 5 2.3. Removing the anticipation.................................................................................................................................. 6 2.4. Adjusting the OEM PCB ...................................................................................................................................... 6 2.5. Solder connections .............................................................................................................................................. 7 3. DETECTOR SPECIFICATIONS UP/XLP ................................................................................................................. 9

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1. OEM PCB
1.1. INTRODUCTION
The OEM PCB contains 1 amplification circuit and 1 anticipation circuit. The circuits are wired in series. The OEM PCB requires only 1 single power supply. The negative power is generated on board. The OEM PCB gain is factory-adjusted, but there is a potentiometer for fine-tuning. The anticipation potentiometer is set at mid-range and may have to be tuned with the OEM head. There is also a potentiometer to adjust the offset of the amplification circuit.

1.2. SPECIFICATIONS

The following specifications are based on a one-year calibration cycle, an operating temperature of 18 to 85ºC (64 to 185ºF) and a relative humidity not exceeding 80 %.

Signal input range
Output voltage Recommended load Impedance Response time (accelerated) Maximum temperature Output impedance Input impedance Dimensions Weight
Output and power Connector type
Disc connector
Connector hole size Connector hole spacing
Power supply range and noload current consumption

Standard OEM PCB

28V OEM PCB specifications

-0.7 to 2.6V -0.3 to VDD-3 Volts to a maximum of 12 V

-0.7 to 2.6V
- 0,3 to VDD-2 V when powered 5 to 15 V -0.3 to 12.5 V when powered 15 to 28 V

10 M

Head dependent

85 ºC

50 ohms

>10 M

41 (L) x 29 (W) x 18 max (H) mm

10 g
4 pins Male Molex: part number 22-27-2041 4 pins Female Molex: part number: 22-01-3047
Terminal part number: 08-50-0032 3 pins Male Molex: part number 22-27-2031 3 pins Female Molex: part number 22-01-3037
Terminal part number: 08-50-0032
38 mils

100 mils

External power supply 12 to 16 VDC with 8 mA no load.

5 to 15 VCC with 8 mA to 11 mA no load, 15 to 28 VCC with 11mA to 12 mA no load.

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1.3. POWER SUPPLY FOR STANDARD OEM PCB

The Standard OEM PCB needs only a positive power supply, the negative power supply is generated on-board. The Standard OEM PCB is protected against voltage inversion and voltage spikes. The internal voltage is limited via a 15 V zener diode. The maximum supply is 16 V. Do not connect the signal output to the power connection; it will damage the PCB.
The maximum output voltage is limited by the voltage drop of the analog circuit. The output formula is -0.3 to VDD-3 V to a maximum of 12 V. Here is a table for quick reference.

Power supply voltage (VDD) 16 V 15 V 14 V 13 V 12 V

Maximum Output 12 V 12 V 11 V 10 V 9 V

1.4. POWER SUPPLY FOR 28V OEM PCB

The 28V OEM PCB needs only a positive power supply, the negative power supply is generated on-board. The 28V OEM PCB is protected against voltage inversion and voltage spikes. The internal voltage is limited via a 15 V LDO regulator. The maximum supply is 28 V. Do not connect the signal output to the power connection; it will damage the PCB.
The maximum output voltage is limited by the voltage drop of the analog circuit. The output formula is -0.3 to VDD-2 V to a maximum of 15 V supplied voltage. Here is a table for quick reference.

Power supply voltage (VDD) 15 V to 28 V 14 V 13 V 12 V

Maximum Output 12.5 V 12 V 11 V 10 V

2. OPERATION
2.1. CONNECTING THE DISK TO THE PCB
We recommend keeping the distance between the disk and the PCB as short as possible. When the disk is less than 3 inches apart from the PCB, use two 26-gauge wires. Connect the disk using the molex 3 pin connector. If the disk is far from the PCB, it is recommended to use a shielded two wire cable, ex: Belden # "9397 black". The output pad is P4 or pin 1 of J1. The cable length between the PCB and the measuring device should be less than 2 meters.
2.2. AVOIDING NOISE
The OEM PCB may have a high gain configuration, making it very sensitive to external noise. It is recommended to shield the OEM PCB in a metal enclosure. It is also recommended to connect the GND to all parts touching the disk. If you still have noise, you will have to shield the disk, wires and PCB.

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2.3. REMOVING THE ANTICIPATION
If the OEM PCB is in a noisy environment, the anticipation circuit can sometimes cause additional noise in the measurement. To remove the anticipation, remove Resistor R22, see Fig. 1-4. You will need to adjust the offset. See section 2.5. The gain will not change.

2.4. ADJUSTING THE OEM PCB
The OEM PCB has 3 potentiometers:
· Potentiometer R7 is the offset adjustment. · Potentiometer R5 is the gain adjustment. · Potentiometer R6 is anticipation adjustment.
The gain, offset, and anticipation are factory-adjusted, and have a ± 30 % adjustment range.
Procedure:
1. Connect the disk using the 3-pin female connector. The center pin is not used. 2. Insert the Output/power 4-pin female Molex connector. 3. Plug the power supply. 4. Plug the output to a voltmeter. 5. Wait until the sensor is thermally stabilized. Adjust to zero the offset with R7. 6. Turn on the light source. If necessary, adjust the Gain using R5. 7. To adjust the anticipation, plug the output to an oscilloscope.
Step 1: Turn on the light source,
Step 2: Look at the shape of the output signal. If the signal is too slow, turn R6 counterclockwise. If the signal is too fast turn R6 clockwise.
Step 3: Go to step 1

OEM PCB

Offset Anticipation

(R7)

(R6)

Gain
(R5)

Fig. 1-1 The OEM PCB potentiometer

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2.5. SOLDER CONNECTIONS
Before soldering to the PCB, check the solder pad connections, as they will be reversed if soldering to the back side.

Fig. 1-1 View of the Standard OEM PCB IC side

Fig. 1-3 View of the 28V OEM PCB IC side

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Fig. 1-2 View of the Standard OEM PCB potentiometer side

Fig. 1-3 View of the 28V OEM PCB potentiometer side Fig. 1-4 Example of OEM PCB

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3. DETECTOR SPECIFICATIONS UP/XLP
See the UP/XLP user manual for full specifications. Only the specifications related to OEM PCB are printed here.
The following specifications are based on a one-year calibration cycle, an operating temperature of 15 to 28°C, and a relative humidity not exceeding 80%. Store between 10 and 65°C, with relative humidity not exceeding 90%.
While spectral curve calibration may be provided with OEM PCB products, adjustments for wavelength must be applied by the end user. The OEM PCB supports calibration at a single wavelength only.

UP(F)10K-2S-H5-L Power noise level Typical rise time (0-95%) Typical sensitivity Dimensions (mm)
Weight (head only)

0.2 mW with anticipation 0.1 mW without anticipation
3.0 s (1.1 s with anticipation)
2 V/W
UP10K: 50(H) x 50(W) x 27(D) UPF10K: 50(H) x 50(W) x 35(D)
UP10K: 0.20 kg UPF10K: 0.21 kg

UP12E-...-H5-...
Power noise level Typical rise time (0-95%) Typical sensitivity Dimensions (mm) Weight (head only)

10S -H5 With PCB 0.5 mW with anticipation 0.25 mW without anticipation 0.3 s (with anticipation)
400 mV/W
10S: 38(H) x 38 (W) x 36.6 (D)
10S: 0.20 kg

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UP19K-...-Hx-... Power noise level Typical rise time (0-95%) Typical sensitivity
Dimensions (mm)
Weight (head only)

15S / 30H / 50L / 100DI / 110F / 150W -H5 and 15S / 110F / 150DI / 200W -H9 With PCB
With anticipation H5: 0.4 mW, H9: 1.2 mW e Without anticipation H5: 0.2 mW, H9: 0.6 mW e
0 H5: 0.5 s (with anticipation) H9: 1.5 s (with anticipation)
15S-H5: 400 mV/W 15S-H9: 200mV/W
30H: 200 mV/W 50L: 120 mV/W 100DI: 55 mV/W 110F: 55 mV/W 150W: 50 mV/W 150DI: 50 mV/W 200W: 30 mV/W
15S: 50(H) x 50(W) x 25.6(D) 30H: 50(H) x 50(W) x 61.3(D) 50L: 76.2(H) x 76.2(W) x 78.6(D) 100DI: 50(H) x 50(W) x 38(D) 110F: 50(H) x 50(W) x 67.8(D) 150W: 50(H) x 50(W) x 38(D) 150DI: 50(H) x 50(W) x 38(D) 200W: 50(H) x 50(W) x 38(D)
15S: 0.20 kg 30H: 0.25 kg 50L: 0.52 kg 100DI: 0.46 kg 110F: 0.29 kg 150W: 0.28 kg 150DI: 0.46 kg 200W: 0.28 kg

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UP19K-...-W5-... Power noise level

UP19K-15S / 30H / 50L / 50F / 50W / 50DI -W5
0.4 mW with anticipation d 0.2 mW without anticipation d

Typical rise time (0-95%)

1.4 s (with anticipation)

15S: 400 mV/W

30H: 200 mV/W

Typical sensitivity

50L: 120 mV/W 50F: 120 mV/W

50W: 120 mV/W

50DI: 120 mV/W

15S: 50(H) x 50(W) x 25.6(D)

30H: 50(H) x 50(W) x 61.3(D)

Dimensions (mm)

50L: 76.2(H) x 76.2(W) x 78.6(D) 50F: 54.2(H) x 54.2(W) x 60.6(D)

50W: 50(H) x 50(W) x 38(D)

50DI: 50(H) x 50(W) x 38(D)

15S: 0.20 kg

30H: 0.25 kg

Weight (head only)

50L: 0.52 kg 50F: 0.29 kg

50W: 0.28 kg

50DI: 0.46 kg

d. Noise level measured using P-LINK (USB). Noise level is dependent on acquisition system.

UP25N(M)-...-Hx-...
Power noise level
Typical rise time (0-95%) Typical sensitivity Dimensions (mm) Weight (head only)

UP25N-40S / 100H -H9 UP25N-250F-H12 UP25M-350W-H12 With anticipation 40S / 100H: 2 mW e 250F-H12: 20 mW e
350W-H12: 20 mW e Without anticipation 40S / 100H: 1 mW e 250F-H12: 10 mW e 350W-H12: 10 mW e H9: 1.3 s (with anticipation) H12: 2 s (with anticipation) 40S-H9: 150 mV/W 100H-H9: 60 mV/W 250F-H12: 24 mV/W 350W-H12: 24 mV/W
See UP user manual
See UP user manual

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UP50N(M)-...-W9-... Power noise level Typical rise time (0-95%) Typical sensitivity Dimensions (mm)

UP50N-40S / 50H -W9 UP50M-50W -W9
6 mW with anticipation d 3 mW without anticipation d
16 s (3.5 s with anticipation)
40S: 150 mV/W 50H: 120 mV/W 50W: 120 mV/W
See UP user manual

Weight (head only)

See UP user manual

d Noise level measured using P-LINK (USB). Noise level is dependent on acquisition system.

UP52N(M)-...-QED-... Power noise level Typical rise time (0-95%)
Typical sensitivity
Dimensions (mm)

UP52N-50S/100H/150F-QED UP52M-300W-QED
30mW with anticipation d 15 mW without anticipation d
5 s (with anticipation)
50S : 120 mV/W 100H : 60 mV/W 150F : 40 mV/W 300W : 20 mV/W
See UP user manual

Weight (head only)

See UP user manual

d With PCB : Noise level measured using P-LINK (USB). Noise level is dependent on acquisition system.

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UP55N(M)-...-Hx-... UP60N(M)-...-Hx-...
Power noise level
Typical rise time (0-95%) Typical sensitivity Dimensions (mm)

UP55N-40S / 100H -H9 UP55N-300F -H12 UP55N-300DI -H12 UP55N-400DI -HD UP55M-500W -H12 UP55M-700W -HD
With anticipation: H9: 4mW e
H12: 30 mW e HD: 90 mW e Without anticipation H9: 2mW e H12:15 mW e HD: 45 mW e
H9: 2 s (with anticipation) H12: 3 s (with anticipation) HD: 5s (with anticipation)
40S: 150 mV/W 100H: 60 mV/W 300F: 20 mV/W 300DI : 20mV/W 400DI : 15mV/W 500W: 15 mV/W 700W: 8 mV/W
See UP user manual

Weight (head only)

See UP user manual

e Noise level measured using P-LINK (USB). Noise level is dependent on acquisition system.

UP55N(M)-...-VR-... Power noise level Typical rise time (0-95%)
Typical sensitivity
Dimensions (mm) Weight (head only)

UP55N-50S/100H/150F-VR UP55M-200W-VR
30mW with anticipation d 15 mW without anticipation d
5 s (with anticipation)
50S : 120 mV/W 100H : 60 mV/W 150F : 40 mV/W 200W : 30 mV/W
See UP user manual
See UP user manual

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UP55G-...-HX-... UP60G-...-HX-... Power noise level
Typical rise time (0-95%)
Typical sensitivity
Dimensions (mm)
Weight (head only)

UP55G-500F-H12 UP55G-600F-HD See UP user manual See UP user manual See UP user manual See UP user manual See UP user manual



References

Microsoft Word 2021