585: Difference between revisions

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The 585A facelift model was introduced in 1963 and discontinued after 1971.   
The 585A facelift model was introduced in 1963 and discontinued after 1971.   


The 58x series were the first Tek scopes with [[distributed deflection plates]] and the last with a [[distributed amplifier]].
The 58x series were the first Tek scopes with [[distributed deflection plates]], the first Tek scopes to use a cross-wound continuous delay line, and the last with a [[distributed amplifier]].
At 100 MHz (down-rated to 95 MHz in 1962 and 85 MHz for the 585A) with the [[80|Type 80 plug-in]] and up to 85 MHz with the dual-channel [[82|Type 82]],  
 
they were the highest-speed general purpose scopes of Tek's tube scope era. (The 1 GHz [[519]] was specialized with no vertical amplifier.)
At 100 MHz (down-rated to 95 MHz in 1962 and 85 MHz for the 585A in 1963) with the [[80|Type 80 plug-in]] and up to 85 MHz with the dual-channel [[82|Type 82]], they were the highest-speed general purpose scopes of Tek's tube scope era. (The 1 GHz [[519]] was specialized with no vertical amplifier.)


The 585's front panel layout is almost identical to the [[545A]] that came out at the same time. The 585 also shares internal construction and circuits such as the power supply with the [[535]]/[[545]] line of scopes.
The 585's front panel layout is almost identical to the [[545A]] that came out at the same time. The 585 also shares internal construction and circuits such as the power supply with the [[535]]/[[545]] line of scopes.
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=== Plug-in Interface ===
=== Plug-in Interface ===
The 585 uses [[580-series plug-ins]] which look like [[letter-series and 1-series plug-ins]]  
The 585 uses [[580-series plug-ins]] which look like [[letter-series and 1-series plug-ins]]  
but are electrically different.
but are electrically different. The main difference is the impedance of the signal that passes
The main difference is the impedance of the signal that passes
through the interface from the plug-in to the mainframe.
through the interface from the plug-in to the mainframe.
In 530/540/550-series scopes, the plug-in expects the mainframe to be a high impedance load,
In 530/540/550-series scopes, the plug-in expects the mainframe to be a high impedance load,
driving tube grids in the mainframe.
driving tube grids in the mainframe.
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Starting at serial number 1071 (and sometimes retrofitted to earlier instruments), the dual-triode  
Starting at serial number 1071 (and sometimes retrofitted to earlier instruments), the dual-triode  
Schmitt trigger circuit was replaced by an [[STD615]] 10 mA [[tunnel diodes|tunnel diode]] AC-coupled to the  
Schmitt trigger circuit was replaced by an [[STD615]] 10 mA [[tunnel diodes|tunnel diode]] AC-coupled to the base-emitter junction of an [[OC171]] germanium PNP transistor as a pulse amplifier.   
base-emitter junction of an [[OC171]] germanium PNP transistor as a pulse amplifier.   


The slower "B" timebase uses a Schmitt trigger circuit.
The slower "B" timebase uses a Schmitt trigger circuit.


=== Vertical Signal Path ===
=== Vertical Signal Path ===
Like the [[545]], [[551]], and [[555]], the 585 uses two [[distributed amplifier]]s in the vertical signal path,  
Like the [[545]], [[551]], and [[555]], the 585 uses two [[distributed amplifier]]s in the vertical signal path, one with seven differential [[6DJ8]] stages driving a helically-wound, differential [[delay line]], followed by a five-stage differential distributed driver amplifier and a [[7699]] or [[6939]] dual tetrode power stage driving the CRT.
one with seven differential [[6DJ8]] stages driving a helically-wound, differential [[delay line]], followed by  
a five-stage differential distributed driver amplifier and a [[7699]] or [[6939]] dual tetrode power stage driving the CRT.


Unlike the other 500-series scopes, the 585 uses a CRT with [[distributed vertical deflection plates]],  
Unlike the other 500-series scopes, the 585 uses a CRT with [[distributed vertical deflection plates]], the [[T581]], enabling it to have both fast rise time and high sensitivity (~5 V/cm vertically), albeit at the cost of limiting vertical deflection to slightly over 4 cm. Total acceleration voltage is 10 kV.
the [[T581]], enabling it to have both fast rise time and high sensitivity (~5 V/cm vertically),
albeit at the cost of limiting vertical deflection to slightly over 4 cm. Total acceleration voltage is 10 kV.


Several improvements were published for the 585 circuitry, including the enhanced trigger circuit.  
Several improvements were published for the 585 circuitry, including the enhanced trigger circuit.  
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After serial number 2585, the back termination of the final distributed amplifier output was made adjustable.  
After serial number 2585, the back termination of the final distributed amplifier output was made adjustable.  
The manual says this (field-installable) modification (040-275) is "required for proper operation of plug-ins  
The manual says this (field-installable) modification (040-275) is "required for proper operation of plug-ins with numbers above [[81|Type 81]]". Non-A instruments with this termination have a front panel label reading "standardized vertical".
with numbers above [[81|Type 81]]". Non-A instruments with this termination have a front panel label reading  
"standardized vertical".


===Power Supply===
===Power Supply===


The 585 power supply is similar to other Tek scopes of the era such as the [[549]].  A linear regulator with a [[5651]] reference tube,  
The 585 power supply is similar to other Tek scopes of the era such as the [[549]].  A linear regulator with a [[5651]] reference tube, a [[12AX7]]/[[6AU6]] error amplifier and three parallel [[12B4]] series pass tubes produces −150 V.   
a [[12AX7]]/[[6AU6]] error amplifier and three parallel [[12B4]] series pass tubes produces −150 V.  This is the only adjustable rail,  
This is the only adjustable rail, all other regulated voltages are referenced to it.   
all other regulated voltages are referenced to it.  The +100 V and +350 V regulators use half a [[6080]] each as the pass element,  
The +100 V and +350 V regulators use half a [[6080]] each as the pass element, the +225 V two.   
the +225 V two.  In the +500 V path, a [[12B4]] performs this function.  The unregulated +325 V input to the 225 V regulator is used  
In the +500 V path, a [[12B4]] performs this function.   
to supply the HV oscillator, a [[6AU5]].
The unregulated +325 V input to the 225 V regulator is used to supply the HV oscillator, a [[6AU5]].


A transistor-based regulator supplies a +12.6 V heater voltage to the plug-in.
A transistor-based regulator supplies a +12.6 V heater voltage to the plug-in.
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===Semiconductors===
===Semiconductors===
The 585 uses semiconductor diodes as rectifiers and germanium transistors in the 12.6 V power supply, and except for unmodified
The 585 uses semiconductor diodes as rectifiers and germanium transistors in the 12.6 V power supply, and except for unmodified instruments before SN 1070, a tunnel diode and another germanium transistor in the time base A trigger circuit.
instruments before SN 1070, a tunnel diode and another germanium transistor in the time base A trigger circuit.


=== Rackmount Versions ===
=== Rackmount Versions ===