Ask our team:
  • Phone: +86 181 0690 9650
  • E-Mail info@apterpower.com
  • Lifecycle status

    Discontinued / Obsolete by OEM
    Request IC3600STKK1J pricing, English technical data and Mark II temperature-control matching from Apter Power.

IC3600STKK1J

/ 4.9
1001 reviews | Need a Specific Revision?
Within Mark II Speedtronic exhaust-temperature control, General Electric IC3600STKK1J combines TX feedback, reference signals and ambient bias to regulate VCE.
In Stock
Ships by Tuesday, September 29
Fast Shipping Available
Get a quick price for IC3600STKK1J
Quantity
*E-mail
Company
*Mobile
*Content
Upload (gif, jpg, jpeg, png, bmp, doc, docx, xls, xlsx, ppt, pdf, csv)

Technical specifications for IC3600STKK1J

  • Manufacturer:
    General Electric
  • Part Number:
    IC3600STKK1J
  • Product Family:
    GE Mark V/VI Driver Board
  • Product Type:
    Exhaust Temperature Control Card
  • Stock:
    1
  • Feedback Input:
    TX exhaust temperature
  • Controlled Bus:
    VCE
  • Control-State Output:
    TC and complement
  • Base Reference Adjustment:
    R69
  • Takeover Adjustment:
    R66
  • Gain Adjustment:
    R67
  • Ambient Voltage Inputs:
    0–10 V BVCE or 0–5 V PCD
  • Ambient Current Inputs:
    10–50 mA or 4–20 mA through PCD jumper selections
  • Ambient Bias Output:
    PCDN
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen,Fujian,China
By purchasing this item, you agree to the Terms & Conditions, ApterPower is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All our products come with ApterPower's 1-year warranty.

More Information

Overview Manuals Takeover Logic Ambient Bias Reference Network Warm-up Signal

Features:

  • Sums TX exhaust-temperature feedback with base and auxiliary references.
  • Supports voltage or current forms of ambient-bias input.
  • Indicates VCE takeover with TC and its complementary logic output.
IC3600STKK1J converts the processed exhaust-temperature average into a fuel-control limiting term on VCE.

Its ambient path lets IC3600STKK1J accept either voltage scaling or one of two current ranges through documented jumper selections.

The separate base, gain and takeover settings on IC3600STKK1J preserve distinct control functions instead of combining them in one adjustment.

The General Electric IC3600STKK1J Exhaust Temperature Control Card may still be available for purchase and support from Apter Power beyond End-Of-Life (EOL) by the manufacturer (OEM).
General Electric IC3600STKK1J Exhaust Temperature Control Card Manuals,Datasheets,Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.

Takeover Logic

  • Control state: IC3600STKK1J asserts TC when its temperature loop controls VCE.
  • Complement: The paired logic output changes to the opposite state.
  • Separation: TX availability and temperature-loop ownership remain distinct conditions.

Ambient Bias

  • Voltage paths: BVCE accepts 0–10 V while PCD accepts 0–5 V.
  • Current paths: PCD jumper selections configure 10–50 mA or 4–20 mA operation.
  • Output: IC3600STKK1J delivers the conditioned ambient term as PCDN.

Reference Network

  • Base level: R69 establishes the IC3600STKK1J base reference.
  • Auxiliary terms: Additional reference signals enter through SJ.
  • Tuning roles: R66 sets takeover and R67 establishes control gain.

Warm-up Signal

  • Shared feedback: The TX signal from IC3600STKK1J also enters the SHPB path.
  • Suppression: The warm-up path holds its documented suppression until the removal condition is reached.
  • Control boundary: Warm-up use of TX does not by itself indicate VCE takeover.
Description
Processed exhaust-temperature feedback enters the Mark II Speedtronic control loop through General Electric IC3600STKK1J. The card combines TX with reference signals and modulates the VCE bus that controls fuel flow.

The reference network on IC3600STKK1J includes a base setting at R69 and additional reference terms connected through SJ. When the temperature loop takes control of VCE, TC changes to logic 1 while its complementary output changes to logic 0, providing a distinct indication of temperature-control takeover.

Ambient bias can enter IC3600STKK1J as 0–10 V at BVCE, 0–5 V at PCD, 10–50 mA at PCD, or 4–20 mA at PCD. The PCD-to-CSA/B and CSA or CSB jumper combinations select the current-input path, and the conditioned ambient term leaves the card as PCDN.

During warm-up, the TX signal from IC3600STKK1J is also used by the SHPB path until the documented suppression condition is removed. R66 sets takeover, R67 establishes control gain and R69 defines the base reference, keeping the takeover point, loop response and reference level as separate adjustments.
Alternative Names
GE IC3600STKK1J Exhaust Temperature Card General Electric IC3600STKK1J Temperature Control Board IC3600-STKK1J IC3600 STKK 1J IC 3600 STKK1J Mark II STKK Temperature Regulator Card Speedtronic IC3600STKK1J VCE Control Card GE Mark II IC3600STKK1J Control Board
Technical notes
General Electric IC3600STKK1J combines TX, reference and ambient-bias terms to establish temperature control of the VCE bus.
Exceptional Service

Our Mission

  • 100% Satisfaction

    We believe expertise is priceless. With over 20 years of experience, and top engineers on staff, we can help you solve or avoid problems that threaten your business.
  • Trust Guaranteed

    Not only do we have a vast inventory, our team makes sure every piece of equipment is in working condition. Your purchases are also backed by our Warranty.
  • Expertise

    Time is money, especially when your equipment is down. We work quickly to get your equipment on its way so you can get it back up and running.

FAQS

The following is a list of questions commonly asked by our customers. Please contact us if you have a question about our process that is not answered below.
TX is present at IC3600STKK1J, but the turbine remains on another fuel limit. What confirms whether temperature control actually owns VCE?
On IC3600STKK1J, TC at logic 1 and its complement at logic 0 identify temperature-control takeover; TX alone only proves feedback is available.
A 4–20 mA ambient transmitter gives IC3600STKK1J the wrong correction. Which configuration path determines the scale?
The PCD-to-CSA/B route and the CSB jumper select 4–20 mA on IC3600STKK1J; the CSA selection belongs to the 10–50 mA path.
Loop response on IC3600STKK1J is sluggish, yet moving the takeover point would be undesirable. Which adjustments separate those two needs?
R67 changes control gain on IC3600STKK1J, whereas R66 sets takeover; keeping them separate avoids shifting the control-transfer point while correcting response.
During turbine warm-up, the temperature signal affects another function before IC3600STKK1J takes VCE control. Is that expected?
Yes. IC3600STKK1J supplies TX to the SHPB warm-up path, where suppression remains until its configured removal condition is satisfied.
PCDN on IC3600STKK1J moves in an unexpected direction after an ambient input change. What input-format mismatch should be ruled out?
Confirm whether IC3600STKK1J is receiving 0–10 V at BVCE, 0–5 V at PCD, or a jumper-selected current signal before judging the PCDN result.