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The positive pulse signal will be applied to the anode pin. The cathode pin will be grounded. No additional drawings are required if this option is specified. Must be ordered with positive -P polarity. Four pin sockets are provided, which accept pins of 0. A positive pulse signal will be applied to one pin socket for the anode. The other three pin sockets one of which will be the cathode will be grounded. A positive pulse will be applied to the diode anode pin Pins and will be grounded.
Pin 14 will be made accessible through a solder terminal. If the -T1B option is also ordered, pin 14 will be made accessible through a DB-9 connector instead, suitable for mating to a third-party temperature controller. Four mounting holes on a 8. Typically ordered in combination with the -T1B option. A negative pulse will be applied to the diode cathode pin Typically ordered in combination with the -T1C option.
Must be ordered with negative -N polarity. This is the same as the -P1C option, except that the diode has no internal 25 Ohm resistance. A socket is provided that will accept 3-pin 5. Click on the hyperlink for a pinout drawing. The laser anode is on pin 1, and the laser cathode is on pin 3 and is common to the photodiode cathode and the case.
Access to pin 2 the photodiode anode is not provided. The signal will be applied to pin 5, the laser anode. All other pins , will normally be grounded. No access is provided to the thermal control pins, unless the -T4B option is ordered.
The user must confirm that the pulser polarity is appropriate for the DUT. Not suitable for models that require a transformer ratio greater than 1. The signal will be applied to one pin. All other pins will be grounded.
One pin will be driven with the specified polarity, and one pin will be grounded. A flexible cable connects the slide-on socket to the output module. A male DB-9 connector is provided on the output module, which provides access to the thermal control pins of the diode. DB-9 pin 2 connects to diode pin 2 TH. DB-9 pin 3 connects to diode pin 5 TH.
DB-9 pin 5 connects to diode pin 14 TEC-. The remaining DB-9 pins are unconnected. Pins 3, 4, 6, and 7 of the diode are grounded. Access to the photodiode, if present, is not provided. This option requires the -P1B option. This option is designed for compatibility with Thorlabs temperature controllers and Lumics laser diodes. It may be suitable for others as well. DB-9 pin 2 connects to diode pin 1 TH.
DB-9 pin 3 connects to diode pin 2 TH. DB-9 pin 5 connects to diode pin 7 TEC-. Pins 4 and 5 of the diode are grounded. Pin 3 is unconnected. This option is designed for compatibility with Thorlabs temperature controllers and certain QPhotonics laser diodes.
DB-9 pin 2 connects to diode pin 3 TH. DB-9 pin 3 connects to diode pin 4 TH. Pins 2, 5, 6, and 7 of the diode are grounded.
This is similar to the -T1B option, except DUT pins 3 and 4 are used for the thermistor, instead of 2 and 5. DB-9 pin 2 connects to diode pin 11 TH. DB-9 pin 3 connects to diode pin 12 TH. Pins and of the diode are grounded. This option requires the -P4B option. This option is designed for compatibility with Thorlabs temperature controllers and Qphotonics laser diodes.
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